120 lines
3.0 KiB
C++
120 lines
3.0 KiB
C++
#include "pch.h"
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#include "adc_subscription.h"
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#include "functional_sensor.h"
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#include "func_chain.h"
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#include "linear_func.h"
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#include "resistance_func.h"
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#include "thermistor_func.h"
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using resist = ResistanceFunc;
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using therm = ThermistorFunc;
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// Each one could be either linear or thermistor
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struct FuncPair {
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LinearFunc linear;
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FuncChain<resist, therm> thermistor;
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};
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static CCM_OPTIONAL FunctionalSensor clt(SensorType::Clt, MS2NT(10));
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static CCM_OPTIONAL FunctionalSensor iat(SensorType::Iat, MS2NT(10));
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static CCM_OPTIONAL FunctionalSensor aux1(SensorType::AuxTemp1, MS2NT(10));
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static FunctionalSensor aux2(SensorType::AuxTemp2, MS2NT(10));
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static FuncPair fclt, fiat, faux1, faux2;
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static void validateThermistorConfig(const char *msg, thermistor_conf_s& cfg) {
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if (cfg.tempC_1 >= cfg.tempC_2 ||
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cfg.tempC_2 >= cfg.tempC_3) {
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firmwareError(OBD_ThermistorConfig, "Invalid thermistor %s configuration: please check that temperatures are in the ascending order %f %f %f",
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msg,
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cfg.tempC_1,
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cfg.tempC_2,
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cfg.tempC_3);
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}
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}
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static SensorConverter& configureTempSensorFunction(const char *msg,
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thermistor_conf_s& cfg, FuncPair& p, bool isLinear) {
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if (isLinear) {
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p.linear.configure(cfg.resistance_1, cfg.tempC_1, cfg.resistance_2, cfg.tempC_2, -50, 250);
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return p.linear;
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} else /* sensor is thermistor */ {
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validateThermistorConfig(msg, cfg);
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p.thermistor.get<resist>().configure(5.0f, cfg.bias_resistor);
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p.thermistor.get<therm>().configure(cfg);
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return p.thermistor;
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}
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}
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static void configTherm(const char *msg,
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FunctionalSensor &sensor,
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FuncPair &p,
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ThermistorConf &config,
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bool isLinear) {
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// nothing to do if no channel
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if (!isAdcChannelValid(config.adcChannel)) {
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return;
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}
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// Configure the conversion function for this sensor
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sensor.setFunction(configureTempSensorFunction(msg, config.config, p, isLinear));
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}
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static void configureTempSensor(const char *msg,
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FunctionalSensor &sensor,
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FuncPair &p,
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ThermistorConf &config,
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bool isLinear) {
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auto channel = config.adcChannel;
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// Only register if we have a sensor
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if (!isAdcChannelValid(channel)) {
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return;
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}
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configTherm(msg, sensor, p, config, isLinear);
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// Register & subscribe
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AdcSubscription::SubscribeSensor(sensor, channel, 2);
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sensor.Register();
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}
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void initThermistors() {
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if (!engineConfiguration->consumeObdSensors) {
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configureTempSensor("clt",
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clt,
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fclt,
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engineConfiguration->clt,
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engineConfiguration->useLinearCltSensor);
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configureTempSensor("iat",
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iat,
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fiat,
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engineConfiguration->iat,
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engineConfiguration->useLinearIatSensor);
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}
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configureTempSensor("aux1",
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aux1,
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faux1,
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engineConfiguration->auxTempSensor1,
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false);
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configureTempSensor("aux2",
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aux2,
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faux2,
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engineConfiguration->auxTempSensor2,
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false);
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}
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void deinitThermistors() {
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AdcSubscription::UnsubscribeSensor(clt);
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AdcSubscription::UnsubscribeSensor(iat);
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AdcSubscription::UnsubscribeSensor(aux1);
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AdcSubscription::UnsubscribeSensor(aux2);
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}
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