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IIPImage is an advanced high-performance feature-rich image server system for web-based streamed viewing and zooming of ultra high-resolution images. It is designed to be fast and bandwidth-efficient with low processor and memory requirements. The system can comfortably handle gigapixel size images as well as advanced image features such as 8, 16 and 32 bits per channel, CIELAB colorimetric images and scientific imagery such as multispectral images, image sequences and 3D surface topologies. Features:
fast lightweight FastCGI server
high performance with inbuilt configurable cache
support for extremely large images: tera-pixel and multi gigapixel support
TIFF and JPEG2000 input support
JPEG, PNG and WebP output support: export of whole or regions of images at any size
supports IIP, Zoomify, DeepZoom and IIIF API's
1, 8, 16 and 32 bit image support including 32 bit floating point support
CIELAB support with automatic CIELAB->sRGB color space conversion
multispectral and hyperspectral image support
image stacks and image sequence support
dynamic hillshading of 3D surface topologies
dynamic watermarking
memcached support
This package provides a RocksDB-based capture index (CDX) server for web archives.
This package provides a wrapper for the wcs library.
This package provides a wrapper for the erfa library.
Julia package for enhancing and manipulating image contrast.
Accessors.jl is the successor of Setfield.jl to make updating immutable data simple.
This package contains simple routines for finding roots, or zeros, of scalar functions of a single real variable using floating-point math. The find_zero function provides the primary interface. The basic call is find_zero(f, x0, [M], [p]; kws...) where, typically, f is a function, x0 a starting point or bracketing interval, M is used to adjust the default algorithms used, and p can be used to pass in parameters.
DimensionalData.jl provides tools and abstractions for working with datasets that have named dimensions, and optionally a lookup index. It provides no-cost abstractions for named indexing, and fast index lookups.
DimensionalData is a pluggable, generalised version of AxisArrays.jl with a cleaner syntax, and additional functionality found in NamedDims.jl. It has similar goals to Python's xarray, and is primarily written for use with spatial data in Rasters.jl.
Images.jl is increasingly becoming an "umbrella package" that exports a set of packages which are useful for common image processing tasks. Most of these packages are hosted at JuliaImages, JuliaArrays, JuliaIO, JuliaGraphics, and JuliaMath.
This package defines a thin wrapper which, alongside any array, stores a vector of "keys" for each dimension. This may be useful to store perhaps actual times of measurements, or some strings labeling columns, etc. These will be propagated through many operations on arrays (including broadcasting, map, comprehensions, sum etc.) and altered by a few (sorting, fft, push!).
This package provides a Julia ImageDistances.jl following the same API as Distances.jl with support image types and image-specific distances.
3D-MATRICES is a library implementing common matrix operations, mainly intended as the counterpiece to 3d-vectors and thus being aimed at operations in 3D space.
VEQ is a set of convenience utilities for writing (1d/)2d/3d vector mathematics. It suports single vectors or arrays of vectors, with some broadcasting and reduction operations.
3D-VECTORS is a library for vector math in 3D space. It contains most of the vector operations one would usually expect out of such a library and offers them both in non-modifying and modifying versions where applicable.
VEQ is a set of convenience utilities for writing (1d/)2d/3d vector mathematics. It suports single vectors or arrays of vectors, with some broadcasting and reduction operations.
CL-GD is a library for Common Lisp which provides an interface to the GD Graphics Library for the dynamic creation of images. It is based on UFFI and should thus be portable to all CL implementations supported by UFFI.
CL-GD is a library for Common Lisp which provides an interface to the GD Graphics Library for the dynamic creation of images. It is based on UFFI and should thus be portable to all CL implementations supported by UFFI.
PLplot is a cross-platform software package for creating scientific plots whose (UTF-8) plot symbols and text.
The PLplot core library can be used to create standard x-y plots, semi-log plots, log-log plots, contour plots, 3D surface plots, mesh plots, bar charts and pie charts. Multiple graphs (of the same or different sizes) may be placed on a single page, and multiple pages are allowed for those device formats that support them.
PLplot has core library support for plot symbols and text specified by the user in the UTF-8 encoding of Unicode. This means for our many Unicode-aware devices that plot symbols and text are only limited by the collection of glyphs normally available via installed system fonts. Furthermore, a large subset of our Unicode-aware devices also support complex text layout (CTL) languages such as Arabic, Hebrew, and Indic and Indic-derived CTL scripts such as Devanagari, Thai, Lao, and Tibetan. Thus, for these PLplot devices essentially any language that is supported by Unicode and installed system fonts can be used to label plots.
Voro++ is a software library for carrying out three-dimensional computations of the Voronoi tessellation. A distinguishing feature of the Voro++ library is that it carries out cell-based calculations, computing the Voronoi cell for each particle individually. It is particularly well-suited for applications that rely on cell-based statistics, where features of Voronoi cells (eg. volume, centroid, number of faces) can be used to analyze a system of particles.
Voro++ comprises of several C++ classes that can be built as a static library. A command-line utility is also provided that can use most features of the code. The direct cell-by-cell construction makes the library particularly well-suited to handling special boundary conditions and walls. It employs algorithms that are tolerant for numerical precision errors, it exhibits high performance, and it has been successfully employed on very large particle systems.
This package permits one to perform floating-point computations (real and complex) to arbitrarily high numeric precision, by making only relatively minor changes to existing Fortran-90 programs (mostly changes to type statements). All basic arithmetic operations and transcendental functions are supported, together with numerous special functions.