The Tomorrow Children
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The Tomorrow Children
''The Tomorrow Children'' is an adventure video game developed by Q-Games and published by Sony Interactive Entertainment. The game was released as an early access title on September 6, 2016 as ''The Tomorrow Children: Founder's Pack'', and was fully released on October 25, 2016, but was shut down by Sony in 2017. Q-Games later purchased the IP and released the game on September 6, 2022 as ''The Tomorrow Children: Phoenix Edition.'' Development ''The Tomorrow Children'' was announced during Gamescom 2014 at Sony's press conference in August 2014. Engadget has described the game as "a mix of ''Minecraft''-esque collaborative building, social economics and a Soviet Union-themed post-apocalyptic dystopia." ''The Tomorrow Children'' runs on a proprietary game engine developed by Q-Games. The game's graphics engine utilizes new technology, aiming to achieve a Pixar-like pre-rendered CGI look with real-time 3D graphics. It utilizes the PlayStation 4's Async Compute technology extens ...
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Q-Games
Q-Games, Limited is a video game developer based in Nakagyō-ku, Kyoto, Japan which works closely with both Nintendo and Sony. Foundation Q-Games was founded by Dylan Cuthbert, who previously worked at Argonaut Software and helped create ''Starglider'' and ''Starglider 2'' for Argonaut Software, then gave programming assistance to '' X'' and the first ''Star Fox'' for Nintendo. He also developed ''Star Fox 2'' to completion before heading off to work at Sony America to make '' Blasto'' on the PlayStation. After this, Cuthbert moved back to Japan to work at Sony Japan, where, in early 1999, he developed the Duck in a Bath technical demo (Ducks demo) that showcased the PlayStation 2's power to early developers and publishers. Following that, he developed ''Pipo Saru 2001'' and then left Sony to start Q-Games Ltd. in Kyoto in September 2001. History The studio's first few years were spent accumulating staff and developing behind-doors technology projects for a number of clients in ...
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Computer-generated Imagery
Computer-generated imagery (CGI) is the use of computer graphics to create or contribute to images in art, printed media, video games, simulators, and visual effects in films, television programs, shorts, commercials, and videos. The images may be static (still images) or dynamic (moving images), in which case CGI is also called ''computer animation''. CGI may be two-dimensional (2D), although the term "CGI" is most commonly used to refer to the 3-D computer graphics used for creating characters, scenes and special effects in films and television, which is described as "CGI animation". The first feature film to make use of CGI was the 1973 film ''Westworld''. Other early films that incorporated CGI include ''Star Wars'' (1977), ''Tron'' (1982), '' Golgo 13: The Professional'' (1983), ''The Last Starfighter'' (1984), ''Young Sherlock Holmes'' (1985) and ''Flight of the Navigator'' (1986). The first music video to use CGI was Dire Straits' award-winning " Money for Nothing" (1 ...
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Indirect Illumination
Global illumination (GI), or indirect illumination, is a group of algorithms used in 3D computer graphics that are meant to add more realistic lighting to 3D scenes. Such algorithms take into account not only the light that comes directly from a light source (''direct illumination''), but also subsequent cases in which light rays from the same source are reflected by other surfaces in the scene, whether reflective or not (''indirect illumination''). Theoretically, reflections, refractions, and shadows are all examples of global illumination, because when simulating them, one object affects the rendering of another (as opposed to an object being affected only by a direct source of light). In practice, however, only the simulation of diffuse inter-reflection or caustics is called global illumination. Algorithms Images rendered using global illumination algorithms often appear more photorealistic than those using only direct illumination algorithms. However, such images are c ...
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GameSpot
''GameSpot'' is an American video gaming website that provides news, reviews, previews, downloads, and other information on video games. The site was launched on May 1, 1996, created by Pete Deemer, Vince Broady and Jon Epstein. In addition to the information produced by ''GameSpot'' staff, the site also allows users to write their own reviews, blogs, and post on the site's forums. It has been owned by Fandom, Inc. since October 2022. In 2004, ''GameSpot'' won "Best Gaming Website" as chosen by the viewers in Spike TV's second ''Video Game Award Show'', and has won Webby Awards several times. The domain ''gamespot.com'' attracted at least 60 million visitors annually by October 2008 according to a Compete.com study. History In January 1996, Pete Deemer, Vince Broady and Jon Epstein quit their positions at IDG and founded SpotMedia Communications. SpotMedia then launched ''GameSpot'' on May 1, 1996. Originally, ''GameSpot'' focused solely on personal computer games, so a sis ...
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Lightmap
A lightmap is a data structure used in lightmapping, a form of surface caching in which the brightness of surfaces in a virtual scene is pre-calculated and stored in texture maps for later use. Lightmaps are most commonly applied to static objects in applications that use real-time 3D computer graphics, such as video games, in order to provide lighting effects such as global illumination at a relatively low computational cost. History John Carmack's Quake was the first computer game to use lightmaps to augment rendering. Before lightmaps were invented, realtime applications relied purely on Gouraud shading to interpolate vertex lighting for surfaces. This only allowed low frequency lighting information, and could create clipping artifacts close to the camera without perspective-correct interpolation. Discontinuity meshing was sometimes used especially with radiosity solutions to adaptively improve the resolution of vertex lighting information, however the additional cost ...
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Global Illumination
Global illumination (GI), or indirect illumination, is a group of algorithms used in 3D computer graphics that are meant to add more realistic lighting to 3D scenes. Such algorithms take into account not only the light that comes directly from a light source (''direct illumination''), but also subsequent cases in which light rays from the same source are reflected by other surfaces in the scene, whether reflective or not (''indirect illumination''). Theoretically, reflections, refractions, and shadows are all examples of global illumination, because when simulating them, one object affects the rendering of another (as opposed to an object being affected only by a direct source of light). In practice, however, only the simulation of diffuse inter-reflection or caustics is called global illumination. Algorithms Images rendered using global illumination algorithms often appear more photorealistic than those using only direct illumination algorithms. However, such images are co ...
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Screen Space Ambient Occlusion
Screen space ambient occlusion (SSAO) is a computer graphics technique for efficiently approximating the ambient occlusion effect in real time. It was developed by Vladimir Kajalin while working at Crytek and was used for the first time in 2007 by the video game ''Crysis'', also developed by Crytek. Implementation The algorithm is implemented as a pixel shader, analyzing the scene depth buffer which is stored in a texture. For every pixel on the screen, the pixel shader samples the depth values around the current pixel and tries to compute the amount of occlusion from each of the sampled points. In its simplest implementation, the occlusion factor depends only on the depth difference between sampled point and current point. Without additional smart solutions, such a brute force method would require about 200 texture reads per pixel for good visual quality. This is not acceptable for real-time rendering on current graphics hardware. In order to get high quality results with far ...
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Reflection (computer Graphics)
Reflection in computer graphics is used to emulate reflection (physics), reflective objects like mirrors and shiny surfaces. Accurate reflections can be accomplished e.g. by a Ray tracing (graphics), ray trace renderer by following a ray from the eye to the mirror and then calculating where it bounces from, and continuing the process until no surface is found, or a non-reflective surface is found. Approximate reflections can usually be computed faster by using methods such as environment mapping. Reflection on a shiny surface like wood or tile can add to the photorealistic effects of a 3D rendering. Approaches to reflection rendering For rendering environment reflections there exist many techniques that differ in precision, computational and implementation complexity. Combination of these techniques are also possible. Image and object order rendering, Image order rendering algorithms based on tracing rays of light, such as Ray tracing (graphics), ray tracing or path tracing, ty ...
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Ray Tracing (graphics)
In 3D computer graphics, ray tracing is a technique for modeling light transport for use in a wide variety of rendering algorithms for generating digital images. On a spectrum of computational cost and visual fidelity, ray tracing-based rendering techniques, such as ray casting, recursive ray tracing, distribution ray tracing, photon mapping and path tracing, are generally slower and higher fidelity than scanline rendering methods. Thus, ray tracing was first deployed in applications where taking a relatively long time to render could be tolerated, such as in still computer-generated images, and film and television visual effects (VFX), but was less suited to real-time applications such as video games, where speed is critical in rendering each frame. Since 2018, however, hardware acceleration for real-time ray tracing has become standard on new commercial graphics cards, and graphics APIs have followed suit, allowing developers to use hybrid ray tracing and rasterization- ...
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Cone Tracing
Cone tracing and beam tracing are a derivative of the ray tracing algorithm that replaces rays, which have no thickness, with thick rays. Principles In ray tracing, rays are often modeled as geometric ray with no thickness to perform efficient geometric queries such as a ray-triangle intersection. From a physics of light transport point of view, however, this is an inaccurate model provided the pixel on the sensor plane has non-zero area. In the simplified pinhole camera optics model, the energy reaching the pixel comes from the integral of radiance from the solid angle by which the sensor pixel sees the scene through the pinhole at the focal plane. This yields the key notion of pixel footprint on surfaces or in the texture space, which is the back projection of the pixel on to the scene. Note that this approach can also represent a lens-based camera and thus depth of field effects, using a cone whose cross-section decreases from the lens size to zero at the focal plane, and the ...
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Voxel
In 3D computer graphics, a voxel represents a value on a regular grid in three-dimensional space. As with pixels in a 2D bitmap, voxels themselves do not typically have their position (i.e. coordinates) explicitly encoded with their values. Instead, rendering systems infer the position of a voxel based upon its position relative to other voxels (i.e., its position in the data structure that makes up a single volumetric image). In contrast to pixels and voxels, polygons are often explicitly represented by the coordinates of their vertices (as points). A direct consequence of this difference is that polygons can efficiently represent simple 3D structures with much empty or homogeneously filled space, while voxels excel at representing regularly sampled spaces that are non-homogeneously filled. Voxels are frequently used in the visualization and analysis of medical and scientific data (e.g. geographic information systems (GIS)). Some volumetric displays use voxels to describe ...
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Computer Graphics
Computer graphics deals with generating images with the aid of computers. Today, computer graphics is a core technology in digital photography, film, video games, cell phone and computer displays, and many specialized applications. A great deal of specialized hardware and software has been developed, with the displays of most devices being driven by computer graphics hardware. It is a vast and recently developed area of computer science. The phrase was coined in 1960 by computer graphics researchers Verne Hudson and William Fetter of Boeing. It is often abbreviated as CG, or typically in the context of film as computer generated imagery (CGI). The non-artistic aspects of computer graphics are the subject of computer science research. Some topics in computer graphics include user interface design, sprite graphics, rendering, ray tracing, geometry processing, computer animation, vector graphics, 3D modeling, shaders, GPU design, implicit surfaces, visualization, scientific c ...
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