886 resultados para Software Engineering
Resumo:
Document engineering is the computer science discipline that investigates systems for documents in any form and in all media. As with the relationship between software engineering and software, document engineering is concerned with principles, tools and processes that improve our ability to create, manage, and maintain documents (http://www.documentengineering.org). The ACM Symposium on Document Engineering is an annual meeting of researchers active in document engineering: it is sponsored by ACM by means of the ACM SIGWEB Special Interest Group. In this editorial, we first point to work carried out in the context of document engineering, which are directly related to multimedia tools and applications. We conclude with a summary of the papers presented in this special issue.
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This paper aims at identifying some of the key factors in adopting an organization-wide software reuse program. The factors are derived from practical experience reported by industry professionals, through a survey involving 57 Brazilian small, medium and large software organizations. Some of them produce software with commonality between applications, and have mature processes, while others successfully achieved reuse through isolated, ad hoe efforts. The paper compiles the answers from the survey participants, showing which factors were more associated with reuse success. Based on this relationship, a guide is presented, pointing out which factors should be more strongly considered by small, medium and large organizations attempting to establish a reuse program. (C) 2007 Elsevier Inc. All rights reserved.
Resumo:
Component-based software engineering has recently emerged as a promising solution to the development of system-level software. Unfortunately, current approaches are limited to specific platforms and domains. This lack of generality is particularly problematic as it prevents knowledge sharing and generally drives development costs up. In the past, we have developed a generic approach to component-based software engineering for system-level software called OpenCom. In this paper, we present OpenComL an instantiation of OpenCom to Linux environments and show how it can be profiled to meet a range of system-level software in Linux environments. For this, we demonstrate its application to constructing a programmable router platform and a middleware for parallel environments.
Resumo:
A crescente complexidade das aplicações, a contínua evolução tecnológica e o uso cada vez mais disseminado de redes de computadores têm impulsionado os estudos referentes ao desenvolvimento de sistemas distribuídos. Como estes sistemas não podem ser facilmente desenvolvidos com tecnologias de software tradicionais por causa dos limites destas em lidar com aspectos relacionados, por exemplo, à distribuição e interoperabilidade, a tecnologia baseada em agentes parece ser uma resposta promissora para facilitar o desenvolvimento desses sistemas, pois ela foi planejada para suportar estes aspectos, dentre outros. Portanto, é necessário também que a arquitetura dos ambientes de desenvolvimento de software (ADS) evolua para suportar novas metodologias de desenvolvimento que ofereçam o suporte necessário à construção de softwares complexos, podendo também estar integrada a outras tecnologias como a de agentes. Baseada nesse contexto, essa dissertação tem por objetivo apresentar a especificação de uma arquitetura de um ADS distribuído baseada em agentes (DiSEN – Distributed Software Engineering Environment). Esse ambiente deverá fornecer suporte ao desenvolvimento de software distribuído, podendo estar em locais geograficamente distintos e também os desenvolvedores envolvidos poderão estar trabalhando de forma cooperativa. Na arquitetura proposta podem ser identificadas as seguintes camadas: dinâmica, que será responsável pelo gerenciamento da (re)configuração do ambiente em tempo de execução; aplicação, que terá, entre os elementos constituintes, a MDSODI (Metodologia para Desenvolvimento de Software Distribuído), que leva em consideração algumas características identificadas em sistemas distribuídos, já nas fases iniciais do projeto e o repositório para armazenamento dos dados necessários ao ambiente; e, infra-estrutura, que proverá suporte às tarefas de nomeação, persistência e concorrência e incorporará o canal de comunicação. Para validar o ambiente será realizada uma simulação da comunicação que pode ser necessária entre as partes constituintes do DiSEN, por meio da elaboração de diagramas de use case e de seqüência, conforme a notação MDSODI. Assim, as principais contribuições desse trabalho são: (i) especificação da arquitetura de um ADS distribuído que poderá estar distribuído geograficamente; incorporará a MDSODI; proporcionará desenvolvimento distribuído; possuirá atividades executadas por agentes; (ii) os agentes identificados para o DiSEN deverão ser desenvolvidos obedecendo ao padrão FIPA (Foundation for Intelligent Physical Agents); (iii) a identificação de um elemento que irá oferecer apoio ao trabalho cooperativo, permitindo a integração de profissionais, agentes e artefatos.
Resumo:
A tecnologia de processos de desenvolvimento de software ´e uma importante área de estudo e pesquisas na Engenharia de Software que envolve a construção de ferramentas e ambientes para modelagem, execução, simulação e evolução de processos de desenvolvimento de software, conhecidos como PSEEs (do inglês: Process-Centered Software Engineering Environments). Um modelo de processo de software é uma estrutura complexa que relaciona elementos gerenciáveis (i.e. artefatos, agentes, e atividades) que constituem o processo de software. Esta complexidade, geralmente, dificulta a percepção e entendimento do processo por parte dos profissionais envolvidos, principalmente quando estes profissionais têm acesso apenas a uma visão geral do modelo. Desta forma, há necessidade de mecanismos para visualização e acompanhamento dos processos, fornecendo informações adequadas aos diferentes estados, abstraindo as informações relevantes tanto as fases presentes no processo de desenvolvimento quanto ao agente envolvido, além de facilitar a interação e o entendimento humano sobre os elementos do processo. Estudos afirmam que a maneira como são apresentadas as informações do modelo de processo pode influenciar no sucesso ou não do desenvolvimento do software, assim como facilitar a adoção da tecnologia pela indústria de software. Este trabalho visa contribuir nas pesquisas que buscam mecanismos e cientes para a visualização de processos de software apresentando a abordagem APSEE-Monitor destinada ao apoio a visualização de processos de software durante a sua execução. O principal objetivo desta pesquisa é apresentar um modelo formal de apoio a visualização de processos capaz de extrair dados de processos e organizá-los em sub-domínios de informações de interesse do gerente de processos. Neste trabalho aplica-se o conceito de múltiplas perspectivas como uma estratégia viável para a abstração e organização das informações presentes no modelo de processos. A solução proposta destaca-se por estender a definção original de perspectivas e fornecer uma estratégia de extração dos dados através de uma especificação formal utilizando o paradigma PROSOFT-Algébrico. Além disso, o trabalho apresenta um conjunto de requisitos relativos a interação entre gerentes de processos e PSEEs, a definição formal das perspectivas, uma gramática que define a linguagem de consulta aos processos, e um protótipo da aplicação.
Resumo:
Generalized hyper competitiveness in the world markets has determined the need to offer better products to potential and actual clients in order to mark an advantagefrom other competitors. To ensure the production of an adequate product, enterprises need to work on the efficiency and efficacy of their business processes (BPs) by means of the construction of Interactive Information Systems (IISs, including Interactive Multimedia Documents) so that they are processed more fluidly and correctly.The construction of the correct IIS is a major task that can only be successful if the needs from every intervenient are taken into account. Their requirements must bedefined with precision, extensively analyzed and consequently the system must be accurately designed in order to minimize implementation problems so that the IIS isproduced on schedule and with the fewer mistakes as possible. The main contribution of this thesis is the proposal of Goals, a software (engineering) construction process which aims at defining the tasks to be carried out in order to develop software. This process defines the stakeholders, the artifacts, and the techniques that should be applied to achieve correctness of the IIS. Complementarily, this process suggests two methodologies to be applied in the initial phases of the lifecycle of the Software Engineering process: Process Use Cases for the phase of requirements, and; MultiGoals for the phases of analysis and design. Process Use Cases is a UML-based (Unified Modeling Language), goal-driven and use case oriented methodology for the definition of functional requirements. It uses an information oriented strategy in order to identify BPs while constructing the enterprise’s information structure, and finalizes with the identification of use cases within the design of these BPs. This approach provides a useful tool for both activities of Business Process Management and Software Engineering. MultiGoals is a UML-based, use case-driven and architectural centric methodology for the analysis and design of IISs with support for Multimedia. It proposes the analysis of user tasks as the basis of the design of the: (i) user interface; (ii) the system behaviour that is modeled by means of patterns which can combine Multimedia and standard information, and; (iii) the database and media contents. This thesis makes the theoretic presentation of these approaches accompanied with examples from a real project which provide the necessary support for the understanding of the used techniques.
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The domain of Knowledge Discovery (KD) and Data Mining (DM) is of growing importance in a time where more and more data is produced and knowledge is one of the most precious assets. Having explored both the existing underlying theory, the results of the ongoing research in academia and the industry practices in the domain of KD and DM, we have found that this is a domain that still lacks some systematization. We also found that this systematization exists to a greater degree in the Software Engineering and Requirements Engineering domains, probably due to being more mature areas. We believe that it is possible to improve and facilitate the participation of enterprise stakeholders in the requirements engineering for KD projects by systematizing requirements engineering process for such projects. This will, in turn, result in more projects that end successfully, that is, with satisfied stakeholders, including in terms of time and budget constraints. With this in mind and based on all information found in the state-of-the art, we propose SysPRE - Systematized Process for Requirements Engineering in KD projects. We begin by proposing an encompassing generic description of the KD process, where the main focus is on the Requirements Engineering activities. This description is then used as a base for the application of the Design and Engineering Methodology for Organizations (DEMO) so that we can specify a formal ontology for this process. The resulting SysPRE ontology can serve as a base that can be used not only to make enterprises become aware of their own KD process and requirements engineering process in the KD projects, but also to improve such processes in reality, namely in terms of success rate.
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VALENTIM, R. A. M. ; SOUZA NETO, Plácido Antônio de. O impacto da utilização de design patterns nas métricas e estimativas de projetos de software: a utilização de padrões tem alguma influência nas estimativas?. Revista da FARN, Natal, v. 4, p. 63-74, 2006
Resumo:
Researches in Requirements Engineering have been growing in the latest few years. Researchers are concerned with a set of open issues such as: communication between several user profiles involved in software engineering; scope definition; volatility and traceability issues. To cope with these issues a set of works are concentrated in (i) defining processes to collect client s specifications in order to solve scope issues; (ii) defining models to represent requirements to address communication and traceability issues; and (iii) working on mechanisms and processes to be applied to requirements modeling in order to facilitate requirements evolution and maintenance, addressing volatility and traceability issues. We propose an iterative Model-Driven process to solve these issues, based on a double layered CIM to communicate requirements related knowledge to a wider amount of stakeholders. We also present a tool to help requirements engineer through the RE process. Finally we present a case study to illustrate the process and tool s benefits and usage
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Through the adoption of the software product line (SPL) approach, several benefits are achieved when compared to the conventional development processes that are based on creating a single software system at a time. The process of developing a SPL differs from traditional software construction, since it has two essential phases: the domain engineering - when common and variables elements of the SPL are defined and implemented; and the application engineering - when one or more applications (specific products) are derived from the reuse of artifacts created in the domain engineering. The test activity is also fundamental and aims to detect defects in the artifacts produced in SPL development. However, the characteristics of an SPL bring new challenges to this activity that must be considered. Several approaches have been recently proposed for the testing process of product lines, but they have been shown limited and have only provided general guidelines. In addition, there is also a lack of tools to support the variability management and customization of automated case tests for SPLs. In this context, this dissertation has the goal of proposing a systematic approach to software product line testing. The approach offers: (i) automated SPL test strategies to be applied in the domain and application engineering, (ii) explicit guidelines to support the implementation and reuse of automated test cases at the unit, integration and system levels in domain and application engineering; and (iii) tooling support for automating the variability management and customization of test cases. The approach is evaluated through its application in a software product line for web systems. The results of this work have shown that the proposed approach can help the developers to deal with the challenges imposed by the characteristics of SPLs during the testing process
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Software Products Lines (SPL) is a software engineering approach to developing software system families that share common features and differ in other features according to the requested software systems. The adoption of the SPL approach can promote several benefits such as cost reduction, product quality, productivity, and time to market. On the other hand, the SPL approach brings new challenges to the software evolution that must be considered. Recent research work has explored and proposed automated approaches based on code analysis and traceability techniques for change impact analysis in the context of SPL development. There are existing limitations concerning these approaches such as the customization of the analysis functionalities to address different strategies for change impact analysis, and the change impact analysis of fine-grained variability. This dissertation proposes a change impact analysis tool for SPL development, called Squid Impact Analyzer. The tool allows the implementation of change impact analysis based on information from variability modeling, mapping of variability to code assets, and existing dependency relationships between code assets. An assessment of the tool is conducted through an experiment that compare the change impact analysis results provided by the tool with real changes applied to several evolution releases from a SPL for media management in mobile devices
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Software Repository Mining (MSR) is a research area that analyses software repositories in order to derive relevant information for the research and practice of software engineering. The main goal of repository mining is to extract static information from repositories (e.g. code repository or change requisition system) into valuable information providing a way to support the decision making of software projects. On the other hand, another research area called Process Mining (PM) aims to find the characteristics of the underlying process of business organizations, supporting the process improvement and documentation. Recent works have been doing several analyses through MSR and PM techniques: (i) to investigate the evolution of software projects; (ii) to understand the real underlying process of a project; and (iii) create defect prediction models. However, few research works have been focusing on analyzing the contributions of software developers by means of MSR and PM techniques. In this context, this dissertation proposes the development of two empirical studies of assessment of the contribution of software developers to an open-source and a commercial project using those techniques. The contributions of developers are assessed through three different perspectives: (i) buggy commits; (ii) the size of commits; and (iii) the most important bugs. For the opensource project 12.827 commits and 8.410 bugs have been analyzed while 4.663 commits and 1.898 bugs have been analyzed for the commercial project. Our results indicate that, for the open source project, the developers classified as core developers have contributed with more buggy commits (although they have contributed with the majority of commits), more code to the project (commit size) and more important bugs solved while the results could not indicate differences with statistical significance between developer groups for the commercial project
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This work shows a project method proposed to design and build software components from the software functional m del up to assembly code level in a rigorous fashion. This method is based on the B method, which was developed with support and interest of British Petroleum (BP). One goal of this methodology is to contribute to solve an important problem, known as The Verifying Compiler. Besides, this work describes a formal model of Z80 microcontroller and a real system of petroleum area. To achieve this goal, the formal model of Z80 was developed and documented, as it is one key component for the verification upto the assembly level. In order to improve the mentioned methodology, it was applied on a petroleum production test system, which is presented in this work. Part of this technique is performed manually. However, almost of these activities can be automated by a specific compiler. To build such compiler, the formal modelling of microcontroller and modelling of production test system should provide relevant knowledge and experiences to the design of a new compiler. In ummary, this work should improve the viability of one of the most stringent criteria for formal verification: speeding up the verification process, reducing design time and increasing the quality and reliability of the product of the final software. All these qualities are very important for systems that involve serious risks or in need of a high confidence, which is very common in the petroleum industry