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	<title>Ηackathons Archives - PHYSICS</title>
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	<title>Ηackathons Archives - PHYSICS</title>
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	<item>
		<title>3rd Hackathon: &#8220;Writing a K8s Operator for Knative Functions&#8221;</title>
		<link>https://physics-faas.eu/event/future-tech-and-open-research-hackathon/</link>
		
		<dc:creator><![CDATA[Elina Vasiliki]]></dc:creator>
		<pubDate>Wed, 10 May 2023 11:32:08 +0000</pubDate>
				<guid isPermaLink="false">https://physics-faas.eu/?post_type=ignition-event&#038;p=1855</guid>

					<description><![CDATA[<p>The third PHYSICS hackathon will introduce you to the FaaS model and to building Kubernetes operators. You will implement a K8s Operator, using the operatorsdk framework, to provide the functionality of the Knative CLI. This [&#8230;]</p>
<p>The post <a href="https://physics-faas.eu/event/future-tech-and-open-research-hackathon/">3rd Hackathon: &#8220;Writing a K8s Operator for Knative Functions&#8221;</a> appeared first on <a href="https://physics-faas.eu">PHYSICS</a>.</p>
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<p>The third PHYSICS hackathon will introduce you to the FaaS model and to building Kubernetes operators. You will implement a K8s Operator, using the operatorsdk framework, to provide the functionality of the Knative CLI. This will allow you to create easier build and deploy functions with Knative just by creating Kubernetes (CR) objects, and will help you learn the internals about how K8s Operators work in a real-life example.</p>



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<p>Serverless and Function as a Service (FaaS) are getting more and more attention from customers and developers as a way to develop, run and manage applications functionality without the burden of infrastructure related knowledge. All big cloud providers offer them already, e.g., AWS Lambda, Google Cloud Functions or Microsoft Azure Functions. One of the most relevant upstream projects for serverless is Knative, which recently added support for functions (create, build, and deploy) on top of K8s clusters.</p>



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<div class="wp-block-button has-custom-width wp-block-button__width-50"><a class="wp-block-button__link has-background" href="https://www.eventbrite.com/e/devconfcz-2023-tickets-618876224447" style="background-color:#eb7a00" target="_blank" rel="noreferrer noopener"><strong>Date and time:</strong> Friday, June 16, 2023,&nbsp;2:15 PM – 3:35 PM CET<br><strong>Location</strong>: Brno, Czech Republic, Hybrid</a></div>
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<h3 class="has-text-align-center wp-block-heading"><strong>SPEAKERS</strong></h3>



<p><strong>Luis Tomas Bolivar</strong><br>Red Hat<a href="https://devconfcz2023.sched.com/speaker/jlema"></a></p>



<p><strong>Jose Castillo Lema</strong><br>Senior Software Engineer, Red Hat</p>



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<div class="wp-block-button has-custom-font-size has-normal-font-size"><a class="wp-block-button__link has-background" href="https://www.eventbrite.com/e/devconfcz-2023-tickets-618876224447" style="background-color:#ea7a00" target="_blank" rel="noreferrer noopener"><strong>Register Now</strong></a></div>
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<p class="has-text-align-center"> For future webinars and workshops on this topic follow the PHYSICS project on Social Media! </p>
<p>The post <a href="https://physics-faas.eu/event/future-tech-and-open-research-hackathon/">3rd Hackathon: &#8220;Writing a K8s Operator for Knative Functions&#8221;</a> appeared first on <a href="https://physics-faas.eu">PHYSICS</a>.</p>
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		<title>2nd PHYSICS Hackathon</title>
		<link>https://physics-faas.eu/event/2nd-physics-hackathon/</link>
		
		<dc:creator><![CDATA[Elina Vasiliki]]></dc:creator>
		<pubDate>Thu, 18 May 2023 08:27:33 +0000</pubDate>
				<guid isPermaLink="false">https://physics-faas.eu/?post_type=ignition-event&#038;p=1867</guid>

					<description><![CDATA[<p>The second Hackathon of the PHYSICS project is scheduled to take place at the Harokopio University of Athens, with the primary objective of actively involving participants in using and extending parts of the PHYSICS solution, [&#8230;]</p>
<p>The post <a href="https://physics-faas.eu/event/2nd-physics-hackathon/">2nd PHYSICS Hackathon</a> appeared first on <a href="https://physics-faas.eu">PHYSICS</a>.</p>
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<p><meta charset="utf-8">The second Hackathon of the PHYSICS project is scheduled to take place at the Harokopio University of Athens, with the primary objective <meta charset="utf-8">of actively involving participants in using and extending parts of the PHYSICS solution, primarily from a design environmental point of view and according to the usage of PHYSICS patterns.<br><meta charset="utf-8">The overarching aim is to employ, amalgamate, and enhance these patterns through the utilization of Node-RED flows.</p>



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<p class="has-text-align-center"><strong>You can also find the<a href="https://github.com/gkousiouris/2ndPHYSICSHackathon" target="_blank" rel="noreferrer noopener"> helper material</a> of the hackathon.</strong></p>



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<div class="wp-block-button has-custom-width wp-block-button__width-50"><a class="wp-block-button__link has-background" style="background-color:#eb7a00"><strong>Date and time:</strong> May 24 &#8211; June 6, 2023,&nbsp;5:00 PM Greek time<br><strong>Location</strong>: Harokopio University of Athens</a></div>
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<h2 class="wp-block-heading">Prizes<br></h2>



<p>We are delighted to announce that the top four submissions will be awarded the following prizes:<br><br>&#8211; <strong>1st</strong> Best submission:<strong> 150€ Amazon gift card</strong><br>&#8211; <strong>2nd </strong>Best submission:<strong> 140€ Amazon gift card</strong><br>&#8211; <strong>3rd </strong>Best submission: <strong>75€ Amazon gift card</strong><br>&#8211; <strong>4th </strong>Best submission:<strong> 70€ Amazon gift card</strong></p>



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<div class="wp-block-buttons is-content-justification-center is-layout-flex wp-block-buttons-is-layout-flex">
<div class="wp-block-button is-style-outline is-style-outline--1"><a class="wp-block-button__link has-background" href="https://2nd-physics-hackathon.devpost.com/" style="background-color:#ea7a00" target="_blank" rel="noreferrer noopener">Register to the hackathon</a></div>
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src="https://physics-faas.eu/wp-content/uploads/2023/05/εικόνα_Viber_2023-05-24_19-46-54-665-300x225.jpg" alt="" data-id="1883" data-full-url="https://physics-faas.eu/wp-content/uploads/2023/05/εικόνα_Viber_2023-05-24_19-46-54-665.jpg" data-link="https://physics-faas.eu/event/2nd-physics-hackathon/%ce%b5%ce%b9%ce%ba%ce%bf%ce%bd%ce%b1_viber_2023-05-24_19-46-54-665/" class="wp-image-1883" srcset="https://physics-faas.eu/wp-content/uploads/2023/05/εικόνα_Viber_2023-05-24_19-46-54-665-300x225.jpg 300w, https://physics-faas.eu/wp-content/uploads/2023/05/εικόνα_Viber_2023-05-24_19-46-54-665-1024x768.jpg 1024w, https://physics-faas.eu/wp-content/uploads/2023/05/εικόνα_Viber_2023-05-24_19-46-54-665-768x576.jpg 768w, https://physics-faas.eu/wp-content/uploads/2023/05/εικόνα_Viber_2023-05-24_19-46-54-665-1536x1152.jpg 1536w, https://physics-faas.eu/wp-content/uploads/2023/05/εικόνα_Viber_2023-05-24_19-46-54-665.jpg 1600w" sizes="auto, (max-width: 300px) 100vw, 300px" 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<p class="has-text-align-center"> For future webinars and workshops on this topic follow the PHYSICS project on Social Media! </p>
<p>The post <a href="https://physics-faas.eu/event/2nd-physics-hackathon/">2nd PHYSICS Hackathon</a> appeared first on <a href="https://physics-faas.eu">PHYSICS</a>.</p>
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		<title>Welcome to the 1st PHYSICS hackathon!</title>
		<link>https://physics-faas.eu/event/welcome-to-the-1st-physics-hackathon/</link>
		
		<dc:creator><![CDATA[Elina Vasiliki]]></dc:creator>
		<pubDate>Thu, 10 Nov 2022 13:36:07 +0000</pubDate>
				<guid isPermaLink="false">https://physics-faas.eu/?post_type=ignition-event&#038;p=1467</guid>

					<description><![CDATA[<p>PHYSICS is looking for creative developers and experts to design and implement innovative solutions during a unique 3-day online event (22-24 November 2022). PHYSICS, an EU-funded project under the H2020 program, is developing a toolkit [&#8230;]</p>
<p>The post <a href="https://physics-faas.eu/event/welcome-to-the-1st-physics-hackathon/">Welcome to the 1st PHYSICS hackathon!</a> appeared first on <a href="https://physics-faas.eu">PHYSICS</a>.</p>
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<div class="wp-block-button"><a class="wp-block-button__link has-white-color has-text-color has-background" href="https://www.youtube.com/watch?v=ysFu71Luc9A" style="background-color:#cf7e7e" target="_blank" rel="noreferrer noopener">Find the video to the introductory session here</a></div>
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<p><strong>PHYSICS is looking for creative developers and experts to design and implement innovative solutions during a unique 3-day online event (22-24 November 2022).</strong></p>



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<p>PHYSICS, an EU-funded project under the H2020 program, is developing a toolkit based on the FaaS paradigm. It aims to provide an exciting opportunity for <strong>IoT enthusiasts</strong> and <strong>cybersecurity experts </strong>to use PHYSICS <strong>testbed</strong> to design and develop runtime solutions, opening the door to further high-level research on this topic, or to assess the security and performance level and <strong>suggest tailored solutions</strong>. The hackathon consists of <strong>three challenges, one related to runtime orchestration, one to secured platforms,</strong> and<strong> one to investigating performance issues</strong> of FaaS platforms.</p>



<p>The <em><strong>runtime challenge</strong></em> is looking for applications consuming FaaS functions, available at the PHYSICS testbed or developed specifically for the application, integrating external solutions that allow the orchestration of these functions during runtime for executing the application workflow.</p>



<p>The <strong><em>security challenge </em></strong>looks for an evaluation of the platform vulnerabilities as well as the proposal of easy solutions to be implemented.</p>



<p>The <strong><em>performance challenge</em></strong> looks for the usage of PHYSICS-produced load generators and performance monitors in order to detect performance issues of executed functions as well as enable the mitigation of them through relevant corrective actions.</p>



<p>The hackathon will start with a workshop to introduce the three challenges and what is expected from each of them (22 November, 10:00 CET). Each participant will have <strong>Slack access</strong> to a set of mentors that will provide technical support and answer any doubts. At the end of the hackathon, participants will share (via Drive) their code (only for the runtime and performance challenges) and a short presentation (for the three challenges) to introduce their idea so it can be evaluated by the judges (24 November, 17:00 CET). Finally, the jury will decide and announce the winner of each challenge.</p>



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<p><strong>Registration is mandatory</strong> and will be done through <a href="https://1st-physics-hackathon.devpost.com/" target="_blank" rel="noreferrer noopener">Devpost</a>, so participants may remain anonymized but still can be notified about the jury resolution and receive the corresponding prices. Individuals or teams are accepted as participants.</p>



<p>Once registered, participants may indicate in which of the challenges they will be involved. Although recommended, there is no limitation for participating in more than one challenge and winning prizes.</p>



<p>Only registered participants will be access granted to the Slack channel and Drive repository (where they will find the corresponding templates for the presentations).</p>



<p>Only one contribution per participant will be accepted for each of the challenges. In case any participant upload 2 (or more) different contributions to a challenge, only the first one will be accepted for evaluation. However, the same contribution can be updated as many times as needed before the deadline. In this case, only the last one will be evaluated by the jury.</p>



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<h2 class="wp-block-heading">Prizes</h2>



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<p>All participants will receive <strong>a diploma for their participation</strong> and will be invited to share a short video pitch (1-2 minutes) that <strong>will be promoted through the project media channels</strong> acknowledging their contribution to FaaS and security research arena.</p>



<p>Additionally, winners of each challenge will receive one of the following prizes:</p>



<p><strong>Challenge winner: </strong>The winner of each challenge will receive<strong> an Amazon voucher of 150€</strong>. For registered teams, only one voucher will be provided for the whole team.</p>



<p><strong>Hackathon top winner: </strong>An additional Amazon <strong>voucher of 50€</strong> will be given to the Challenge winner with a higher score card.</p>



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<h2 class="wp-block-heading">Technical requirements</h2>



<p>You will work on your own personal computer, equipped with the necessary software, in order to implement, test and demonstrate your solution.</p>



<p>For the <strong><em>runtime challenge</em></strong> you need to deploy a Openwhisk version in your laptop. There are several ways to do this (Docker composer, Kubernetes cluster, standalone Java, etc.). We recommend using the docker version because you do not need to install additional tools like maven, java, etc., in the laptop and there is a lightweight (lean) version. You can find <strong><a href="https://openwhisk.apache.org/documentation.html#openwhisk_deployment" target="_blank" rel="noreferrer noopener">here</a> </strong>the different deployment options for Openwhisk.</p>



<p>We recommend starting from<strong> <a href="https://openwhisk.apache.org/documentation.html#getting-started" target="_blank" rel="noreferrer noopener">here</a></strong> to be familiar with Openwhisk concepts and test the environment.</p>



<p>You might also need to install the Openwhisk wsk CLI tool to test the environment. You can find information about installation and how to use this client <a href="https://openwhisk.apache.org/documentation.html#wsk-cli" target="_blank" rel="noreferrer noopener"><strong>here</strong></a>.</p>



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<p>For the <strong><em>performance challenge</em></strong> you must preinstall:</p>



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<ul class="wp-block-list"><li>The PHYSICS load generator, available as a Node-RED flow[1] to be executed inside a Node-RED server, or as a docker image [2] available to be registered in an existing Openwhisk installation and invoked through the relevant interfaces</li><li>The PHYSICS Openwhisk Sliding Window monitor node [3] or subflow [4], to be extended with logic that aims at regulating a specific aspect of Openwhisk or the function under monitor, in order to optimize or control its performance. Examples may include changing the Openwhisk cluster size, changing concurrency parameters for the Openwhisk function etc.</li><li>An available Openwhisk installation is needed at the user side (follow installation instructions in the runtime challenge description).</li></ul>



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<h2 class="wp-block-heading"><span style="text-decoration: underline;">Jury</span></h2>



<ul class="wp-block-list"><li><strong>Fabrizio Di Peppo (GFT)</strong></li><li><strong>George Kousiouris (HUA)</strong></li><li><strong>Lara López (ATOS)</strong></li></ul>



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<h2 class="wp-block-heading"><span style="text-decoration: underline;">Mentors</span></h2>



<ul class="wp-block-list"><li><strong>Vasileios Katevas (HUA)</strong></li><li><strong>Carlos Sanchez (ATOS)</strong></li></ul>



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<h2 class="wp-block-heading"><span style="text-decoration: underline;">Evaluation criteria</span></h2>



<ul class="wp-block-list"><li><strong>Technical Quality</strong></li></ul>



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<p>Max. points: 50 – Technical quality of the solution, including design and correctness of operation.</p>



<p><strong>Business Potential</strong></p>



<p>Max. points: 20 – Business perspective of the proposed solution</p>



<p><strong>Innovation and Applicability</strong></p>



<p>Max. points: 30 – Novelty of the proposed solution, problems solved and integration with PHYSICS</p>



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<p><strong>[1]. PHYSICS Load Generator Subflow, available at: </strong><a href="https://flows.nodered.org/flow/53bf7addb6ef140ab7e9395c9a9feb1b/in/HXSkA2JJLcGA"><strong>https://flows.nodered.org/flow/53bf7addb6ef140ab7e9395c9a9feb1b/in/HXSkA2JJLcGA</strong></a><strong></strong></p>



<p><strong>[2]. PHYSICS Load Generator Image, available at: </strong><br><a href="https://hub.docker.com/r/gkousiou/physicspef_loadgenclient"><strong>https://hub.docker.com/r/gkousiou/physicspef_loadgenclient</strong></a></p>



<p><strong>[3]. PHYSICS Openwhisk Sliding Window Monitor node, available at: </strong><br><a href="https://www.npmjs.com/package/node-red-contrib-owmonitor"><strong>https://www.npmjs.com/package/node-red-contrib-owmonitor</strong></a></p>



<p><strong>[4]. PHYSICS Openwhisk Sliding Window Monitor subflow, available at: </strong><a href="https://flows.nodered.org/flow/a86475720659b3ed9eb5024052d94b1d/in/HXSkA2JJLcGA"><strong>https://flows.nodered.org/flow/a86475720659b3ed9eb5024052d94b1d/in/HXSkA2JJLcGA</strong></a></p>



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<p>The post <a href="https://physics-faas.eu/event/welcome-to-the-1st-physics-hackathon/">Welcome to the 1st PHYSICS hackathon!</a> appeared first on <a href="https://physics-faas.eu">PHYSICS</a>.</p>
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