scholarly journals PENGEMBANGAN APLIKASI INFORMATION GATHERING MENGGUNAKAN METODE HYBRID SCAN BERBASIS GRAPHICAL USER INTERFACE

2021 ◽  
Vol 4 (1) ◽  
pp. 44-48
Author(s):  
Mardhani Riasetiawan ◽  
Akas Wisnuaji ◽  
Dedy Hariyadi ◽  
Tri Febrianto

Sebagian analis keamanan sistem dan jaringan komputer menyatakan aplikasi atau alat bantu pengujian berbasis Command-line Interface (CLI) sangat mempermudah pekerjaan. Namun, tidak banyak aplikasi tersebut tidak komprehensif baik cara menganalisis maupun hasil laporannya. Laporan pada proses pengujian keamanan sistem dan jaringan komputer diharapkan minimal terdiri dari dua tipe, yaitu keperluan manajemen dan tim teknis. Tulisan ini diusulkan pengembangan aplikasi atau alat bantu pengujian keamanan sistem dan jaringan komputer yang komprehensif dan memiliki laporan yang memudahkan tim manajemen dan tim teknis. Pada pengembangan ini menggunakan bahasa pemrograman Python dengan module TKInter untuk menghasilkan aplikasi berbasis Graphical User Interface (GUI). Dengan menggunakan aplikasi GUI harapannya dapat digunakan oleh siapapun. Fokus pengembangan aplikasi ini yaitu pada tahapan Information Gathering yang menggunakan metode Hybrid Scan,yaitu: Passive dan Active. Passive Scan menggunakan 11 Application Programming Interface (API) sedangkan Active Scan menggunakan Socket Module Python dan berberapa aplikasi native yang berjalan di GNU/Linux.

2008 ◽  
Vol 17 (05) ◽  
pp. 940-964
Author(s):  
CHUL-WOO CHOI ◽  
RICHARD J. GONSALVES

A Feynman diagram generator, named FeynChois, is described. It provides the user with a full GUI (Graphical User Interface) environment which enables the generation diagrams automatically with several mouse operations. The diagram generator is built on an Application Programming Interface (API) called ViewableBeans which provides a framework for programming graphically representable objects. We also present a means for describing Feynman rules in a computer friendly manner using the XML (Extensible Markup Language) format.


2020 ◽  
Vol 226 ◽  
pp. 03001
Author(s):  
Elena Akishina ◽  
Evgeny Alexandrov ◽  
Igor Alexandrov ◽  
Irina Filozova ◽  
Konstantin Gertsenberger ◽  
...  

The article is dedicated to the current state of the Geometry Database for the BM@N experiment of the NICA project. The main goal of the database is to provide a central storage of the BM@N geometries, convenient tools for managing its geometry modules, various software assembling versions of the BM@N setup as a combination of modules and additional files providing support for a set of versions. Both the Graphical User Interface (GUI) and the Application Programming Interface (API) have been developed.


2019 ◽  
Vol 214 ◽  
pp. 02030
Author(s):  
Elena Akishina ◽  
Evgeny Alexandrov ◽  
Igor Alexandrov ◽  
Irina Filozova ◽  
Volker Friese ◽  
...  

This paper is dedicated to the current state of the Geometry Database (Geometry DB) for the CBM experiment. The geometry DB is an information system that supports the CBM geometry. The main aims of Geometry DB are to provide storage of the CBM geometry, convenient tools for managing the geometry modules, assembling various versions of the CBM setup as a combination of geometry modules and additional files, providing support of various versions of the CBM setup. The development is based on the analysed users’ requirements (which were formulated in User Requirements Document) and takes into account peculiarities of the workflow for simulation of particle transport through the setup. Both the Graphical User Interface (GUI) and the Application Programming Interface (API) are available for the members of the CBM collaboration.


Author(s):  
Vasily Scherbakov

The paper discusses the main aspects of the practical implementation of software and user interfaces for managing models of neuromorphic computing systems.


2009 ◽  
Vol 2009 ◽  
pp. 1-21 ◽  
Author(s):  
Prabhakar Subrahmanyam

This publication presents the architecture integration and implementation of various modules inSpartaframework.Spartais a trajectory engine that is hooked to an Online Analytical Processing (OLAP) database for Multi-dimensional analysis capability. OLAP is an Online Analytical Processing database that has a comprehensive list of atmospheric entry probes and their vehicle dimensions, trajectory data, aero-thermal data and material properties like Carbon, Silicon and Carbon-Phenolic based Ablators. An approach is presented for dynamic TPS design. OLAP has the capability to run in one simulation several different trajectory conditions and the output is stored back into the database and can be queried for appropriate trajectory type. An OLAP simulation can be setup by spawning individual threads to run for three types of trajectory:Nominal,Undershoot and Overshoot trajectory. Sparta graphical user interface provides capabilities to choose from a list of flight vehicles or enter trajectory and geometry information of a vehicle in design. DOTNET framework acts as a middleware layer between the trajectory engine and the user interface and also between the web user interface and the OLAP database. Trajectory output can be obtained in TecPlot format, Excel output or in a KML (Keyhole Markup Language) format. Framework employs an API (application programming interface) to convert trajectory data into a formatted KML file that is used by Google Earth for simulating Earth-entry fly-by visualizations.


e-xacta ◽  
2013 ◽  
Vol 6 (2) ◽  
pp. 93
Author(s):  
Felipe Francisco Ramos de Oliveira ◽  
Marlon Marques Ferreira ◽  
Alexandre Furst

<p align="justify">Este artigo documenta e analisa o processo de evolução das principais interfaces homem-máquina, com enfoque na usabilidade, e as diferenças tecnológicas entre elas. A pesquisa desempenhada para elaboração deste documento procura, também, experimentar o desempenho das interfaces CLI (Command Line Interface), GUI (Graphical User Interface) e NUI (Natural User Interface) por meio de um experimento de usabilidade que aborde as três interfaces em um único objetivo e permita o recolhimento de dados para avaliação.</p><p align="justify">Abstract</p><p align="justify">This article documents and analyzes the evolution of the main man-machine interfaces, with a focus on usability and technological differences between them. The research carried out for the preparation of this document also seeks to experience the performance of interfaces CLI (Command Line Interface) GUI (Graphical User Interface) and NUI (Natural User Interface) through an experiment that addresses the usability of three interfaces on a single goal and allow the collection of data for evaluation.</p>


Compiler ◽  
2021 ◽  
Vol 10 (2) ◽  
pp. 79
Author(s):  
Sudaryanto Sudaryanto ◽  
Anggraini Kusumaningrum ◽  
Yuliani Indrianingsih ◽  
Dadan Rachman Prabowo

Enhanced Interior Gateway Routing Protocol (EIGRP) is a routing protocol that can be used to determine the path of data to be sent. EIGRP can achieve goals and study interconnected networks to obtain useful information to determine the best path. EIGRP is only adopted by Cisco routers or can be called a Cisco Proprietary Protocol, which can only be used on Cisco router devices. Currently, the EIGRP routing configuration uses the command line. For this reason, a Website-based EIGRP system was created and can be accessed remotely (remotely) with the aim of providing freedom of access and not focusing on one device. Website-based EIGRP system was created by utilizing Cisco's API as a liaison between the programming language and Cisco Router 2811 software. Telnet utilization plays a very important role in creating a Website-based EIGRP System where Telnet can provide wider access in management. By visiting the host and port of the router, the EIGRP Website Based System can easily do this. The results of the test in this study indicate that the Website-based EIGRP system is proven to be able to configure, so that administrators can use it for device management of Cisco Router 2811.


PeerJ ◽  
2019 ◽  
Vol 7 ◽  
pp. e8111 ◽  
Author(s):  
Markus Joppich ◽  
Ralf Zimmer

Bioinformatics is a highly interdisciplinary field providing (bioinformatics) applications for scientists from many disciplines. Installing and starting applications on the command-line (CL) is inconvenient and/or inefficient for many scientists. Nonetheless, most methods are implemented with a command-line interface only. Providing a graphical user interface (GUI) for bioinformatics applications is one step toward routinely making CL-only applications available to more scientists and, thus, toward a more effective interdisciplinary work. With our bioGUI framework we address two main problems of using CL bioinformatics applications: First, many tools work on UNIX-systems only, while many scientists use Microsoft Windows. Second, scientists refrain from using CL tools which, however, could well support them in their research. With bioGUI install modules and templates, installing and using CL tools is made possible for most scientists—even on Windows, due to bioGUI’s support for Windows Subsystem for Linux. In addition, bioGUI templates can easily be created, making the bioGUI framework highly rewarding for developers. From the bioGUI repository it is possible to download, install and use bioinformatics tools with just a few clicks.


Author(s):  
Pinasti Nur Handayaningtyas ◽  
Basori Basori ◽  
A.G Tamrin

<p>Penelitian ini bertujuan untuk mengetahui apakah penerapan project   based learning dapat meningkatkan aktivitas dan kompetensi belajar siswa dalam Instalasi Sistem Operasi Berbasis GUI ( Graphical User Interface) dan CLI ( Command Line Interface)  kelas X TKJ SMK N 1 Sawit. Penelitian ini menggunakan metode Penelitian Tindakan Kelas (PTK) yang dilaksanakan sebanyak dua siklus dimana masing – masing siklus dilakukan dengan empat tahapan, yaitu : (1) tindakan perencanaan; (2) tindakan pelaksanaan; (3) tindakan observasi; dan (4) refleksi. Subjek penelitian adalah siswa kelas X TKJ 3 di SMK N 1 Sawit sebanyak 34 siswa. Penelitian ini dilaksanakan dengan kolaborasi antara peneliti, guru, observer dan melibatkan partisipasi siswa. Teknik pengumpulan data menggunakan lembar observasi, wawancara, instrumen tes dan teknik analisis data. Berdasarkan hasil penelitian, dapat disimpulkan bahwa penerapan project   based learning dapat meningkatkan aktivitas dan kompetensi instalasi sistem operasi berbasis GUI dan CLI. Hal ini terbukti dari fakta – fakta hasil sebagai berikut : (1) Aktivitas siswa dalam mengikuti pembelajaran mengalami peningkatan pada pra siklus sebesar 32,35% menjadi 58,82% pada siklus I dan pada siklus II meningkat menjadi 82,35%. (2) Kompetensi siswa dalam pembelajaran terdisi dari 3 ranah yaitu masing – masing ranah meengalami peningkatan sebagai berikut : (a) Ranah Kognitif  dari pra siklus sebesar 11,76% menjadi 26,47% pada siklus I dan siklus II meningkat menjadi sebesar 47,05%. (b) Ranah Afektif dari pra siklus sebesar 32,35% menjadi 53,29% pada siklus I dan pada siklus II meningkat menjadi sebesar 76,47%. (c) Ranah Psikomotorik dari pra siklus sebesar 44,11% menjadi 79,41% pada siklus I dan pada siklus II meningkat menjadi 82,35%.</p><div><p><strong> Kata kunci :</strong> Project   based learning, Aktivitas dan Kompetensi, Instalasi Sistem Operasi Berbasis GUI (Graphical User Interface) dan CLI ( Command Line Interface</p></div>


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