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LiveOSC.py
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LiveOSC.py
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"""
# Copyright (C) 2007 Nathan Ramella ([email protected])
#
# This library is free software; you can redistribute it and/or
# modify it under the terms of the GNU Lesser General Public
# License as published by the Free Software Foundation; either
# version 2.1 of the License, or (at your option) any later version.
#
# This library is distributed in the hope that it will be useful,
# but WITHOUT ANY WARRANTY; without even the implied warranty of
# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
# Lesser General Public License for more details.
#
# You should have received a copy of the GNU Lesser General Public
# License along with this library; if not, write to the Free Software
# Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
#
# For questions regarding this module contact
# Nathan Ramella <[email protected]> or visit http://www.remix.net
This script is based off the Ableton Live supplied MIDI Remote Scripts, customised
for OSC request delivery and response. This script can be run without any extra
Python libraries out of the box.
This is the second file that is loaded, by way of being instantiated through
__init__.py
"""
import Live
import LiveOSCCallbacks
import RemixNet
import OSC
import LiveUtils
import sys
from Logger import log
class LiveOSC:
__module__ = __name__
__doc__ = "Main class that establishes the LiveOSC Component"
prlisten = {}
plisten = {}
dlisten = {}
clisten = {}
slisten = {}
pplisten = {}
cnlisten = {}
cclisten = {}
wlisten = {}
llisten = {}
_send_pos = {}
mlisten = { "solo": {}, "mute": {}, "arm": {}, "panning": {}, "volume": {}, "sends": {}, "name": {}, "oml": {}, "omr": {} }
rlisten = { "solo": {}, "mute": {}, "panning": {}, "volume": {}, "sends": {}, "name": {} }
masterlisten = { "panning": {}, "volume": {}, "crossfader": {} }
scenelisten = {}
scene = 0
track = 0
def __init__(self, c_instance):
self._LiveOSC__c_instance = c_instance
self.basicAPI = 0
self.oscEndpoint = RemixNet.OSCEndpoint()
self.oscEndpoint.send('/remix/oscserver/startup', 1)
log("LiveOSC initialized")
# Visible tracks listener
if self.song().visible_tracks_has_listener(self.refresh_state) != 1:
self.song().add_visible_tracks_listener(self.refresh_state)
######################################################################
# Standard Ableton Methods
def connect_script_instances(self, instanciated_scripts):
"""
Called by the Application as soon as all scripts are initialized.
You can connect yourself to other running scripts here, as we do it
connect the extension modules
"""
return
def is_extension(self):
return False
def request_rebuild_midi_map(self):
"""
To be called from any components, as soon as their internal state changed in a
way, that we do need to remap the mappings that are processed directly by the
Live engine.
Dont assume that the request will immediately result in a call to
your build_midi_map function. For performance reasons this is only
called once per GUI frame.
"""
return
def update_display(self):
"""
This function is run every 100ms, so we use it to initiate our Song.current_song_time
listener to allow us to process incoming OSC commands as quickly as possible under
the current listener scheme.
"""
######################################################
# START OSC LISTENER SETUP
if self.basicAPI == 0:
# By default we have set basicAPI to 0 so that we can assign it after
# initialization. We try to get the current song and if we can we'll
# connect our basicAPI callbacks to the listener allowing us to
# respond to incoming OSC every 60ms.
#
# Since this method is called every 100ms regardless of the song time
# changing, we use both methods for processing incoming UDP requests
# so that from a resting state you can initiate play/clip triggering.
try:
doc = self.song()
except:
log('could not get song handle')
return
try:
self.basicAPI = LiveOSCCallbacks.LiveOSCCallbacks(self._LiveOSC__c_instance, self.oscEndpoint)
# Commented for stability
self.time = 0
doc.add_current_song_time_listener(self.current_song_time_changed)
except:
self.oscEndpoint.send('/remix/echo', 'setting up basicAPI failed')
log('setting up basicAPI failed');
return
# If our OSC server is listening, try processing incoming requests.
# Any 'play' initiation will trigger the current_song_time listener
# and bump updates from 100ms to 60ms.
if self.oscEndpoint:
self.oscEndpoint.send('/live/ping', '')
try:
self.oscEndpoint.processIncomingUDP()
except:
log('error processing incoming UDP packets:', sys.exc_info());
# END OSC LISTENER SETUP
######################################################
def current_song_time_changed(self):
time = self.song().current_song_time
if int(time) != self.time:
self.time = int(time)
self.oscEndpoint.send("/live/beat", self.time)
def send_midi(self, midi_event_bytes):
"""
Use this function to send MIDI events through Live to the _real_ MIDI devices
that this script is assigned to.
"""
pass
def receive_midi(self, midi_bytes):
return
def can_lock_to_devices(self):
return False
def suggest_input_port(self):
return ''
def suggest_output_port(self):
return ''
def __handle_display_switch_ids(self, switch_id, value):
pass
######################################################################
# Useful Methods
def application(self):
"""returns a reference to the application that we are running in"""
return Live.Application.get_application()
def song(self):
"""returns a reference to the Live Song that we do interact with"""
return self._LiveOSC__c_instance.song()
def handle(self):
"""returns a handle to the c_interface that is needed when forwarding MIDI events via the MIDI map"""
return self._LiveOSC__c_instance.handle()
def getslots(self):
tracks = self.song().visible_tracks
clipSlots = []
for track in tracks:
clipSlots.append(track.clip_slots)
return clipSlots
def trBlock(self, trackOffset, blocksize):
block = []
tracks = self.song().visible_tracks
for track in range(0, blocksize):
block.extend([str(tracks[trackOffset+track].name)])
self.oscEndpoint.send("/live/name/trackblock", block)
######################################################################
# Used Ableton Methods
def disconnect(self):
self.rem_clip_listeners()
self.rem_mixer_listeners()
self.rem_scene_listeners()
self.rem_tempo_listener()
self.rem_overdub_listener()
self.rem_tracks_listener()
self.rem_device_listeners()
self.rem_transport_listener()
self.song().remove_visible_tracks_listener(self.refresh_state)
self.oscEndpoint.send('/remix/oscserver/shutdown', 1)
self.oscEndpoint.shutdown()
def build_midi_map(self, midi_map_handle):
self.refresh_state()
def refresh_state(self):
self.add_clip_listeners()
self.add_mixer_listeners()
self.add_scene_listeners()
self.add_tempo_listener()
self.add_overdub_listener()
self.add_tracks_listener()
self.add_device_listeners()
self.add_transport_listener()
trackNumber = 0
clipNumber = 0
for track in self.song().visible_tracks:
bundle = OSC.OSCBundle()
bundle.append("/live/name/track", (trackNumber, str(track.name), track.color, int(track.has_midi_input)))
# bundle.append("/live/name/track", (trackNumber, str(track.name),int(track.has_midi_input)))
for clipSlot in track.clip_slots:
if clipSlot.clip != None:
bundle.append("/live/name/clip", (trackNumber, clipNumber, str(clipSlot.clip.name), clipSlot.clip.color))
clipNumber = clipNumber + 1
clipNumber = 0
trackNumber = trackNumber + 1
self.oscEndpoint.sendMessage(bundle)
self.trBlock(0, len(self.song().visible_tracks))
######################################################################
# Add / Remove Listeners
def add_scene_listeners(self):
self.rem_scene_listeners()
if self.song().view.selected_scene_has_listener(self.scene_change) != 1:
self.song().view.add_selected_scene_listener(self.scene_change)
if self.song().view.selected_track_has_listener(self.track_change) != 1:
self.song().view.add_selected_track_listener(self.track_change)
def rem_scene_listeners(self):
if self.song().view.selected_scene_has_listener(self.scene_change) == 1:
self.song().view.remove_selected_scene_listener(self.scene_change)
if self.song().view.selected_track_has_listener(self.track_change) == 1:
self.song().view.remove_selected_track_listener(self.track_change)
def track_change(self):
selected_track = self.song().view.selected_track
tracks = self.song().visible_tracks
index = 0
selected_index = 0
for track in tracks:
index = index + 1
if track == selected_track:
selected_index = index
if selected_index != self.track:
self.track = selected_index
self.oscEndpoint.send("/live/track", (selected_index))
def scene_change(self):
selected_scene = self.song().view.selected_scene
scenes = self.song().scenes
index = 0
selected_index = 0
for scene in scenes:
index = index + 1
if scene == selected_scene:
selected_index = index
if selected_index != self.scene:
self.scene = selected_index
self.oscEndpoint.send("/live/scene", (selected_index))
def add_tempo_listener(self):
self.rem_tempo_listener()
print "add tempo listener"
if self.song().tempo_has_listener(self.tempo_change) != 1:
self.song().add_tempo_listener(self.tempo_change)
def rem_tempo_listener(self):
if self.song().tempo_has_listener(self.tempo_change) == 1:
self.song().remove_tempo_listener(self.tempo_change)
def tempo_change(self):
tempo = LiveUtils.getTempo()
self.oscEndpoint.send("/live/tempo", (tempo))
def add_transport_listener(self):
if self.song().is_playing_has_listener(self.transport_change) != 1:
self.song().add_is_playing_listener(self.transport_change)
def rem_transport_listener(self):
if self.song().is_playing_has_listener(self.transport_change) == 1:
self.song().remove_is_playing_listener(self.transport_change)
def transport_change(self):
self.oscEndpoint.send("/live/play", (self.song().is_playing and 2 or 1))
def add_overdub_listener(self):
self.rem_overdub_listener()
if self.song().overdub_has_listener(self.overdub_change) != 1:
self.song().add_overdub_listener(self.overdub_change)
def rem_overdub_listener(self):
if self.song().overdub_has_listener(self.overdub_change) == 1:
self.song().remove_overdub_listener(self.overdub_change)
def overdub_change(self):
overdub = LiveUtils.getSong().overdub
self.oscEndpoint.send("/live/overdub", (int(overdub) + 1))
def add_tracks_listener(self):
self.rem_tracks_listener()
if self.song().tracks_has_listener(self.tracks_change) != 1:
self.song().add_tracks_listener(self.tracks_change)
def rem_tracks_listener(self):
if self.song().tracks_has_listener(self.tempo_change) == 1:
self.song().remove_tracks_listener(self.tracks_change)
def tracks_change(self):
self.oscEndpoint.send("/live/refresh", (1))
def rem_clip_listeners(self):
for slot in self.slisten:
if slot != None:
if slot.has_clip_has_listener(self.slisten[slot]) == 1:
slot.remove_has_clip_listener(self.slisten[slot])
self.slisten = {}
for clip in self.clisten:
if clip != None:
if clip.playing_status_has_listener(self.clisten[clip]) == 1:
clip.remove_playing_status_listener(self.clisten[clip])
self.clisten = {}
for clip in self.pplisten:
if clip != None:
if clip.playing_position_has_listener(self.pplisten[clip]) == 1:
clip.remove_playing_position_listener(self.pplisten[clip])
self.pplisten = {}
for clip in self.cnlisten:
if clip != None:
if clip.name_has_listener(self.cnlisten[clip]) == 1:
clip.remove_name_listener(self.cnlisten[clip])
self.cnlisten = {}
for clip in self.cclisten:
if clip != None:
if clip.color_has_listener(self.cclisten[clip]) == 1:
clip.remove_color_listener(self.cclisten[clip])
self.cclisten = {}
for clip in self.wlisten:
if clip != None:
if clip.is_audio_clip:
if clip.warping_has_listener(self.wlisten[clip]) == 1:
clip.remove_warping_listener(self.wlisten[clip])
self.wlisten = {}
for clip in self.llisten:
if clip != None:
if clip.looping_has_listener(self.llisten[clip]) == 1:
clip.remove_looping_listener(self.llisten[clip])
self.llisten = {}
def add_clip_listeners(self):
self.rem_clip_listeners()
tracks = self.getslots()
for track in range(len(tracks)):
for clip in range(len(tracks[track])):
c = tracks[track][clip]
if c.clip != None:
self.add_cliplistener(c.clip, track, clip)
log("ClipLauncher: added clip listener tr: " + str(track) + " clip: " + str(clip));
self.add_slotlistener(c, track, clip)
def add_cliplistener(self, clip, tid, cid):
cb = lambda :self.clip_changestate(clip, tid, cid)
if self.clisten.has_key(clip) != 1:
clip.add_playing_status_listener(cb)
self.clisten[clip] = cb
cb2 = lambda :self.clip_position(clip, tid, cid)
if self.pplisten.has_key(clip) != 1:
clip.add_playing_position_listener(cb2)
self.pplisten[clip] = cb2
cb3 = lambda :self.clip_name(clip, tid, cid)
if self.cnlisten.has_key(clip) != 1:
clip.add_name_listener(cb3)
self.cnlisten[clip] = cb3
if self.cclisten.has_key(clip) != 1:
clip.add_color_listener(cb3)
self.cclisten[clip] = cb3
if clip.is_audio_clip:
cb4 = lambda: self.clip_warping(clip, tid, cid)
if self.wlisten.has_key(clip) != 1:
clip.add_warping_listener(cb4)
self.wlisten[clip] = cb4
cb5 = lambda: self.clip_looping(clip, tid, cid)
if self.llisten.has_key(clip) != 1:
clip.add_looping_listener(cb5)
self.llisten[clip] = cb5
def add_slotlistener(self, slot, tid, cid):
cb = lambda :self.slot_changestate(slot, tid, cid)
if self.slisten.has_key(slot) != 1:
slot.add_has_clip_listener(cb)
self.slisten[slot] = cb
def rem_mixer_listeners(self):
# Master Track
for type in ("volume", "panning", "crossfader"):
for tr in self.masterlisten[type]:
if tr != None:
cb = self.masterlisten[type][tr]
test = eval("tr.mixer_device." + type+ ".value_has_listener(cb)")
if test == 1:
eval("tr.mixer_device." + type + ".remove_value_listener(cb)")
# Normal Tracks
for type in ("arm", "solo", "mute"):
for tr in self.mlisten[type]:
if tr != None:
cb = self.mlisten[type][tr]
if type == "arm":
if tr.can_be_armed == 1:
if tr.arm_has_listener(cb) == 1:
tr.remove_arm_listener(cb)
else:
test = eval("tr." + type+ "_has_listener(cb)")
if test == 1:
eval("tr.remove_" + type + "_listener(cb)")
for type in ("volume", "panning"):
for tr in self.mlisten[type]:
if tr != None:
cb = self.mlisten[type][tr]
test = eval("tr.mixer_device." + type+ ".value_has_listener(cb)")
if test == 1:
eval("tr.mixer_device." + type + ".remove_value_listener(cb)")
for tr in self.mlisten["sends"]:
if tr != None:
for send in self.mlisten["sends"][tr]:
if send != None:
cb = self.mlisten["sends"][tr][send]
if send.value_has_listener(cb) == 1:
send.remove_value_listener(cb)
for tr in self.mlisten["name"]:
if tr != None:
cb = self.mlisten["name"][tr]
if tr.name_has_listener(cb) == 1:
tr.remove_name_listener(cb)
for tr in self.mlisten["oml"]:
if tr != None:
cb = self.mlisten["oml"][tr]
if tr.output_meter_left_has_listener(cb) == 1:
tr.remove_output_meter_left_listener(cb)
for tr in self.mlisten["omr"]:
if tr != None:
cb = self.mlisten["omr"][tr]
if tr.output_meter_right_has_listener(cb) == 1:
tr.remove_output_meter_right_listener(cb)
# Return Tracks
for type in ("solo", "mute"):
for tr in self.rlisten[type]:
if tr != None:
cb = self.rlisten[type][tr]
test = eval("tr." + type+ "_has_listener(cb)")
if test == 1:
eval("tr.remove_" + type + "_listener(cb)")
for type in ("volume", "panning"):
for tr in self.rlisten[type]:
if tr != None:
cb = self.rlisten[type][tr]
test = eval("tr.mixer_device." + type+ ".value_has_listener(cb)")
if test == 1:
eval("tr.mixer_device." + type + ".remove_value_listener(cb)")
for tr in self.rlisten["sends"]:
if tr != None:
for send in self.rlisten["sends"][tr]:
if send != None:
cb = self.rlisten["sends"][tr][send]
if send.value_has_listener(cb) == 1:
send.remove_value_listener(cb)
for tr in self.rlisten["name"]:
if tr != None:
cb = self.rlisten["name"][tr]
if tr.name_has_listener(cb) == 1:
tr.remove_name_listener(cb)
self.mlisten = { "solo": {}, "mute": {}, "arm": {}, "panning": {}, "volume": {}, "sends": {}, "name": {}, "oml": {}, "omr": {} }
self.rlisten = { "solo": {}, "mute": {}, "panning": {}, "volume": {}, "sends": {}, "name": {} }
self.masterlisten = { "panning": {}, "volume": {}, "crossfader": {} }
def add_mixer_listeners(self):
self.rem_mixer_listeners()
# Master Track
tr = self.song().master_track
for type in ("volume", "panning", "crossfader"):
self.add_master_listener(0, type, tr)
self.add_meter_listener(0, tr, 2)
# Normal Tracks
tracks = self.song().visible_tracks
for track in range(len(tracks)):
tr = tracks[track]
self.add_trname_listener(track, tr, 0)
if tr.has_audio_output:
self.add_meter_listener(track, tr)
for type in ("arm", "solo", "mute"):
if type == "arm":
if tr.can_be_armed == 1:
self.add_mixert_listener(track, type, tr)
else:
self.add_mixert_listener(track, type, tr)
for type in ("volume", "panning"):
self.add_mixerv_listener(track, type, tr)
for sid in range(len(tr.mixer_device.sends)):
self.add_send_listener(track, tr, sid, tr.mixer_device.sends[sid])
# Return Tracks
tracks = self.song().return_tracks
for track in range(len(tracks)):
tr = tracks[track]
self.add_trname_listener(track, tr, 1)
self.add_meter_listener(track, tr, 1)
for type in ("solo", "mute"):
self.add_retmixert_listener(track, type, tr)
for type in ("volume", "panning"):
self.add_retmixerv_listener(track, type, tr)
for sid in range(len(tr.mixer_device.sends)):
self.add_retsend_listener(track, tr, sid, tr.mixer_device.sends[sid])
# Add track listeners
def add_send_listener(self, tid, track, sid, send):
if self.mlisten["sends"].has_key(track) != 1:
self.mlisten["sends"][track] = {}
if self.mlisten["sends"][track].has_key(send) != 1:
cb = lambda :self.send_changestate(tid, track, sid, send)
self.mlisten["sends"][track][send] = cb
send.add_value_listener(cb)
def add_mixert_listener(self, tid, type, track):
if self.mlisten[type].has_key(track) != 1:
cb = lambda :self.mixert_changestate(type, tid, track)
self.mlisten[type][track] = cb
eval("track.add_" + type + "_listener(cb)")
def add_mixerv_listener(self, tid, type, track):
if self.mlisten[type].has_key(track) != 1:
cb = lambda :self.mixerv_changestate(type, tid, track)
self.mlisten[type][track] = cb
eval("track.mixer_device." + type + ".add_value_listener(cb)")
# Add master listeners
def add_master_listener(self, tid, type, track):
if self.masterlisten[type].has_key(track) != 1:
cb = lambda :self.mixerv_changestate(type, tid, track, 2)
self.masterlisten[type][track] = cb
eval("track.mixer_device." + type + ".add_value_listener(cb)")
# Add return listeners
def add_retsend_listener(self, tid, track, sid, send):
if self.rlisten["sends"].has_key(track) != 1:
self.rlisten["sends"][track] = {}
if self.rlisten["sends"][track].has_key(send) != 1:
cb = lambda :self.send_changestate(tid, track, sid, send, 1)
self.rlisten["sends"][track][send] = cb
send.add_value_listener(cb)
def add_retmixert_listener(self, tid, type, track):
if self.rlisten[type].has_key(track) != 1:
cb = lambda :self.mixert_changestate(type, tid, track, 1)
self.rlisten[type][track] = cb
eval("track.add_" + type + "_listener(cb)")
def add_retmixerv_listener(self, tid, type, track):
if self.rlisten[type].has_key(track) != 1:
cb = lambda :self.mixerv_changestate(type, tid, track, 1)
self.rlisten[type][track] = cb
eval("track.mixer_device." + type + ".add_value_listener(cb)")
# Track name listener
def add_trname_listener(self, tid, track, ret = 0):
cb = lambda :self.trname_changestate(tid, track, ret)
if ret == 1:
if self.rlisten["name"].has_key(track) != 1:
self.rlisten["name"][track] = cb
else:
if self.mlisten["name"].has_key(track) != 1:
self.mlisten["name"][track] = cb
track.add_name_listener(cb)
# Output Meter Listeners
def add_meter_listener(self, tid, track, r = 0):
cb = lambda :self.meter_changestate(tid, track, 0, r)
if self.mlisten["oml"].has_key(track) != 1:
self.mlisten["oml"][track] = cb
track.add_output_meter_left_listener(cb)
cb = lambda :self.meter_changestate(tid, track, 1, r)
if self.mlisten["omr"].has_key(track) != 1:
self.mlisten["omr"][track] = cb
track.add_output_meter_right_listener(cb)
######################################################################
# Listener Callbacks
# Clip Callbacks
def clip_warping(self, clip, tid, cid):
self.oscEndpoint.send('/live/clip/warping', (tid, cid, int(clip.warping)))
def clip_looping(self, clip, tid, cid):
self.oscEndpoint.send('/live/clip/loopstate', (tid, cid, int(clip.looping)))
def clip_name(self, clip, tid, cid):
self.oscEndpoint.send('/live/name/clip', (tid, cid, str(clip.name), clip.color))
def clip_position(self, clip, tid, cid):
send = self._send_pos.has_key(tid) and self._send_pos[tid] or 0
if self.check_md(1) or (self.check_md(5) and send):
if clip.is_playing:
if send > 0:
self._send_pos[tid] -= 1
self.oscEndpoint.send('/live/clip/position', (tid, cid, clip.playing_position, clip.length, clip.loop_start, clip.loop_end))
def slot_changestate(self, slot, tid, cid):
tmptrack = LiveUtils.getTrack(tid)
armed = tmptrack.arm and 1 or 0
# Added new clip
if slot.clip != None:
self.add_cliplistener(slot.clip, tid, cid)
playing = 1
if slot.clip.is_playing == 1:
playing = 2
if slot.clip.is_triggered == 1:
playing = 3
length = slot.clip.loop_end - slot.clip.loop_start
self.oscEndpoint.send('/live/track/info', (tid, armed, cid, playing, length))
self.oscEndpoint.send('/live/name/clip', (tid, cid, str(slot.clip.name), slot.clip.color))
else:
if self.clisten.has_key(slot.clip) == 1:
slot.clip.remove_playing_status_listener(self.clisten[slot.clip])
if self.pplisten.has_key(slot.clip) == 1:
slot.clip.remove_playing_position_listener(self.pplisten[slot.clip])
if self.cnlisten.has_key(slot.clip) == 1:
slot.clip.remove_name_listener(self.cnlisten[slot.clip])
if self.cclisten.has_key(slot.clip) == 1:
slot.clip.remove_color_listener(self.cclisten[slot.clip])
self.oscEndpoint.send('/live/track/info', (tid, armed, cid, 0, 0.0))
self.oscEndpoint.send('/live/clip/info', (tid, cid, 0))
#log("Slot changed" + str(self.clips[tid][cid]))
def clip_changestate(self, clip, x, y):
log("Listener: x: " + str(x) + " y: " + str(y));
playing = 1
if clip.is_playing == 1:
playing = 2
if clip.is_triggered == 1:
playing = 3
self.oscEndpoint.send('/live/clip/info', (x, y, playing))
self._send_pos[x] = 3
#log("Clip changed x:" + str(x) + " y:" + str(y) + " status:" + str(playing))
# Mixer Callbacks
def mixerv_changestate(self, type, tid, track, r = 0):
val = eval("track.mixer_device." + type + ".value")
types = { "panning": "pan", "volume": "volume", "crossfader": "crossfader" }
if r == 2:
self.oscEndpoint.send('/live/master/' + types[type], (float(val)))
elif r == 1:
self.oscEndpoint.send('/live/return/' + types[type], (tid, float(val)))
else:
self.oscEndpoint.send('/live/' + types[type], (tid, float(val)))
def mixert_changestate(self, type, tid, track, r = 0):
val = eval("track." + type)
if r == 1:
self.oscEndpoint.send('/live/return/' + type, (tid, int(val)))
else:
self.oscEndpoint.send('/live/' + type, (tid, int(val)))
def send_changestate(self, tid, track, sid, send, r = 0):
val = send.value
if r == 1:
self.oscEndpoint.send('/live/return/send', (tid, sid, float(val)))
else:
self.oscEndpoint.send('/live/send', (tid, sid, float(val)))
# Track name changestate
def trname_changestate(self, tid, track, r = 0):
if r == 1:
self.oscEndpoint.send('/live/name/return', (tid, str(track.name)))
else:
# self.oscEndpoint.send('/live/name/track', (tid, str(track.name), track.color))
self.oscEndpoint.send("/live/name/track", (tid, str(track.name), track.color, int(track.has_midi_input)))
self.trBlock(0, len(LiveUtils.getTracks()))
# Meter Changestate
def meter_changestate(self, tid, track, lr, r = 0):
if r == 2:
if self.check_md(2):
if lr == 0:
self.oscEndpoint.send('/live/master/meter', (0, float(track.output_meter_left)))
else:
self.oscEndpoint.send('/live/master/meter', (1, float(track.output_meter_right)))
elif r == 1:
if self.check_md(3):
if lr == 0:
self.oscEndpoint.send('/live/return/meter', (tid, 0, float(track.output_meter_left)))
else:
self.oscEndpoint.send('/live/return/meter', (tid, 1, float(track.output_meter_right)))
else:
if self.check_md(4):
if lr == 0:
self.oscEndpoint.send('/live/track/meter', (tid, 0, float(track.output_meter_left)))
else:
self.oscEndpoint.send('/live/track/meter', (tid, 1, float(track.output_meter_right)))
def check_md(self, param):
devices = self.song().master_track.devices
if len(devices) > 0:
if devices[0].parameters[param].value > 0:
return 1
else:
return 0
else:
return 0
# Device Listeners
def add_device_listeners(self):
self.rem_device_listeners()
self.do_add_device_listeners(self.song().tracks,0)
self.do_add_device_listeners(self.song().return_tracks,1)
self.do_add_device_listeners([self.song().master_track],2)
def do_add_device_listeners(self, tracks, type):
for i in range(len(tracks)):
self.add_devicelistener(tracks[i], i, type)
if len(tracks[i].devices) >= 1:
for j in range(len(tracks[i].devices)):
self.add_devpmlistener(tracks[i].devices[j])
if len(tracks[i].devices[j].parameters) >= 1:
for k in range (len(tracks[i].devices[j].parameters)):
par = tracks[i].devices[j].parameters[k]
self.add_paramlistener(par, i, j, k, type)
def rem_device_listeners(self):
for pr in self.prlisten:
ocb = self.prlisten[pr]
if pr != None:
if pr.value_has_listener(ocb) == 1:
pr.remove_value_listener(ocb)
self.prlisten = {}
for tr in self.dlisten:
ocb = self.dlisten[tr]
if tr != None:
if tr.view.selected_device_has_listener(ocb) == 1:
tr.view.remove_selected_device_listener(ocb)
self.dlisten = {}
for de in self.plisten:
ocb = self.plisten[de]
if de != None:
if de.parameters_has_listener(ocb) == 1:
de.remove_parameters_listener(ocb)
self.plisten = {}
def add_devpmlistener(self, device):
cb = lambda :self.devpm_change()
if self.plisten.has_key(device) != 1:
device.add_parameters_listener(cb)
self.plisten[device] = cb
def devpm_change(self):
self.refresh_state()
def add_paramlistener(self, param, tid, did, pid, type):
cb = lambda :self.param_changestate(param, tid, did, pid, type)
if self.prlisten.has_key(param) != 1:
param.add_value_listener(cb)
self.prlisten[param] = cb
def param_changestate(self, param, tid, did, pid, type):
if type == 2:
self.oscEndpoint.send('/live/master/device/param', (did, pid, param.value, str(param.name), param.min, param.max))
elif type == 1:
self.oscEndpoint.send('/live/return/device/param', (tid, did, pid, param.value, str(param.name), param.min, param.max))
else:
self.oscEndpoint.send('/live/device/param', (tid, did, pid, param.value, str(param.name), param.min, param.max ))
def add_devicelistener(self, track, tid, type):
cb = lambda :self.device_changestate(track, tid, type)
if self.dlisten.has_key(track) != 1:
track.view.add_selected_device_listener(cb)
self.dlisten[track] = cb
def device_changestate(self, track, tid, type):
did = self.tuple_idx(track.devices, track.view.selected_device)
if type == 2:
self.oscEndpoint.send('/live/master/devices/selected', (did))
elif type == 1:
self.oscEndpoint.send('/live/return/device/selected', (tid, did))
else:
self.oscEndpoint.send('/live/device/selected', (tid, did))
def tuple_idx(self, tuple, obj):
for i in xrange(0,len(tuple)):
if (tuple[i] == obj):
return i