remove fan-controls
This commit is contained in:
14
README.md
14
README.md
@@ -82,20 +82,14 @@ Verify access: `test -w /dev/ttyUSB0 && echo ok`
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1. Flash firmware and open the serial monitor at 115200 baud.
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2. Confirm `TCA9548A detected` and four valid sensor channels (`ch2`–`ch5`).
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3. Find **stir fan** speed (chamber ~35°C, idle):
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3. Find **stir fan** speed (optional — default is **PWM 178**, ~70%):
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```
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target 0
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fanchars
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```
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Heats to max **60°C** at **30%, 100%, 60%, 80%** fan (cool to **40°C** avg between each). If the best is not at 30% or 100%, runs once at the midpoint of the two lowest spreads (~1–3 h). Or: `python3 scripts/fan_characterize.py`. When done:
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```
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fanchars save
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```
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Stored PWM is the minimum-stir floor while regulating (≥40°C avg).
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Sweeps **30%, 100%, 60%, 80%** fan — heats to max **60°C** corner at **100%** heater. Cools to **40°C** avg between runs. Skips a fan speed if 60°C isn't reached in time. Optional midpoint refine if best isn't at 30% or 100%. Or: `python3 scripts/fan_characterize.py`. When done, `fanchars save` writes the winner to EEPROM (or skip and keep the 178 default).
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4. Tune **heat PI** (stored in EEPROM on autotune complete):
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@@ -107,9 +101,9 @@ Verify access: `test -w /dev/ttyUSB0 && echo ok`
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Emergency cutoff is fixed at **70°C** — you can autotune at 50–55°C with ABS in the chamber while hot corners stay below that.
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5. Optional: adjust **mix PI** at target if spread still drifts (`mixpi`, `pid save`). Stir fan from step 3 is usually enough to start drying.
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5. Dry at your target — fan runs at the stir PWM (default **178**) unless you override with `fan <pwm>`; `fan auto` returns to the default.
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Send `help` over serial for all commands (`target`, `fanchars`, `mixpi`, `fan test`, `log on/off`, `status`, `pid`, etc.).
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Send `help` over serial for all commands (`target`, `fanchars`, `fan`, `log on/off`, `status`, `pid`, etc.).
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## Raspberry Pi control
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@@ -29,16 +29,12 @@ static const float TARGET_MAX_C = 80.0f;
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static const float EMERGENCY_MAX_TEMP_C = 70.0f;
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static const float CORNER_STOP_MARGIN_C = 3.0f;
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// Dual PI — heat on avg, mix on spread (no D term)
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// Heat PI on average temp (no D term)
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static const float HEAT_PI_KP = 4.0f;
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static const float HEAT_PI_KI = 0.05f;
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static const float MIX_PI_KP = 40.0f;
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static const float MIX_PI_KI = 2.0f;
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static const float SPREAD_TARGET_C = 0.5f;
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static const float HEAT_UP_BAND_C = 8.0f;
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// Mix PI only at/above target; below target use minimum stir only (no mix PI).
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// Cap mix fan — high airflow often increases spread / heat loss rather than fixing it.
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static const uint8_t FAN_MIX_MAX_PWM = 140;
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// Fixed circulation fan (~70%, fanchars winner); override with "fan <pwm>" when regulating
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static const uint8_t FAN_STIR_PWM = 178;
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// Legacy aliases for autotuner relay math only
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static const float PID_KP = HEAT_PI_KP;
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@@ -81,7 +77,7 @@ static const uint32_t AUTOTUNE_RELAY_PERIOD_MAX_MS = 2400000UL;
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static const float FANCHARS_MAX_CORNER_C = 60.0f;
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static const float FANCHARS_COOL_AVG_C = 40.0f;
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static const float FANCHARS_PRECOOL_MARGIN_C = 2.0f;
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static const float FANCHARS_HEATER_PCT = 85.0f;
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static const float FANCHARS_HEATER_PCT = 100.0f;
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// Coarse sweep order: 30%, 100%, 60%, 80% fan
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static const uint8_t FANCHARS_COARSE_PWM[] = {77, 255, 153, 204};
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static const uint8_t FANCHARS_COARSE_COUNT =
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@@ -271,7 +271,7 @@ private:
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Serial.print(resultKp_, 3);
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Serial.print(F(" Ki="));
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Serial.println(resultKi_, 4);
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Serial.println(F(" tune mix PI separately: mixpi <Kp> <Ki>"));
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Serial.println(F(" tune heat PI: pid save after autotune"));
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}
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void fail(const __FlashStringHelper *reason) {
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@@ -12,7 +12,7 @@ static const int SETTINGS_EEPROM_ADDR = 16;
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struct SettingsData {
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uint16_t magic = 0;
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float targetC = TARGET_TEMP_C;
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uint8_t stirFanPwm = 0; // 0 = use FAN_IDLE_PWM (~30%)
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uint8_t stirFanPwm = 0; // 0 = use FAN_STIR_PWM from config
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};
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inline uint8_t settingsChecksum(const SettingsData &data) {
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@@ -15,7 +15,6 @@ public:
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ThermalController()
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: heatPi_(HEAT_PI_KP, HEAT_PI_KI, 0.0f, 0.0f, 100.0f),
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mixPi_(MIX_PI_KP, MIX_PI_KI, 0.0f, 0.0f, 255.0f),
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autotuner_(),
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fanchars_(),
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targetTempC_(TARGET_TEMP_C),
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@@ -24,10 +23,12 @@ public:
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cornerSpreadC_(0.0f),
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lastMaxTempC_(0.0f),
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regulatingFanPwm_(0),
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stirFanPwm_(FAN_IDLE_PWM),
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stirFanPwm_(FAN_STIR_PWM),
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fanManualPwm_(0),
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fanPwm_(0),
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tuningLoaded_(false),
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fanIdleOverride_(false),
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fanManualActive_(false),
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sensorWarmValid_(false),
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cutoffActive_(false),
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failSafeActive_(true),
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@@ -38,9 +39,7 @@ public:
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heaterBlock_(HeaterBlock::None),
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fanTestActive_(false),
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fanTestPwm_(0),
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fanTestEndMs_(0) {
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mixPi_.setSetpoint(0.0f);
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}
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fanTestEndMs_(0) {}
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void begin() {
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pinMode(FAN_PIN, OUTPUT);
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@@ -50,7 +49,6 @@ public:
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heatPi_.setSetpoint(targetTempC_);
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heatPi_.reset();
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mixPi_.reset();
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heaterCycleStartMs_ = millis();
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lastHeaterUpdateMs_ = 0;
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failSafeActive_ = true;
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@@ -83,44 +81,22 @@ public:
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void applyTuning(const TuningData &data) {
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heatPi_.setTunings(data.heatKp, data.heatKi, 0.0f);
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mixPi_.setTunings(data.mixKp, data.mixKi, 0.0f);
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tuningLoaded_ = true;
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}
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void clearTuning() {
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tuningLoaded_ = false;
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heatPi_.setTunings(HEAT_PI_KP, HEAT_PI_KI, 0.0f);
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mixPi_.setTunings(MIX_PI_KP, MIX_PI_KI, 0.0f);
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tuningClear();
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heatPi_.reset();
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mixPi_.reset();
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Serial.println(F("PI reset to defaults"));
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}
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void setMixTunings(float kp, float ki) {
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mixPi_.setTunings(kp, ki, 0.0f);
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mixPi_.reset();
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Serial.print(F("Mix PI Kp="));
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Serial.print(kp, 3);
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Serial.print(F(" Ki="));
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Serial.println(ki, 4);
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}
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void resetMixTunings() {
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mixPi_.setTunings(MIX_PI_KP, MIX_PI_KI, 0.0f);
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mixPi_.reset();
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Serial.println(F("Mix PI reset to defaults"));
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}
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void printTuning() const {
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Serial.print(F("Heat PI Kp="));
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Serial.print(heatPi_.kp(), 3);
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Serial.print(F(" Ki="));
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Serial.print(heatPi_.ki(), 4);
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Serial.print(F(" Mix PI Kp="));
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Serial.print(mixPi_.kp(), 3);
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Serial.print(F(" Ki="));
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Serial.print(mixPi_.ki(), 4);
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Serial.print(F(" tuned="));
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Serial.println(tuningLoaded_ ? F("yes") : F("no"));
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}
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@@ -130,8 +106,6 @@ public:
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data.magic = TUNING_MAGIC;
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data.heatKp = heatPi_.kp();
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data.heatKi = heatPi_.ki();
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data.mixKp = mixPi_.kp();
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data.mixKi = mixPi_.ki();
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tuningSave(data);
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tuningLoaded_ = true;
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Serial.println(F("Saved PI to EEPROM"));
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@@ -139,8 +113,6 @@ public:
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float heatKp() const { return heatPi_.kp(); }
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float heatKi() const { return heatPi_.ki(); }
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float mixKp() const { return mixPi_.kp(); }
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float mixKi() const { return mixPi_.ki(); }
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bool isTuningLoaded() const { return tuningLoaded_; }
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@@ -150,7 +122,6 @@ public:
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}
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cutoffActive_ = false;
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heatPi_.reset();
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mixPi_.reset();
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return autotuner_.start(setpointC);
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}
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@@ -175,7 +146,6 @@ public:
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stopFanTest();
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cutoffActive_ = false;
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heatPi_.reset();
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mixPi_.reset();
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setTarget(0.0f, false);
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return fanchars_.start(maxCornerC, avgTempC);
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}
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@@ -204,6 +174,32 @@ public:
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uint8_t stirFanPwm() const { return stirFanPwm_; }
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bool isFanManualOverride() const { return fanManualActive_ && !isIdle(); }
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bool setRegulatingFanManual(uint8_t pwm) {
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if (isIdle()) {
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return false;
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}
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fanManualPwm_ = pwm;
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fanManualActive_ = true;
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return true;
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}
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void clearRegulatingFanManual() {
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fanManualActive_ = false;
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}
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bool setStirFanPwm(uint8_t pwm, bool persist = true) {
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if (pwm == 0) {
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return false;
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}
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stirFanPwm_ = pwm;
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if (persist) {
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settingsSaveStirFan(pwm);
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}
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return true;
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}
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void logFanCharacterizeIfDue(const float *sensorTemps, const bool *sensorValid, uint8_t sensorCount,
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float avgTempC, float minTempC, float maxTempC, float spreadC,
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uint32_t nowMs) {
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@@ -239,12 +235,10 @@ public:
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data.magic = TUNING_MAGIC;
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data.heatKp = autotuner_.resultKp();
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data.heatKi = autotuner_.resultKi();
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data.mixKp = mixPi_.kp();
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data.mixKi = mixPi_.ki();
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tuningSave(data);
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tuningLoaded_ = true;
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autotuner_.reset();
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Serial.println(F("Saved heat PI to EEPROM (mix PI unchanged)"));
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Serial.println(F("Saved heat PI to EEPROM"));
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return true;
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}
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@@ -252,7 +246,7 @@ public:
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targetTempC_ = targetC;
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heatPi_.setSetpoint(targetC);
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heatPi_.reset();
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mixPi_.reset();
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fanManualActive_ = false;
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cutoffActive_ = false;
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if (targetC > 0.0f) {
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fanIdleOverride_ = false;
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@@ -390,7 +384,6 @@ public:
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forceHeaterOff();
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cutoffActive_ = false;
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heatPi_.reset();
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mixPi_.reset();
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lastHeaterUpdateMs_ = nowMs;
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applyFan(nowMs);
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return;
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@@ -408,7 +401,6 @@ public:
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forceHeaterOff();
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applyFan(millis());
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heatPi_.reset();
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mixPi_.reset();
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autotuner_.abort();
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fanchars_.abort();
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}
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@@ -485,14 +477,12 @@ private:
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regulatingFanPwm_ = FAN_MAX_PWM;
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heaterBlock_ = HeaterBlock::Cutoff;
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heatPi_.reset();
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mixPi_.reset();
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return;
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}
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if (cutoffActive_ && maxTempC < EMERGENCY_MAX_TEMP_C - 5.0f) {
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cutoffActive_ = false;
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heatPi_.reset();
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mixPi_.reset();
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}
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if (cutoffActive_) {
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@@ -523,17 +513,7 @@ private:
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}
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heaterDutyPercent_ = applyHeaterRamp(duty, avgTempC, nowMs);
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uint8_t fanPwm = stirFanPwm_;
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if (avgTempC < targetTempC_) {
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mixPi_.reset();
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} else {
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const float mixInput = SPREAD_TARGET_C - cornerSpreadC_;
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float fanOut = mixPi_.compute(mixInput, nowMs);
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fanPwm = static_cast<uint8_t>(fanOut + 0.5f);
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if (fanPwm > FAN_MIX_MAX_PWM) {
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fanPwm = FAN_MIX_MAX_PWM;
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}
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}
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const uint8_t fanPwm = fanManualActive_ ? fanManualPwm_ : stirFanPwm_;
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regulatingFanPwm_ = fanWithMinStir(avgTempC, fanPwm);
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}
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@@ -541,9 +521,6 @@ private:
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if (avgTempC < IDLE_AUTO_FAN_OFF_TEMP_C) {
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return 0;
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}
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if (pwm < stirFanPwm_) {
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return stirFanPwm_;
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}
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return pwm;
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}
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@@ -665,7 +642,6 @@ private:
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}
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PidController heatPi_;
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PidController mixPi_;
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PidAutotuner autotuner_;
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FanCharacterize fanchars_;
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float targetTempC_;
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@@ -675,9 +651,11 @@ private:
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float lastMaxTempC_;
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uint8_t regulatingFanPwm_;
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uint8_t stirFanPwm_;
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uint8_t fanManualPwm_;
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uint8_t fanPwm_;
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bool tuningLoaded_;
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bool fanIdleOverride_;
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bool fanManualActive_;
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bool sensorWarmValid_;
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bool cutoffActive_;
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bool failSafeActive_;
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@@ -5,15 +5,13 @@
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#include "config.h"
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static const uint16_t TUNING_MAGIC = 0xDA7B;
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static const uint16_t TUNING_MAGIC = 0xDA7C;
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static const int TUNING_EEPROM_ADDR = 0;
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struct TuningData {
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uint16_t magic = 0;
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float heatKp = HEAT_PI_KP;
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float heatKi = HEAT_PI_KI;
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float mixKp = MIX_PI_KP;
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float mixKi = MIX_PI_KI;
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};
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inline uint8_t tuningChecksum(const TuningData &data) {
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@@ -200,7 +200,9 @@ def apply_status(state: DryerState, data: dict) -> None:
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fan_raw = data["fan"]
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state.fan = format_fan_display(fan_raw)
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state.fan_note = ""
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if "(off)" in fan_raw or "(cooldown)" in fan_raw or "(cmd-off)" in fan_raw:
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if "(off)" in fan_raw or "(cooldown)" in fan_raw or "(off<40C)" in fan_raw:
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state.fan_note = fan_raw[fan_raw.find("(") :] if "(" in fan_raw else ""
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elif "(manual)" in fan_raw or "(stir)" in fan_raw:
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state.fan_note = fan_raw[fan_raw.find("(") :] if "(" in fan_raw else ""
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elif "(fanchars-" in fan_raw:
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state.fan_note = fan_raw[fan_raw.find("(fanchars-") :]
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100
src/main.cpp
100
src/main.cpp
@@ -150,8 +150,12 @@ void printStatus(float avgTemp, float minTemp, float maxTemp) {
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Serial.print(F("(off)"));
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} else if (thermal.isIdleCooling()) {
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Serial.print(F("(cooldown)"));
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} else if (thermal.fanPwm() == 0) {
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Serial.print(F("(cmd-off)"));
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} else if (thermal.isFanManualOverride()) {
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Serial.print(F("(manual)"));
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} else if (!thermal.isIdle() && thermal.fanPwm() == 0) {
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Serial.print(F("(off<40C)"));
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} else if (!thermal.isIdle()) {
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Serial.print(F("(stir)"));
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}
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Serial.print(F(" cutoff="));
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Serial.print(thermal.isCutoffActive() ? F("YES") : F("no"));
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@@ -224,17 +228,18 @@ void printHelp() {
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Serial.println(F(" target <C> set target (0 = idle)"));
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Serial.println(F(" fan off cancel idle fan override (auto-off below 40C)"));
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Serial.println(F(" fan on idle fan 30% (optional, auto-off below 40C)"));
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Serial.println(F(" fan auto regulating: back to default stir fan"));
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Serial.println(F(" fan <pwm> regulating: manual fan override (0-255)"));
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Serial.println(F(" fan stir show default stir fan PWM"));
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Serial.println(F(" fan stir N set default stir fan + EEPROM"));
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Serial.println(F(" fan test N set fan PWM 0-255 for 15s (verify wiring)"));
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Serial.println(F(" autotune [C] learn heat PI (default: 40C when idle)"));
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Serial.println(F(" autotune stop"));
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Serial.println(F(" fanchars learn stir fan (30/100/60/80%% + refine)"));
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Serial.println(F(" fanchars stop | fanchars save"));
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Serial.println(F(" pid show heat + mix PI gains"));
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Serial.println(F(" pid default reset all PI to factory"));
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Serial.println(F(" pid show heat PI gains"));
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Serial.println(F(" pid default reset heat PI to factory"));
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Serial.println(F(" pid save write current PI to EEPROM"));
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Serial.println(F(" mixpi show mix PI gains"));
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Serial.println(F(" mixpi <Kp> <Ki> set mix PI (spread -> fan)"));
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Serial.println(F(" mixpi default reset mix PI to factory"));
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Serial.println(F(" status print current readings"));
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Serial.println(F(" log on|off CSV data stream"));
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Serial.println(F(" help show this message"));
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@@ -323,6 +328,58 @@ void processSerialLine(const char *line) {
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return;
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}
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if (strcmp(line, "fan auto") == 0) {
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if (thermal.isIdle()) {
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Serial.println(F("ERR fan auto only when regulating (set target > 0)"));
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return;
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}
|
||||
thermal.clearRegulatingFanManual();
|
||||
Serial.print(F("OK fan stir "));
|
||||
Serial.println(thermal.stirFanPwm());
|
||||
return;
|
||||
}
|
||||
|
||||
if (strncmp(line, "fan stir", 8) == 0) {
|
||||
if (line[8] == '\0') {
|
||||
Serial.print(F("stir fan PWM="));
|
||||
Serial.println(thermal.stirFanPwm());
|
||||
return;
|
||||
}
|
||||
if (line[8] == ' ') {
|
||||
const int pwm = atoi(line + 9);
|
||||
if (pwm < 1 || pwm > 255) {
|
||||
Serial.println(F("ERR fan stir PWM must be 1-255"));
|
||||
return;
|
||||
}
|
||||
thermal.setStirFanPwm(static_cast<uint8_t>(pwm));
|
||||
if (!thermal.isIdle()) {
|
||||
thermal.clearRegulatingFanManual();
|
||||
}
|
||||
Serial.print(F("OK stir fan "));
|
||||
Serial.println(pwm);
|
||||
return;
|
||||
}
|
||||
}
|
||||
|
||||
if (strncmp(line, "fan ", 4) == 0) {
|
||||
const char *arg = line + 4;
|
||||
if (*arg >= '0' && *arg <= '9') {
|
||||
const int pwm = atoi(arg);
|
||||
if (pwm < 0 || pwm > 255) {
|
||||
Serial.println(F("ERR fan PWM must be 0-255"));
|
||||
return;
|
||||
}
|
||||
if (thermal.isIdle()) {
|
||||
Serial.println(F("ERR fan <pwm> only when regulating (or use fan test)"));
|
||||
return;
|
||||
}
|
||||
thermal.setRegulatingFanManual(static_cast<uint8_t>(pwm));
|
||||
Serial.print(F("OK fan manual "));
|
||||
Serial.println(pwm);
|
||||
return;
|
||||
}
|
||||
}
|
||||
|
||||
if (strcmp(line, "status") == 0) {
|
||||
const float avgTemp = averageValidTemperature();
|
||||
const float minTemp = minValidTemperature();
|
||||
@@ -415,35 +472,6 @@ void processSerialLine(const char *line) {
|
||||
return;
|
||||
}
|
||||
|
||||
if (strcmp(line, "mixpi") == 0 || strcmp(line, "mixpi show") == 0) {
|
||||
Serial.print(F("Mix PI Kp="));
|
||||
Serial.print(thermal.mixKp(), 3);
|
||||
Serial.print(F(" Ki="));
|
||||
Serial.println(thermal.mixKi(), 4);
|
||||
return;
|
||||
}
|
||||
|
||||
if (strcmp(line, "mixpi default") == 0) {
|
||||
thermal.resetMixTunings();
|
||||
return;
|
||||
}
|
||||
|
||||
if (strncmp(line, "mixpi ", 6) == 0) {
|
||||
const float kp = atof(line + 6);
|
||||
const char *space = strchr(line + 6, ' ');
|
||||
if (space == nullptr) {
|
||||
Serial.println(F("ERR mixpi requires: mixpi <Kp> <Ki>"));
|
||||
return;
|
||||
}
|
||||
const float ki = atof(space + 1);
|
||||
if (kp <= 0.0f || ki < 0.0f) {
|
||||
Serial.println(F("ERR mixpi Kp must be > 0, Ki >= 0"));
|
||||
return;
|
||||
}
|
||||
thermal.setMixTunings(kp, ki);
|
||||
return;
|
||||
}
|
||||
|
||||
if (strcmp(line, "help") == 0) {
|
||||
printHelp();
|
||||
return;
|
||||
|
||||
Reference in New Issue
Block a user