In the beginning (1983) of AutoCAD, drawing space was divided into a front view (of the object being drawn) and a left or right view (of the object from the front or top of the drawing space, respectively). These views allowed the user to see a three-dimensional view of the drawing in front of them. History AutoCAD, first released in 1982, was a desktop CAD program for use with microcomputers. Unlike earlier commercial CAD programs, which were developed for desktop minicomputers, AutoCAD was designed to run on microcomputers and early personal computers. The name AutoCAD comes from the fact that the main market was professional architects and engineers. Before AutoCAD, architects had to manually move walls or floors to suit each opening or door. The new AutoCAD program digitized the drawing, with each dimension, plane, section, and so on stored in the computer. As a result, the drawing could be rotated, resized, or moved at any time. These features were revolutionary and made AutoCAD a commercial success, even though it was expensive and users had to purchase it separately. The original release of AutoCAD for minicomputers had many shortcomings: it was not as user-friendly as the release for desktop computers, used too much memory, and was poorly organized. Release of AutoCAD for desktop and larger-memory computers in the spring of 1983 included three features that have become industry standards: Dimensions were stored in a separate record in a common memory (called the DIMM) from other information. This separation allowed the program to move and resize dimensions simultaneously with all other data without moving or resizing any other part of the drawing. The original release had a smaller drawing area than the desktop and smaller windows, so the program was less user-friendly. The released version had larger windows and was more user-friendly. The user was now given the ability to see only the portion of the drawing space that was directly in front of the user. This release had a feature called “AutoComplete,” which allowed the user to resize an object by dragging the window to the object. This release of AutoCAD enabled the program to work with objects that were much larger than the internal memory. It was also possible to change the position of the drawing area relative to the computer, so that the user could see a smaller portion of the drawing area without having to resize
Surface design features AutoCAD is primarily used in architectural, engineering, and landscape architecture industries for drafting and design. Features include surface design (grass, walls, buildings, etc.) and the ability to draw shapes to subdivide a surface into sections (grids) for more efficient drafting. Vector-based features such as snapping and direct dimensioning make it easy to align and dimension objects to scale. The Model Selector allows rapid selection of objects to work on in a view. Drafting history allows the revision of objects as a drawing is developed. Optional features for 3D model visualization include Adobe Flash/Google Earth plug-ins, and Surface design. In 3D work, 3D models are created using the Triangulated Modelling (TM) feature. Other features include an unlimited number of drawing sheets and active view. Each view can be used to show a different angle of a design, and multiple views can be used at one time. Surface design capabilities include: Walls Surfaces can be created to enclose objects. Grids Surfaces can be created to divide objects. Architectural elements, such as arches, columns, and beams can be created. Grids are used for the division of floors, beams and other architectural elements in a building Roofs Surfaces can be created to enclose and define roofs. Flag elements, such as rocks, poles, and flags can be created. These features are used for both 2D and 3D drafting. Dimensioning One of the most powerful features of AutoCAD is its ability to dimension objects accurately. After placing objects on the drawing canvas, a snap-to-fit method of dimensioning works. AutoCAD senses if an object is parallel to the edge of the canvas or in front of or behind other objects. When one object is next to another, the cursor moves between the two, and can be accurately placed. AutoCAD can set up the snap-to-fit feature to work along parallel edges, perpendicular edges, top/bottom or front/back. Dimensions are one of the most frequently used features in AutoCAD. This can be done either by entering a value (such as a length or width) directly, or it can be based on another object. For example, if a front wall of a building is one inch wide and a back wall is six inches wide, you can set a dimension that will automatically be 1 af5dca3d97
1. Field of the Invention The present invention relates to a display control device that receives two-dimensional image data from an image processing unit and displays a display image on a display screen by using the received two-dimensional image data, a display control method, and a computer-readable recording medium that records a program for implementing the display control method. 2. Description of the Related Art Conventionally, many types of image processing apparatus that edit two-dimensional image data and display a composition image on a display screen in real time using the edited image data have been proposed. The image processing apparatus display a composition image on the display screen, and display the composition image on the display screen in a manner that reflects the editing condition of two-dimensional image data, such as the size of an image, the shape of a pattern, the brightness of a pattern, the orientation of a pattern, the contrast ratio of a pattern, or a pattern color, for example, and in a manner that varies depending on the editing condition. In the conventional image processing apparatus, two-dimensional image data is converted into one-dimensional image data by using the frame buffer, and the one-dimensional image data is sent to the display apparatus in synchronization with the vertical synchronization signal of the display screen. Further, a command that changes the size, the shape, the orientation, the brightness, the contrast ratio, or the color of the one-dimensional image data and outputs the changed one-dimensional image data to the display apparatus is executed in synchronization with the vertical synchronization signal of the display screen. The display apparatus then displays a composition image on the display screen in synchronization with the vertical synchronization signal of the display screen. Here, in case a pattern is displayed on the display screen by using the two-dimensional image data and the composition image is edited, the entire composition image that is displayed on the display screen is not necessarily edited. For example, if the size of a pattern is changed, and an image in which the size of the pattern is increased is displayed on the display screen, the image in which the size of the pattern is increased is displayed on the display screen. However, if the image in which the size of the pattern is increased is not displayed on the display screen, the image in which the size of the pattern is changed is not displayed on the display screen. In the conventional image processing apparatus, an image to be displayed on the display screen may be displayed in a state in which the composition image is not displayed on the display screen.
Work with multiple layers of the same feature class at once. You can edit all the layers simultaneously and they’ll be updated automatically. (video: 1:24 min.) Quickly annotate and compare components from related assemblies. Create a note with new information about a component and use the Markup Assist tool to see it in all other assemblies in your drawing. Build layout views and map features with standard or custom styles, using the Modeling workspace. Use display styles to set up a view that best displays a feature, for instance, and define a view style that makes the layer appear as needed. Scale and rotate any part, and then trace or insert a fillet or hole. Scales and rotations are propagated through parts and fillets. (video: 1:30 min.) Easily access your current drawing attributes in the Properties palette. Quickly navigate to a drawing attribute and choose the correct one. (video: 1:28 min.) View the full content of an image file, whether the image was taken with a camera or an emitter, and display as a background. (video: 1:39 min.) Display and edit drawing attributes in the Properties palette. Change visibility of parts and annotations in a drawing. You can now specify a value of True or False for each annotation, and dynamically hide and show parts based on the settings. Publish the entire drawings with a single click. Publish to a network folder or the cloud in just a few clicks. Create an online portfolio of your drawings and share them on the web, or make drawing documents accessible for all of your teams to use. Add part outlines to a drawing as you view it in a viewport. This allows you to view the individual parts of an assembly or product and then use them to guide your design. In DesignWorkshop, use measurements and extents to position and size parts. Combine views into one new drawing. Now you can combine views of any previous drawing that include related features, into a single drawing document that combines the parts into a single view. Access and combine document data with new AppData tool. Access and combine multiple versions of drawings with the new AppData tool. It’s like a revision control system for your drawings. Send drawings to your customers or partners on demand. You can now send drawings to others
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