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setup(), and the setup() function must appear in the code tab {\displaystyle \mathrm {V/{\sqrt {Hz}}} } list of current W3C publications and the latest revision of this In this case, the filter bandwidth corresponds to the passband width, which in this example is the 1dB-bandwidth. SIMD has three different subcategories in Flynn's 1972 Taxonomy, one of which is SIMT. of its publication. Each Subslice contains 8 EUs (two of which are disabled in GT1) and a sampler (4 tex/clk), and has 64KB shared memory. [16] This OpenMP interface has replaced a wide set of nonstandard extensions, including Cilk's #pragma simd.,[17] GCC's #pragma GCC ivdep, and many more.[18]. same number of pixels. This can be used to exploit parallelism in certain algorithms even on hardware that does not support SIMD directly. document and may be used as reference material or cited from another features which have already been widely implemented. Additionally, many of the systems that would benefit from SIMD were supplied by Apple itself, for example iTunes and QuickTime. If we write the following code: This code draws a box, then translates our model matrix 100 units to the right, 100 units down, and 100 units away from the viewer, and finally draws another box at the new translated origin. 2 six parameters allows the line to be placed anywhere within XYZ space. When we give dimensions of an image, the Ratio bandwidth may be notated as To change the brightness, the R, G and B values are read from memory, a value is added to (or subtracted from) them, and the resulting values are written back out to memory. {\displaystyle B=2W} It also has a safe fallback mechanism on unsupported CPUs to simple loops. therefore the fill() function will not affect the color of a machines. ). {\displaystyle W} This effect is often perceived in the real world as being glassy, water-like, or perhaps in the above example, a billiards ball. 3dB attenuation is also where power is half its maximum. An FM radio receiver's tuner spans a limited range of frequencies. There are two main camps of solutions: FMV, manually coded in assembly language, is quite commonly used in a number of performance-critical libraries such as glibc and libjpeg-turbo. In WEBGL mode, there are currently 3 camera functions. Many web browsers, such as Internet Explorer 9, include a download manager. [6][7][8] The trend of general-purpose computing on GPUs (GPGPU) may lead to wider use of SIMD in the future. These chips added support for texture combiners allowing support for OpenGL 1.3. The geometric mean version is inconsequentially larger. use of the library. the maximum passband bandwidth of the carrier-modulated RF signal and the minimum passband bandwidth of the physical passband channel), and B C In the context of, for example, the sampling theorem and Nyquist sampling rate, bandwidth typically refers to baseband bandwidth. The performance may be better, especially if you are able to render your text only once in, The fidelity of the text may not be as high as with the, You can only use use opentype/truetype fonts loaded in your. Core i5-11600 On Windows 7, it is up to about 1.7GB through, Each EU contains 2 x 128-bit FPUs. B : PDF. By separating the presentation style of documents from W CSS2.1 corrects a few errors in CSS2 (the most important In the context of Nyquist symbol rate or Shannon-Hartley channel capacity for communication systems it refers to passband bandwidth. FX2D (JavaFX 2D): A 2D renderer that uses JavaFX, which may be In photonics, the term bandwidth carries a variety of meanings: A related concept is the spectral linewidth of the radiation emitted by excited atoms. In a program that has the setup() function, the Best Shop is a fast, clean, widgetized and modern responsive free WooCommerce WordPress theme. For information about the ADA, including the revised 2010 ADA regulations, please visit the Departments website www.ADA.gov; or, for answers to specific questions, call the toll-free ADA Information Line at 800-514-0301 (Voice) or 8336101264 (TTY). In the stopband(s), the required attenuation in decibels is above a certain level, for example >100dB. This works exactly the same in 2d mode as it does in WEBGL, except in WEBGL, vertices receive x, y, and z as location coordinates. to stay intact, and the physical passband channel would require a passband filter of at least For Windows 8, it is up to 3840MB. Users generally "complete" a form by modifying its controls (entering text, selecting menu items, etc. color a line, use the stroke() function. SIMD instructions can be found, to one degree or another, on most CPUs, including IBM's AltiVec and SPE for PowerPC, HP's PA-RISC Multimedia Acceleration eXtensions (MAX), Intel's MMX and iwMMXt, SSE, SSE2, SSE3 SSSE3 and SSE4.x, AMD's 3DNow!, ARC's ARC Video subsystem, SPARC's VIS and VIS2, Sun's MAJC, ARM's Neon technology, MIPS' MDMX (MaDMaX) and MIPS-3D. To stop Getopt::Long from processing further arguments, insert a double dash --on the command line: --size 24 -- --all In this example, --all will not be treated as an option, but passed to the program unharmed, in @ARGV . [10] The LLVM Clang compiler also implements the feature, with an analogous interface defined in the IR. The 3dB bandwidth of an electronic filter or communication channel is the part of the system's frequency response that lies within 3dB of the response at its peak, which, in the passband filter case, is typically at or near its center frequency, and in the low-pass filter is at or near its cutoff frequency. The latest Lifestyle | Daily Life news, tips, opinion and advice from The Sydney Morning Herald covering life and relationships, beauty, fashion, health & wellbeing To reposition 3D primitives, simply call translate(x,y,z); as per the Translation section above. is the total bandwidth (i.e. parts of CSS2 are unchanged in CSS2.1, some parts have been Though it has generally proven difficult to find sustainable commercial applications for SIMD-only processors, one that has had some measure of success is the GAPP, which was developed by Lockheed Martin and taken to the commercial sector by their spin-off Teranex. The detector has multiple filter strips, each with a different bandpass, bonded directly to its photoactive surface. The Working Group has created a test The size() function can only be used once inside a sketch, and it Another type of model matrix transformation in 3D is rotate(). See also. or There are advantages & disadvantages to both which are discussed below: You can draw your text to an offscreen renderer first, and then use it as a texture. In some contexts, the signal bandwidth in hertz refers to the frequency range in which the signal's spectral density (in W/Hz or V2/Hz) is nonzero or above a small threshold value. example, if you will be drawing 3D shapes, use P3D. All higher ratios up to infinity are compressed into the range 100200%. When new SIMD architectures need to be distinguished from older ones, the newer architectures are then considered "short-vector" architectures, as earlier SIMD and vector supercomputers had vector lengths from 64 to 64,000. This document is also available in these non-normative formats: Core i7-11370H [3] Hewlett-Packard introduced MAX instructions into PA-RISC 1.1 desktops in 1994 to accelerate MPEG decoding. by AMD and SSE by Intel confused matters somewhat, but today the system seems to have settled down (after AMD adopted SSE) and newer compilers should result in more SIMD-enabled software. the text CSS21 in the subject, preferably like This can occur from two consecutive EOLs, as often occur in text files, and this is sometimes used in text processing to separate paragraphs, e.g. In this context, bandwidth is also known as channel spacing. Advanced vector extensions AVX, AVX2 and AVX-512 are developed by Intel. {\displaystyle B} A is the smallest that is supported across Windows, macOS, and Linux. It is developed by a team of volunteers around the world. It is typically measured in hertz, and depending on context, may specifically refer to passband bandwidth or baseband bandwidth. With textureMode(NORMAL) we tell p5 to normalize these values between 0 and 1. It supports media-specific style sheets so that authors may tailor the B http://www.w3.org/TR/2011/REC-CSS2-20110607, http://www.w3.org/TR/2011/PR-CSS2-20110412, http://www.w3.org/TR/2008/REC-CSS2-20080411/. Core i5-11600T The Xetal has 320 16-bit processor elements especially designed for vision tasks. SIMD describes computers with multiple processing elements that perform the same operation on multiple Instances of these types are immutable and in optimized code are mapped directly to SIMD registers. parameter in combination with size() as shown in the aboveexample. Translate, Rotate. patent disclosures made in connection with the deliverables of the Intel and AMD now both provide optimized math libraries that use SIMD instructions, and open source alternatives like libSIMD, SIMDx86 and SLEEF have started to appear (see also libm).[9]. Core i3-1115G4 The theme has built in WooCommerce product widgets like product category lists/grids, product sliders, post sliders, category showcase etc. site maintenance. This article contains information about Intel's GPUs (see Intel Graphics Technology) and motherboard graphics chipsets in table form. Microsoft added SIMD to .NET in RyuJIT. The Rust programming language also supports FMV. Small-scale (64 or 128 bits) SIMD became popular on general-purpose CPUs in the early 1990s and continued through 1997 and later with Motion Video Instructions (MVI) for Alpha. The .mw-parser-output .vanchor>:target~.vanchor-text{background-color:#b1d2ff}Rayleigh bandwidth of a simple radar pulse is defined as the inverse of its duration. simply be the number of pixels on your current screen, meaning that a the default renderer, other renderers are: 3D graphics applications tend to lend themselves well to SIMD processing as they rely heavily on operations with 4-dimensional vectors. Glibc supports LMV and this functionality is adopted by the Intel-backed Clear Linux project. The setup is similar to GCC and Clang in that the code defines what instruction sets to compile for, but cloning is manually done via inlining. ) and ratio bandwidth ( being a new definition of the height/width of absolutely positioned One was that many of the early SIMD instruction sets tended to slow overall performance of the system due to the re-use of existing floating point registers. For instance, in the field of antennas the difficulty of constructing an antenna to meet a specified absolute bandwidth is easier at a higher frequency than at a lower frequency. To color a line, use the stroke() function. The first widely deployed desktop SIMD was with Intel's MMX extensions to the x86 architecture in 1996. and some properties related to user interface. SIMT is true simultaneous parallel hardware-level execution. The output buffer is a pixel array with dimensions specified by the width and height parameters of the PNG IHDR chunk. Empty set; Null-terminated string; Concatenation theory; References Another advantage is that the instruction operates on all loaded data in a single operation. In the next section well discuss the virtual camera in greater detail but before we do that, lets talk about rotation. Microsoft's Direct3D 9.0 now chooses at runtime processor-specific implementations of its own math operations, including the use of SIMD-capable instructions. Back-end-of-line (BEOL) processing. On Windows 7, it is up to about 1.7GB through DVMT. AMD supports AVX and AVX2 in their current products. Core i9-11900K The default camera view in WEBGL mode is perspective with a 60 degree field of view. But most of all CSS2.1 variable. A government agency (such as the Federal Communications Commission in the United States) may apportion the regionally available bandwidth to broadcast license holders so that their signals do not mutually interfere. This should draw a box in the center of your canvas. https://processing.org/tutorials/p3d/. However, this may change in the future. With a SIMD processor there are two improvements to this process. To say that a system has a certain bandwidth means that the system can process signals with that range of frequencies, or that the system reduces the bandwidth of a white noise input to that bandwidth. At the time of this writing, p5.js supports video, image, and offscreen 2d renderers as textures in WEBGL mode. W Detailed comparative examples are given in the Vector processing page. authors and users to attach style (e.g., fonts and spacing) to A line cannot be filled, therefore the fill() function will not affect the color of a line. H z public mailing list www-style@w3.org (see instructions) is preferred This parallelism is separate from the parallelism provided by a superscalar processor; the eight values are processed in parallel even on a non-superscalar processor, and a superscalar processor may be able to perform multiple SIMD operations in parallel. For example, each of 65,536 single-bit processors in a Thinking Machines CM-2 would execute the same instruction at the same time, allowing, for instance, to logically combine 65,536 pairs of bits at a time, using a hypercube-connected network or processor-dedicated RAM to find its operands. In mathematics, a tuple of n numbers can be understood as the Cartesian coordinates of a location in a n Float32x4, 4 single precision floating point values. In a program that has the setup() function, the size() function must be the first line of code inside setup(), and the setup() function must appear in the code tab with the same name as your sketch folder. This produces excellent results when you need vector shapes for Thus the FP16 (or 16-bit integer) FLOPS is twice the FP32 (or 32-bit integer) FLOPS. In WEBGL mode we introduce a third dimension: Z. A PNG decoder, without processing an ancillary chunk, can still produce a meaningful image, though not necessarily the best possible image. OpenGL-compatible graphics hardware. However there are a few differences: Here is an example of loading an opentype font and using it to draw text with the webgl text() method: The last big inclusion in WEBGL mode is lights. trademark and At the time of this writing there are four types of materials in p5.js: normalMaterial() does not take any parameters, it automatically maps a geometrys normal vectors to RGB colors. Modern graphics processing units (GPUs) are often wide SIMD implementations, capable of branches, loads, and stores on 128 or 256 bits at a time. For example, a one-microsecond pulse has a Rayleigh bandwidth of one megahertz. A percent bandwidth of 100% corresponds to a ratio bandwidth of 3:1. translations. [4] Sun Microsystems introduced SIMD integer instructions in its "VIS" instruction set extensions in 1995, in its UltraSPARC I microprocessor. SIMD instructions are widely used to process 3D graphics, although modern graphics cards with embedded SIMD have largely taken over this task from the CPU. [14] Java also has a new proposed API for SIMD instructions [15] available in OpenJDK 17 in an incubator module. ), before submitting the form to an agent for processing (e.g., to a Web This work is licensed under a Creative Commons Attribution-NonCommercial-ShareAlike 4.0 International License. contains Essential SVG: The SVG renderer draws 2D graphics directly to an SVG file. Since the throughput of FP64 instructions are 2 cycles, the FP64 FLOPS is a quarter of the FP32 FLOPS. ). The (archived) It also supports Drawing this shape in 3D with the z parameter requires the P3D They are generally suited to high-throughput type computations that exhibit data-parallelism to exploit the wide vector width SIMD architecture of the GPU. The CSS Working Group is also developing CSS level2 revision2 (CSS2.2). [1], The essential bandwidth is defined as the portion of a signal spectrum in the frequency domain which contains most of the energy of the signal.[2]. Consumer software is typically expected to work on a range of CPUs covering multiple generations, which could limit the programmer's ability to use new SIMD instructions to improve the computational performance of a program. developers, and by other W3C groups and interested parties, and is Such machines exploit data level parallelism, but not concurrency: there are simultaneous (parallel) computations, but each unit performs the exact same instruction at any given moment (just with different data). Rsidence officielle des rois de France, le chteau de Versailles et ses jardins comptent parmi les plus illustres monuments du patrimoine mondial et constituent la plus complte ralisation de lart franais du XVIIe sicle. Bandwidth is a key concept in many telecommunications applications. This page was last edited on 4 December 2022, at 17:13. For example, Intel's former 10 nm process actually has features (the tips of FinFET fins) with a width of 7 nm, Intel's former 10 nm process is similar in transistor density to TSMC's 7 nm processes, while GlobalFoundries' 12 and 14 nm processes have similar feature sizes. Point your left index finger to the right, and your middle finger downward, and your thumb will automatically point toward you. ), deinterlacing, image noise reduction, adaptive video compression, and image enhancement. Generally, a download manager enables downloading of large files or multiples files in one session. However, due to it being the same as fill(), it was removed and the function fill() can be used with WEBGL for the "basic material" functionality.). DPABI is a GNU/GPL * toolbox for Data Processing & Analysis of Brain Imaging, evolved from DPARSF (Data Processing Assistant for Resting-State fMRI) [To post a comment, please reply to rfmri.org@gmail.com ABOVE this line] On Mon, Nov 30, 2015 at 04:11:27PM +0000, The R-fMRI Network wrote: Commented by (echoqiu77) Intel Xe is a GPGPU and dGPU product line first released in 2020, in the mobile Tiger Lake line and Rocket Lake, Alder Lake and Raptor Lake line. In some contexts, the signal bandwidth in hertz refers to the frequency range in which the signal's spectral density (in W/Hz or V 2 /Hz) is nonzero or above a small threshold value. content positioning, table layout, features for internationalization altered, and some parts removed. We As of Processing 3.0, to use variables as the parameters to size() fabrication. For the computer architecture, see. "Cascading Style Sheets (CSS) The Official Definition", 3 Conformance: Requirements and Recommendations, 6 Assigning property values, Cascading, and Inheritance, Appendix D. Default style sheet for HTML 4, Appendix E. Elaborate description of Stacking Contexts, 1.4.1 Document language elements and attributes, 4.1.7 Rule sets, declaration blocks, and selectors, 4.4.1 Referring to characters not represented in a character encoding, 5.8.1 Matching attributes and attribute values, 6.1 Specified, computed, and actual values, 6.4.3 Calculating a selector's specificity, 6.4.4 Precedence of non-CSS presentational hints, 7.2 Specifying media-dependent style sheets, 8.2 Example of margins, padding, and borders, 8.6 The box model for inline elements in bidirectional context, 9.1 Introduction to the visual formatting model, 9.2.1 Block-level elements and block boxes, 9.2.2 Inline-level elements and inline boxes, 9.5.2 Controlling flow next to floats: the, 9.7 Relationships between 'display', 'position', and 'float', 9.8 Comparison of normal flow, floats, and absolute positioning, 10.3.3 Block-level, non-replaced elements in normal flow, 10.3.4 Block-level, replaced elements in normal flow, 10.3.7 Absolutely positioned, non-replaced elements, 10.3.8 Absolutely positioned, replaced elements, 10.3.9 'Inline-block', non-replaced elements in normal flow, 10.3.10 'Inline-block', replaced elements in normal flow, 10.6.2 Inline replaced elements, block-level replaced elements in normal flow, 'inline-block' replaced elements in normal flow and floating replaced elements, 10.6.3 Block-level non-replaced elements in normal flow when 'overflow' computes to 'visible', 10.6.4 Absolutely positioned, non-replaced elements, 10.6.5 Absolutely positioned, replaced elements, 10.6.7 'Auto' heights for block formatting context roots, 12.4.3 Counters in elements with 'display: none', 13.2.2 Page selectors: selecting left, right, and first pages, 16.3.1 Underlining, overlining, striking, and blinking: the, 16.6.1 The 'white-space' processing model, 16.6.2 Example of bidirectionality with white space collapsing, 16.6.3 Control and combining characters' details, 17.4 Tables in the visual formatting model, 17.6.1.1 Borders and Backgrounds around empty cells: the, C.1.2 Section 9.2.4 The 'display' property, C.1.3 Section 12.2 The 'content' property, C.1.4 Section 16.6 White space: the 'white-space' property, C.1.5 Section 18.1 Cursors: the 'cursor' property, C.2.2 Section 1.2 Reading the specification, C.2.3 Section 1.3 How the specification is organized, C.2.13 Section 4.2 Rules for handling parsing errors, C.2.20 Section 4.4 CSS style sheet representation, C.2.21 Section 5.8.1 Matching attributes and attribute values, C.2.24 Section 5.10 Pseudo-elements and pseudo-classes, C.2.25 Section 5.11.2 The link pseudo-classes: :link and :visited, C.2.26 Section 5.11.4 The language pseudo-class: :lang, C.2.27 Section 5.12.1 The :first-line pseudo-element, C.2.28 Section 5.12.2 The :first-letter pseudo-element, C.2.29 Section 6.1 Specified, computed, and actual values, C.2.31 Section 6.4.3 Calculating a selector's specificity, C.2.32 Section 6.4.4 Precedence of non-CSS presentational hints, C.2.33 Section 7.3 Recognized Media Types, C.2.40 Section 8.6 The box model for inline elements in bidirectional context, C.2.42 Section 9.2.1.1 Anonymous block boxes, C.2.43 Section 9.2.2.1 Anonymous inline boxes, C.2.45 Section 9.2.4 The 'display' property, C.2.46 Section 9.3.1 Choosing a positioning scheme, C.2.48 Section 9.4.1 Block formatting contexts, C.2.49 Section 9.4.2 Inline formatting context, C.2.50 Section 9.4.3 Relative positioning, C.2.52 Section 9.5.1 Positioning the float, C.2.53 Section 9.5.2 Controlling flow next to floats, C.2.54 Section 9.7 Relationships between 'display', 'position', and 'float', C.2.57 Chapter 10 Visual formatting model details, C.2.58 Section 10.1 Definition of "containing block", C.2.60 Section 10.3 Calculating widths and margins, C.2.61 Section 10.3.2 Inline, replaced elements, C.2.62 Section 10.3.3 Block-level, non-replaced elements in normal flow, C.2.63 Section 10.3.4 Block-level, replaced elements in normal flow, C.2.64 Section 10.3.5 Floating, non-replaced elements, C.2.65 Section 10.3.6 Floating, replaced elements, C.2.66 Section 10.3.7 Absolutely positioned, non-replaced elements, C.2.67 Section 10.3.8 Absolutely positioned, replaced elements, C.2.68 Section 10.4 Minimum and maximum widths, C.2.70 Section 10.6 Calculating heights and margins, C.2.71 Section 10.6.1 Inline, non-replaced elements, C.2.72 Section 10.6.2 Inline replaced elements, block-level replaced elements in normal flow, 'inline-block' replaced elements in normal flow and floating replaced elements, C.2.73 Section 10.6.3 Block-level non-replaced elements in normal flow when 'overflow' computes to 'visible', C.2.74 Section 10.6.4 Absolutely positioned, non-replaced elements, C.2.75 Section 10.6.5 Absolutely positioned, replaced elements, C.2.76 Section 10.7 Minimum and maximum heights, C.2.77 Section 10.8 Line height calculations, C.2.78 Section 10.8.1 Leading and half-leading, C.2.79 Section 11.1 Overflow and clipping, C.2.81 Section 11.1.2 Clipping: the 'clip' property, C.2.83 Chapter 12 Generated content, automatic numbering, and lists, C.2.84 Section 12.1 The :before and :after pseudo-elements, C.2.85 Section 12.2 The 'content' property, C.2.86 Section 12.3.2 Inserting quotes with the 'content' property, C.2.87 Section 12.4 Automatic counters and numbering, C.2.88 Section 12.4.1 Nested counters and scope, C.2.93 Section 13.3.1 Page break properties, C.2.94 Section 13.3.3 Allowed page breaks, C.2.95 Section 14.2.1 Background properties, C.2.98 Section 15.2 Font matching algorithm, C.2.105 Section 16.3.1 Underlining, over lining, striking, and blinking, C.2.106 Section 16.4 Letter and word spacing, C.2.111 Section 17.2.1 Anonymous table objects, C.2.112 Section 17.4 Tables in the visual formatting model, C.2.113 Section 17.4.1 Caption position and alignment, C.2.114 Section 17.5 Visual layout of table contents, C.2.115 Section 17.5.1 Table layers and transparency, C.2.116 Section 17.5.2.1 Fixed table layout, C.2.117 Section 17.5.2.2 Automatic table layout, C.2.118 Section 17.5.3 Table height algorithms, C.2.119 Section 17.5.4 Horizontal alignment in a column, C.2.121 Section 17.6.1 The separated borders model, C.2.122 Section 17.6.1.1 Borders and Backgrounds around empty cells, C.2.123 Section 17.6.2 The collapsing border model, C.2.124 Section 17.6.2.1 Border conflict resolution, C.2.125 Section 18.1 Cursors: the 'cursor' property, C.2.127 Chapter 12 Generated content, automatic numbering, and lists, C.2.129 Appendix A Section 5 Pause properties, C.2.130 Appendix A Section 6 Cue properties, C.2.131 Appendix A Section 7 Mixing properties, C.3.12 Section 5.10 Pseudo-elements and pseudo-classes, C.3.15 Section 8.2 Example of margins, padding, and borders, C.3.16 Section 8.5.4 Border shorthand properties, C.3.17 Section 9.2.1 Block-level elements and block boxes, C.3.18 Section 9.3.1 Choosing a positioning scheme, C.3.20 Section 9.4.1 Block formatting contexts, C.3.21 Section 9.4.2 Inline formatting context, C.3.22 Section 9.4.3 Relative positioning, C.3.24 Section 9.5.1 Positioning the float, C.3.25 Section 9.5.2 Controlling flow next to floats, C.3.27 Section 9.7 Relationships between 'display', 'position', and 'float', C.3.29 Section 10.1 Definition of "containing block", C.3.30 Section 10.3.3 Block-level, non-replaced elements in normal flow, C.3.31 Section 10.4 Minimum and maximum widths, C.3.32 Section 10.6.3 Block-level non-replaced elements in normal flow when 'overflow' computes to 'visible', C.3.33 Section 10.7 Minimum and maximum heights, C.3.35 Section 11.1.2 Clipping: the 'clip' property, C.3.40 Section 14.2.1 Background properties, C.3.41 Section 15.2 Font matching algorithm, C.3.46 Section 17.2.1 Anonymous table objects, C.3.47 Section 17.4 Tables in the visual formatting model, C.3.48 Section 17.5 Visual layout of table contents, C.3.49 Section 17.5.1 Table layers and transparency, C.3.50 Section 17.6.1 The separated borders model, C.4.1 Section 2.1 A brief CSS2.1 tutorial for HTML, C.4.2 Section 2.2 A brief CSS2.1 tutorial for XML, C.4.3 Section2.3 The CSS2.1 processing model, C.4.8 Section 4.1.7 Rule sets, declaration blocks, and selectors, C.4.9 Section 4.2 Rules for handling parsing errors, C.4.10 Section 4.3.1 Integers and real numbers, C.4.14 Section 5.7 Adjacent sibling selectors, C.4.15 Section 5.8.1 Matching attributes and attribute values, C.4.16 Section 5.8.2 Default attribute values in DTDs, C.4.18 Section 5.11.3 The dynamic pseudo-classes: :hover, :active, and :focus, C.4.19 Section 5.11.4 The language pseudo-class: :lang, C.4.20 Section 5.12.2 The :first-letter pseudo-element, C.4.26 Section 6.4.3 Calculating a selector's specificity, C.4.28 Section 7.3 Recognized media types, C.4.35 Section 9.2.4 The 'display' property, C.4.36 Section 9.3.1 Choosing a positioning scheme, C.4.38 Section 9.4.2 Inline formatting context, C.4.39 Section 9.4.3 Relative positioning, C.4.41 Section 9.5.1 Positioning the float, C.4.42 Section 9.5.2 Controlling flow next to floats, C.4.43 Section 9.8 Comparison of normal flow, floats, and absolute positioning, C.4.44 Section 10.1 Definition of "containing block", C.4.46 Section 10.3.3 Block-level, non-replaced elements in normal flow, C.4.47 Section 10.3.8 Absolutely positioning, replaced elements, C.4.48 Section 10.4 Minimum and maximum widths, C.4.49 Section 10.6 Calculating heights and margins, C.4.50 Section 10.7 Minimum and maximum heights, C.4.51 Section 10.8 Line height calculations, C.4.52 Section 10.8.1 Leading and half-leading, C.4.53 Section 11.1 Overflow and clipping, C.4.57 Section 12.1 The :before and :after pseudo-elements, C.4.58 Section 12.2 The 'content' property, C.4.59 Section 12.3.2 Inserting quotes with the 'content' property, C.4.60 Section 12.4 Automatic counters and numbering, C.4.61 Section 12.4.3 Counters in elements with 'display: none', C.4.64 Section 15.2 Font matching algorithm, C.4.66 Section 15.3.1 Generic font families, C.4.73 Section 16.3.1 Underlining, over lining, striking, and blinking, C.4.76 Section 17.1 Introduction to tables, C.4.78 Section 17.2.1 Anonymous table objects, C.4.79 Section 17.4 Tables in the visual formatting model, C.4.80 Section 17.5 Visual layout of table contents, C.4.81 Section 17.5.1 Table layers and transparency, C.4.82 Section 17.5.2 Table width algorithms, C.4.83 Section 17.5.2.1 Fixed table layout, C.4.84 Section 17.5.2.2 Automatic table layout, C.4.85 Section 17.5.4 Horizontal alignment in a column, C.4.86 Section 17.5.5 Dynamic row and column effects, C.4.87 Section 17.6.1 The separated borders model, C.4.88 Section 17.6.2 The collapsing borders model, C.4.91 Section 18.4.1 Outlines and the focus, C.4.92 Appendix D Default style sheet for HTML 4, C.5 Errata since the Candidate Recommendation of July 2007, C.5.2 Section2.3 The CSS2.1 processing model, C.5.5 Section4.1.2.2 Informative Historical Notes, C.5.11 Section4.1.7 Rule sets, declaration blocks, and selectors, C.5.12 Section4.2 Rules for handling parsing errors, C.5.13 Section4.2 Rules for handling parsing errors, C.5.16 Section5.8.1 Matching attributes and attribute values, C.5.17 Section 5.8.2 Default attribute values in DTDs, C.5.18 Section5.11.4 The language pseudo-class: :lang, C.5.19 Section5.12.3 The :before and :after pseudo-elements, C.5.28 Section9.2.2 Inline-level elements and inline boxes, C.5.29 Section9.2.4 The 'display' property, C.5.30 Section9.3.2 Box offsets: 'top', 'right', 'bottom', 'left', C.5.33 Section9.5.2 Controlling flow next to floats: the 'clear' property, C.5.35 Section9.9.1 Specifying the stack level: the 'z-index' property, C.5.36 Section10.1 Definition of "containing block", C.5.37 Section10.3 Calculating widths and margins, C.5.38 Section10.3.1 Inline, non-replaced elements, C.5.39 Section 10.3.2 Inline, replaced elements, C.5.40 Section 10.3.2 Inline, replaced elements, C.5.41 Section10.3.3 Block-level, non-replaced elements in normal flow, C.5.42 Section10.3.7 Absolutely positioned, non-replaced elements, C.5.43 Section10.3.7 Absolutely positioned, non-replaced elements, C.5.44 Section10.3.8 Absolutely positioned, replaced elements, C.5.45 Section10.3.8 Absolutely positioned, replaced elements, C.5.46 Section10.3.8 Absolutely positioned, replaced elements, C.5.47 Section10.5 Content height: the 'height' property, C.5.48 Section 10.6.2 Inline replaced elements [], C.5.49 Section10.6.4 Absolutely positioned, non-replaced elements, C.5.50 Section10.6.5 Absolutely positioned, replaced elements, C.5.51 Section 10.8.1 Leading and half-leading, C.5.52 Section11.1.1 Overflow: the 'overflow' property, C.5.53 Section11.1.2 Clipping: the 'clip' property, C.5.54 Section12.2 The 'content' property, C.5.57 Section12.5.1 Lists: the 'list-style-type', 'list-style-image', 'list-style-position', and 'list-style' properties, C.5.58 Section12.5.1 Lists: the 'list-style-type', 'list-style-image', 'list-style-position', and 'list-style' properties, C.5.59 Section12.5.1 Lists: the 'list-style-type', 'list-style-image', 'list-style-position', and 'list-style' properties, C.5.60 Section13.2 Page boxes: the @page rule, C.5.61 Section13.2.1.1 Rendering page boxes that do not fit a target sheet, C.5.62 Section13.2.3 Content outside the page box, C.5.63 Section13.3.1 Page break properties: 'page-break-before', 'page-break-after', 'page-break-inside', C.5.64 Section13.3.1 Page break properties: 'page-break-before', 'page-break-after', 'page-break-inside', C.5.65 Section13.3.2 Breaks inside elements: 'orphans', 'widows', C.5.66 Section13.3.2 Breaks inside elements: 'orphans', 'widows', C.5.67 Section13.3.3 Allowed page breaks, C.5.68 Section13.3.3 Allowed page breaks, C.5.69 Section13.3.3 Allowed page breaks, C.5.70 Section13.3.5 "Best" page breaks, C.5.73 Section 14.2.1 Background properties: 'background-color', 'background-image', 'background-repeat', 'background-attachment', 'background-position', and 'background', C.5.74 Section15.6 Font boldness: the 'font-weight' property, C.5.75 Section16.6 Whitespace: the 'white-space' property, C.5.76 Section16.6.1 The 'white-space' processing model, C.5.77 Section 17.2.1 Anonymous table objects, C.5.78 Section 17.2.1 Anonymous table objects, C.5.79 Section17.4 Tables in the visual formatting model, C.5.80 Section17.5.4 Horizontal alignment in a column, C.5.81 Section18.1 Cursors: the 'cursor' property, C.5.82 Section B.2 Informative references, C.5.83 AppendixD. Default style sheet for HTML 4, C.5.84 AppendixD. Default style sheet for HTML 4, C.6 Errata since the Candidate Recommendation of April 2009, C.6.1 Section4.2 Rules for handling parsing errors, C.6.2 Section13.3.3 Allowed page breaks, C.6.3 Section15.3 Font family: the 'font-family' property, C.6.5 Section15.7 Font size: the 'font-size' property, C.6.6 Section17.5.2.1 Fixed table layout, C.6.7 Section17.5.3 Table height layout, C.7 Errata since the Candidate Recommendation of September 2009, C.7.7 Section4.1.2.2 Informative Historical Notes, C.7.10 Section4.1.8 Declarations and properties, C.7.11 Section4.2 Rules for handling parsing errors, C.7.16 Section5.8.2 Default attribute values in DTDs, C.7.17 Section5.11.4 The language pseudo-class: :lang, C.7.19 Section5.12.1 The :first-line pseudo-element, C.7.20 Section5.12.2 The :first-letter pseudo-element, C.7.22 Section6.4.4 Precedence of non-CSS presentational hints, C.7.23 Section7.3 Recognized media types, C.7.26 Section9.2.1 Block-level elements and block boxes, C.7.27 Section9.2.1.1 Anonymous block boxes, C.7.28 Section9.2.1.1 Anonymous block boxes, C.7.29 Section9.2.1.1 Anonymous block boxes, C.7.30 Section9.2.1.1 Anonymous block boxes, C.7.31 Section9.2.2 Inline-level elements and inline boxes, C.7.33 Section9.2.4 The 'display' property, C.7.34 Section9.2.4 The 'display' property, C.7.37 Section9.3.2 Box offsets: 'top', 'right', 'bottom', 'left', C.7.40 Section9.5.2 Controlling flow next to floats: the 'clear' property, C.7.41 Section9.5.2 Controlling flow next to floats: the 'clear' property, C.7.42 Section9.5.2 Controlling flow next to floats: the 'clear' property, C.7.43 Section9.5.2 Controlling flow next to floats: the 'clear' property, C.7.44 Section14.2.1 Background properties, C.7.45 Section9.9.1 Specifying the stack level: the 'z-index' property, C.7.46 Section9.10 Text direction: the 'direction' and 'unicode-bidi' properties, C.7.47 Section9.10 Text direction: the 'direction' and 'unicode-bidi' properties, C.7.48 Section9.10 Text direction: the 'direction' and 'unicode-bidi' properties, C.7.49 Section10.1 Definition of "containing block", C.7.50 Section10.2 Content width: the 'width' property, C.7.51 Section10.2 Content width: the 'width' property, C.7.52 Section10.2 Content width: the 'width' property, C.7.53 Section10.5 Content height: the 'height' property, C.7.54 Section10.5 Content height: the 'height' property, C.7.55 Section10.6.7 'Auto' heights for block formatting context roots, C.7.56 Section10.7 Minimum and maximum heights: 'min-height' and 'max-height', C.7.57 Section10.8 Line height calculations: the 'line-height' and 'vertical-align' properties, C.7.58 Section10.8 Line height calculations: the 'line-height' and 'vertical-align' properties, C.7.59 Section10.8.1 Leading and half-leading, C.7.60 Section10.8.1 Leading and half-leading, C.7.61 Section10.8.1 Leading and half-leading, C.7.62 Section11.1 Overflow and clipping, C.7.63 Section11.1.1 Overflow: the 'overflow' property, C.7.64 Section11.1.1 Overflow: the 'overflow' property, C.7.65 Section11.1.1 Overflow: the 'overflow' property, C.7.66 Section11.1.2 Clipping: the 'clip' property, C.7.68 Section12.5.1 Lists: the 'list-style-type', 'list-style-image', 'list-style-position', and 'list-style' properties, C.7.69 Section12.5.1 Lists: the 'list-style-type', 'list-style-image', 'list-style-position', and 'list-style' properties, C.7.70 Section12.5.1 Lists: the 'list-style-type', 'list-style-image', 'list-style-position', and 'list-style' properties, C.7.71 Section12.5.1 Lists: the 'list-style-type', 'list-style-image', 'list-style-position', and 'list-style' properties, C.7.72 Section12.5.1 Lists: the 'list-style-type', 'list-style-image', 'list-style-position', and 'list-style' properties, C.7.73 Section13.2 Page boxes: the @page rule, C.7.74 Section13.2.2 Page selectors: selecting left, right, and first pages, C.7.75 Section13.3.2 Breaks inside elements: 'orphans', 'widows', C.7.76 Section13.3.3 Allowed page breaks, C.7.77 Section15.3 Font family: the 'font-family' property, C.7.78 Section15.3.1 Generic font families, C.7.79 Section15.6 Font boldness: the 'font-weight' property, C.7.80 Section15.6 Font boldness: the 'font-weight' property, C.7.81 Section15.7 Font size: the 'font-size' property, C.7.82 Section16.1 Indentation: the 'text-indent' property, C.7.83 Section16.1 Indentation: the 'text-indent' property, C.7.84 Section16.2 Alignment: the 'text-align' property, C.7.85 Section16.2 Alignment: the 'text-align' property, C.7.86 Section16.3.1 Underlining, overlining, striking, and blinking: the 'text-decoration' property, C.7.87 Section16.3.1 Underlining, overlining, striking, and blinking: the 'text-decoration' property, C.7.88 Section16.4 Letter and word spacing: the 'letter-spacing' and 'word-spacing' properties, C.7.89 Section16.6 White space: the 'white-space' property, C.7.90 Section16.6.1 The 'white-space' processing model, C.7.91 Section16.6.1 The 'white-space' processing model, C.7.92 Section16.6.1 The 'white-space' processing model, C.7.94 Section17.2.1 Anonymous table objects, C.7.95 Section17.2.1 Anonymous table objects, C.7.96 Section17.4 Tables in the visual formatting model, C.7.97 Section17.4 Tables in the visual formatting model, C.7.98 Section17.5.2.2 Automatic table layout, C.7.99 Section17.5.3 Table height algorithms, C.7.100 Section17.5.4 Horizontal alignment in a column, C.7.101 SectionB.2 Informative references, C.7.102 SectionD. Default style sheet for HTML 4, C.8 Changes since the working draft of 7 December 2010, C.8.3 10.3 Calculating widths and margins, C.8.5 11.1.2 Clipping: the 'clip' property, C.8.8 10.1 Definition of "containing block", C.8.9 13.2.2 Page selectors: selecting left, right, and first pages, C.8.11 10.8 Line height calculations: the 'line-height' and 'vertical-align' properties, C.8.13 10.6.1 Inline, non-replaced elements, C.8.14 9.5.1 Positioning the float: the 'float' property, C.8.16 5.12.1 The :first-line pseudo-element, C.8.17 16.6 White space: the 'white-space' property, C.8.18 12.5.1 Lists: the 'list-style-type', 'list-style-image', 'list-style-position', and 'list-style' properties, C.8.19 9.7 Relationships between 'display', 'position', and 'float', C.8.22 12.5.1 Lists: the 'list-style-type', 'list-style-image', 'list-style-position', and 'list-style' properties, C.8.23 9.5.1 Positioning the float: the 'float' property, C.8.25 9.10 Text direction: the 'direction' and 'unicode-bidi' properties, C.8.26 16.3.1 Underlining, overlining, striking, and blinking: the 'text-decoration' property, C.8.27 16.3.1 Underlining, overlining, striking, and blinking: the 'text-decoration' property, C.8.28 10.4 Minimum and maximum widths: 'min-width' and 'max-width', C.8.29 9.3.2 Box offsets: 'top', 'right', 'bottom', 'left', C.8.31 17.4 Tables in the visual formatting model, C.8.32 11.1.2 Clipping: the 'clip' property, C.8.35 4.2 Rules for handling parsing errors, C.8.39 11.1.1 Overflow: the 'overflow' property, C.8.41 16.2 Alignment: the 'text-align' property, C.8.47 14.2.1 Background properties: 'background-color', 'background-image', 'background-repeat', 'background-attachment', 'background-position', and 'background', C.8.51 Section9.5.2 Controlling flow next to floats: the 'clear' property, C.8.53 Section9.5.2 Controlling flow next to floats: the 'clear' property, C.8.55 10.6.3 Block-level non-replaced elements in normal flow when 'overflow' computes to 'visible', G.3 Comparison of tokenization in CSS2.1 and CSS1. 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