IBM C9510-401 : IBM WebSphere Application Server Network Deployment V8.5.5 System Administ ExamExam Dumps Organized by Chonglin
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C9510-401 test
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Test Number : C9510-401
Test Name : IBM WebSphere Application Server Network Deployment V8.5.5 System Administ
Vendor Name : IBM
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C9510-401 test
Format | C9510-401 Course Contents | C9510-401 Course Outline | C9510-401 test
Syllabus | C9510-401 test
Objectives
Exam Title :
IBM Certified System Administrator - WebSphere Application Server Network Deployment V8.5.5 and Liberty Profile
Exam ID :
C9510-401
Exam Duration :
120 mins
Questions in test
:
65
Passing Score :
58%
Official Training :
WebSphere Application Server V8.5.5 Administration
Exam Center :
Pearson VUE
Real Questions :
IBM WebSphere Application Server Network Deployment and Liberty Profile System Administration Real Questions
VCE Practice Test :
IBM C9510-401 Certification VCE Practice Test
Architecture
- Identify the components and services in a WebSphere Application Server configuration and describe how they are related or interact.
- Design various WebSphere Application Server topologies, for example, flexible management, intelligent management, mixed platform topology, network deployment cells, Liberty collectives, and ODR.
- Analyze appropriate design considerations when architecting topologies to achieve security, scalability, performance and fault tolerance.
- Demonstrate an understanding of how requests traverse various WebSphere Application Server topologies.
- Demonstrate an understanding of the administration activities for a network deployment cell including the flexible management components.
- Identify and describe the components of the WebSphere Application Server Liberty profile.
11%
Product Installation, Configuration and Maintenance
- Demonstrate an understanding of the IBM Installation Manager and IBM Packaging Utility and its role in installing, configuring, and maintaining WebSphere application servers and components both locally and remotely.
- Perform a silent installation process for WebSphere Application Server and fix pack installations.
- Perform pre and post installation verification.
- Troubleshoot installation problems.
- Create and manage Full and Liberty profiles.
- Manage nodes in a WebSphere topology, for example, managed, unmanaged nodes, flexible management and network deployment cell.
- Backup and restore configuration including the use of checkpoints.
15%
Application Management (Assembly, Deployment and Configuration)
- Explain the structure of enterprise applications, web applications, and business level applications.
- Deploy applications to a WebSphere Application Server environment.
- Configure resources, for example, data sources, JNDI, class paths, J2C providers, as required by an application.
- Use the IBM Rational Application Developer for WebSphere Software or the IBM WebSphere Application Server Developer Tools for Eclipse to examine and manipulate applications.
- Demonstrate an understanding of the administrative tasks required to take an application deployed to the Liberty profile and deploy it in a WebSphere Application Server Network Deployment environment.
9%
Administrative Tools
- Illustrate the usage of the Integrated Solutions Console (ISC) and its various tools (e.g., command assistance, runtime messages).
- Use the standard set of command line administrative tools such as wsadmin, profile management and plug-in generation.
- Use the capabilities of the Job Manager tooling including the submission of Liberty profile jobs.
- Use scripting to perform administrative tasks, for example, scripting libraries, ws_ant, wsadmin
- Write, test, and debug scripts by using the IBM Rational Application Developer for WebSphere Software or the IBM WebSphere Application Server Developer Tools for Eclipse.
- Configure or modify a WebSphere Application Server environment by using properties files and/or the monitored directory feature.
14%
Security configuration and Maintenance
- Configure user repositories.
- Configure SSL for clients and servers, for example, create certificates, populate trust stores and modify certificate expiration.
- Discuss the implications of resource security settings.
- Implement multiple security domains.
- Apply administrative and application security roles.
- Configure different authentication and authorization mechanisms, including SSO.
- Configure Java Enterprise, Liberty, Web and Web Services Security.
14%
Clustering and Workload Management
- Configure clusters in workload management topologies.
- Configure and manage the HTTP server and the web server plug-in.
- Configure distributed session management for high availability and failover scenarios, including the WebSphere eXtreme Scale option.
- Configure messaging engine policies for clustered service integration bus (SIBus) members.
- Configure high availability using core groups.
- Utilize the capabilities of the Liberty collectives.
9%
Intelligent Management and Resiliency
- Use the dynamic cluster elasticity feature.
- Create and configure On Demand Routers (ODR) and the ODR plug-in and associated service policies to enable the dynamic operations.
- Use health policies and actions to monitor and react to changing performance in the environment.
- Configure and maintain application editions.
6%
Performance Monitoring and Tuning
- Use the Tivoli Performance Viewer (TPV) to monitor the WebSphere Application Server runtime.
- Use the Tivoli Performance Viewer (TPV) Advisor and the Diagnostic Advisor to obtain advice on performance issues.
- Tune parameters, for example JVM settings, connection pools, thread pools, that affect WebSphere Application Server performance.
- Use the Performance Monitoring Infrastructure (PMI) metrics and poll MBeans for performance data.
- Configure and monitor the WebSphere Application Server caching mechanisms.
- Configure multi-cell performance management.
11%
Problem Determination
- Enable High Performance Extensible Logging (HPEL) and view HPEL data.
- Enable Cross Component Trace (XCT) and view trace data in XCT Log Viewer.
- Use tools to trigger and analyze heap dumps, javacore dumps, system core dumps and verbose Garbage Collection (GC).
- Configure diagnostic tracing.
- Use "mustgather" documentation and/or the IBM Support Assistant to collect and analyze diagnostic data or submit data to IBM Support.
- Configure, review and analyze log files for example, First Failure Data Capture (FFDC), system logs, native logs.
11%
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IBM Network Dumps
i hope all and sundry had an attractive Thanksgiving last week. My family unit celebrated via welcoming a 4th member to the household. My daughter became born on Wednesday morning, November twenty fifth. And consequently explains what I did ultimate week as a substitute of writing the commonplace Hackaday column. certainly not fear, we will capture up nowadays, and cover the information that’s fit to be observed.
iOS Zero-click Wifi attack
[Ian Beer] of Google’s project Zero brings us the fruit of his lockdown-caused labors, a marvelous iOS assault. The target of this attack is the kernel code that handles AWDL, an Apple WiFi protocol for adhoc mesh networks between devices. essentially the most high-quality feature that makes use of AWDL is AirDrop, Apple’s machine-to-device file sharing equipment. as a result of AWDL is a proprietary protocol, the WiFi hardware can’t do any accelerated processing of packets. a couple of years returned, there became an assault towards Broadcom firmware that required a second vulnerability to jump from the WiFi chip to the gadget CPU. right here, because the protocol is all carried out in Apple’s code, no such pivot is fundamental.
And as you’ve seemingly deduced, there become a vulnerability discovered. AWDL uses classification-size-cost (TLV) messages for sending management records. For a security researcher, TLVs are mainly entertaining because each and every facts class represents a unique code path to attack. a kind of statistics kinds is a listing of MAC addresses, with a highest of 10. The code that handles it allocates a 60 byte buffer, in line with that highest. The problem is that there isn’t a code route to drop incoming TLVs of that category once they exceed 60 bytes. The the rest is written appropriate previous the end of the allocated buffer.
there's extra fun to be had, attending to a full take advantage of, but the particulars are somewhat too a lot to completely dive in to here. It wonderful to observe that [Ian] bumped into a specific difficulty: His poking at the goal code changed into triggering unexpected kernel panics. He found two separate vulnerabilities, each distinct from the vuln he became making an attempt to exploit.
ultimately, this exploit requires the goal equipment to have AWDL enabled, and a lot of received’t. but you can use Bluetooth Low power adverts to trick the goal machine into believing an Airdrop is coming in from a depended on contact. as soon as the gadget makes it possible for AWDL to determine the request, the assault can proceed. [Ian] stated his findings to Apple means lower back in 2019, and this vulnerability turned into patched in March of 2020.
by way of Ars Technica.
And if a neatly packaged iOS jailbreak is more your velocity, Odyssey became recently released, a slick looking open source jailbreak app for modern iOS devices. For even more jailbreak goodness, how about jailbreaking your HomePod? The newest unlock of Checkra1n makes it in part viable.
Fortinet contraptions Getting Owned
guess what happens when a significant vulnerability is found and fixed, and gadget administrators don’t roll out the patches? in case you guessed mass exploitation, you’d be proper. CVE-2018-13379 was a directory traversal computer virus in Fortinet VPN gateways, first found method back in 2018. only in the near past, a dump of plaintext credentials has surfaced on the cyber web — bills from an eye fixed-watering forty nine,000+ gadgets. The complete dump is obtainable in the shadier parts of the cyber web.
Webex Ghosts
be aware the short-lived panic surrounding unsecured Zoom meetings, and uninvited pranksters connecting to those meetings? It changed into ample of a second that “zoombombing” changed into coined. smartly, cling on, as a result of Webex has simply brought us “Ghost users”. The analysis changed into carried out by using IBM’s SecurityIntelligence neighborhood. They found that it changed into viable to control the be a part of handshake while joining a Webex assembly, and access the assembly with out displaying up on the list of listeners. The hazard right here is that a “ghost” might listen in on a exclusive assembly. It’s a reminder that there's a brand new set of challenges in our courageous new world. IBM privately stated their findings, and Cisco has patched the vulnerabilities.
Embedded Code Is inclined Too
there is an entire world of proprietary software stacks obtainable, hidden away in embedded instruments, precise time controllers, and industrial purposes. a kind of stacks is the EtherNet/IP (ENIP) networking stack, sold via true Time Automation (RTA). In a fresh put up, Claroty has distinct a stunning critical vulnerability in that utility. one of the crucial services of ENIP is accepting a forward-open request, a part of the typical Industrial Protocol. The validation code for these incoming requests isn’t as effective as it should be, and a too-big request effects in memory writes outside the allocated buffer.
The vulnerability is unhealthy adequate, potentially permitting gadget compromise over the network devoid of person interplay. The worst half is that this code is locked away on millions of gadgets a good way to probably under no circumstances acquire protection updates. This variety of vulnerability is an ideal target for the next Stuxnet style assault in opposition t infrastructure someplace. It’s complicated to estimate where all this network stack is hidden, but Claroty discovered a handful of susceptible contraptions at once connected to the information superhighway, able to be exploited. RTA has been notified, and has fixed their code, however getting that fix utilized on each vulnerable device will take years.
Regex for protection?
XKCD CC by-NC 2.5
in case you end up writing code for an utility where protection matters, and also you turn to a regex for validating whatever, stop and suppose concerning the life decisions that have led you to this element. There are just too many ways a regex can go incorrect, or an unexpected enter can healthy in a way you didn’t assume. Case in point, npm kit private-ip.
John Jackson, AKA [JohnJHacking] found a Server aspect Request Forgery (SSRF) flaw in a server utility, and began digging to locate the trigger. An SSRF is a fairly elementary fashion of assault, the place a request incorporates cast records, in an try and trick the server into connecting to a different IP. In impact, an attacker can request some statistics, which they have got some handle over, and have the server ship that statistics to an arbitrary location. once an attacker has an SSRF, there are a bunch of capabilities assaults that primitive can be used for, continually involving sending messages to inner-handiest capabilities.
The genuine
vulnerability in inner most-ip is a simple one to leave out. The kit is designed to filter out any requests to deepest IP addresses, so for example it might block any SSRFs to localhost. So first off, 0.0.0.0 is a distinct IP tackle. It acts very similar to 127.0.0.1, but technically potential all listening IPs on the native desktop. deepest-ip efficiently detects a request to 0.0.0.0, but an attacker may as a substitute make an SSRF request to 0000.0000.0000.0000. The OS interprets these because the identical component, but the regex code misses the IP tackle with the further 0s. inner most-ip has launched 2.0.0 with a circular of fixes and greater sane IP matching gadget.
.