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As such, most ships are really well equipped with spare parts and even with raw materials and the tools needed to fabricate most of what they cant store, and mariners are famed for their ability to make do with what theyve got. Automate 9 CrackersBut as self sufficient as a ship at sea might be, the unexpected can always happen. A vital system could fail for lack of a simple spare part, at best resulting in a delay for the shipping company and at worst putting the crew in mortal danger. Another vessel can be dispatched to assist, or if the ship is close enough ashore a helicopter rendezvous might be arranged. Automate 9 Crack' title='Automate 9 Crack' />Automate 9 CrackedAutomate 9 CrackerExpensive options both, which is why some shipping companies are experimenting with drone deliveries to and from ships at sea. Cookie Drone off the Starboard BeamWeve discussed plans for heavy lift drones for rapid transoceanic freight, but ship to shore and shore to ship deliveries are perhaps more compelling use cases for aerial support of shipping. While its true that the cases where a ship at sea needs support from shore are rare, there are more common and prosaic transportation needs that could be addressed by drones. At the risk of stating the painfully obvious, ships are big. 3Ivx Mpeg-4 Codec. Really big. Modern vessels are among the largest moving objects ever made, and some ports cant even accommodate them. Some, like supertankers, would make lousy neighbors even if they could fit, and many are loaded and unloaded at offshore oil terminals, over dozens of nautical miles offshore. Moored at these tiny artificial islands connected to the shore only by pipelines, tankers often find themselves in need of shuttling documents, mail, small supplies, and even cash back and forth to shore while waiting for cargo operations to complete, sometimes for days. Traditionally a launch is sent for such jobs, but its wasteful to pay thousands of dollars to ferry a few documents around. Thats why the Maersk shipping line recently performed an experiment with drone delivery to a tanker at sea. Originally intended to deliver a symbolic package a box of cookies to the Maersk Edgar while underway a kilometer off Copenhagen, bad weather meant they had to cheat a bit. The octocopter, specially built to operate safely over the tanker and not pose a fire risk in case of a crash, was piloted from a small boat 2. This was a trivial experiment for proof of principle only, and was not an autonomous delivery. But thats probably not a requirement for inshore maritime deliveries realistically, most ships will likely be within range of remote operators on shore anyway. And there may come a day when drones are a standard part of a ships equipment, with one or more crew members trained to fly the drone from ship to shore or even between ships that cross paths far out to sea. Turning it into a Business. Is there a market for this Probably, and at least one company is willing to give inshore ship servicing a try. Wilhelmsen Ships Services recently announced plans for drone based delivery to ships at sea. With operations at 2. WSS is probably poised to take advantage of a large existing client base willing to save a few bucks servicing their fleets. They plan to start a trial at a major port sometime in 2. Itll be interesting to watch where WSS and its eventual successors take maritime drone technology. There are plenty of ships at sea, and plenty of fixed offshore oil and gas platforms to service. Drones could be a game changer for this market, and might be yet another way to automate the freight. Comparison of open source configuration management software. This is a comparison of notable free and open sourceconfiguration management software, suitable for tasks like server configuration, orchestration and infrastructure as code typically performed by a system administrator. Basic propertieseditVerify mode refers to having an ability to determine whether a node is conformant with a guarantee of not modifying it, and typically involves the exclusive use of an internal language supporting read only mode for all potentially system modifying operations. Mutual auth refers to the client verifying the server and vice versa. Agent describes whether additional software daemons are required. Depending on the management software these agents are usually deployed on the target system or on one or many central controller servers. Language. License. Mutual auth. Encrypts. Verify mode. Agent less. Have a GUIFirst release. Latest stable release. Ansible. Python. GPLv. Yes1Yes2Yes. Yes. Partial3 Free 3. Trial2. Bcfg. 2Python. BSD 2 clause6Yes7Yes8Yes9No. Yes1. 02. 00. 4 0. Capistrano. Ruby. MIT License. Yes2Yes2No. Python. GPLv. 3Yes1Yes2Yes. Chef. Ruby, Erlang. Apache 2. 0. Yes1. Yes1. 4Yes1. 51. No. Yes. 20. 09 0. CFEngine. CGPLv. 31. Yes1Yes2. Yes2. No. 19. 93. ISconf. Python. GPL2. Yes2. 4No2. 51. Juju. Python, Go2. Affero General Public License. Yes1Yes8No. No. Yes2. Local Con. Fi. Guration system LCFGPerl. GPLPartial3. 0Partial3. Weekly Releases. NOCPython. BSD License 2. 0. Yes1Yes2Yes. Yes. Yes. 20. 12 0. 3 0. OCS Inventory NG with GLPIPerl, PHP, CGPLNo3. Yes8No. 20. 03. Open pc server integration OpsiPython, Java. GPLNo. Yes8No. 20. PIKTCGPLv. 23. 5Yes3. Yes3. 7No. 19. 983. Puppet. C Clojure from 4. Ruby before then. Apache from 2. 7. GPL before then. Yes4. Yes8Yes4. 14. No. Yes4. 32. 00. Quattor. Perl, Python. Apache 2. Yes4. 8Yes4. 92. Radmind. CBSD5. 2Yes5. Yes5. No. 20. 02 0. Rex. Perl. Apache. Yes1Yes2Yes. Rudder. C and Scala. GPLv. 3 and Apache 2. Yes1Yes8Yes6. No. Yes. 20. 11 1. Smart. Frog. Java. LGPLYes6. Yes6. No. 20. 04 0. Salt6. 6Python6. Apache 2. Yes6. Yes6. 9Yes. Both7. Yes7. 27. 32. Spacewalk. Java C, Perl, Python, PLSQLGPLv. Yes. Yes. No. 20. STAFCCPL7. 8No7. Partial8. No. 19. Synctool8. Python8. GPLv. 28. Yes8. Yes2Yes8. 8Yes8. Language. License. Mutual auth. Encrypts. Verify mode. Agent less. Have a GUIFirst release. Latest stable release. Platform supporteditNote This means platforms on which a recent version of the tool has actually been used successfully, not platforms where it should theoretically work since it is written in good portable CC or an interpreted language. It should also be listed as a supported platform on the projects web site. Short descriptionseditNot all tools have the same goal and the same feature set. To help distinguish between all of these software packages, here is a short description of each one. Ansible. Combines multi node deployment, ad hoc task execution, and configuration management in one package. Manages nodes over SSH and requires python 2. Modules work over JSON and standard output and can be written in any language. Uses YAML to express reusable descriptions of systems. Bcfg. 2Software to manage the configuration of a large number of computers using a central configuration model and the clientserver paradigm. The system enables reconciliation between clients state and the central configuration specification. Detailed reports provide a way to identify unmanaged configuration on hosts. Generators enable code or template based generation of configuration files from a central data repository. CFEngine. Lightweight agent system. Manages configuration of a large number of computers using the clientserver paradigm or stand alone. Any client state which is different from the policy description is reverted to the desired state. Configuration state is specified via a declarative language. CFEngines paradigm is convergent computer immunology. It requires only ssh on the target host, which is usually enabled on all Unix like machines. Only the administration host needs to have Python 3. Chef. Chef is a configuration management tool written in Erlang,1. Ruby DSL for writing configuration recipes. These recipes contain resources that should be put into the declared state. Chef can be used as a clientserver tool, or used in solo mode. ISconf. Tool to execute commands and replicate files on all nodes. The nodes do not need to be up the commands will be executed when they boot. The system has no central server so commands can be launched from any node and they will replicate to all nodes. Juju. Juju concentrates on the notion of service, abstracting the notion of machine or server, and defines relations between those services that are automatically updated when two linked services observe a notable modification. Local Configuration system LCFGLCFG manages the configuration with a central description language in XML, specifying resources, aspects and profiles. Configuration is deployed using the clientserver paradigm. Appropriate scripts on clients called components transcribe the resources into configuration files and restart services as needed. Open PC server integration OpsiOpsi is desktop management software for Windows clients based on Linux servers. It provides automatic software deployment distribution, unattended installation of OS, patch management, hard and software inventory, license management and software asset management, and administrative tasks for the configuration management. PIKTPIKT is foremost a monitoring system that also does configuration management. PIKT consists of a sophisticated, feature rich file preprocessor an innovative scripting language with unique labor saving features a flexible, centrally directed process scheduler a customizing file installer a collection of powerful command line extensions and other useful tools. Puppet. Puppet consists of a custom declarative language to describe system configuration, distributed using the clientserver paradigm using XML RPC protocol in older versions, with a recent switch to REST, and a library to realize the configuration. The resource abstraction layer enables administrators to describe the configuration in high level terms, such as users, services and packages. Puppet will then ensure the servers state matches the description. There was brief support in Puppet for using a pure Ruby DSL as an alternative configuration language starting at version 2. However this feature was deprecated beginning with version 3. Quattor. The quattor information model is based on the distinction between the desired state and the actual state. The desired state is registered in a fabric wide configuration database, using a specially designed configuration language called Pan for expressing and validating configurations, composed out of reusable hierarchical building blocks called templates. Configurations are propagated to and cached on the managed nodes. Radmind. Radmind manages hosts configuration at the file system level. In a similar way to Tripwire and other configuration management tools, it can detect external changes to managed configuration, and can optionally reverse the changes. Radmind does not have higher level configuration element services, packages abstraction.