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@ -2007,27 +2007,37 @@ bool Planner::_populate_block(block_t * const block, bool split_move, |
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filwidth.advance_e(delta_mm.e); |
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#endif |
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// Calculate and limit speed in mm/sec for each axis
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// Calculate and limit speed in mm/sec
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xyze_float_t current_speed; |
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float speed_factor = 1.0f; // factor <1 decreases speed
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LOOP_XYZE(i) { |
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// Linear axes first with less logic
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LOOP_XYZ(i) { |
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current_speed[i] = delta_mm[i] * inverse_secs; |
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const feedRate_t cs = ABS(current_speed[i]), |
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max_fr = settings.max_feedrate_mm_s[i]; |
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if (cs > max_fr) NOMORE(speed_factor, max_fr / cs); |
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} |
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// Limit speed on extruders, if any
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#if EXTRUDERS |
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{ |
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current_speed.e = delta_mm.e * inverse_secs; |
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#if BOTH(MIXING_EXTRUDER, RETRACT_SYNC_MIXING) |
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// In worst case, only one extruder running, no change is needed.
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// In best case, all extruders run the same amount, we can divide by MIXING_STEPPERS
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float delta_mm_i = 0; |
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if (i == E_AXIS && mixer.get_current_vtool() == MIXER_AUTORETRACT_TOOL) |
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delta_mm_i = delta_mm.e / MIXING_STEPPERS; |
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else |
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delta_mm_i = delta_mm.e; |
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#else |
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const float delta_mm_i = delta_mm[i]; |
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// Move all mixing extruders at the specified rate
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if (mixer.get_current_vtool() == MIXER_AUTORETRACT_TOOL) |
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current_speed.e *= MIXING_STEPPERS; |
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#endif |
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const feedRate_t cs = ABS(current_speed[i] = delta_mm_i * inverse_secs); |
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#if ENABLED(DISTINCT_E_FACTORS) |
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if (i == E_AXIS) i += extruder; |
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const feedRate_t cs = ABS(current_speed.e), |
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max_fr = (settings.max_feedrate_mm_s[E_AXIS_N(extruder)] |
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#if BOTH(MIXING_EXTRUDER, RETRACT_SYNC_MIXING) |
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* MIXING_STEPPERS |
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#endif |
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if (cs > settings.max_feedrate_mm_s[i]) NOMORE(speed_factor, settings.max_feedrate_mm_s[i] / cs); |
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); |
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if (cs > max_fr) NOMORE(speed_factor, max_fr / cs); |
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} |
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#endif |
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// Max segment time in µs.
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#ifdef XY_FREQUENCY_LIMIT |
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