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Aligned and collaborative language-driven engineering ...
Zweihoff, Philip. - : TU Dortmund, 2022
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Multilingual CoNaLa Datset, train data ...
Zhiruo Wang; Cuenca, Grace; Shuyan Zhou. - : Zenodo, 2022
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Multilingual CoNaLa Datset, train data ...
Zhiruo Wang; Cuenca, Grace; Shuyan Zhou. - : Zenodo, 2022
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4
Aligned and collaborative language-driven engineering
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5
Recent Advances in Intelligent Source Code Generation: A Survey on Natural Language Based Studies
In: Entropy ; Volume 23 ; Issue 9 (2021)
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6
Social and Academic Experiences of Black, First-Generation, College Graduates While Attending Predominantly White Institutions
In: Electronic Theses and Dissertations (2021)
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Lyntax - A grammar-Based Tool for Linguistics ...
de Sousa, Manuel Gouveia Carneiro; Pereira, Maria João Varanda; Henriques, Pedro Rangel. - : Schloss Dagstuhl - Leibniz-Zentrum für Informatik, 2021
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Asm2Seq: Explainable Assembly Code Functional Summary Generation
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9
Making Chó bò*: Troubling Việt speak : Collaborating, translating, and archiving with family in Australian contemporary art.
Nguyen, Hong An James, Art & Design, Faculty of Art & Design, UNSW. - : University of New South Wales. Art & Design, 2020
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10
Domain specific language generation based on a XML schema
Duarte, Luís Carlos da Silva. - : Instituto Superior de Engenharia de Lisboa, 2019
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11
Zielsystemunabhängige Quelltextsynthese aus natürlicher Sprache ...
Kiesel, Viktor. - : Karlsruhe, 2019
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12
Zielsystemunabhängige Quelltextsynthese aus natürlicher Sprache
Kiesel, Viktor. - : Karlsruher Institut für Technologie, 2019
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13
PaniniJ: adding the capsule programming abstraction to Java to provide linguistic support for modular reasoning in concurrent program design
In: Graduate Theses and Dissertations (2016)
Abstract: Increasing the speed of single-core processors has been facing practical challenges. Instead, multi- core architecture has been ascending for the past decade as the dominant architecture. To gain full advantage of multi-core processors, it is unavoidable for programmers to write concurrent programs. However, writing and reasoning about concurrent programs is often difficult for programmers. One reason for the difficulty stems from the hurdle of dealing with concurrency abstractions, the other reason is the difficulty in getting rid of concurrency related bugs. To address these problems, a new abstraction for concurrent programming has been proposed called capsule. Capsules are inspired by the long- standing ideas explored in the context of message-passing concurrency (MPC) abstractions and other similar models. Although the jury is still out on MPC abstractions as the de facto abstraction for concurrency, their wide availability and advantages combine to warrant research on the use of this model for concurrency. Capsules explore a new point in this design space to balance flexibility and analyzability in the MPC programming models. Unlike common avatars of the MPC model, a capsule is statically deployed and configured, confines its local states, permits only a single activity within itself, and communicates with other capsules in a logically synchronous manner. This thesis focuses on the realization, applicability and performance of this new abstraction. A major contribution of this work is the realization of capsules. We have implemented capsules as an extension of javac, the industrial strength standard Java compiler. The implementation shows that it is feasible to extend an object- oriented language with capsules. The default compilation strategy of capsules is based on threads. In this work, we also show alternative compilation strategies to improve the flexibility and adaptability of capsules. This shows that the capsule abstraction can be decoupled from concrete strategies for processing capsule messages and different underlying message processing mechanisms can be deployed without changing the user facing source code. This work also shows the strategy used to retain meta- information about capsules after compilation, so that capsule-oriented programs enjoy the property of separate compilation.
Keyword: code generation; compiler; Computer Sciences; concurrent programming; modularity; programming language
URL: https://lib.dr.iastate.edu/etd/14985
https://lib.dr.iastate.edu/cgi/viewcontent.cgi?article=5992&context=etd
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14
Разработка модуля трансляции псевдокода алгоритмов в заготовку кода на C# ... : бакалаврская работа ...
Багарян, Виктор. - : Санкт-Петербургский политехнический университет Петра Великого, 2016
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15
Environnement de modélisation Mosela : Modélisation de systèmes mécaniques pour utilisation sur les simulateurs temps réel de développement de vérification et d'entrainement des équipages
In: CFM 2015 - 22ème Congrès Français de Mécanique ; https://hal.archives-ouvertes.fr/hal-03444746 ; CFM 2015 - 22ème Congrès Français de Mécanique, Aug 2015, Lyon, France (2015)
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Environnement de modélisation Mosela : Modélisation de systèmes mécaniques pour utilisation sur les simulateurs temps réel de développement de vérification et d'entrainement des équipages
In: 22ème Congrès Français de Mécanique, 24 au 28 août 2015, Lyon, France (FR) (2015)
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17
Sprache der Generationen
Neuland, Eva (Hrsg.). - Mannheim [u.a.] : Dudenverl., 2012
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UB Frankfurt Linguistik
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18
Software Code Generation for the RVC-CAL Language
In: ISSN: 1939-8018 ; EISSN: 1939-8115 ; Journal of Signal Processing Systems ; https://hal.archives-ouvertes.fr/hal-00407950 ; Journal of Signal Processing Systems, Springer, 2011, 63 (2), pp.203-213. ⟨10.1007/s11265-009-0390-z⟩ (2011)
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19
Thorn language: a flexible tool for code generation
Yuri, Okulovsky. - : Федеральное государственное бюджетное учреждение науки Институт системного программирования Российской академии наук, 2011
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20
Migration, Sprache und Rassismus : der kommunikative Sozialstil der Mannheimer "Unmündigen" als Fallstudie für die "emanzipatorischen Migranten"
Cindark, Ibrahim. - Tübingen : Narr, 2010
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UB Frankfurt Linguistik
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