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153 lines
5.5 KiB
153 lines
5.5 KiB
5 years ago
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import array
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import binascii
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import usb.core
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import usb.util
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import time
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class USBMIDIConfiguration:
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def __init__(self, cfg, ifno, ifalt):
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self.cfg = cfg
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self.ifno = ifno
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self.ifalt = ifalt
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def __str__(self):
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return "cfg=%d ifno=%d ifalt=%d" % (self.cfg, self.ifno, self.ifalt)
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def __repr__(self):
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return "USBMIDIConfiguration(%d,%d,%d)" % (self.cfg, self.ifno, self.ifalt)
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class USBMIDIDeviceDescriptor:
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def __init__(self, vendorID, productID, interfaces = None):
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self.vendorID = vendorID
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self.productID = productID
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if interfaces is None:
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self.interfaces = []
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else:
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self.interfaces = interfaces
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def add_interface(self, config, ifno, ifalt):
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self.interfaces.append(USBMIDIConfiguration(config, ifno, ifalt))
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def has_interfaces(self):
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return len(self.interfaces)
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def __str__(self):
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return "vid=%04x pid=%04x" % (self.vendorID, self.productID)
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def __repr__(self):
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return "USBMIDIDeviceDescriptor(0x%04x, 0x%04x, %s)" % (self.vendorID, self.productID, self.interfaces)
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class USBMIDI:
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cin_sizes = [None, None, 2, 3, 3, 1, 2, 3, 3, 3, 3, 3, 2, 2, 3, 1]
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def __init__(self, mididev, midicfg, debug = False):
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dev = usb.core.find(idVendor = mididev.vendorID, idProduct = mididev.productID)
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self.dev = dev
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intf = None
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for cfgo in dev:
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if cfgo.bConfigurationValue == midicfg.cfg:
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cfgo.set()
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intf = cfgo[(midicfg.ifno, midicfg.ifalt)]
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if not intf:
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raise ValueError, "Configuration %d not found" % midicfg.cfg
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print intf.bNumEndpoints
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self.epIn = None
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self.epOut = None
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for ep in intf:
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if debug:
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print "endpoint %x" % ep.bEndpointAddress
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if ep.bEndpointAddress > 0x80:
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if self.epIn is None:
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self.epIn = ep
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else:
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if self.epOut is None:
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self.epOut = ep
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def read(self):
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try:
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data = self.epIn.read(self.epIn.wMaxPacketSize)
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if data is None:
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return None
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return array.array('B', data)
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except usb.core.USBError, e:
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return None
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def encode(self, port, msg):
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a = array.array('B')
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a.append(16 * port + (msg[0] >> 4))
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a.fromlist(msg)
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return a
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def write(self, data):
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self.epOut.write(data)
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def parse(self, data):
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i = 0
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msgs = []
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while i < len(data):
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if data[i] == 0:
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break
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cin, cable_id = data[i] & 15, data[i] >> 4
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msgs.append(data[i + 1 : i + 1 + KeyRig25.cin_sizes[cin]])
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i += 4
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return msgs
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@staticmethod
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def findall(vendorID = None, productID = None, debug = False):
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dev_list = []
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devices = usb.core.find(find_all = True)
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for dev in devices:
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if vendorID is not None and dev.idVendor != vendorID:
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continue
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if productID is not None and dev.idProduct != productID:
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continue
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thisdev = USBMIDIDeviceDescriptor(dev.idVendor, dev.idProduct)
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if debug:
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print "Device %04x:%04x, class %d" % (dev.idVendor, dev.idProduct, dev.bDeviceClass)
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if dev.bDeviceClass == 0: # device defined at interface level
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for cfg in dev:
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if debug:
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print "Configuration ", cfg.bConfigurationValue
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for intf in cfg:
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if debug:
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print "Interface %d alternate-setting %d" % (intf.bInterfaceNumber, intf.bAlternateSetting)
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print "Class %d subclass %d" % (intf.bInterfaceClass, intf.bInterfaceSubClass)
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if intf.bInterfaceClass == 1 and intf.bInterfaceSubClass == 3:
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if debug:
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print "(%d,%d,%d): This is USB MIDI" % (cfg.bConfigurationValue, intf.bInterfaceNumber, intf.bAlternateSetting)
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thisdev.add_interface(cfg.bConfigurationValue, intf.bInterfaceNumber, intf.bAlternateSetting)
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if thisdev.has_interfaces():
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dev_list.append(thisdev)
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return dev_list
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#print devices
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class KnownUSBMIDI(USBMIDI):
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def __init__(self, vendorID, productID):
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devlist = USBMIDI.findall(vendorID, productID, debug = False)
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if not devlist:
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raise ValueError
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USBMIDI.__init__(self, devlist[0], devlist[0].interfaces[0])
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class KeyRig25(KnownUSBMIDI):
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def __init__(self):
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KnownUSBMIDI.__init__(self, vendorID = 0x763, productID = 0x115)
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class XMidi2x2(KnownUSBMIDI):
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def __init__(self):
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KnownUSBMIDI.__init__(self, vendorID = 0x41e, productID = 0x3f08)
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class LexiconOmega(KnownUSBMIDI):
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def __init__(self):
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KnownUSBMIDI.__init__(self, vendorID = 0x1210, productID = 2)
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print USBMIDI.findall()
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xmidi = XMidi2x2()
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xmidi.write(xmidi.encode(1, [0x90, 36, 100]))
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xmidi.write(xmidi.encode(1, [0x80, 36, 100]))
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#krig = KeyRig25()
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krig = LexiconOmega()
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while True:
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data = krig.read()
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if data is not None:
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decoded = krig.parse(data)
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reencoded = array.array('B')
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for msg in decoded:
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reencoded.extend(xmidi.encode(1, list(msg)))
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xmidi.write(reencoded)
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print decoded
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