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625 lines
24 KiB
625 lines
24 KiB
#! /usr/bin/env python3
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# -*- coding: utf-8 -*-
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#Standard Library Modules
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from typing import List, Set, Dict, Tuple
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#Third Party Modules
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from calfbox import cbox
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#Template Modules
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import template.engine.api #we need direct access to the module to inject data in the provided structures. but we also need the functions directly. next line:
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from template.engine.api import *
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#Our modules
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from .pattern import NUMBER_OF_STEPS
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DEFAULT_FACTOR = 1 #for the GUI.
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#New callbacks
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class ClientCallbacks(Callbacks): #inherits from the templates api callbacks
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def __init__(self):
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super().__init__()
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self.timeSignatureChanged = []
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self.scoreChanged = []
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self.numberOfMeasuresChanged = []
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self.trackStructureChanged = []
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self.trackMetaDataChanged = []
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self.patternChanged = []
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self.stepChanged = []
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self.removeStep = []
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self.exportCacheChanged = []
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self.subdivisionsChanged = []
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self.quarterNotesPerMinuteChanged = []
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self.loopChanged = []
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def _quarterNotesPerMinuteChanged(self):
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"""There is one tempo for the entire song in quarter notes per mintue.
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score.isTransportMaster to False means we do not create our own changes
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and leave everything to the default. Negative values are not possible"""
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if session.data.tempoMap.isTransportMaster:
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export = session.data.tempoMap.getQuarterNotesPerMinute()
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else:
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export = None
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for func in self.quarterNotesPerMinuteChanged:
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func(export)
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def _setPlaybackTicks(self): #Differs from the template because it has subdivisions.
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ppqn = cbox.Transport.status().pos_ppqn * session.data.subdivisions
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status = playbackStatus()
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for func in self.setPlaybackTicks:
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func(ppqn, status)
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def _loopChanged(self, measurenumber, loopStart, loopEnd):
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export = measurenumber
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for func in self.loopChanged:
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func(export)
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def _timeSignatureChanged(self):
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nr = session.data.howManyUnits
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typ = session.data.whatTypeOfUnit
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for func in self.timeSignatureChanged:
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func(nr, typ)
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##All patterns and tracks need updates:
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for track in session.data.tracks:
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self._patternChanged(track)
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self._subdivisionsChanged() #update subdivisions. We do not include them in the score or track export on purpose.
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def _subdivisionsChanged(self):
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"""Subdivisions are tricky, therefore we keep them isolated in their own callback.
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You don't need to redraw anything if you don't want to. One recommendation is to
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draw every n step a little more important (bigger, different color).
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where n = subdivions"""
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export = session.data.subdivisions
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for func in self.subdivisionsChanged:
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func(export)
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def _scoreChanged(self):
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"""This includes the time signature as well, but is not send on a timesig change.
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A timesig change needs to update all tracks as playback as well as for the GUI
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so it is its own callback.
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Use this for fast and inexpensive updates like drawing a label or adjusting the
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GUI that shows your measure groups (a label each 8 measures or so)"""
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export = session.data.export()
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for func in self.scoreChanged:
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func(export)
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def _exportCacheChanged(self, track):
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"""Send the export cache for GUI caching reasons. Don't react by redrawing immediately!
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This is sent often, redundantly and more than you need.
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Example: If you only show one pattern at the same time use this to cache the data
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in all hidden patterns and redraw only if you change the active pattern.
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You can react to real changes in your active pattern by using patternChanged
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and stepChanged."""
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export = track.export()
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for func in self.exportCacheChanged:
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func(export)
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def _patternChanged(self, track):
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"""each track has only one pattern. We can identify the pattern by track and vice versa.
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Don't use this to react to clicks on the pattern editor. Use stepChanged instead and
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keep book of your incremental updates.
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This is used for the whole pattern: timesig changes, invert, clean etc.
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"""
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export = track.export()
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self._exportCacheChanged(track)
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for func in self.patternChanged:
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func(export)
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def _stepChanged(self, track, stepDict):
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"""A simple GUI will most like not listen to that callback since they
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already changed the step on their side. Only useful for parallel
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views.
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We do not export anything but just sent back the change we received
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as dict message."""
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self._exportCacheChanged(track)
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for func in self.stepChanged:
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func(stepDict)
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def _removeStep(self, track, index, pitch):
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"""Opposite of _stepChanged"""
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self._exportCacheChanged(track)
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for func in self.stepChanged:
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func(index, pitch)
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def _trackStructureChanged(self, track):
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"""update one track structure. Does not export cbox.
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Also includes transposition """
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export = track.export()
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for func in self.trackStructureChanged:
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func(export)
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def _trackMetaDataChanged(self, track):
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"""a low cost function that should not trigger anything costly to redraw
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but some text and simple widgets."""
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export = track.export()
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for func in self.trackMetaDataChanged:
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func(export)
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def _numberOfMeasuresChanged(self):
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export = session.data.export()
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for func in self.numberOfMeasuresChanged:
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func(export)
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#Inject our derived Callbacks into the parent module
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template.engine.api.callbacks = ClientCallbacks()
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from template.engine.api import callbacks
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_templateStartEngine = startEngine
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def startEngine(nsmClient):
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_templateStartEngine(nsmClient)
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session.inLoopMode = None # remember if we are in loop mode or not. Positive value is None or a tuple with start and end
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#Send initial Callbacks to create the first GUI state.
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#The order of initial callbacks must not change to avoid GUI problems.
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#For example it is important that the tracks get created first and only then the number of measures
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callbacks._numberOfTracksChanged()
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callbacks._timeSignatureChanged()
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callbacks._numberOfMeasuresChanged()
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callbacks._subdivisionsChanged()
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callbacks._quarterNotesPerMinuteChanged()
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session.eventLoop.fastConnect(cbox.call_on_idle)
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for track in session.data.tracks:
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callbacks._trackMetaDataChanged(track) #for colors, scale and simpleNoteNames
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session.data.buildAllTracks()
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updatePlayback()
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def toggleLoop():
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"""Plays the current measure as loop.
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Current measure is where the playback cursor is
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session.inLoopMode is a tuple (start, end)
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"""
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if session.inLoopMode:
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session.data.buildSongDuration() #no parameter removes the loop
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updatePlayback()
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session.inLoopMode = None
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callbacks._loopChanged(None, None, None)
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else:
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now = loopMeasureAroundPpqn=cbox.Transport.status().pos_ppqn
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loopStart, loopEnd = session.data.buildSongDuration(now)
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updatePlayback()
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session.inLoopMode = (loopStart, loopEnd)
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assert loopStart <= now < loopEnd
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if not playbackStatus():
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cbox.Transport.play()
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oneMeasureInTicks = (session.data.howManyUnits * session.data.whatTypeOfUnit) / session.data.subdivisions
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measurenumber, rest = divmod(loopStart, oneMeasureInTicks)
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callbacks._loopChanged(int(measurenumber), loopStart, loopEnd)
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def seek(value):
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"""override template one, which does not have a loop"""
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if value < 0:
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value = 0
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if session.inLoopMode and not session.inLoopMode[0] <= value < session.inLoopMode[1]: #if you seek outside the loop the loop will be destroyed.
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toggleLoop()
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cbox.Transport.seek_ppqn(value)
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##Score
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def set_quarterNotesPerMinute(value:int):
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if value is None:
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session.data.tempoMap.isTransportMaster = False #triggers rebuild
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elif value == "on":
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assert not session.data.tempoMap.isTransportMaster
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#keep old bpm value
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session.data.tempoMap.isTransportMaster = True #triggers rebuild
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else:
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assert value > 0
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session.data.tempoMap.setQuarterNotesPerMinute(value)
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session.data.tempoMap.isTransportMaster = True #triggers rebuild
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#Does not need track rebuilding
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updatePlayback()
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callbacks._quarterNotesPerMinuteChanged()
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def set_whatTypeOfUnit(ticks):
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if session.data.whatTypeOfUnit == ticks: return
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session.data.whatTypeOfUnit = ticks
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session.data.buildAllTracks()
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updatePlayback()
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callbacks._timeSignatureChanged()
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def set_howManyUnits(value):
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if session.data.howManyUnits == value: return
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session.data.howManyUnits = value
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session.data.buildAllTracks()
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updatePlayback()
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callbacks._timeSignatureChanged()
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def set_subdivisions(value):
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if session.data.subdivisions == value: return
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session.data.subdivisions = value
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session.data.buildAllTracks()
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updatePlayback()
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callbacks._subdivisionsChanged()
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def convert_subdivisions(value, errorHandling):
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""""errorHandling can be fail, delete or merge"""
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if session.data.subdivisions == value: return
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result = session.data.convertSubdivisions(value, errorHandling)
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if result:
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session.data.buildAllTracks()
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updatePlayback()
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callbacks._timeSignatureChanged() #includes subdivisions
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for tr in session.data.tracks:
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callbacks._patternChanged(tr)
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else:
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callbacks._subdivisionsChanged() #to reset the GUI value back to the working one.
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return result
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def set_numberOfMeasures(value):
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if session.data.numberOfMeasures == value: return
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session.data.numberOfMeasures = value
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session.data.buildSongDuration()
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updatePlayback()
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callbacks._numberOfMeasuresChanged()
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callbacks._scoreChanged() #redundant but cheap and convenient
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def set_measuresPerGroup(value):
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if session.data.measuresPerGroup == value: return
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session.data.measuresPerGroup = value
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#No playback change
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callbacks._scoreChanged()
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def changeTrackName(trackId, name):
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track = session.data.trackById(trackId)
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track.sequencerInterface.name = " ".join(name.split())
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callbacks._trackMetaDataChanged(track)
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def changeTrackColor(trackId, colorInHex):
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"""Expects "#rrggbb"""
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track = session.data.trackById(trackId)
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assert len(colorInHex) == 7, colorInHex
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track.color = colorInHex
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callbacks._trackMetaDataChanged(track)
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def addTrack(scale=None):
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if scale:
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assert type(scale) == tuple
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session.data.addTrack(scale=scale)
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callbacks._numberOfTracksChanged()
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def createSiblingTrack(trackId):
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"""Create a new track with scale, color and jack midi out the same as the given track.
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The jack midi out will be independent after creation, but connected to the same instrument
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(if any)"""
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track = session.data.trackById(trackId)
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assert type(track.pattern.scale) == tuple
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newTrack = session.data.addTrack(name=track.sequencerInterface.name, scale=track.pattern.scale, color=track.color, simpleNoteNames=track.pattern.simpleNoteNames) #track name increments itself from "Track A" to "Track B" or "Track 1" -> "Track 2"
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newTrack.pattern.averageVelocity = track.pattern.averageVelocity
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jackConnections = cbox.JackIO.get_connected_ports(track.sequencerInterface.cboxPortName())
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for port in jackConnections:
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cbox.JackIO.port_connect(newTrack.sequencerInterface.cboxPortName(), port)
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#Move new track to neighbour the old one.
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oldIndex = session.data.tracks.index(track)
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newIndex = session.data.tracks.index(newTrack)
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newTrackAgain = session.data.tracks.pop(newIndex)
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assert newTrackAgain is newTrack
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session.data.tracks.insert(oldIndex+1, newTrackAgain)
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callbacks._numberOfTracksChanged()
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return newTrack.export()
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def deleteTrack(trackId):
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track = session.data.trackById(trackId)
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session.data.deleteTrack(track)
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if not session.data.tracks: #always keep at least one track
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session.data.addTrack()
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updatePlayback()
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callbacks._numberOfTracksChanged()
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def moveTrack(trackId, newIndex):
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"""index is 0 based"""
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track = session.data.trackById(trackId)
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oldIndex = session.data.tracks.index(track)
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if not oldIndex == newIndex:
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session.data.tracks.pop(oldIndex)
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session.data.tracks.insert(newIndex, track)
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callbacks._numberOfTracksChanged()
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#Track Switches
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def setSwitches(trackId, setOfPositions, newBool):
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track = session.data.trackById(trackId)
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if newBool:
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track.structure = track.structure.union(setOfPositions) #add setOfPositions to the existing one
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else:
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track.structure = track.structure.difference(setOfPositions) #remove everything from setOfPositions that is in the existing one, ignore entries from setOfPositions not in existing.
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track.buildTrack()
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updatePlayback()
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callbacks._trackStructureChanged(track)
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def setSwitch(trackId, position, newBool):
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track = session.data.trackById(trackId)
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if newBool:
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if position in track.structure: return
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track.structure.add(position)
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else:
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if not position in track.structure: return
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track.structure.remove(position)
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track.buildTrack()
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updatePlayback()
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callbacks._trackStructureChanged(track)
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return True
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def trackInvertSwitches(trackId):
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track = session.data.trackById(trackId)
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"""
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if track.structure:
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new = set(i for i in range(max(track.structure)))
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track.structure = new.difference(track.structure)
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else:
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track.structure = set(i for i in range(session.data.numberOfMeasures))
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"""
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new = set(i for i in range(session.data.numberOfMeasures))
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track.structure = new.difference(track.structure)
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track.buildTrack()
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updatePlayback()
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callbacks._trackStructureChanged(track)
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def trackOffAllSwitches(trackId):
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track = session.data.trackById(trackId)
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track.structure = set()
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track.buildTrack()
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updatePlayback()
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callbacks._trackStructureChanged(track)
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def trackOnAllSwitches(trackId):
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track = session.data.trackById(trackId)
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track.structure = set(i for i in range(session.data.numberOfMeasures))
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track.buildTrack()
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updatePlayback()
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callbacks._trackStructureChanged(track)
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def trackMergeCopyFrom(sourceTrackId, targetTrackId):
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if not sourceTrackId == targetTrackId:
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sourceTrack = session.data.trackById(sourceTrackId)
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targetTrack = session.data.trackById(targetTrackId)
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targetTrack.structure = targetTrack.structure.union(sourceTrack.structure)
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targetTrack.whichPatternsAreScaleTransposed.update(sourceTrack.whichPatternsAreScaleTransposed)
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targetTrack.whichPatternsAreHalftoneTransposed.update(sourceTrack.whichPatternsAreHalftoneTransposed)
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targetTrack.buildTrack()
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updatePlayback()
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callbacks._trackStructureChanged(targetTrack)
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def setSwitchScaleTranspose(trackId, position, transpose):
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"""Scale transposition is flipped. lower value means higher pitch"""
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track = session.data.trackById(trackId)
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track.whichPatternsAreScaleTransposed[position] = transpose
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track.buildTrack()
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updatePlayback()
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callbacks._trackStructureChanged(track)
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return True
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def setSwitchHalftoneTranspose(trackId, position, transpose):
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"""Halftone transposition is not flipped. Higher value means higher pitch"""
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track = session.data.trackById(trackId)
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track.whichPatternsAreHalftoneTransposed[position] = transpose
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track.buildTrack()
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updatePlayback()
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callbacks._trackStructureChanged(track)
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return True
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def insertSilence(howMany, beforeMeasureNumber):
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"""Insert empty measures into all tracks"""
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for track in session.data.tracks:
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track.structure = set( (switch + howMany if switch >= beforeMeasureNumber else switch) for switch in track.structure )
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track.whichPatternsAreScaleTransposed = { (k+howMany if k >= beforeMeasureNumber else k):v for k,v in track.whichPatternsAreScaleTransposed.items() }
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track.whichPatternsAreHalftoneTransposed = { (k+howMany if k >= beforeMeasureNumber else k):v for k,v in track.whichPatternsAreHalftoneTransposed.items() }
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callbacks._trackStructureChanged(track)
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session.data.buildAllTracks()
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updatePlayback()
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def deleteSwitches(howMany, fromMeasureNumber):
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for track in session.data.tracks:
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new_structure = set()
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for switch in track.structure:
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if switch < fromMeasureNumber:
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new_structure.add(switch)
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elif switch >= fromMeasureNumber+howMany: #like a text editor let gravitate left into the hole left by the deleted range
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new_structure.add(switch-howMany)
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#else: #discard all in range to delete
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track.structure = new_structure
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new_scaleTransposed = dict()
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for k,v in track.whichPatternsAreScaleTransposed.items():
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if k < fromMeasureNumber:
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new_scaleTransposed[k] = v
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elif k >= fromMeasureNumber+howMany: #like a text editor let gravitate left into the hole left by the deleted range
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new_scaleTransposed[k-howMany] = v
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#else: #discard all in range to delete
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track.whichPatternsAreScaleTransposed = new_scaleTransposed
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new_halftoneTransposed = dict()
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for k,v in track.whichPatternsAreHalftoneTransposed.items():
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if k < fromMeasureNumber:
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new_halftoneTransposed[k] = v
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elif k >= fromMeasureNumber+howMany: #like a text editor let gravitate left into the hole left by the deleted range
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new_halftoneTransposed[k-howMany] = v
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#else: #discard all in range to delete
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track.whichPatternsAreHalftoneTransposed = new_halftoneTransposed
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callbacks._trackStructureChanged(track)
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session.data.buildAllTracks()
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updatePlayback()
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#Pattern Steps
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def setPattern(trackId, patternList):
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"""Change the whole pattern, send a callback with the whole pattern"""
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track = session.data.trackById(trackId)
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track.pattern.data = patternList
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track.pattern.buildExportCache()
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track.buildTrack()
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callbacks._patternChanged(track)
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def getAverageVelocity(trackId):
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"""If a GUI wants to add a new note and choose a sensible velocity it can use this function"""
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return session.data.trackById(trackId).pattern.averageVelocity
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def setStep(trackId, stepExportDict):
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"""This is an atomic operation that only sets one switch and
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only sends that switch back via callback. A simple GUI
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will most like not listen to that callback since they
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already changed the step on their side. Only useful for parallel
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views."""
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track = session.data.trackById(trackId)
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oldNote = track.pattern.stepByIndexAndPitch(index=stepExportDict["index"], pitch=stepExportDict["pitch"])
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if oldNote: #modify existing note
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oldNoteIndex = track.pattern.data.index(oldNote)
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track.pattern.data.remove(oldNote)
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track.pattern.data.insert(oldNoteIndex, stepExportDict) #for what its worth, insert at the old place. It doesn't really matter though.
|
|
else: #new note
|
|
track.pattern.data.append(stepExportDict)
|
|
|
|
track.pattern.buildExportCache()
|
|
track.buildTrack()
|
|
updatePlayback()
|
|
callbacks._stepChanged(track, stepExportDict)
|
|
|
|
def removeStep(trackId, index, pitch):
|
|
"""Reverse of setStep"""
|
|
track = session.data.trackById(trackId)
|
|
oldNote = track.pattern.stepByIndexAndPitch(index, pitch)
|
|
track.pattern.data.remove(oldNote)
|
|
track.pattern.buildExportCache()
|
|
track.buildTrack()
|
|
updatePlayback()
|
|
callbacks._removeStep(track, index, pitch)
|
|
|
|
def setScale(trackId, scale):
|
|
"""Expects a scale list or tuple from lowest index to highest.
|
|
Actual pitches don't matter."""
|
|
track = session.data.trackById(trackId)
|
|
track.pattern.scale = scale
|
|
track.pattern.buildExportCache()
|
|
track.buildTrack()
|
|
updatePlayback()
|
|
callbacks._trackMetaDataChanged(track)
|
|
|
|
def setSimpleNoteNames(trackId, simpleNoteNames):
|
|
"""note names is a list of strings with length 128. One name for each midi note.
|
|
It is saved to file"""
|
|
track = session.data.trackById(trackId)
|
|
track.pattern.simpleNoteNames = simpleNoteNames
|
|
callbacks._trackMetaDataChanged(track)
|
|
|
|
def transposeHalftoneSteps(trackId, steps):
|
|
track = session.data.trackById(trackId)
|
|
track.pattern.scale = [midipitch+steps for midipitch in track.pattern.scale]
|
|
track.pattern.buildExportCache()
|
|
track.buildTrack()
|
|
updatePlayback()
|
|
callbacks._trackMetaDataChanged(track)
|
|
|
|
def patternInvertSteps(trackId):
|
|
track = session.data.trackById(trackId)
|
|
track.pattern.invert()
|
|
track.pattern.buildExportCache()
|
|
track.buildTrack()
|
|
updatePlayback()
|
|
callbacks._patternChanged(track)
|
|
|
|
def patternOnAllSteps(trackId):
|
|
track = session.data.trackById(trackId)
|
|
track.pattern.fill()
|
|
track.pattern.buildExportCache()
|
|
track.buildTrack()
|
|
updatePlayback()
|
|
callbacks._patternChanged(track)
|
|
|
|
def patternOffAllSteps(trackId):
|
|
track = session.data.trackById(trackId)
|
|
track.pattern.empty()
|
|
track.pattern.buildExportCache()
|
|
track.buildTrack()
|
|
updatePlayback()
|
|
callbacks._patternChanged(track)
|
|
|
|
|
|
major = [0, 2, 4, 5, 7, 9, 11, 12] #this if sorted by pitch, lowest to highest. Patroneo works in reverse order to accomodate the row/column approach of a grid. We reverse in setScaleToKeyword
|
|
schemesDict = {
|
|
#this if sorted by pitch, lowest to highest. Patroneo works in reverse order to accomodate the row/column approach of a grid. We reverse in setScaleToKeyword
|
|
"Major": [0,0,0,0,0,0,0,0],
|
|
"Minor": [0,0,-1,0,0,-1,-1,0],
|
|
"Dorian": [0,0,-1,0,0,0,-1,0],
|
|
"Phrygian": [0,-1,-1,0,0,-1,-1,0],
|
|
"Lydian": [0,0,0,+1,0,0,0,0],
|
|
"Mixolydian": [0,0,0,0,0,0,-1,0],
|
|
"Locrian": [0,-1,-1,0,-1,-1,-1,0],
|
|
"Blues": [0,-2,-1,0,-1,-2,-1,0],
|
|
"Hollywood": [0,0,0,0,0,-1,-1,0], #The "Hollywood"-Scale. Stargate, Lord of the Rings etc.
|
|
"Chromatic": [0,-1,-2,-2,-3,-4,-5,-5], #not a complete octave, but that is how it goes.
|
|
}
|
|
major.reverse()
|
|
for l in schemesDict.values():
|
|
l.reverse()
|
|
|
|
schemes = [
|
|
"Major",
|
|
"Minor",
|
|
"Dorian",
|
|
"Phrygian",
|
|
"Lydian",
|
|
"Mixolydian",
|
|
"Locrian",
|
|
"Blues",
|
|
"Hollywood",
|
|
"Chromatic",
|
|
]
|
|
|
|
def setScaleToKeyword(trackId, keyword):
|
|
track = session.data.trackById(trackId)
|
|
|
|
rememberRootNote = track.pattern.scale[-1] #no matter if this is the lowest or not%
|
|
scale = [x + y for x, y in zip(major, schemesDict[keyword])]
|
|
difference = rememberRootNote - scale[-1]
|
|
result = [midipitch+difference for midipitch in scale]
|
|
track.pattern.scale = result
|
|
track.pattern.buildExportCache()
|
|
track.buildTrack()
|
|
updatePlayback()
|
|
callbacks._trackMetaDataChanged(track)
|
|
|
|
def changePatternVelocity(trackId, steps):
|
|
track = session.data.trackById(trackId)
|
|
for note in track.pattern.data:
|
|
new = note["velocity"] + steps
|
|
note["velocity"] = min(max(new,0), 127)
|
|
|
|
track.pattern.buildExportCache()
|
|
track.buildTrack()
|
|
updatePlayback()
|
|
callbacks._patternChanged(track)
|
|
|
|
|
|
#Other functions
|
|
|
|
def noteOn(trackId, row):
|
|
track = session.data.trackById(trackId)
|
|
midipitch = track.pattern.scale[row]
|
|
cbox.send_midi_event(0x90, midipitch, track.pattern.averageVelocity, output=track.sequencerInterface.cboxMidiOutUuid)
|
|
|
|
def noteOff(trackId, row):
|
|
track = session.data.trackById(trackId)
|
|
midipitch = track.pattern.scale[row]
|
|
cbox.send_midi_event(0x80, midipitch, track.pattern.averageVelocity, output=track.sequencerInterface.cboxMidiOutUuid)
|
|
|
|
|
|
|