Apply SEC_TO_MS and other fixes
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@ -783,6 +783,7 @@ void minkill(const bool steppers_off/*=false*/) {
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*/
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void stop() {
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thermalManager.disable_all_heaters(); // 'unpause' taken care of in here
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print_job_timer.stop();
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#if ENABLED(PROBING_FANS_OFF)
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@ -162,6 +162,7 @@
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#define _DO_12(W,C,A,V...) (_##W##_1(A) C _DO_11(W,C,V))
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#define _DO_13(W,C,A,V...) (_##W##_1(A) C _DO_12(W,C,V))
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#define _DO_14(W,C,A,V...) (_##W##_1(A) C _DO_13(W,C,V))
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#define _DO_15(W,C,A,V...) (_##W##_1(A) C _DO_14(W,C,V))
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#define __DO_N(W,C,N,V...) _DO_##N(W,C,V)
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#define _DO_N(W,C,N,V...) __DO_N(W,C,N,V)
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#define DO(W,C,V...) (_DO_N(W,C,NUM_ARGS(V),V))
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@ -89,9 +89,10 @@
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*/
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void GcodeSuite::M81() {
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thermalManager.disable_all_heaters();
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print_job_timer.stop();
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planner.finish_and_disable();
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print_job_timer.stop();
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#if HAS_FAN
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thermalManager.zero_fan_speeds();
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#if ENABLED(PROBING_FANS_OFF)
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@ -119,7 +119,7 @@ void GcodeSuite::M916() {
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M91x_counter_max = 256; // KVAL_HOLD is 8 bits
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uint8_t M91x_delay_s = parser.byteval('D'); // get delay in seconds
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millis_t M91x_delay_ms = M91x_delay_s * 60 * 1000;
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millis_t M91x_delay_ms = SEC_TO_MS(M91x_delay_s * 60);
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millis_t M91x_delay_end;
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DEBUG_ECHOLNPGM(".\n.");
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@ -282,7 +282,7 @@ public:
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// Code value for use as time
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static inline millis_t value_millis() { return value_ulong(); }
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static inline millis_t value_millis_from_seconds() { return (millis_t)(value_float() * 1000); }
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static inline millis_t value_millis_from_seconds() { return (millis_t)SEC_TO_MS(value_float()); }
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// Reduce to fewer bits
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static inline int16_t value_int() { return (int16_t)value_long(); }
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@ -224,9 +224,12 @@ void PrintCounter::tick() {
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millis_t now = millis();
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static uint32_t update_next; // = 0
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static millis_t update_next; // = 0
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if (ELAPSED(now, update_next)) {
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update_next = now + updateInterval;
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TERN_(DEBUG_PRINTCOUNTER, debug(PSTR("tick")));
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millis_t delta = deltaDuration();
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data.printTime += delta;
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@ -239,8 +242,6 @@ void PrintCounter::tick() {
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#if SERVICE_INTERVAL_3 > 0
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data.nextService3 -= _MIN(delta, data.nextService3);
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#endif
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update_next = now + updateInterval * 1000;
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}
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static uint32_t eeprom_next; // = 0
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@ -71,11 +71,8 @@ class PrintCounter: public Stopwatch {
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* @brief Interval in seconds between counter updates
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* @details This const value defines what will be the time between each
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* accumulator update. This is different from the EEPROM save interval.
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*
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* @note The max value for this option is 60(s), otherwise integer
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* overflow will happen.
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*/
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static constexpr uint16_t updateInterval = 10;
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static constexpr millis_t updateInterval = SEC_TO_MS(10);
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/**
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* @brief Interval in seconds between EEPROM saves
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@ -2186,7 +2186,6 @@ void Temperature::disable_all_heaters() {
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#endif
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#if ENABLED(PROBING_HEATERS_OFF)
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void Temperature::pause(const bool p) {
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@ -828,7 +828,7 @@ inline void fast_line_to_current(const AxisEnum fr_axis) { _line_to_current(fr_a
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// Cool down with fan
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#if HAS_FAN && TOOLCHANGE_FS_FAN >= 0
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thermalManager.fan_speed[TOOLCHANGE_FS_FAN] = toolchange_settings.fan_speed;
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gcode.dwell(toolchange_settings.fan_time * 1000);
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gcode.dwell(SEC_TO_MS(toolchange_settings.fan_time));
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thermalManager.fan_speed[TOOLCHANGE_FS_FAN] = 0;
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#endif
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@ -1102,7 +1102,7 @@ void tool_change(const uint8_t new_tool, bool no_move/*=false*/) {
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// Cool down with fan
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#if HAS_FAN && TOOLCHANGE_FS_FAN >= 0
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thermalManager.fan_speed[TOOLCHANGE_FS_FAN] = toolchange_settings.fan_speed;
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gcode.dwell(toolchange_settings.fan_time * 1000);
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gcode.dwell(SEC_TO_MS(toolchange_settings.fan_time));
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thermalManager.fan_speed[TOOLCHANGE_FS_FAN] = 0;
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#endif
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}
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@ -27,7 +27,7 @@
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#if defined(MKS_HAS_LPC1769) && NOT_TARGET(MCU_LPC1769)
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#error "Oops! Make sure you have the LPC1769 environment selected in your IDE."
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#elif NOT_TARGET(MKS_HAS_LPC1769, MCU_LPC1768)
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#elif !defined(MKS_HAS_LPC1769) && NOT_TARGET(MCU_LPC1768)
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#error "Oops! Make sure you have the LPC1768 environment selected in your IDE."
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#endif
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