refactoring: better code names
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cc5ab32192
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be18c73836
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@ -137,7 +137,7 @@ floatms_t getInjectionDuration(int rpm DECLARE_ENGINE_PARAMETER_S) {
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engineConfiguration->crankingInjectionMode :
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engineConfiguration->injectionMode PASS_ENGINE_PARAMETER);
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if (numberOfCylinders == 0) {
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warning(CUSTOM_ERR_6509, "config not ready");
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warning(CUSTOM_CONFIG_NOT_READY, "config not ready");
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return 0; // we can end up here during configuration reset
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}
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if (isCranking) {
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@ -1678,20 +1678,20 @@ typedef enum {
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CUSTOM_NAN_ENGINE_LOAD_2 = 6002,
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CUSTOM_NEGATIVE_DURATION = 6003,
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CUSTOM_NAN_DURACTION = 6004,
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CUSTOM_OBD_5 = 6005,
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CUSTOM_OBD_6 = 6006,
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CUSTOM_EMPTY_FSIO_STACK = 6005,
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CUSTOM_UNKNOWN_FSIO = 6006,
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CUSTOM_NO_FSIO = 6007,
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CUSTOM_OBD_8 = 6008,
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CUSTOM_OBD_9 = 6009,
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CUSTOM_FSIO_STACK_SIZE = 6008,
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CUSTOM_FSIO_UNEXPECTED = 6009,
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CUSTOM_OBD_10 = 6010,
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CUSTOM_FSIO_PARSING = 6010,
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CUSTOM_OBD_11 = 6011,
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CUSTOM_OBD_12 = 6012,
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CUSTOM_OBD_13 = 6013,
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CUSTOM_OBD_14 = 6014,
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CUSTOM_OBD_15 = 6015,
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CUSTOM_OBD_16 = 6016,
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CUSTOM_OBD_17 = 6017,
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CUSTOM_PARAM_RANGE = 6016,
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CUSTOM_MAF_NEEDED = 6017,
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CUSTOM_UNKNOWN_ALGORITHM = 6018,
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CUSTOM_OBD_COIL_PIN_NOT_ASSIGNED = 6019,
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@ -1700,17 +1700,17 @@ typedef enum {
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CUSTOM_OBD_ANGLE_CONSTRAINT_VIOLATION = 6022,
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CUSTOM_OBD_UNKNOWN_FIRING_ORDER = 6023,
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CUSTOM_OBD_WRONG_FIRING_ORDER = 6024,
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CUSTOM_OBD_25 = 6025,
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CUSTOM_OBD_IGNITION_MODE = 6025,
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CUSTOM_OBD_26 = 6026,
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CUSTOM_UNEXPECTED_ENGINE_TYPE = 6027,
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CUSTOM_INVALID_TPS_SETTING = 6028,
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CUSTOM_OBD_29 = 6029,
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CUSTOM_RE_ADDING = 6029,
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CUSTOM_OBD_NAN_INJECTION = 6030,
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CUSTOM_OBD_NEG_INJECTION = 6031,
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CUSTOM_ZERO_DWELL = 6032,
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CUSTOM_OBD_33 = 6033,
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CUSTOM_OBD_34 = 6034,
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CUSTOM_DWELL_TOO_LONG = 6033,
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CUSTOM_SKIPPING_STROKE = 6034,
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CUSTOM_OBD_TRG_DECODING = 6035,
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// todo: looks like following two errors always happen together, it's just timing affects which one is published?
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CUSTOM_SYNC_ERROR = 6036,
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@ -1860,15 +1860,15 @@ typedef enum {
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CUSTOM_ERR_ASSERT_VOID = 6501,
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CUSTOM_ERR_6502 = 6502,
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CUSTOM_ERR_FSIO_POOL = 6503,
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CUSTOM_ERR_6504 = 6504,
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CUSTOM_FLSTACK = 6504,
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CUSTOM_ERR_6505 = 6505,
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CUSTOM_ERR_6506 = 6506,
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CUSTOM_ERR_6507 = 6507,
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CUSTOM_EGO_TYPE = 6506,
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CUSTOM_LIST_LOOP = 6507,
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CUSTOM_ERR_6508 = 6508,
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CUSTOM_ERR_6509 = 6509,
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CUSTOM_CONFIG_NOT_READY = 6509,
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CUSTOM_ERR_TRG_ANGLE_ORDER = 6510,
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CUSTOM_ERR_STATE_NULL = 6511,
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CUSTOM_ERR_6512 = 6512,
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CUSTOM_ERR_SAME_ANGLE = 6512,
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CUSTOM_ERR_6513 = 6513,
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CUSTOM_ERR_6514 = 6514,
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CUSTOM_ERR_6515 = 6515,
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@ -69,7 +69,7 @@ void FLStack<T, MAXSIZE>::push(T value) {
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template<typename T, int MAXSIZE>
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T FLStack<T, MAXSIZE>::pop() {
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if (currentSize == 0) {
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firmwareError(CUSTOM_ERR_6504, "FLStack is empty");
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firmwareError(CUSTOM_FLSTACK, "FLStack is empty");
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}
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return values[--currentSize];
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}
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@ -124,7 +124,7 @@ static bool float2bool(float v) {
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float LECalculator::pop(le_action_e action) {
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if (stack.size() == 0) {
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warning(CUSTOM_OBD_5, "empty stack for action=%d", action);
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warning(CUSTOM_EMPTY_FSIO_STACK, "empty stack for action=%d", action);
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return NAN;
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}
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return stack.pop();
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@ -291,7 +291,7 @@ bool LECalculator::processElement(Engine *engine, LEElement *element) {
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push(element->action, engine->knockCount);
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break;
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case LE_UNDEFINED:
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warning(CUSTOM_OBD_6, "FSIO undefined action");
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warning(CUSTOM_UNKNOWN_FSIO, "FSIO undefined action");
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return true;
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default:
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push(element->action, getLEValue(engine, &stack, element->action));
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@ -334,7 +334,7 @@ float LECalculator::getValue(float selfValue, Engine *engine) {
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counter++;
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}
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if (stack.size() != 1) {
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warning(CUSTOM_OBD_8, "unexpected FSIO stack size: %d", stack.size());
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warning(CUSTOM_FSIO_STACK_SIZE, "unexpected FSIO stack size: %d", stack.size());
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return NAN;
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}
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return stack.pop();
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@ -103,7 +103,7 @@ float getLEValue(Engine *engine, calc_stack_t *s, le_action_e action) {
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case LE_METHOD_VBATT:
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return getVBatt(PASS_ENGINE_PARAMETER_F);
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default:
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warning(CUSTOM_OBD_9, "FSIO unexpected %d", action);
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warning(CUSTOM_FSIO_UNEXPECTED, "FSIO unexpected %d", action);
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return NAN;
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}
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}
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@ -193,7 +193,7 @@ void applyFsioConfiguration(DECLARE_ENGINE_PARAMETER_F) {
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const char *formula = config->le_formulas[i];
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LEElement *logic = userPool.parseExpression(formula);
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if (logic == NULL) {
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warning(CUSTOM_OBD_10, "parsing [%s]", formula);
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warning(CUSTOM_FSIO_PARSING, "parsing [%s]", formula);
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}
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fsioLogics[i] = logic;
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@ -89,7 +89,7 @@ template<int RPM_BIN_SIZE, int LOAD_BIN_SIZE, typename vType>
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float Map3D<RPM_BIN_SIZE, LOAD_BIN_SIZE, vType>::getValue(float xRpm, float y) {
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efiAssert(initialized, "map not initialized", NAN);
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if (cisnan(y)) {
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warning(CUSTOM_OBD_16, "%s: y is NaN", name);
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warning(CUSTOM_PARAM_RANGE, "%s: y is NaN", name);
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return NAN;
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}
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// todo: we have a bit of a mess: in TunerStudio, RPM is X-axis
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@ -60,7 +60,7 @@ float getEngineLoadT(DECLARE_ENGINE_PARAMETER_F) {
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switch (engineConfiguration->fuelAlgorithm) {
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case LM_PLAIN_MAF:
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if (!hasMafSensor(PASS_ENGINE_PARAMETER_F)) {
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warning(CUSTOM_OBD_17, "MAF sensor needed for current fuel algorithm");
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warning(CUSTOM_MAF_NEEDED, "MAF sensor needed for current fuel algorithm");
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return NAN;
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}
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return getMafT(engineConfiguration);
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@ -457,7 +457,7 @@ static int getIgnitionPinForIndex(int i DECLARE_ENGINE_PARAMETER_S) {
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break;
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default:
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warning(CUSTOM_OBD_25, "unsupported ignitionMode %d in initializeIgnitionActions()", engineConfiguration->ignitionMode);
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warning(CUSTOM_OBD_IGNITION_MODE, "unsupported ignitionMode %d in initializeIgnitionActions()", engineConfiguration->ignitionMode);
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return 0;
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}
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}
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@ -60,7 +60,7 @@ static void initEgoSensor(afr_sensor_s *sensor, ego_sensor_e type) {
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sensor->value2 = 14;
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break;
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default:
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firmwareError(CUSTOM_ERR_6506, "Unexpected EGO %d", type);
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firmwareError(CUSTOM_EGO_TYPE, "Unexpected EGO %d", type);
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break;
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}
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}
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@ -133,7 +133,7 @@ int EventQueue::executeAll(efitime_t now) {
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{
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efiAssert(current->callback != NULL, "callback==null1", 0);
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if (++listIterationCounter > QUEUE_LENGTH_LIMIT) {
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firmwareError(CUSTOM_ERR_6507, "Is this list looped?");
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firmwareError(CUSTOM_LIST_LOOP, "Is this list looped?");
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return false;
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}
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if (current->momentX <= now) {
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@ -35,7 +35,7 @@ bool assertNotInList(T *head, T*element) {
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* was not scheduled by angle but was scheduled by time. In case of scheduling
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* by time with slow RPM the whole next fast revolution might be within the wait period
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*/
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warning(CUSTOM_OBD_29, "re-adding element into event_queue");
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warning(CUSTOM_RE_ADDING, "re-adding element into event_queue");
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return true;
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}
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}
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@ -499,7 +499,7 @@ void mainTriggerCallback(trigger_event_e ckpSignalType, uint32_t trgEventIndex D
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if (limitedSpark || limitedFuel) {
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// todo: this is not really a warning
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warning(CUSTOM_OBD_34, "skipping stroke due to rpm=%d", rpm);
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warning(CUSTOM_SKIPPING_STROKE, "skipping stroke due to rpm=%d", rpm);
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}
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#if (EFI_HISTOGRAMS && EFI_PROD_CODE) || defined(__DOXYGEN__)
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@ -290,7 +290,7 @@ static ALWAYS_INLINE void prepareIgnitionSchedule(int rpm DECLARE_ENGINE_PARAMET
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warning(CUSTOM_ZERO_DWELL, "dwell is zero?");
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}
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if (engine->engineState.dwellAngle > maxAllowedDwellAngle) {
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warning(CUSTOM_OBD_33, "dwell angle too long: %f", engine->engineState.dwellAngle);
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warning(CUSTOM_DWELL_TOO_LONG, "dwell angle too long: %f", engine->engineState.dwellAngle);
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}
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// todo: add some check for dwell overflow? like 4 times 6 ms while engine cycle is less then that
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@ -343,7 +343,7 @@ void TriggerShape::addEvent2(angle_t angle, trigger_wheel_e const waveIndex, tri
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int exactMatch = wave.findAngleMatch(angle, size);
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if (exactMatch != EFI_ERROR_CODE) {
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warning(CUSTOM_ERR_6512, "same angle: not supported");
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warning(CUSTOM_ERR_SAME_ANGLE, "same angle: not supported");
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shapeDefinitionError = true;
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return;
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}
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