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243
libs/midix.py
243
libs/midix.py
@ -110,6 +110,20 @@ STATUS_MAP = {
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'channelpressure': CHANNEL_PRESSURE
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}
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PadLeds = [0] * 64
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PadTops= [0] * 8
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PadRights= [0] * 8
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LaunchLedMatrix = [(0,1,2,3,4,5,6,7),(16,17,18,19,20,21,22,23),(32,33,34,35,36,37,38,39),(48,49,50,51,52,53,54,55),(64,65,66,67,68,69,70,71),(80,81,82,83,84,85,86,87),(96,97,98,99,100,101,102,103),(112,113,114,115,116,117,118,119)]
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LaunchRight = (8,24,40,56,72,88,104,120)
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# CC
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LaunchTop = (104,105,106,107,108,109,110,111)
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PadTop = [0,0,0,0,0,0,0,0]
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PadRight = [0,0,0,0,0,0,0,0]
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PadMatrix = [0] * 64
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matrix1 = [1,1]
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matrix2 = [1,1]
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matrix3 = [1,1]
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TopSelection = [0] *8
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def SendOSC(oscaddress,oscargs=''):
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@ -146,6 +160,8 @@ def SendUI(oscaddress,oscargs=''):
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log.err('Connection to Aurora UI refused : died ?')
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pass
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#time.sleep(0.001
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# Ask redis for a given key
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def fromKey(keyname):
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@ -159,11 +175,14 @@ def toKey(keyname,keyvalue):
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# Store encoded data in Redis
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return r.set(keyname,keyvalue)
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def toKeyevent(eventname):
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print("redis midi event key :", eventname)
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r.publish("/midi/last_event", eventname)
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def GetTime():
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return time.strftime("%a, %d %b %Y %H:%M:%S", time.localtime())
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@ -283,6 +302,7 @@ def MidinProcess(inqueue, portname):
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last_clock = None
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while True:
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time.sleep(0.001)
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msg = inqueue_get()
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#print("")
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@ -296,24 +316,18 @@ def MidinProcess(inqueue, portname):
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MidiNote = msg[1]
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MidiVel = msg[2]
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print()
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#print(debug)
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print("NOTE ON :", "Channel", MidiChannel, "note :", MidiNote, 'velocity :', MidiVel )
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NoteOn(MidiNote, MidiVel, "pads" , midichannel=MidiChannel)
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# redis key : "/midi/noteon/midichannel" value : "note/velocity"
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if r.set("/midi/noteon/"+str(MidiChannel), str(MidiNote)+"/"+str(MidiVel))==True:
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if debug == "True":
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print("redis :", "/midi/noteon/"+str(MidiChannel)+" : "+ str(MidiNote)+"/"+str(MidiVel))
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print("redis :", "/midi/noteon/"+str(MidiChannel)+" : "+ str(MidiNote)+"/"+str(MidiVel))
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# to Key redis pubsub feed
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toKeyevent("/midi/noteon/"+str(MidiChannel)+"/"+str(MidiNote)+"/"+str(MidiVel))
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NoteOn(MidiNote, MidiVel, "pads" , midichannel=MidiChannel)
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# OSC : /midi/noteon midichannel note velocity
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#SendOSC("/midi/noteon",[MidiChannel, msg[1], msg[2]])
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#print("osc :","/midi/noteon/",[MidiChannel, msg[1], msg[2]])
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SendOSC("/midi/noteon",[MidiChannel, msg[1], msg[2]])
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print("osc :","/midi/noteon/",[MidiChannel, msg[1], msg[2]])
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toKeyevent("/midi/noteon/"+str(MidiChannel)+"/"+str(MidiNote)+"/"+str(MidiVel))
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'''
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# Sampler mode : note <63 launch snare.wav / note > 62 kick.wav
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if MidiNote < 63 and MidiVel >0:
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@ -340,23 +354,17 @@ def MidinProcess(inqueue, portname):
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MidiChannel = msg[0]-144
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else:
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MidiChannel = msg[0]-128
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MidiNote = msg[1]
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print("NOTE_off channel :", MidiChannel, "note :", MidiNote)
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NoteOff(MidiNote, "pads" , midichannel=MidiChannel)
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# redis key : "/midi/noteon/midichannel" value : "note"
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if r.set("/midi/noteoff/"+str(MidiChannel), str(MidiNote)) ==True:
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if debug == "True":
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print("redis :", "/midi/noteoff/"+str(MidiChannel)+" : "+ str(MidiNote))
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# to Key redis pubsub feed
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#toKeyevent("/midi/noteoff/"+str(MidiChannel)+"/"+str(MidiNote))
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print("redis :", "/midi/noteoff/"+str(MidiChannel)+" : "+ str(MidiNote))
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# OSC : /midi/noteoff midichannel note
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SendOSC("/midi/noteoff",[MidiChannel, msg[1]])
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if debug == "True":
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print('osc :', "/midi/noteoff",[MidiChannel, msg[1]])
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print('osc :', "/midi/noteoff",[MidiChannel, msg[1]])
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# # CC on all Midi Channels
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@ -364,21 +372,18 @@ def MidinProcess(inqueue, portname):
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MidiChannel = msg[0]-175
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cc(MidiChannel, msg[1], msg[2], "pads" )
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#print("channel", MidiChannel, "CC :", msg[1], msg[2])
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print("CC channel : "+str(msg[0]-175-1)+" CC :"+str(msg[1])+" value : "+str(msg[2]))
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cc(MidiChannel, msg[1], msg[2], "pads" )
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# redis key : "/midi/cc/midichannel/ccnumber" value : "ccvalue"
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if r.set("/midi/cc/"+str(MidiChannel)+"/"+str(msg[1]),str(msg[2]))==True:
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if debug == "True":
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print("redis :", "/midi/cc/"+str(MidiChannel)+"/"+str(msg[1]), ":", str(msg[2]))
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# to Key redis pubsub feed
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toKeyevent("/midi/cc/"+str(MidiChannel)+"/"+str(msg[1])+"/"+str(msg[2]))
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# redis key : "/midi/cc/midichannel/ccnumber" value : "ccvalue"
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if r.set("/midi/cc/"+str(MidiChannel)+"/"+str(msg[1]),str(msg[2]))==True:
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print("redis :", "/midi/cc/"+str(MidiChannel)+"/"+str(msg[1]), ":", str(msg[2]))
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# OSC : /midi/cc midichannel ccnumber value
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#SendOSC("/midi/cc",[msg[0]-175-1, msg[1], msg[2]])
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#print("osc :","/midi/cc",[msg[0]-175-1, msg[1], msg[2]] )
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SendOSC("/midi/cc",[msg[0]-175-1, msg[1], msg[2]])
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print("osc :","/midi/cc",[msg[0]-175-1, msg[1], msg[2]] )
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if msg[0] == TIMING_CLOCK:
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@ -424,8 +429,7 @@ def MidinProcess(inqueue, portname):
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# OSC : /midi/start
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SendOSC("/midi/stop",[])
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if debug =="True":
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print("osc : /midi/stop")
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print("osc : /midi/stop")
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print()
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'''
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# other midi message
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@ -455,12 +459,12 @@ def NoteOn(note, color, mididest, midichannel=0):
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elif mididest == "all" and midiname[port].find(mididest) != 0:
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midiport[port].send_message([NOTE_ON+midichannel, note, color])
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elif mididest == "pads" and midiname[port].find("Launchpad") > -1:
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midiport[port].send_message([NOTE_ON+midichannel, note, color])
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def NoteOff(note, mididest, midichannel=0):
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global MidInsNumber
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@ -473,13 +477,13 @@ def NoteOff(note, mididest, midichannel=0):
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# To All
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elif mididest == "all" and midiname[port].find(mididest) == -1:
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midiport[port].send_message([NOTE_OFF, note, 0])
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midiport[port].send_message([NOTE_OFF, note, 0])
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elif mididest == "pads" and midiname[port].find("Launchpad") > -1:
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midiport[port].send_message([NOTE_OFF, note, 0])
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# Generic call back : new msg forwarded to queue
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class AddQueue(object):
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def __init__(self, portname, port):
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@ -555,6 +559,14 @@ def OutConfig():
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OutDevice.append(OutObject(name, "generic", port))
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# Search for a LaunchPad
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if name.find("Launchpad") == 0:
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OutDevice.append(OutObject(name, "launchpad", port))
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print("Launchpad mini start animation")
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Start()
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time.sleep(0.2)
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#print "")
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print(len(OutDevice), "Out devices")
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#ListOutDevice()
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@ -684,6 +696,8 @@ def InConfig():
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#midinputs[port].set_callback(AddQueue(name))
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#genericnumber += 1
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InDevice[InObject.counter-1].rtmidi.set_callback(AddQueue(name,port))
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if name.find("Launch") > -1:
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Cls()
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except Exception:
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traceback.print_exc()
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@ -746,7 +760,7 @@ def MidiMsg(midimsg, mididest):
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desterror = -1
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print("midi3 got midimsg", midimsg, "for", mididest)
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print("miredis got midimsg", midimsg, "for", mididest)
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for port in range(len(OutDevice)):
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# To mididest
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@ -758,6 +772,7 @@ def MidiMsg(midimsg, mididest):
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elif mididest == "pads" and midiname[port].find("Launchpad") > -1:
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midiport[port].send_message(midimsg)
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desterror = 0
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if desterror == -1:
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print("mididest",mididest, ": ** This midi destination doesn't exists **")
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@ -778,6 +793,164 @@ def NoteOn(note, velocity, mididest):
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if midiname[port].find(mididest) == 0:
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midiport[port].send_message([NOTE_ON, note, velocity])
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'''
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#
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# launchpad
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#
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def PadNoteOn(note,color):
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(x,y) = BhorIndex(note)
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#print('PadNoteon', note, x, y, color)
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PadNoteOnXY(x,y,color)
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def PadNoteOff(note):
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(x,y) = BhorIndex(note)
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#print('PadNoteOFF', note, x, y)
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PadNoteOffXY(x,y)
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def PadNoteOnXY(x,y,color):
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msg= [NOTE_ON, PadNoteXY(x,y), color]
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#print(msg)
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MidiMsg(msg,"Launchpad")
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PadLeds[BhorNoteXY(x,y)]=color
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def PadNoteOffXY(x,y):
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msg= [NOTE_OFF, PadNoteXY(x,y), 0]
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#print(msg)
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MidiMsg(msg,"Launchpad")
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PadLeds[BhorNoteXY(x,y)]=0
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def PadNoteXY(x,y):
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note = LaunchLedMatrix[int(y-1)][int(x-1)]
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return note
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def PadIndex(note):
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y=note/16
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x=note%16
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return int(x+1),int(y+1)
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def BhorIndex(note):
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y=note/8
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x=note%8
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#print "Note : ",note
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#print "BhorIndex : ", x+1,y+1
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return int(x+1),int(y+1)
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def BhorNoteXY(x,y):
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note = (x -1)+ (y-1) * 8
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return note
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# top raw and right column leds are numbered humanly 1-8. So -1 is for pythonic arrays position 0-7
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def PadTopOn(number, color):
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msg= [CONTROLLER_CHANGE, LaunchTop[number-1], color]
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MidiMsg(msg,"Launchpad")
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PadTops[number-1]=color
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def PadTopOff(number):
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msg= [CONTROLLER_CHANGE, LaunchTop[number-1], 0]
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MidiMsg(msg,"Launchpad")
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PadTops[number-1]=0
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def PadRightOn(number, color):
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msg= [NOTE_ON, LaunchRight[number-1], color]
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MidiMsg(msg,"Launchpad")
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PadRights[number-1] = color
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#UpdateAllCCs(number-1)
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def PadRightOff(number):
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msg= [NOTE_OFF, LaunchRight[number-1], 0]
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MidiMsg(msg,"Launchpad")
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PadRights[number-1] = 0
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def TopUpdate(button, color):
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#print(PadTop)
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PadTop = [0,0,0,0,0,0,0,0]
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PadTop[button] = color
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for pad in range(7):
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PadTopOn(pad+1, PadTop[pad])
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def RightUpdate():
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for pad in range(8):
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print(pad,PadRight[pad])
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PadRightOn(pad, PadRight[pad])
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if PadRight[pad] == 0:
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SendOSCUI('/pad/r'+ str(pad) +'/button', [0])
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else:
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SendOSCUI('/pad/r'+ str(pad) +'/button', [1])
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def MatrixUpdate():
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for pad in range(64):
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PadNoteOn(pad, PadMatrix[pad])
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def MatrixSelect():
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MatrixUpdate()
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return
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# AllColor for launchpad on given port
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def AllColorPad(color):
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print('AllColorPad')
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for led in range(0,64,1):
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PadNoteOn(led,color)
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'''
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for line in LaunchLedMatrix:
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for led in line:
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midiport[port].send_message([NOTE_ON, led, color])
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'''
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for rightled in range(8):
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PadRightOn(rightled+1, color)
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for topled in range(8):
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PadTopOn(topled+1,color)
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#midiport[port].send_message([CONTROLLER_CHANGE, topled, color])
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def ClsMatrix():
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for led in range(0,64,1):
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PadNoteOff(led)
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def ClsTop():
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for topled in range(8):
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PadTopOff(topled+1)
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def ClsRight():
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for rightled in range(8):
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PadRightOff(rightled+1)
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def Cls():
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ClsMatrix()
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ClsTop()
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ClsRight()
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def Start():
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#ClsPad(port)
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#time.sleep(0.3)
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ClsTop()
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ClsRight()
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#AllColorPad(20)
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time.sleep(1)
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for color in range(64,128,1):
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#AllColorPad(color)
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PadNoteOn(color-64, color)
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#print("color", color)
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time.sleep(0.5)
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AllColorPad(127)
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time.sleep(0.5)
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Cls()
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#time.sleep(0.3)
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#UpdateDisplay()
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def listdevice(number):
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