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77 results for “ORACLE”
Ubuntu One multi-cloud object storage trace sublement to "SkyPIE: A Fast & Accurate Oracle for Object Placement"
<p>These are the workload traces of Ubuntu one used in the evaluation of "SkyPIE: A Fast & Accurate Oracle for Object Placement".</p> <p>These traces derive diverse multi-cloud access pattern on object stores from the trace published in "Dissecting UbuntuOne: Autopsy of a Global-Scale Personal Cloud Back-End." The derivation is described in the SkyPIE paper.</p> <p>The traces are stored in Parquet file format, hence can be read with a Parquet reader such as the one included in Pandas. The file names specify the number of regions issuing accesses and the percentage of accesses to object that originate from regions other than the home region, see the publication.</p>
Oracle bone fragment image dataset
<p>Oracle bone inscriptions record valuable information about ancient Chinese history in Shang Dynasty. However, many complete oracle bones have broken into pieces over the years, resulting in disjointing sentences. This poses a serious challenge in rejoining oracle bone fragments and interpreting the inscriptions. With oracle bone fragments scattered around the world, researchers have turned their attention to artificial intelligence algorithms to piece together oracle bone fragment images. This paper presents a benchmark datasets for rejoining oracle bone fragment. The benchmark consists of three parts. The first part consists of 5374 high-resolution oracle bone fragment images. The second part consists of 110 oracle bone fragment image pairs that can be rejoined together, including the rejoinable location. The third part consists of the images of oracle bone pairs with matching shapes from multiple sources, divided into two categories: 23,072 rejoinable images and 116003 unrejoinable images. The dataset can be used to evaluate the performance oracle bone rejoining algorithms, the dataset also contains undiscovered rejoinable fragments, which offer promising opportunities for further analysis. </p>
Replication Package for "Evaluating SZZ Implementations Through a Developer-informed Oracle"
<p>This is the replication package for the paper "Evaluating SZZ Implementations Through a Developer-informed Oracle" published in the 43rd International Conference on Software Engineering (ICSE 2021). <a href="https://arxiv.org/abs/2102.03300">https://arxiv.org/abs/2102.03300</a></p>
Code Smells Dataset (oracles)
<p>This repository contains the datasets, obtained in 3 years, resulting from the Crowdsmelling methodology.<br> Each file contains the dataset (oracle) of the year or set of years, for the code smells Long Method, God Class, and Feature Envy. The file Exercise-Code smells detection (ESII 2020).pdf describes the exercise used in the validation of code smells, and the file code-classification-statistics.csv shows statistics about the percentages of teams that classified the methods and classes.</p> <p>More information about the datasets can be found in the article:</p> <p>Reis, José Pereira dos , Abreu, Fernando Brito e . & Carneiro, Glauco de Figueiredo. Crowdsmelling: A preliminary study on using collective knowledge in code smells detection. <em>Empir Software Eng</em> <strong>27, </strong>69 (2022). https://doi.org/10.1007/s10664-021-10110-5</p> <p>DATASET STRUCTURE<br> - project name<br> - package name<br> - class name<br> - method name<br> - code metrics [1]<br> - code smell classification</p> <p> </p> <p>REFERENCES</p> <p>[1] Metrics description can be found in the study: "Fontana, F. A., Mantyla, M. V., Zanoni, M., and Marino, A. (2015), Comparing and experimenting machine learning techniques for code smell detection, Empirical Software Engineering"</p> <p> </p>
The ORACLES database
<p>This experimental database gives access to both the processed and the raw<br> (instantaneous) velocity data measured by 2-component laser Doppler velocimetry on the<br> ORACLES test facility. It contains more than 55000 files. The access to the raw data<br> gives the opportunity to the end-user to re-process them according to his needs.<br> The processed files are cast in a Tecplot compatible format. The files headers are<br> meaningful so that these files can also be read by other means (text editor, specific<br> routines…).<br> All the necessary technical information regarding these data can be found in the<br> directory “Documents” where are present: 1) the related paper (authors’ version)<br> published in 2009 in Flow Turbulence and Combustion (82:155-183), 2) the PhD<br> thesis of Phuc-Danh Nguyen (in French) and 3) the complete layout of the database.<br> Numerous “ReadMeFirst” files are also provided in the sub-directories to explain wherever needed<br> the content of the related files.<br> </p>
Oracles for the Equivalence of Java Bytecode
<p>Incidents like <em>log4shell</em> and <em>SolarWinds</em> have led to an increased focus on software supply chain security. A particular concern is the detection and prevention of compromised builds. A common approach is to independently re-build projects, and compare the results. This leads to the availability of different binaries built from the same sources, and raises the question of how to compare the respective binaries (to confirm the integrity of builds, to detect compromised builds, etc). It is however not clear how to do this: naive bitwise comparison is often too strict, and establishing the behavioural equivalence of two binaries is undecidable. <br> <br>A pragmatic step towards a solution is to provision a benchmark that can be used to test and train equivalence relations. We present such a benchmark for Java bytecode, consisting of \input{generated/total-oracle-record-count}pairs of binaries (compiled Java classes) labelled as to whether these classes are equivalent or not. We refer to these pairs as equivalence and non-equivalence oracles, respectively. <br> <br>We derive equivalence oracles from building 56 projects and project versions using 32 dockerised build environments (with different compilers, compiler versions and configurations). Non-equivalence oracles are derived from three different sources: (1) proven breaking API changes, (2) semantic code changes synthesised by means of bytecode mutations, and (3) code changes extracted from vulnerability patches.</p> <p> </p> <p>A detailed description of the dataset can be found in: </p> <p><em>Jens Dietrich, Tim White, Mohammad Mahdi Abdollahpou, Elliott Wen and Behnaz Hassanshahi: BenEq -- A Benchmark of Compiled Java Programs to Assess Alternative Builds. Proceedings of the ACM Workshop on Software Supply Chain Offensive Research and Ecosystem Defenses (SCORED '24). </em></p>
Oracle Bone, Or 7694/1595
An inscribed oracle bone (jia gu 甲骨) from the Couling-Chalfant collection at the British Library. Oracle bones were animal bones, usually ox shoulder bones or the underside of turtle shells, used for divination rituals in ancient China. Dating to the Shang dynasty (c. 1600 – 1050 BC), they bear the earliest extant form of Chinese writing and are the oldest items held in the British Library. The inscription on the reverse of this particular bone records a lunar eclipse, which can be precisely dated to the night of 27 December 1192 BC. This model was created for a British Library project on oracle bones that formed part of the UK-China Cultural Exchange 2015, supported by the Department for Culture, Media and Sport. For more information see: * http://www.bl.uk/collection-items/chinese-oracle-bone#sthash.8cDMmsmE.dpuf * http://britishlibrary.typepad.co.uk/asian-and-african/ Photography: Neil McCowlen Modelling: [Adi Keinan-Schoonbaert](https://sketchfab.com/adiks) Source: Objaverse 1.0 / Sketchfab
Oracle Bone, Or 7694/1988 Part 2
An inscribed oracle bone (jia gu 甲骨) from the Couling-Chalfant collection at the British Library. Oracle bones were animal bones, usually ox shoulder bones or the underside of turtle shells, used for divination rituals in ancient China. Dating to the Shang dynasty (c. 1600 – 1050 BC), they bear the earliest extant form of Chinese writing and are the oldest items held in the British Library. This model was created for a British Library project on oracle bones that formed part of the UK-China Cultural Exchange 2015, supported by the Department for Culture, Media and Sport. For more information see: * http://www.bl.uk/collection-items/chinese-oracle-bone#sthash.8cDMmsmE.dpuf * http://britishlibrary.typepad.co.uk/asian-and-african/ Photography: Neil McCowlen Modelling: [Adi Keinan-Schoonbaert](https://sketchfab.com/adiks) Source: Objaverse 1.0 / Sketchfab
Oracle Bone, Or 7694/1988 Part 1
An inscribed oracle bone (jia gu 甲骨) from the Couling-Chalfant collection at the British Library. Oracle bones were animal bones, usually ox shoulder bones or the underside of turtle shells, used for divination rituals in ancient China. Dating to the Shang dynasty (c. 1600 – 1050 BC), they bear the earliest extant form of Chinese writing and are the oldest items held in the British Library. This model was created for a British Library project on oracle bones that formed part of the UK-China Cultural Exchange 2015, supported by the Department for Culture, Media and Sport. For more information see: * http://www.bl.uk/collection-items/chinese-oracle-bone#sthash.8cDMmsmE.dpuf * http://britishlibrary.typepad.co.uk/asian-and-african/ Photography: Neil McCowlen Modelling: [Adi Keinan-Schoonbaert](https://sketchfab.com/adiks) Source: Objaverse 1.0 / Sketchfab
[Supplementary material] Test Oracle Generation for REST APIs
<p>This is the supplementary material of the paper entitled <em>Test Oracle Generation for REST APIs</em></p> <p>To use the most up-to-date version of AGORA+, please refer to the official GitHub repository: https://github.com/isa-group/Beet</p> <p>The Ubuntu Virtual Machine containing all the projects configured can be found here: https://figshare.com/articles/dataset/AGORA_Virtual_Machine/28266926</p> <p> </p> <h1>How to Open the Replication Package (Multi-part ZIP Archive)</h1> <p><span lang="EN-US">The replication package is distributed as a multi-part ZIP archive. This is a standard way to split a large ZIP file into smaller chunks for easier uploading and downloading. The archive consists of the following files:</span></p> <ul> <li><span lang="EN-US">ReplicationPackage.z01 </span></li> <li><span lang="EN-US">ReplicationPackage.z02</span></li> <li><span lang="EN-US">ReplicationPackage.z03 </span></li> <li><span lang="EN-US">ReplicationPackage.z04 </span></li> <li><span lang="EN-US">ReplicationPackage.z05</span></li> <li><span lang="EN-US">ReplicationPackage.zip </span></li> </ul> <p><span lang="EN-US">These files <strong>must be in the same folder</strong> before unzipping.</span></p> <p><span lang="EN-US">Below are step-by-step instructions for <strong>Windows</strong> and <strong>Linux</strong> users.</span></p> <h1><span lang="EN-US">For Windows Users</span></h1> <h2><span lang="EN-US">Option 1: Using 7-Zip (Recommended)</span></h2> <ol> <li><span lang="EN-US">Download and install 7-Zip: <a href="https://www.7-zip.org/">https://www.7-zip.org/</a></span></li> <li><span lang="EN-US">Place all the files (.z01, .z02, ..., .z05, and .zip) in the <strong>same folder</strong>.</span></li> <li><span lang="EN-US">Right-click on ReplicationPackage.zip.</span></li> <li><span lang="EN-US">Choose <strong>7-Zip -></strong></span><strong><span lang="EN-US"> Extract Here</span></strong><span lang="EN-US"> or <strong>Extract to ReplicationPackage\</strong>.</span></li> </ol> <p><span lang="EN-US">7-Zip will automatically combine the parts and extract the full content.</span></p> <h2>Option 2: Using WinRAR</h2> <ol> <li><span lang="EN-US">Download and install <strong>WinRAR</strong>: <a href="https://www.rarlab.com/">https://www.rarlab.com/</a></span></li> <li><span lang="EN-US">Ensure all parts are in the same directory.</span></li> <li><span lang="EN-US">Right-click on ReplicationPackage.zip.</span></li> <li><span lang="EN-US">Select <strong>Extract Here</strong> or <strong>Extract to ReplicationPackage\</strong>.</span></li> </ol> <h1><span lang="EN-US">For Linux Users</span></h1> <ol> <li><span lang="EN-US">Make sure all the parts are in the same directory.</span></li> <li><span lang="EN-US">Install p7zip if not already installed:</span></li> </ol> <p><span lang="EN-US"> sudo apt install p7zip-full</span></p> <p><span lang="EN-US"> 3. Navigate to the folder containing the files:</span></p> <p><span lang="EN-US"> cd /path/to/your/downloaded/files</span></p> <p> 4. Run the following command:</p> <p> 7z x ReplicationPackage.zip</p> <p><span lang="EN-US">This will extract the full archive by automatically reading the .z01, .z02, etc.</span></p> <h1><span lang="EN-US">NOTES</span></h1> <ul> <li><strong><span lang="EN-US">Do not</span></strong><span lang="EN-US"> try to unzip the .z01, .z02, etc., individually. Only unzip the main .zip file (the one with the .zip extension).</span></li> <li><span lang="EN-US">If you see an error like <em>"not a valid zip file"</em>, it usually means:</span></li> <ul> <li><span lang="EN-US">Not all parts were downloaded correctly.</span></li> <li><span lang="EN-US">The files are not in the same folder.</span></li> <li><span lang="EN-US">The file names were modified (e.g., by the browser).</span></li> </ul> </ul>
Oracle Bone, Or 7694/1580
An inscribed oracle bone (jia gu 甲骨) from the Couling-Chalfant collection at the British Library. Oracle bones were animal bones, usually ox shoulder bones or the underside of turtle shells, used for divination rituals in ancient China. Dating to the Shang dynasty (c. 1600 – 1050 BC), they bear the earliest extant form of Chinese writing and are the oldest items held in the British Library. This model was created for a British Library project on oracle bones that formed part of the UK-China Cultural Exchange 2015, supported by the Department for Culture, Media and Sport. For more information see: * http://www.bl.uk/collection-items/chinese-oracle-bone#sthash.8cDMmsmE.dpuf * http://britishlibrary.typepad.co.uk/asian-and-african/ Photography: Neil McCowlen Modelling: [Adi Keinan-Schoonbaert](https://sketchfab.com/adiks) Source: Objaverse 1.0 / Sketchfab
Oracle Bone, Or 7694/1655+1672
An inscribed oracle bone (jia gu 甲骨) from the Couling-Chalfant collection at the British Library. Oracle bones were animal bones, usually ox shoulder bones or the underside of turtle shells, used for divination rituals in ancient China. Dating to the Shang dynasty (c. 1600 – 1050 BC), they bear the earliest extant form of Chinese writing and are the oldest items held in the British Library. This model was created for a British Library project on oracle bones that formed part of the UK-China Cultural Exchange 2015, supported by the Department for Culture, Media and Sport. For more information see: * http://www.bl.uk/collection-items/chinese-oracle-bone#sthash.8cDMmsmE.dpuf * http://britishlibrary.typepad.co.uk/asian-and-african/ Photography: Neil McCowlen Modelling: [Adi Keinan-Schoonbaert](https://sketchfab.com/adiks) Source: Objaverse 1.0 / Sketchfab
Aircraft profiles of stable isotope ratios in atmospheric total and condensed water from the NASA ORACLES mission.
<p>Aircraft in-situ measurements of water concentration and heavy water isotope ratios D/H and 18O/16O of cloud water and total water (water vapor plus condensed water) were collected during the NASA ObseRvations of Aerosols above CLouds and their intEractionS (ORACLES) project. Aircraft sampling took place in the southeast Atlantic marine boundary layer and lower troposphere (equator to 22 degrees south) over the months of Sept. 2016, Aug. 2017, and Oct. 2018. Isotope measurements were made using cavity ring-down spectroscopic analyzers integrated into the Water Isotope System for Precipitation and Entrainment Research (WISPER). The WISPER data are processed into mean latitude-altitude curtains and individual vertical profiles for each sampling period.</p> <p> </p> <p>The WISPER data accompanied a suite of other variables including standard meteorological quantities (wind, temperature, moisture), trace gas and aerosol concentrations, radar, and lidar remote sensing, which can be accessed through the DOIs listed further down. The ORACLES campaigns are described by Redemann et al., (2021). The water isotope measurements are further described in Henze et al., (2021). The absolute error with respect to the SMOW-SLAP scale is explained in detail by Henze et al., (2021).</p> <p> </p> <p>Total water concentration and isotope ratios were binned and averaged onto latitude-altitude grids using a kernel estimation approach, with weighting designed to estimate the mean during the approximate month-long duration of each sampling period. Standard deviations for each bin are also computed using kernel density estimation.</p> <p> </p> <p>Time intervals during aircraft vertical profiling are isolated and averaged onto 50-meter vertical levels. The files include water concentration and isotope ratios for both total water and cloud water in addition to temperature, pressure, latitude, and longitude.</p> <p> </p> <p>See included file README.txt for additional details.</p> <p> </p> <p>References</p> <p>---------------</p> <p>Henze, D., Noone, D., and Toohey, D.: Aircraft measurements of water vapor heavy isotope ratios in the marine boundary layer and lower troposphere during ORACLES, Earth Syst. Sci. Data Discuss. [preprint], https://doi.org/10.5194/essd-2021-238, in review, 2021.</p> <p> </p> <p>Redemann, J., Wood, R., Zuidema, P., Doherty, S. J., Luna, B., LeBlanc, S. E., Diamond, M. S., Shinozuka, Y., Chang, I. Y., Ueyama, R., Pfister, L., Ryoo, J.-M., Dobracki, A. N., da Silva, A. M., Longo, K. M., Kacenelenbogen, M. S., Flynn, C. J., Pistone, K., Knox, N. M., Piketh, S. J., Haywood, J. M., Formenti, P., Mallet, M., Stier, P., Ackerman, A. S., Bauer, S. E., Fridlind, A. M., Carmichael, G. R., Saide, P. E., Ferrada, G. A., Howell, S. G., Freitag, S., Cairns, B., Holben, B. N., Knobelspiesse, K. D., Tanelli, S., L'Ecuyer, T. S., Dzambo, A. M., Sy, O. O., McFarquhar, G. M., Poellot, M. R., Gupta, S., O'Brien, J. R., Nenes, A., Kacarab, M., Wong, J. P. S., Small-Griswold, J. D., Thornhill, K. L., Noone, D., Podolske, J. R., Schmidt, K. S., Pilewskie, P., Chen, H., Cochrane, S. P., Sedlacek, A. J., Lang, T. J., Stith, E., Segal-Rozenhaimer, M., Ferrare, R. A., Burton, S. P., Hostetler, C. A., Diner, D. J., Seidel, F. C., Platnick, S. E., Myers, J. S., Meyer, K. G., Spangenberg, D. A., Maring, H., and Gao, L.: An overview of the ORACLES (ObseRvations of Aerosols above CLouds and their intEractionS) project: aerosol–cloud–radiation interactions in the southeast Atlantic basin, Atmos. Chem. Phys., 21, 1507–1563, https://doi.org/10.5194/acp-21-1507-2021, 2021.</p> <p> </p> <p>The complete archive of ORACLES data are accessible via the digital object identifiers (DOIs) provided under ORACLES Science Team references as follows:</p> <p> </p> <p>ORACLES Science Team: Suite of Aerosol, Cloud, and Related Data Acquired Aboard P3 During ORACLES 2018, Version 3, NASA Ames Earth Science Project Office, https://doi.org/10.5067/Suborbital/ORACLES/P3/2018_V3, 2020a. </p> <p> </p> <p>ORACLES Science Team: Suite of Aerosol, Cloud, and Related Data Acquired Aboard P3 During ORACLES 2017, Version 3, NASA Ames Earth Science Project Office, https://doi.org/10.5067/Suborbital/ORACLES/P3/2017_V3, 2020b. </p> <p> </p> <p>ORACLES Science Team: Suite of Aerosol, Cloud, and Related Data Acquired Aboard P3 During ORACLES 2016, Version 3, NASA Ames Earth Science Project Office, https://doi.org/10.5067/Suborbital/ORACLES/P3/2016_V3, 2020c. </p> <p> </p> <p>ORACLES Science Team: Suite of Aerosol, Cloud, and Related Data Acquired Aboard ER2 During ORACLES 2016, Version 3, NASA Ames Earth Science Project Office, https://doi.org/10.5067/Suborbital/ORACLES/ER2/2016_V3, 2020d.</p>
Oracle Bone, Or 7694/1988 (two parts)
An inscribed oracle bone (jia gu 甲骨) in two parts from the Couling-Chalfant collection at the British Library. Oracle bones were animal bones, usually ox shoulder bones or the underside of turtle shells, used for divination rituals in ancient China. Dating to the Shang dynasty (c. 1600 – 1050 BC), they bear the earliest extant form of Chinese writing and are the oldest items held in the British Library. This model was created for a British Library project on oracle bones that formed part of the UK-China Cultural Exchange 2015, supported by the Department for Culture, Media and Sport. For more information see: * http://www.bl.uk/collection-items/chinese-oracle-bone#sthash.8cDMmsmE.dpuf * http://britishlibrary.typepad.co.uk/asian-and-african/ Photography: Neil McCowlen Modelling: [Adi Keinan-Schoonbaert](https://sketchfab.com/adiks) Source: Objaverse 1.0 / Sketchfab
Oracle Bone
Oracle bones (Chinese: 甲骨) are pieces of ox scapula or turtle plastron, which were used for pyromancy – a form of divination – in ancient China, mainly during the late Shang dynasty. Source: Objaverse 1.0 / Sketchfab
Gassert: Evolutionary Improvement of Assertion Oracles - experimental data
<p>This dataset contains the data of our experiments that we conducted in our paper "Evolutionary Improvement of Assertion Oracles" published at ESEC/FSE 2020. <br> </p>
Pickled stellar photospheres (MARCS, Castelli & Kurucz) for Oracle
<p>These are just pickled photospheres from Castelli & Kurucz (2004) and MARCS (2011) for use with Oracle.</p>
POMABuster: Detecting Price Oracle Manipulation Attacks in Decentralized Finance
Open the record for dataset details and reuse information.
Clones found with the oracle
<p>Here you can find the output of Simian and the clones we found between the training set and the oracle (i.e., the block we expected T5 to predict)</p>
FIGURE 9. Some Cordulegaster species. A in The Oracle of Delphi-a molecular phylogenetic approach to Greek Cordulegaster Leach in Brewster, 1815 (Odonata: Anisoptera: Cordulegastridae)
FIGURE 9. Some Cordulegaster species. A: C. buchholzi male from Andros, Greece. B: C. buchholzi female from Andros, Greece. C: C. helladica male from Peloponnese, Greece. D: Habitat of C. helladica near Kauteli, Peloponnese. E: C. insignis male from Saklikent, West Turkey. F: C. bidentata male, Westfalia, Germany. G: C. heros male, River Selimoundas, Peloponnese, Greece—note the black bar at the upper ventral frons. H: Habitat of C. heros, River Selimoundas, Peloponnese, Greece. Photographs by Dietmar Ikemeyer (A, B, E, F) and Elias Schneider (C, D, G, H).
ScienceDex guides
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.