Laser updates followup (#18237)
Co-authored-by: Scott Lahteine <thinkyhead@users.noreply.github.com>
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2f28e8ba13
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3 changed files with 23 additions and 16 deletions
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@ -91,8 +91,8 @@ public:
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static cutter_frequency_t frequency; // Set PWM frequency; range: 2K-50K
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#endif
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static cutter_power_t menuPower; // Power as set via LCD menu in PWM, Percentage or RPM
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static cutter_power_t unitPower; // Power as displayed status in PWM, Percentage or RPM
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static cutter_power_t menuPower, // Power as set via LCD menu in PWM, Percentage or RPM
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unitPower; // Power as displayed status in PWM, Percentage or RPM
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static void init();
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@ -225,32 +225,37 @@ public:
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static inline void inline_disable() {
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isReady = false;
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unitPower = 0;
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planner.laser_inline.status = 0;
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planner.laser_inline.status.isPlanned = false;
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planner.laser_inline.status.isEnabled = false;
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planner.laser_inline.power = 0;
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}
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// Inline modes of all other functions; all enable planner inline power control
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static inline void set_inline_enabled(const bool enable) {
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if (enable) { inline_power(cpwr_to_upwr(SPEED_POWER_STARTUP)); }
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else { unitPower = 0; isReady = false; menuPower = 0; TERN(SPINDLE_LASER_PWM, inline_ocr_power, inline_power)(0);}
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if (enable)
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inline_power(cpwr_to_upwr(SPEED_POWER_STARTUP));
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else {
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isReady = false;
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unitPower = menuPower = 0;
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planner.laser_inline.status.isPlanned = false;
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TERN(SPINDLE_LASER_PWM, inline_ocr_power, inline_power)(0);
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}
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}
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// Set the power for subsequent movement blocks
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static void inline_power(const cutter_power_t upwr) {
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unitPower = upwr;
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menuPower = unitPower;
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unitPower = menuPower = upwr;
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#if ENABLED(SPINDLE_LASER_PWM)
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isReady = true;
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#if ENABLED(SPEED_POWER_RELATIVE) && !CUTTER_UNIT_IS(RPM) // relative mode does not turn laser off at 0, except for RPM
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planner.laser_inline.status = 0x03;
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planner.laser_inline.status.isEnabled = true;
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planner.laser_inline.power = upower_to_ocr(upwr);
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isReady = true;
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#else
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if (upwr > 0)
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inline_ocr_power(upower_to_ocr(upwr));
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inline_ocr_power(upower_to_ocr(upwr));
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#endif
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#else
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planner.laser_inline.status = enabled(pwr) ? 0x03 : 0x01;
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planner.laser_inline.power = pwr;
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planner.laser_inline.status.isEnabled = enabled(upwr);
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planner.laser_inline.power = upwr;
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isReady = enabled(upwr);
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#endif
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}
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@ -259,7 +264,8 @@ public:
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#if ENABLED(SPINDLE_LASER_PWM)
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static inline void inline_ocr_power(const uint8_t ocrpwr) {
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planner.laser_inline.status = ocrpwr ? 0x03 : 0x01;
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isReady = ocrpwr > 0;
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planner.laser_inline.status.isEnabled = ocrpwr > 0;
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planner.laser_inline.power = ocrpwr;
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}
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#endif
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@ -1826,6 +1826,7 @@ bool Planner::_populate_block(block_t * const block, bool split_move,
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// Update block laser power
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#if ENABLED(LASER_POWER_INLINE)
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laser_inline.status.isPlanned = true;
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block->laser.status = laser_inline.status;
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block->laser.power = laser_inline.power;
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#endif
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@ -355,7 +355,7 @@ class Stepper {
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#if ENABLED(LASER_POWER_INLINE_TRAPEZOID)
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typedef struct {
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bool trap_en; // Trapezoid needed flag (i.e., laser on, planner in control)
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bool enabled; // Trapezoid needed flag (i.e., laser on, planner in control)
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uint8_t cur_power; // Current laser power
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bool cruise_set; // Power set up for cruising?
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@ -367,7 +367,7 @@ class Stepper {
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#endif
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} stepper_laser_t;
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static stepper_laser_t laser;
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static stepper_laser_t laser_trap;
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#endif
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