mirror of
https://git.mirrors.martin98.com/https://github.com/petaflot/pygcode
synced 2025-08-14 04:15:58 +08:00
commit
6319e963bc
@ -11,11 +11,7 @@ for python.
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Installation
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============
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Install using ``pip``
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``pip install pygcode``
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or `download directly from PyPi <https://pypi.python.org/pypi/pygcode>`__
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python3 setup.py install
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Documentation
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@ -54,7 +54,7 @@ __all__ = [
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'GCodeArcMoveCW',
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'GCodeBoringCycleDwellFeedOut',
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'GCodeBoringCycleFeedOut',
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'GCodeCancelCannedCycle',
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#'GCodeCancelCannedCycle',
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'GCodeCancelToolLengthOffset',
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'GCodeCannedCycle',
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'GCodeCannedCycleReturnPrevLevel',
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@ -336,7 +336,7 @@ from .gcodes import (
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GCodeArcMoveCW,
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GCodeBoringCycleDwellFeedOut,
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GCodeBoringCycleFeedOut,
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GCodeCancelCannedCycle,
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#GCodeCancelCannedCycle,
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GCodeCancelToolLengthOffset,
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GCodeCannedCycle,
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GCodeCannedCycleReturnPrevLevel,
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@ -8,6 +8,7 @@ __all__ = [
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# dialects
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'linuxcnc',
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'reprap',
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'prusa',
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]
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@ -18,9 +19,10 @@ from .mapping import word_dialect
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# Dialects
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from . import linuxcnc
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from . import reprap
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from . import prusa
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_DEFAULT = 'linuxcnc'
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_DEFAULT = 'prusa'
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def get_default():
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202
src/pygcode/dialects/prusa.py
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202
src/pygcode/dialects/prusa.py
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@ -0,0 +1,202 @@
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import re
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from .utils import WordType
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# ======================== WORDS ========================
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REGEX_FLOAT = re.compile(r'^\s*-?(\d+\.?\d*|\.\d+)') # testcase: ..tests.test_words.WordValueMatchTests.test_float
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REGEX_INT = re.compile(r'^\s*-?\d+')
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REGEX_POSITIVEINT = re.compile(r'^\s*\d+')
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REGEX_CODE = re.compile(r'^\s*\d+(\.\d)?') # float, but can't be negative
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# Value cleaning functions
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def _clean_codestr(value):
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if value < 10:
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return "0%g" % value
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return "%g" % value
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CLEAN_NONE = lambda v: v
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CLEAN_FLOAT = lambda v: "{0:g}".format(round(v, 3))
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CLEAN_CODE = _clean_codestr
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CLEAN_INT = lambda v: "%g" % v
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WORD_MAP = {
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# Descriptions copied from wikipedia:
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# https://en.wikipedia.org/wiki/G-code#Letter_addresses
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# Rotational Axes
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'A': WordType(
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cls=float,
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value_regex=REGEX_FLOAT,
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description="Absolute or incremental position of A axis (rotational axis around X axis)",
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clean_value=CLEAN_FLOAT,
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),
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'B': WordType(
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cls=float,
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value_regex=REGEX_FLOAT,
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description="Absolute or incremental position of B axis (rotational axis around Y axis)",
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clean_value=CLEAN_FLOAT,
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),
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'C': WordType(
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cls=float,
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value_regex=REGEX_FLOAT,
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description="Absolute or incremental position of C axis (rotational axis around Z axis)",
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clean_value=CLEAN_FLOAT,
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),
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'D': WordType(
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cls=float,
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value_regex=REGEX_FLOAT,
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description="Defines diameter or radial offset used for cutter compensation. D is used for depth of cut on lathes. It is used for aperture selection and commands on photoplotters.",
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clean_value=CLEAN_FLOAT,
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),
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# Feed Rates
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'E': WordType(
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cls=float,
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value_regex=REGEX_FLOAT,
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description="Precision feedrate for threading on lathes",
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clean_value=CLEAN_FLOAT,
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),
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'F': WordType(
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cls=float,
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value_regex=REGEX_FLOAT,
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description="Feedrate",
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clean_value=CLEAN_FLOAT,
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),
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# G-Codes
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'G': WordType(
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cls=float,
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value_regex=REGEX_CODE,
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description="Address for preparatory commands",
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clean_value=CLEAN_CODE,
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),
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# Tool Offsets
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'H': WordType(
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cls=float,
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value_regex=REGEX_FLOAT,
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description="Defines tool length offset; Incremental axis corresponding to C axis (e.g., on a turn-mill)",
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clean_value=CLEAN_FLOAT,
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),
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# Arc radius center coords
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'I': WordType(
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cls=float,
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value_regex=REGEX_FLOAT,
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description="Defines arc center in X axis for G02 or G03 arc commands. Also used as a parameter within some fixed cycles.",
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clean_value=CLEAN_FLOAT,
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),
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'J': WordType(
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cls=float,
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value_regex=REGEX_FLOAT,
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description="Defines arc center in Y axis for G02 or G03 arc commands. Also used as a parameter within some fixed cycles.",
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clean_value=CLEAN_FLOAT,
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),
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'K': WordType(
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cls=float,
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value_regex=REGEX_FLOAT,
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description="Defines arc center in Z axis for G02 or G03 arc commands. Also used as a parameter within some fixed cycles, equal to L address.",
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clean_value=CLEAN_FLOAT,
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),
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# Loop Count
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'L': WordType(
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cls=int,
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value_regex=REGEX_POSITIVEINT,
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description="Fixed cycle loop count; Specification of what register to edit using G10",
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clean_value=CLEAN_INT,
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),
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# Miscellaneous Function
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'M': WordType(
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cls=float,
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value_regex=REGEX_CODE,
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description="Miscellaneous function",
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clean_value=CLEAN_CODE,
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),
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# Line Number
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'N': WordType(
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cls=int,
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value_regex=REGEX_POSITIVEINT,
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description="Line (block) number in program; System parameter number to change using G10",
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clean_value=CLEAN_INT,
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),
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# Program Name
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'O': WordType(
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cls=str,
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value_regex=re.compile(r'^.+$'), # all the way to the end
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description="Program name",
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clean_value=CLEAN_NONE,
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),
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# Parameter (arbitrary parameter)
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'P': WordType(
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cls=str, # parameter is often an integer, but can be a float
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value_regex=re.compile(r'^.+$'), # all the way to the end
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description="Checks the parameters of the printer and gcode and performs compatibility check",
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clean_value=CLEAN_NONE,
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),
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# Peck increment
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'Q': WordType(
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cls=float,
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value_regex=REGEX_FLOAT,
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description="Depth to increase on each peck; Peck increment in canned cycles",
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clean_value=CLEAN_FLOAT,
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),
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# Arc Radius
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'R': WordType(
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cls=float,
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value_regex=REGEX_FLOAT,
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description="Defines size of arc radius, or defines retract height in milling canned cycles",
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clean_value=CLEAN_FLOAT,
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),
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# Spindle speed
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'S': WordType(
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cls=float,
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value_regex=REGEX_FLOAT,
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description="Defines speed, either spindle speed or surface speed depending on mode",
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clean_value=CLEAN_FLOAT,
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),
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# Tool Selecton
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'T': WordType(
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cls=str,
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value_regex=REGEX_POSITIVEINT, # tool string may have leading '0's, but is effectively an index (integer)
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description="Tool selection",
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clean_value=CLEAN_NONE,
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),
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# Incremental axes
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'U': WordType(
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cls=str,
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value_regex=re.compile(r'^.*$'), # all the way to the end
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description="todo",
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clean_value=CLEAN_NONE,
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),
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'V': WordType(
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cls=float,
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value_regex=REGEX_FLOAT,
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description="Incremental axis corresponding to Y axis",
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clean_value=CLEAN_FLOAT,
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),
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'W': WordType(
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cls=str,
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value_regex=re.compile(r'^.*$'), # all the way to the end
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description="When used with G28 just specifies without bed leveling, when used with M900 specifies width",
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clean_value=CLEAN_NONE,
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),
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# Linear Axes
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'X': WordType(
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cls=float,
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value_regex=REGEX_FLOAT,
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description="Absolute or incremental position of X axis.",
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clean_value=CLEAN_FLOAT,
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),
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'Y': WordType(
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cls=float,
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value_regex=REGEX_FLOAT,
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description="Absolute or incremental position of Y axis.",
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clean_value=CLEAN_FLOAT,
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),
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'Z': WordType(
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cls=float,
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value_regex=REGEX_FLOAT,
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description="Absolute or incremental position of Z axis.",
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clean_value=CLEAN_FLOAT,
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),
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}
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# ======================== G-CODES ========================
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@ -508,22 +508,24 @@ class GCodeRigidTapping(GCodeMotion):
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param_letters = GCodeMotion.param_letters | set('K')
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word_key = Word('G', 33.1)
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class GCodeCancelCannedCycle(GCodeMotion):
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"""G80: Cancel Canned Cycle"""
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word_key = Word('G', 80)
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# Modal Group
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# Technically G80 belongs to the motion modal group, however it's often
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# expressed in the same line as another motion command.
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# This is alowed, but executed just prior to any other motion command
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# eg: G00 G80
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# will leave the machine in rapid motion mode
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# Just running G80 will leave machine with no motion mode.
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modal_group = None
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exec_order = 241
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def _process(self, machine):
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machine.mode.motion = None
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#
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# Conflicts with prusa command
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#
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#class GCodeCancelCannedCycle(GCodeMotion):
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# """G80: Cancel Canned Cycle"""
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# word_key = Word('G', 80)
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# # Modal Group
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# # Technically G80 belongs to the motion modal group, however it's often
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# # expressed in the same line as another motion command.
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# # This is alowed, but executed just prior to any other motion command
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# # eg: G00 G80
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# # will leave the machine in rapid motion mode
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# # Just running G80 will leave machine with no motion mode.
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# modal_group = None
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# exec_order = 241
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#
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# def _process(self, machine):
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# machine.mode.motion = None
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# ======================= Canned Cycles =======================
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@ -1299,6 +1301,7 @@ class GCodeSet(GCodeNonModal):
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class GCodeGotoPredefinedPosition(GCodeNonModal):
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"""G28,G30: Goto Predefined Position (rapid movement)"""
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param_letters = set('W')
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@classmethod
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def word_matches(cls, w):
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return (w.letter == 'G') and (w.value in [28, 30])
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@ -1308,6 +1311,7 @@ class GCodeGotoPredefinedPosition(GCodeNonModal):
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class GCodeSetPredefinedPosition(GCodeNonModal):
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"""G28.1,G30.1: Set Predefined Position""" # redundancy in language there, but I'll let it slide
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param_letters = set('W')
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@classmethod
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def word_matches(cls, w):
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return (w.letter == 'G') and (w.value in [28.1, 30.1])
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@ -1356,6 +1360,115 @@ class GCodeUserDefined(GCodeNonModal):
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exec_order = 130
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modal_group = MODAL_GROUP_MAP['user_defined']
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# ======================= Prusa =======================
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# CODE PARAMETERS DESCRIPTION
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# M862.1 P Q Nozzle Diameter
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# M862.2 P Q Model Code
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# M862.3 P Q Model Name
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# M862.4 P Q Firmware Version
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# M862.5 P Q GCode Level
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# M115 V U Firmware info
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# M73 P R Q S C D Set/Get print progress
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# M205 S T B X Y Z E Set advanced settings
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# M104 S Set extruder temperature
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# M109 B R S Wait for extruder temperature
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# M140 S Set bed temperature
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# M190 R S Wait for bed temperature
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# M204 S T Acceleration settings
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# M221 S T Set extrude factor override percentage
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# M106 S Set fan speed
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# G80 N R V L R F B Mesh-based Z probe
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class GCodePrintChecking(GCode):
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exec_order = 999
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modal_group = MODAL_GROUP_MAP['user_defined']
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param_letters = set('PQ')
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class GCodeNozzleDiameterPrintChecking(GCodePrintChecking):
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"""M862.1: Nozzle Diameter"""
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word_key = Word('M', 862.1)
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class GCodeModelCodePrintChecking(GCodePrintChecking):
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"""M862.2: Model Code"""
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word_key = Word('M', 862.2)
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class GCodeModelNamePrintChecking(GCodePrintChecking):
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"""M862.3: Model Name"""
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word_key = Word('M', 862.3)
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class GCodeFirmwareVersionPrintChecking(GCodePrintChecking):
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"""M862.4: Firmware Version"""
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word_key = Word('M', 862.4)
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class GCodeGcodeLevelPrintChecking(GCodePrintChecking):
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"""M862.5: Gcode Level"""
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word_key = Word('M', 862.5)
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class GCodeFirmwareInfo(GCode):
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exec_order = 999
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modal_group = MODAL_GROUP_MAP['user_defined']
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param_letters = set('VU')
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word_key = Word('M', 115)
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class GCodePrintProgress(GCode):
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exec_order = 999
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modal_group = MODAL_GROUP_MAP['user_defined']
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param_letters = set('PRQSCD')
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word_key = Word('M', 73)
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class GCodeSetAdvancedSettings(GCode):
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exec_order = 999
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modal_group = MODAL_GROUP_MAP['user_defined']
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param_letters = set('STBXYZE')
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word_key = Word('M', 205)
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class GCodeSetExtruderTemperature(GCode):
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exec_order = 999
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modal_group = MODAL_GROUP_MAP['user_defined']
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param_letters = set('S')
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word_key = Word('M', 104)
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class GCodeWaitForExtruderTemperature(GCode):
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exec_order = 999
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modal_group = MODAL_GROUP_MAP['user_defined']
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param_letters = set('BRS')
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word_key = Word('M', 109)
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class GCodeSetBedTemperature(GCode):
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exec_order = 999
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modal_group = MODAL_GROUP_MAP['user_defined']
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param_letters = set('S')
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word_key = Word('M', 140)
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class GCodeWaitForBedTemperature(GCode):
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exec_order = 999
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modal_group = MODAL_GROUP_MAP['user_defined']
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param_letters = set('RS')
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word_key = Word('M', 190)
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class GCodeAccelerationSettings(GCode):
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exec_order = 999
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modal_group = MODAL_GROUP_MAP['user_defined']
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param_letters = set('ST')
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word_key = Word('M', 204)
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class GCodeSetExtrudeFactorOverridePercentage(GCode):
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exec_order = 999
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modal_group = MODAL_GROUP_MAP['user_defined']
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param_letters = set('ST')
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word_key = Word('M', 221)
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class GCodeSetFanSpeed(GCode):
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exec_order = 999
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modal_group = MODAL_GROUP_MAP['user_defined']
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param_letters = set('S')
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word_key = Word('M', 106)
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class GCodeMeshBasedZProbe(GCode):
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exec_order = 999
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modal_group = MODAL_GROUP_MAP['user_defined']
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param_letters = set('NRVLRFB')
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word_key = Word('G', 80)
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# ======================= Utilities =======================
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Block a user