fixed S&T thread and potential timer too close errors
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@@ -40,6 +40,8 @@ Follow these steps to install the Shake&Tune module in your printer:
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# show_macros_in_webui: True
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# Mainsail and Fluidd doesn't create buttons for "system" macros that are not in the
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# printer.cfg file. If you want to see the macros in the webui, set this to True.
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# timeout: 300
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# The maximum time in seconds to let Shake&Tune process the CSV files and generate the graphs.
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```
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## Usage
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@@ -84,9 +84,7 @@ def axes_shaper_calibration(gcmd, config, st_thread: ShakeTuneThread) -> None:
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# First we need to find the accelerometer chip suited for the axis
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accel_chip = Accelerometer.find_axis_accelerometer(printer, config['axis'])
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if accel_chip is None:
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gcmd.error(
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'No suitable accelerometer found for measurement! Multi-accelerometer configurations are not supported for this macro.'
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)
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gcmd.error('No suitable accelerometer found for measurement!')
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accelerometer = Accelerometer(printer.lookup_object(accel_chip))
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# Then do the actual measurements
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@@ -98,6 +96,7 @@ def axes_shaper_calibration(gcmd, config, st_thread: ShakeTuneThread) -> None:
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ConsoleOutput.print(f'{config["axis"].upper()} axis frequency profile generation...')
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ConsoleOutput.print('This may take some time (1-3min)')
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st_thread.run()
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st_thread.wait_for_completion()
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# Re-enable the input shaper if it was active
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if input_shaper is not None:
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@@ -27,7 +27,7 @@ class ShakeTune:
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if res_tester is None:
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config.error('No [resonance_tester] config section found in printer.cfg! Please add one to use Shake&Tune.')
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self.timeout = config.getfloat('timeout', 2.0, above=0.0)
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self.timeout = config.getfloat('timeout', 300, above=0.0)
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result_folder = config.get('result_folder', default='~/printer_data/config/ShakeTune_results')
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result_folder_path = Path(result_folder).expanduser() if result_folder else None
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keep_n_results = config.getint('number_of_results_to_keep', default=3, minval=0)
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@@ -108,23 +108,23 @@ class ShakeTune:
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def cmd_AXES_MAP_CALIBRATION(self, gcmd) -> None:
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ConsoleOutput.print(f'Shake&Tune version: {ShakeTuneConfig.get_git_version()}')
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axes_map_finder = AxesMapFinder(self._config)
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st_thread = ShakeTuneThread(self._config, axes_map_finder, self._printer.get_reactor(), self.timeout)
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st_thread = ShakeTuneThread(self._config, axes_map_finder, self.timeout)
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axes_map_calibration(gcmd, self._pconfig, st_thread)
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def cmd_COMPARE_BELTS_RESPONSES(self, gcmd) -> None:
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ConsoleOutput.print(f'Shake&Tune version: {ShakeTuneConfig.get_git_version()}')
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belt_graph_creator = BeltsGraphCreator(self._config)
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st_thread = ShakeTuneThread(self._config, belt_graph_creator, self._printer.get_reactor(), self.timeout)
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st_thread = ShakeTuneThread(self._config, belt_graph_creator, self.timeout)
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compare_belts_responses(gcmd, self._pconfig, st_thread)
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def cmd_AXES_SHAPER_CALIBRATION(self, gcmd) -> None:
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ConsoleOutput.print(f'Shake&Tune version: {ShakeTuneConfig.get_git_version()}')
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shaper_graph_creator = ShaperGraphCreator(self._config)
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st_thread = ShakeTuneThread(self._config, shaper_graph_creator, self._printer.get_reactor(), self.timeout)
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st_thread = ShakeTuneThread(self._config, shaper_graph_creator, self.timeout)
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axes_shaper_calibration(gcmd, self._pconfig, st_thread)
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def cmd_CREATE_VIBRATIONS_PROFILE(self, gcmd) -> None:
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ConsoleOutput.print(f'Shake&Tune version: {ShakeTuneConfig.get_git_version()}')
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vibration_profile_creator = VibrationsGraphCreator(self._config)
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st_thread = ShakeTuneThread(self._config, vibration_profile_creator, self._printer.get_reactor(), self.timeout)
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st_thread = ShakeTuneThread(self._config, vibration_profile_creator, self.timeout)
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create_vibrations_profile(gcmd, self._pconfig, st_thread)
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@@ -4,6 +4,7 @@
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import os
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import threading
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import traceback
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from typing import Optional
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from .helpers import filemanager as fm
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from .helpers.console_output import ConsoleOutput
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@@ -11,33 +12,41 @@ from .shaketune_config import ShakeTuneConfig
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class ShakeTuneThread(threading.Thread):
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def __init__(self, config: ShakeTuneConfig, graph_creator, reactor, timeout: float):
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def __init__(self, config: ShakeTuneConfig, graph_creator, timeout: Optional[float] = None) -> None:
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super(ShakeTuneThread, self).__init__()
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self._config = config
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self.graph_creator = graph_creator
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self._reactor = reactor
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self._timeout = timeout
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self._internal_thread = None
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self._stop_event = threading.Event()
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def get_graph_creator(self):
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return self.graph_creator
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def run(self) -> None:
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# Start the target function in a new thread
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internal_thread = threading.Thread(target=self._shaketune_thread, args=(self.graph_creator,))
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internal_thread.start()
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self._internal_thread = threading.Thread(target=self._shaketune_thread, args=(self.graph_creator,))
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self._internal_thread.start()
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# Monitor the thread execution and stop it if it takes too long
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event_time = self._reactor.monotonic()
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end_time = event_time + self._timeout
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while event_time < end_time:
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event_time = self._reactor.pause(event_time + 0.05)
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if not internal_thread.is_alive():
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break
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# If a timeout is specified, start a timer thread to monitor the timeout
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if self._timeout is not None:
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timer_thread = threading.Timer(self._timeout, self._handle_timeout)
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timer_thread.start()
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# This function run in its own thread is used to do the CSV analysis and create the graphs
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def _handle_timeout(self) -> None:
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if self._internal_thread.is_alive():
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self._stop_event.set()
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ConsoleOutput.print('Timeout: Shake&Tune computation did not finish within the specified timeout!')
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def wait_for_completion(self) -> None:
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if self._internal_thread is not None:
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self._internal_thread.join()
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# This function run in a thread is used to do the CSV analysis and create the graphs
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def _shaketune_thread(self, graph_creator) -> None:
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# Trying to reduce the Shake&Tune prost-processing thread priority to avoid slowing down the main Klipper process
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# as this could lead to random "Timer" errors when already running CANbus, etc...
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# as this could lead to random "Timer too close" errors when already running CANbus, etc...
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try:
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os.nice(20)
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except Exception:
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