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Page layout

About: Page layout is a research topic. Over the lifetime, 2266 publications have been published within this topic receiving 23261 citations.


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Yang Li, Julien Amelot, Xin Zhou, Samy Bengio, Si Si1 
TL;DR: This paper designs two versions of Transformer-based tree decoders: Pointer and Recursive Transformer, and proposes several metrics for measuring the accuracy of tree prediction and ground these metrics in the domain of user experience.
Abstract: It has been of increasing interest in the field to develop automatic machineries to facilitate the design process. In this paper, we focus on assisting graphical user interface (UI) layout design, a crucial task in app development. Given a partial layout, which a designer has entered, our model learns to complete the layout by predicting the remaining UI elements with a correct position and dimension as well as the hierarchical structures. Such automation will significantly ease the effort of UI designers and developers. While we focus on interface layout prediction, our model can be generally applicable for other layout prediction problems that involve tree structures and 2-dimensional placements. Particularly, we design two versions of Transformer-based tree decoders: Pointer and Recursive Transformer, and experiment with these models on a public dataset. We also propose several metrics for measuring the accuracy of tree prediction and ground these metrics in the domain of user experience. These contribute a new task and methods to deep learning research.

9 citations

Journal ArticleDOI
TL;DR: In this article, a growth-based layout optimization framework is built, taking inspiration from the morphology of plant ramifications, which provides an approximately homogeneous stress distribution along the surface of self-optimizing structures.

9 citations

Patent
27 Mar 2003
TL;DR: In this article, the layout design of the layout information is performed so as to be treatable independently of the writing data obtained by converting the information into electronic positional information, which is used for printing ruled lines or symbols on the forms.
Abstract: PROBLEM TO BE SOLVED: To provide a system capable of performing original layout designing of forms and printing thereof, which are used, when making electron data of contents input by handwriting by a small lot. SOLUTION: The layout design of the layout information is performed so as to be treatable independently of the writing data obtained by converting the information, in which the layout information for printing ruled lines or symbols on the forms is filled in onto the surface of the form by handwriting, into electronic positional information. The system is provided with a layout information receiving means for receiving the input of the layout information created to be treatable, independently of the writing data and to be set on the form, and an identifier giving means for giving an identifier by each layout information received by the layout information receiving means. COPYRIGHT: (C)2004,JPO

9 citations

Patent
25 Mar 2009
TL;DR: In this article, a method and a device for realizing the configuration based on XML and control, wherein a data base supplies data to a data source of a control layer, an XML configuration file configures a control source, and by a control, a GUI based on WEB is displayed according to the data source and the control source.
Abstract: The invention discloses a method and a device for realizing the configuration based on XML and control, wherein a data base supplies data to a data source of a control layer; an XML configuration file configures a control source of a control layer; and by a control, a GUI based on WEB is displayed according to the data source and the control source. In the invention, a software product developer is separated from a software product implementer, so that under the condition of not modifying a program, the implementer can adjust the page layout in order to meet requirements of a customer. The XML is used to configure the system, so a page object is conveniently optimized, and the service experience can be continuously accumulated.

9 citations

01 Jan 2004
TL;DR: This dissertation explores the architectural, physical, and algorithmic feasibility of a prototype pattern matching approach as a novel Technology Computer Aided Design (TCAD) tool for linking to Electronic Design Automation (EDA).
Abstract: As the critical dimension in optical lithography shrinks to 90nm and below, determining where the layout is most affected by non-ideal process conditions is increasingly important. In many cases, combinations of local layout geometries that produce or are sensitive to residual effects can be found by locating theoretically problematic configurations of shapes. This dissertation explores the architectural, physical, and algorithmic feasibility of a prototype pattern matching approach as a novel Technology Computer Aided Design (TCAD) tool for linking to Electronic Design Automation (EDA). The pattern matcher software architecture was created as a standalone Design for Manufacturability (DFM) tool that fits easily into the design flow and can be applied to many areas of lithography and integrated circuit processing. The development was motivated by the need to relate residual lens aberration effects back to the layout design. For this application, the pattern generator first reads a set of Zernike polynomials and takes the inverse Fourier transform (IFT) of the aberrated pupil function in order to generate the pattern bitmap. The pattern matcher then loads the pattern, a user input parameter file, and a multilayer mask layout in CIF or GDSII format. The match factor is computed along each edge and at each corner of interest, and a resulting sorted table of highest match factors for each pattern is output. The matching geometry is extracted for more rigorous process simulators such as SPLAT. The system also supports an interactive graphical display of the layout with pattern images drawn over the match locations. The key contribution to this thesis is the collection of data structures and algorithms that implement pattern matching. The most efficient matching algorithm uses rectangle and triangle primitives and can efficiently process an entire chip in less than an hour on a standard desktop computer with near perfect scaling on parallel processor machines. This runtime is two orders of magnitude faster than Optical Proximity Correction (OPC). (Abstract shortened by UMI.)

9 citations


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Performance
Metrics
No. of papers in the topic in previous years
YearPapers
202325
202273
202165
202093
2019124
201893