Apply grace period to thermistor failure testing (#14167)
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@ -82,6 +82,10 @@
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#endif
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#endif
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#ifndef THERMAL_PROTECTION_GRACE_PERIOD
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#define THERMAL_PROTECTION_GRACE_PERIOD 0 // No grace period needed on well-behaved boards
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#endif
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Temperature thermalManager;
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/**
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@ -991,9 +995,6 @@ void Temperature::manage_heater() {
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#endif
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#if HAS_THERMAL_PROTECTION
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#ifndef THERMAL_PROTECTION_GRACE_PERIOD
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#define THERMAL_PROTECTION_GRACE_PERIOD 0 // No grace period needed on well-behaved boards
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#endif
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#if THERMAL_PROTECTION_GRACE_PERIOD > 0
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static millis_t grace_period = ms + THERMAL_PROTECTION_GRACE_PERIOD;
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if (ELAPSED(ms, grace_period)) grace_period = 0UL;
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@ -2166,6 +2167,15 @@ void Temperature::set_current_temp_raw() {
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#endif
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void Temperature::readings_ready() {
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#if THERMAL_PROTECTION_GRACE_PERIOD > 0
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const millis_t ms = millis();
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static millis_t grace_period = ms + THERMAL_PROTECTION_GRACE_PERIOD; // NOTE: millis() == 0 on reset
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if (ELAPSED(ms, grace_period)) grace_period = 0;
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#else
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static constexpr millis_t grace_period = 0;
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#endif
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// Update the raw values if they've been read. Else we could be updating them during reading.
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if (!temp_meas_ready) set_current_temp_raw();
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@ -2207,6 +2217,9 @@ void Temperature::readings_ready() {
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#endif // HOTENDS > 1
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};
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// Give ADC temperature readings time to settle at boot-up before testing
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if (grace_period) return;
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for (uint8_t e = 0; e < COUNT(temp_dir); e++) {
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const int16_t tdir = temp_dir[e], rawtemp = temp_hotend[e].raw * tdir;
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const bool heater_on = (temp_hotend[e].target > 0)
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