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110
cfgs/TEST_SPEED.cfg
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110
cfgs/TEST_SPEED.cfg
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# Home, get position, throw around toolhead, home again.
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# If MCU stepper positions (first line in GET_POSITION) are greater than a full step different (your number of microsteps), then skipping occured.
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# We only measure to a full step to accomodate for endstop variance.
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# Example: TEST_SPEED SPEED=300 ACCEL=5000 ITERATIONS=10
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[gcode_macro TEST_SPEED]
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gcode:
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# Speed
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{% set speed = params.SPEED|default(printer.configfile.settings.printer.max_velocity)|int %}
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# Iterations
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{% set iterations = params.ITERATIONS|default(5)|int %}
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# Acceleration
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{% set accel = params.ACCEL|default(printer.configfile.settings.printer.max_accel)|int %}
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# Bounding inset for large pattern (helps prevent slamming the toolhead into the sides after small skips, and helps to account for machines with imperfectly set dimensions)
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{% set bound = params.BOUND|default(20)|int %}
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# Size for small pattern box
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{% set smallpatternsize = SMALLPATTERNSIZE|default(20)|int %}
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# Large pattern
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# Max positions, inset by BOUND
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{% set x_min = printer.toolhead.axis_minimum.x + bound %}
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{% set x_max = printer.toolhead.axis_maximum.x - bound %}
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{% set y_min = printer.toolhead.axis_minimum.y + bound %}
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{% set y_max = printer.toolhead.axis_maximum.y - bound %}
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# Small pattern at center
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# Find X/Y center point
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{% set x_center = (printer.toolhead.axis_minimum.x|float + printer.toolhead.axis_maximum.x|float ) / 2 %}
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{% set y_center = (printer.toolhead.axis_minimum.y|float + printer.toolhead.axis_maximum.y|float ) / 2 %}
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# Set small pattern box around center point
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{% set x_center_min = x_center - (smallpatternsize/2) %}
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{% set x_center_max = x_center + (smallpatternsize/2) %}
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{% set y_center_min = y_center - (smallpatternsize/2) %}
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{% set y_center_max = y_center + (smallpatternsize/2) %}
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# Save current gcode state (absolute/relative, etc)
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SAVE_GCODE_STATE NAME=TEST_SPEED
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# Output parameters to g-code terminal
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{ action_respond_info("TEST_SPEED: starting %d iterations at speed %d, accel %d" % (iterations, speed, accel)) }
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# Home and get position for comparison later:
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G28
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# QGL if not already QGLd (only if QGL section exists in config)
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{% if printer.configfile.settings.quad_gantry_level %}
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{% if printer.quad_gantry_level.applied == False %}
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QUAD_GANTRY_LEVEL
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G28 Z
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{% endif %}
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{% endif %}
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# Move 50mm away from max position and home again (to help with hall effect endstop accuracy - https://github.com/AndrewEllis93/Print-Tuning-Guide/issues/24)
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G90
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G1 X{printer.toolhead.axis_maximum.x-50} Y{printer.toolhead.axis_maximum.y-50} F{30*60}
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G28 X Y
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G0 X{printer.toolhead.axis_maximum.x-1} Y{printer.toolhead.axis_maximum.y-1} F{30*60}
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G4 P1000
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GET_POSITION
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# Go to starting position
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G0 X{x_min} Y{y_min} Z{bound + 10} F{speed*60}
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# Set new limits
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SET_VELOCITY_LIMIT VELOCITY={speed} ACCEL={accel} ACCEL_TO_DECEL={accel / 2}
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{% for i in range(iterations) %}
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# Large pattern
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# Diagonals
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G0 X{x_min} Y{y_min} F{speed*60}
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G0 X{x_max} Y{y_max} F{speed*60}
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G0 X{x_min} Y{y_min} F{speed*60}
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G0 X{x_max} Y{y_min} F{speed*60}
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G0 X{x_min} Y{y_max} F{speed*60}
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G0 X{x_max} Y{y_min} F{speed*60}
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# Box
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G0 X{x_min} Y{y_min} F{speed*60}
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G0 X{x_min} Y{y_max} F{speed*60}
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G0 X{x_max} Y{y_max} F{speed*60}
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G0 X{x_max} Y{y_min} F{speed*60}
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# Small pattern
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# Small diagonals
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G0 X{x_center_min} Y{y_center_min} F{speed*60}
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G0 X{x_center_max} Y{y_center_max} F{speed*60}
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G0 X{x_center_min} Y{y_center_min} F{speed*60}
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G0 X{x_center_max} Y{y_center_min} F{speed*60}
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G0 X{x_center_min} Y{y_center_max} F{speed*60}
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G0 X{x_center_max} Y{y_center_min} F{speed*60}
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# Small box
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G0 X{x_center_min} Y{y_center_min} F{speed*60}
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G0 X{x_center_min} Y{y_center_max} F{speed*60}
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G0 X{x_center_max} Y{y_center_max} F{speed*60}
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G0 X{x_center_max} Y{y_center_min} F{speed*60}
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{% endfor %}
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# Restore max speed/accel/accel_to_decel to their configured values
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SET_VELOCITY_LIMIT VELOCITY={printer.configfile.settings.printer.max_velocity} ACCEL={printer.configfile.settings.printer.max_accel} ACCEL_TO_DECEL={printer.configfile.settings.printer.max_accel_to_decel}
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# Re-home and get position again for comparison:
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G28
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# Go to XY home positions (in case your homing override leaves it elsewhere)
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G90
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G0 X{printer.toolhead.axis_maximum.x-1} Y{printer.toolhead.axis_maximum.y-1} F{30*60}
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G4 P1000
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GET_POSITION
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# Restore previous gcode state (absolute/relative, etc)
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RESTORE_GCODE_STATE NAME=TEST_SPEED
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27
printer.cfg
27
printer.cfg
@@ -7,17 +7,18 @@
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#
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# See https://www.klipper3d.org/Config_Reference.html for configuration reference.
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[include ./macros/macros.cfg]
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[include ./macros/PARKING.cfg]
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[include ./macros/MECHANICAL_GANTRY_CALIBRATION.cfg]
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[include ./macros/beeper.cfg] # NOTE Comment out this line if you want to silenct your printer.
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[include ./cfgs/macros.cfg]
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[include ./cfgs/TEST_SPEED.cfg]
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[include ./cfgs/PARKING.cfg]
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[include ./cfgs/MECHANICAL_GANTRY_CALIBRATION.cfg]
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[include ./cfgs/beeper.cfg]
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# NOTE Uncomment ONE of the following lines if you're using an adxl345.
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# [include ./marcros/adxl-rp2040.cfg] # ADXL345 connection via RPi Pico.
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# [include ./macros/adxl-direct.cfg] # ADXL345 directly connected to the host RPi.
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# NOTE Uncomment the ONE of the following lines if you're using an adxl345
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# [include ./cfgs/adxl-rp2040.cfg]
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# [include ./cfgs/adxl-direct.cfg]
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[mcu]
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# Obtain definition by "ls -l /dev/serial/by-id/"
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# NOTE Obtain definition by "ls -l /dev/serial/by-id/"
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serial: /dev/serial/by-id/usb-1a86_USB2.0-Serial-if00-port0
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restart_method: command
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@@ -160,6 +161,16 @@ fade_target: 0
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[virtual_sdcard]
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path: /home/pi/printer_data/gcodes
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[temperature_sensor mcu_temp]
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sensor_type: temperature_mcu
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min_temp: 25
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max_temp: 80
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[temperature_sensor raspberry_pi]
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sensor_type: temperature_host
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min_temp: 25
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max_temp: 80
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[display]
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lcd_type: st7920
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cs_pin: PB12
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