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Live.Conversions (runtime)

Live 12 — Live Object Model & framework reference (descriptions and signatures).

Functions

audio_to_midi_clip(...)

audio_to_midi_clip( (Song)song, (Clip)audio_clip, (int)audio_to_midi_type) -> None : Creates a MIDI clip in a new MIDI track with the notes extracted from the given audio_clip. The audio_to_midi_type decides which algorithm is used in the process. Raises error when called with an inconvertible clip or invalid audio_to_midi_type.

C++ signature :
    void audio_to_midi_clip(TPyHandle<ASong>,TPyHandle<AClip>,int)

create_drum_rack_from_audio_clip(...)

create_drum_rack_from_audio_clip( (Song)song, (Clip)audio_clip) -> None : Creates a new track with a drum rack with a simpler on the first pad with the specified audio clip.

C++ signature :
    void create_drum_rack_from_audio_clip(TPyHandle<ASong>,TPyHandle<AClip>)

create_midi_track_from_drum_pad(...)

create_midi_track_from_drum_pad( (Song)song, (DrumPad)drum_pad) -> None : Creates a new Midi track containing the specified Drum Pad's device chain.

C++ signature :
    void create_midi_track_from_drum_pad(TPyHandle<ASong>,TPyHandle<ADrumGroupDevicePad>)

create_midi_track_with_simpler(...)

create_midi_track_with_simpler( (Song)song, (Clip)audio_clip) -> None : Creates a new Midi track with a simpler including the specified audio clip.

C++ signature :
    void create_midi_track_with_simpler(TPyHandle<ASong>,TPyHandle<AClip>)

is_convertible_to_midi(...)

is_convertible_to_midi( (Song)song, (Clip)audio_clip) -> bool : Returns whether audio_clip can be converted to MIDI. Raises error when called with a MIDI clip

C++ signature :
    bool is_convertible_to_midi(TPyHandle<ASong>,TPyHandle<AClip>)

move_devices_on_track_to_new_drum_rack_pad(...)

move_devices_on_track_to_new_drum_rack_pad( (Song)song, (int)track_index) -> LomObject : Moves the entire device chain of the track according to the track index onto the C1 (note 36) drum pad of a new drum rack in a new track.If the track associated with the track index does not contain any devices nothing changes (i.e. a new track and new drum rack are not created).

C++ signature :
    TWeakPtr<TPyHandleBase> move_devices_on_track_to_new_drum_rack_pad(TPyHandle<ASong>,int)

sliced_simpler_to_drum_rack(...)

sliced_simpler_to_drum_rack( (Song)song, (SimplerDevice)simpler) -> None : Converts the Simpler into a Drum Rack, assigning each slice to a drum pad. Calling it on a non-sliced simpler raises an error.

C++ signature :
    void sliced_simpler_to_drum_rack(TPyHandle<ASong>,TSimplerDevicePyHandle)

Classes

class AudioToMidiType(enum)

int([x]) -> integer int(x, base=10) -> integer

Convert a number or string to an integer, or return 0 if no arguments are given. If x is a number, return x.int(). For floating point numbers, this truncates towards zero.

If x is not a number or if base is given, then x must be a string, bytes, or bytearray instance representing an integer literal in the given base. The literal can be preceded by '+' or '-' and be surrounded by whitespace. The base defaults to 10. Valid bases are 0 and 2-36. Base 0 means to interpret the base from the string as an integer literal.

int('0b100', base=0) 4

Methods

__init__(self, /, *args, **kwargs)

Initialize self. See help(type(self)) for accurate signature.

as_integer_ratio(self, /)

Return integer ratio.

Return a pair of integers, whose ratio is exactly equal to the original int and with a positive denominator.

(10).as_integer_ratio() (10, 1) (-10).as_integer_ratio() (-10, 1) (0).as_integer_ratio() (0, 1)

bit_count(self, /)

Number of ones in the binary representation of the absolute value of self.

Also known as the population count.

bin(13) '0b1101' (13).bit_count() 3

bit_length(self, /)

Number of bits necessary to represent self in binary.

bin(37) '0b100101' (37).bit_length() 6

conjugate(...)

Returns self, the complex conjugate of any int.

from_bytes(bytes, byteorder='big', *, signed=False)

Return the integer represented by the given array of bytes.

bytes Holds the array of bytes to convert. The argument must either support the buffer protocol or be an iterable object producing bytes. Bytes and bytearray are examples of built-in objects that support the buffer protocol. byteorder The byte order used to represent the integer. If byteorder is 'big', the most significant byte is at the beginning of the byte array. If byteorder is 'little', the most significant byte is at the end of the byte array. To request the native byte order of the host system, use `sys.byteorder' as the byte order value. Default is to use 'big'. signed Indicates whether two's complement is used to represent the integer.

to_bytes(self, /, length=1, byteorder='big', *, signed=False)

Return an array of bytes representing an integer.

length Length of bytes object to use. An OverflowError is raised if the integer is not representable with the given number of bytes. Default is length 1. byteorder The byte order used to represent the integer. If byteorder is 'big', the most significant byte is at the beginning of the byte array. If byteorder is 'little', the most significant byte is at the end of the byte array. To request the native byte order of the host system, use `sys.byteorder' as the byte order value. Default is to use 'big'. signed Determines whether two's complement is used to represent the integer. If signed is False and a negative integer is given, an OverflowError is raised.

Attributes

  • denominator = <attribute 'denominator' of 'int' objects> - the denominator of a rational number in lowest terms
  • drums_to_midi = Conversions.AudioToMidiType.drums_to_midi
  • harmony_to_midi = Conversions.AudioToMidiType.harmony_to_midi
  • imag = <attribute 'imag' of 'int' objects> - the imaginary part of a complex number
  • melody_to_midi = Conversions.AudioToMidiType.melody_to_midi
  • name = <member 'name' of 'Boost.Python.enum' objects>
  • names = {'harmony_to_midi': Conversions.AudioToMidiType.harmony_to_midi, 'melody_to_midi': Conversions.AudioToMidiType.melody_to_midi, 'drums_to_midi': Conversions.Audi... - dict() -> new empty dictionary
  • numerator = <attribute 'numerator' of 'int' objects> - the numerator of a rational number in lowest terms
  • real = <attribute 'real' of 'int' objects> - the real part of a complex number
  • values = {0: Conversions.AudioToMidiType.harmony_to_midi, 1: Conversions.AudioToMidiType.melody_to_midi, 2: Conversions.AudioToMidiType.drums_to_midi} - dict() -> new empty dictionary