Abstract:
A computing apparatus, method, and non-transitory computer readable storage medium thereof are provided. The apparatus receives a plurality of character motion data of a plurality of virtual characters. The apparatus classifies the virtual characters based on the character motion data to generate a plurality of frame update groups, and each of the frame update groups corresponds to a motion calculation period. At each frame, the apparatus selects one of at least one subset of each of the frame update groups to calculate a motion synthesis for each of the virtual characters.
Abstract:
An image segmentation method includes displaying, through a display component, an original designation region relative to an image; receiving a user input on the image, in which the user input is at least one stroke on the image; segmenting a regional area corresponding to the stroke to update the original designation region, in which the regional area at least partially overlaps with the original designation region.
Abstract:
A real-time rendering generating apparatus, method, and non-transitory computer readable storage medium thereof are provided. The apparatus receives a plurality of character motion data of a plurality of virtual characters. The apparatus determines a rendering level corresponding to each of the virtual characters based on a classification rule related to a first virtual character and the character motion data, each of the rendering levels corresponds to one of a plurality of character level of detail, and each of the plurality of character level of detail corresponds to a range of a customized body part and a skeletal model. The apparatus generates a real-time rendering of each of the virtual characters based on the rendering level corresponding to each of the virtual characters.
Abstract:
A method to provide a 3D outfit model able to be adjusted corresponding to a 3D human model. The method includes following steps. A three-dimensional (3D) human model is provided, and vertices of the 3D human model are located at first positions. A 3D outfit model is provided, and vertices of the 3D outfit model are located at second positions. In response to that the 3D human model is deformed and the vertices of the 3D human model are displaced from the first positions to third positions, the 3D outfit model is adjusted corresponding to the 3D human model, by setting each of the vertices of the 3D outfit model to fourth positions according to the second positions and displacements of the vertices of the 3D human model between the first positions and the third positions.
Abstract:
An image segmentation method includes displaying, through a display component, an image; receiving, through a user input component, a user command relative to an original designation region of the image; shrinking the original designation region according to first depth information corresponding to the image to generate a shrunk designation region of the image; generating a plurality of seeds according to the shrunk designation region and the user command; and segmenting the image according to the seeds to obtain at least one segmented region.
Abstract:
An image segmentation method includes displaying, through a display component, an image; receiving, through a user input component, a user command relative to an original designation region of the image; shrinking the original designation region according to first depth information corresponding to the image to generate a shrunk designation region of the image; generating a plurality of seeds according to the shrunk designation region and the user command; and segmenting the image according to the seeds to obtain at least one segmented region.
Abstract:
A touch selection method, an electronic apparatus, and a non-transitory computer readable medium are disclosed herein. The touch selection method is able to perform a touch selection on a display of an electronic apparatus, in which the display displays content. The touch selection method includes following operations: assigning a selection unit corresponding to one of zoom levels, in which the selection unit includes pixels on the display that are regarded as a minimum selectable component for the touch selection.