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Ventuz Introduction

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Quick Guides

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General

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Ventuz Designer

  • Designer Indices
Introduction
  • Designer Introduction Index
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  • Realtime Rendering
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  • Working with Nodes
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  • Display Images and Movies
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  • Deploying a Ventuz Presentation
  • Render to Disk
User Interface
  • Designer User Interface Index
  • Designer Interface
  • Renderer Window
  • Layer Editor
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2D Workflow
  • 2D Workflow Index
  • 2D Workflow
  • Layer Editor
  • Common Layer Properties
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3D Workflow
  • 3D Workflow Index
  • 3D Workflow
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  • Layer Editor
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  • Creating Realistic Reflections
  • Unreal Integration
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  • E2E Node Overview
Logic Workflow
  • Logic Workflow Index
  • Hierarchy and Content Editors
  • Content Editor
  • Hierarchy Editor
  • Working with Nodes
  • Property Editor
  • Containers
  • Project and Scene Data
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  • Multitouch
  • TUIO Protocol
  • Open Sound Control
  • Unreal Integration
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  • E2E Node Overview
Animation Workflow
  • Animation Workflow Index
  • Animation Workflow
  • Animation Editor
  • Content Editor
  • Hierarchy Editor
  • Property Editor
  • Animation and State Engine
  • Templates
  • Template Engine
  • Unreal Integration
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Project Structure
  • Project Structure Index
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  • Project Properties
  • Project Maintenance
  • Project and Scene Data
  • Scene Management
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  • Scene Tree
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How Tos
  • Designer How to Index
  • How to Run Ventuz
  • How to Work with Designer
  • Ventuz Designer Drag&Drop Workflow
  • How to work with Shadows
  • How to Build Content for Multiple Screens
  • How to Use Emoijs
  • How to Build a Template
  • How to Use the Color Difference Keyer
  • How To Use the HDR Engine
  • How Create Lens Flares and Bloom
  • How to Create Visuals Loader Node
  • How to Remote Control with a Phone
  • How to use Head Mounted Displays
  • How to work with 3D Reference Layers
  • How to create a Firework Particle System
  • How to use DDS with new Block Compression modes
  • How to use the Substance Integration
  • How To Integrate Unreal
  • How To Integrate Notch
  • How To use the Vertex Integration
  • How To Control and Customize Ventuz
Reference
  • Available Nodes
  • Animation Nodes
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  • IO Nodes
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  • Summary Shortcuts
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Ventuz Director

  • Index
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  • Topology
  • Channels
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  • Designing Templates
  • Plug-Ins
  • Shortcuts
  • Command Line Options
  • Application Settings
  • Glossary
  • GPI Configuration

Ventuz Runtime & Configuration

  • Runtime Index
  • Configuration Configuration Editor
  • Machine Configuration
  • Video/Audio Configuration
  • Web Configuration Editor and License Manager
  • Render Setup Editor
  • Warping and Soft-Edging Editor
  • Machine Clustering
  • Supported Hardware
  • Director Mode
  • Runtime How Tos Index
  • How to Configure Audio
  • How to Use Live Options
  • How To Play Out On Multiple Screens
  • How To Render on a Machine Cluster
  • How to Use Head Mounted Displays
  • How to Setup Spout with Ventuz
  • How to Use Newtek NDI
  • How to Use a Mixed Frame Rate Cluster
  • How to Use Tracking

How To

Designer
  • Designer How to Index
  • How to Run Ventuz
  • How to Work with Designer
  • Ventuz Designer Drag&Drop Workflow
  • How to work with Shadows
  • How to Build Content for Multiple Screens
  • How to Use Emoijs
  • How to Build a Template
  • How to Use the Color Difference Keyer
  • How To Use the HDR Engine
  • How Create Lens Flares and Bloom
  • How to Create Visuals Loader Node
  • How to Remote Control with a Phone
  • How to use Head Mounted Displays
  • How to work with 3D Reference Layers
  • How to create a Firework Particle System
  • How to use DDS with new Block Compression modes
  • How to use the Substance Integration
  • How To Integrate Unreal
  • How To Integrate Notch
  • How To build and playback Ventuz Content in Vertex
Runtime & Configuration
  • Runtime How Tos Index
  • How to Configure Audio
  • How to Use Live Options
  • How To Play Out On Multiple Screens
  • How To Render on a Machine Cluster
  • How to use Head Mounted Displays
  • How to setup Spout with Ventuz
  • How to use Newtek NDI
  • How to use a Mixed Frame Rate Cluster
  • How to use Tracking
  • How To Integrate Unreal
  • How To Integrate Notch
  • How To build and playback Ventuz Content in Vertex
Director
  • How To Control Multiple Graphics Independently From Each Other
  • How to use the Companion with Director

Ventuz Node Reference

ANIMATION
  • Mover
  • Alternator
  • Simple Control
  • Timeline Control
  • Anmation Rig
  • Keyframe Animation
  • Animation Group
COLOR/MATERIAL
  • Alpha
  • Fog
  • Ground Fog
  • Sky Box
  • Color to RGBA
  • HSLA to Color
  • RGBA to Color
  • Color Transformer
  • HLSL Shader
  • Color
  • Material
  • Color Picker
  • Substance Material
DATA
  • Database
  • Excel
  • JSON
  • RSS Feed
  • Resource Linker
  • Text File
  • XML
E2E
  • E2E Axis
  • E2E Data
  • E2E Control
  • E2E Layer
  • E2E Provider
  • E2E Node Overview
GEOMETRY
  • Rectangle
  • Rounded Rectangle
  • Gradient Rectangle
  • Overlay Rectangle
  • Cube
  • Circle
  • Sphere
  • Cylinder
  • Cone
  • Torus
  • Chart
  • Random Points
  • Mesh Loader
  • Geometry Import (Live)
  • Volume
  • Get Bounding Box
  • Arrow
  • Particle System
  • Path Renderer
  • Geometry Renderer
INTERACTION
  • Interaction Rect
  • Touch Button
  • Touch Excluder
  • Touch Marker
  • Touch Paint
  • Touch Pattern
  • Touch Proxy
  • Touch Ripples
  • Touch Transformations
  • Web Browser
  • Touch Teleport
  • Touch Simulator
INPUT/OUTPUT (I/O)
  • GPI
  • Joystick
  • Keyboard
  • MIDI
  • Mouse
  • Network
  • Open Sound Control
  • Serial
  • Timecode
  • DMX
  • HTTP
  • RamDiskWriter
LAYER
  • 3D Layers
  • 3D Layer Reference
  • 2D Layers
  • PSD Import Layer
  • E2E Layer
  • Others
LIGHT
  • Light Sources
LOGIC
  • Array Processing
  • Convert To Text
  • Cluster Synchronization
  • Counter
  • Date Time
  • Directory
  • Dispatcher
  • Enumeration
  • Expressions
  • Invert
  • Log
  • Loop Breaker
  • Math Effects
  • Matrix Operations
  • Scene Event
  • Script
  • String Operations
  • System ID
  • Text Splitter
  • Timer
  • Toggle
  • URL
  • Value Switch
  • Value Buffer
  • Variables
  • Visual Indexer
RENDER OPTIONS
  • Alpha Blending
  • Color Write
  • Alpha Testing
  • Clip Plane
  • Filter
  • Mask
  • Mirror
  • Effect
  • Render Cube Map
  • Draw Modes
  • Stencil
  • ZTesting
SOUND
  • Audio Clip
  • Sound
  • Volume Control
  • Audio Analysis
SLIDES
  • Slide Manager
  • Slide
  • Slide Port
  • Pivot
TEXT
  • Text Effects
  • Text Layouts
  • Text Rendering
TEXTURE
  • Background
  • Hatch
  • Image
  • Texture
  • SVG Loader
  • Gradient Texture
  • Live Video
  • Movie Stream
  • Movie Frame
  • Movie Clip
  • Texture Loader
  • Snapshot
  • Snapshot Framebuffer
  • Texture Saver
  • Video Source Selector
  • VIO Input
  • Spout Receiver
  • NDI Receiver
  • Substance Loader
  • QR Code
VR/AR
  • Tracked Devices
  • Draw Tracked Devices
WORLD
  • Axis
  • Billboard
  • GetWorld
  • SetWorld
  • Arrange
  • Ticker
  • Layout
  • Group
  • World Z Sort
  • YesNo
  • Switch
  • Spread
  • Filter Pass
  • Set Pass
  • Hierarchy Container
  • Scene Port
  • Content Container
  • Template Port
  • Container Info
  • Camera
  • Paths

Advanced and Development

  • Advanced and Development Index
  • Command Line Options
  • Ventuz IP Ports
  • Ventuz Machine Service
  • TUIO
  • .NET Scripting
  • HLSL Shader Programming
  • Ventuz API and SDK
  • Ventuz Extension API
  • Ventuz VIO API
  • Ventuz File Format (VFF)
  • Ventuz Stream Out API
  • Lens Calibration File for FreeD
  • E2E Node Overview
  • Unreal Integration
  • Notch Integration
Remoting
  • Remoting Index
  • Remoting Overview
  • How To Control and Customize Ventuz
  • Remoting 4
  • Remoting 4 via Websockets
  • Remoting 4 via HTTP
  • Director Remoting
  • Deprecated Remoting
  • Remoting Machine Signature

Misc

  • Presets
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OSC Nodes

OSC Output Sends simple data via the OSC protocol.
OSC Input Receives simple data via the OSC protocol.
Timecode OSC Receives a Timecode via the OSC protocol. See also Timecode Nodes.

OSC stands for Open Sound Control and is a network protocol designed for simple communication between computers and/or multimedia hardware devices such as synthesizers. It was originally designed to exchange music performance data and thus is often used as an alternative to the antiquated MIDI protocol.

OSC is often used to connect Ventuz to external devices or to distribute information in a cluster of Ventuz machines. Prior to the introduction of the dedicated Ventuz Input Subsystem, OSC was often used to distribute keystrokes or mouse motion from one master machine to all rendering machines.

Input & Output

Since OSC is a protocol without predefined messages, it is the responsibility of the hardware device or driver manufacture to specify suitable messages which an application can use in order to interact with the device. For more information on OSC syntax, see Open Sound Control.

Both the Input and Output nodes use the Custom Model to provide user definable input or output properties to match the parameter list of a message. The Address property is used to define which type of message the node will listen to or sends to, respectively. The address must start with an leading /; e.g. /positionX.

The only further information required is the port to listen to (in case of the input node) or the IP-address and port to send to (in case of the output node). The input node will open a socket on the local machine and specified port when created. If the MulticastIP is set, the node will listen to that address instead of the port on the local machine. OSC Input nodes have the ResetOnLoad input property to reset the Custom Model output properties to default values when the scene is loaded.

Only one process can open a socket on a specific port at the same time. If two separate instances of the Ventuz application are launched and both open a scene containing an OSC node with the same port, the latter of the two will fail to open the socket. The same is true for other applications that might use the same port. Watch out for errors in the Message View. In particular, the Ventuz Input Subsystem grabs the port 3333 during application launch for receiving TUIO messages.

OSC nodes in a scene will only send/receive nodes as long as the scene is actively being rendered. If multiple scenes are open, all non-active scenes will not send/receive OSC messages.

The Reset on Load property resets the output properties to default values on scene load.

OSC Timecode

A specialized version of the input node that accepts a single 64bit integer parameter for an OSC message and translates the result into a timecode based on the Timebase property. See also Timecode Nodes.

All OSC receiver nodes have the AutoDeactivate property. If enabled, this will deactivate the OSC node if the parent Hierarchy Container is blocked.

See also:
  • Open Sound Control
  • Timecode Nodes

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