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1Z0-580 Oracle Solaris 11 Installation and(R) Configuration Essentials

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1Z0-580 exam Dumps Source : Oracle Solaris 11 Installation and(R) Configuration Essentials

Test Code : 1Z0-580
Test appellation : Oracle Solaris 11 Installation and(R) Configuration Essentials
Vendor appellation : Oracle
: 75 actual Questions

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Oracle Oracle Solaris 11 Installation

Oracle Solaris 11.3 setting up and Overview | actual Questions and Pass4sure dumps

Oracle Solaris 11.3

This video tutorial indicates how to deploy Oracle Solaris 11.three and overview on VMware computer/player cramped by little. it may additionally back for setting up Solaris eleven.three on actual laptop or bare-steel server. We’ll also set up VMware tools on Solaris for more advantageous VM performance and value.

what is Oracle Solaris?Solaris is a Unix operating gadget at first developed by means of sun Microsystems. Solaris is generic for its scalability, certainly on SPARC programs, and for originating many inventive aspects similar to DTrace, ZFS and Time Slider. Solaris supports SPARC-primarily based and x86-based workstations and servers from Oracle and other providers. starting from edition 10, the Solaris licence modified and the product changed into distributed free of cost for any paraphernalia or goal, however after the acquisition of solar Microsystems by pass of Oracle in 2009, the product is as soon as once more proprietary with a restrictive licence.Oracle Solaris web site:

observe: This tutorial in the nascence seemed on Linux Video Tutorials.

Oracle Solaris 11.three offers safety, speed and simplicity for enterprise Cloud Environments and DevOps | actual Questions and Pass4sure dumps

SAN FRANCISCO, CA--(Marketwired - Oct 26, 2015) - ORACLE OPENWORLD -- Oracle ( NYSE : ORCL ) nowadays brought Oracle Solaris 11.3, the newest free up of the realm's most superior enterprise working system, with more advantageous security, virtualization, and cloud administration.

"With Oracle Solaris eleven.three they deliver a comfortable cloud platform. in addition to exciting safety points like their immutable virtualization and time-primarily based access manage, they are the usage of the SPARC M7 processor's Silicon Secured reminiscence to helps evade typical security attacks like buffer overreads and buffer overwrites," noted Markus Flierl, vp, Oracle Solaris Core expertise. "Leveraging hardware offload, they are making encryption affordable for records and community traffic as well as live migration throughout a big attain of encryption modes so customers will not believe to elect from safety and performance."

Designed for security -- Oracle Solaris eleven.three transparently integrates the Oracle SPARC M7 processor's safety in Silicon capabilities, dramatically enhancing protection for existing and future purposes. Oracle Solaris 11.3 allows Silicon Secured reminiscence which helps withhold away from usual protection assaults like buffer overreads and overwrites. Oracle Solaris eleven.three also permits frequent exhaust of SPARC M7 encryption acceleration across the datacenter for database, Java, present functions, ZFS file system, network, and sweltering virtual computing device migration with out efficiency affect.

Designed for Lifecycle administration -- Oracle Solaris eleven.3 simplifies the deployment and replace of secure environments with three key points:

  • Full stack patching and updating allows for the introduction of finished, trusted and signed software bundles including purposes, operating gadget, and firmware validated at boot time. 
  • Immutable virtual machines steer pellucid of unauthorized installing of any extra application or configuration adjustments.
  • One-step automatic updates and patches through a trusted route makes it practicable for fundamental, comfy immutable digital desktop updates. This combination gives finished lock down of complete digital desktop content, together with constructed-in audit and compliance reporting.
  • "Oracle Solaris is secure via default, and safety is built in to each function. They robotically exhaust the Oracle Solaris compliance device as well because the typical Vulnerabilities and exposure (CVE) metadata in IPS to immediately generate stories for their software and operating system environments. it is totally customizable and easy to use, permitting us to obtain a tenfold discount in compliance reporting overhead," noted Thorsten Mühlmann, lead architect, Unix methods, Informationsverarbeitung für Versicherungen GmbH (ivv).

    Oracle Database Integration -- Oracle Database In-memory and Oracle Solaris eleven.three wholly aid the new SPARC M7 SQL in Silicon capabilities that permits up to 10x more suitable database question performance for complete latest commercial enterprise utility and next generation analytics functions. faultfinding features such as dynamic resource management and integrated extravagant performance lock supervisor enhancements for Oracle RAC construct Oracle Solaris eleven.3 the most agile platform for offering database-as-a-provider. Full stack observability and troubleshooting enabled by pass of DTrace provides elementary analysis from the database to the OS kernel for true-time database troubleshooting and tuning.

    OpenStack for the commercial enterprise -- With Oracle Solaris 11.3, these security capabilities are additionally attainable with OpenStack. Oracle Solaris 11.3 includes automated upgrades and speedy roll-lower back leveraging ZFS primarily based boot environments. OpenStack heat offers orchestration of multi-tier applications. Ironic allows bare steel provisioning. Leveraging Oracle Solaris Cluster grants foible tolerance at complete stages through computerized service restarts, evacuation of inaccurate hardware and catastrophe healing. Oracle's Murano database-as-a-provider software allows provisioning of pluggable databases to obtain up to 5x greater efficiency.

    commercial enterprise DevOps -- With Java, Oracle Solaris Studio, and Oracle SPARC M7-primarily based programs, Oracle Solaris 11.3 provides a much platform for DevOps. With Oracle Solaris Studio, builders can conveniently maximize their code efficiency via quantifying the upshot of their code on the hardware components while at the identical time improving their productiveness. C and C++ developers can effortlessly grasp skills of the Silicon Secured remembrance feature via Oracle Solaris Studio's find module and straight identify coding blunders like stale pointers with just about no repercussion on application performance. builders can also construct the most of this built-in continuous deployment ambiance with cozy lifecycle management using OpenStack.

    accessible Now: Oracle Solaris 11.3 is available now for download or replace.

    About Oracle Oracle offers a comprehensive and absolutely integrated stack of cloud functions and platform functions. For extra suggestions about Oracle ( NYSE : ORCL ), visit

    Story continues

    About Oracle OpenWorld Oracle OpenWorld 2015 supplies the most effective cloud experience. The business's most vital traffic conference includes thousands of educational sessions and contours demos and exhibitions from lots of of companions and valued clientele from everywhere showcasing Oracle's comprehensive cloud offerings, together with an integrated stack of functions, platform and infrastructure services, in addition to converged programs and traffic options. Tens of hundreds of in-adult attendees and tens of millions online profit constructive product and business-particular perception to back them radically change their organizations with Oracle. Oracle OpenWorld 2015 is being held October 25 through October 29 on the Moscone middle in San Francisco. For extra assistance; to register; or to monitor Oracle OpenWorld keynotes, sessions, and greater, dispute with Oracle OpenWorld 2015. live a portion of the Oracle OpenWorld dialogue on Twitter #oow15, fb, and the Oracle OpenWorld blog.

    trademarks Oracle and Java are registered emblems of Oracle and/or its associates. different names could live logos of their respective house owners. 

    Oracle Updates Solaris 10 | actual Questions and Pass4sure dumps

    As Oracle continues to establish together for a closing unencumber of Solaris 11, the Solaris 10 Unix operating system is getting yet another update.

    Oracle released Solaris 10 8/11 this week presenting efficiency improvements and new hardware help. The Solaris 10 operating system first debuted in 2004 and has been updated on a regular foundation ever on account that.

    given that its inception, one of the massive elements in Solaris 10 has been ZFS (Zettabyte File gadget) which has also enhanced over the years. the brand new Solaris 10 eight/11 allows organisations to sprint ZFS as a root filesystem throughout their Solaris 10 deployments. ZFS is a 128-bit file gadget that offers advanced statistics scalability and healing alternate options, together with "snapshotting" -- growing a space-efficient record of a frail device.

    It has been feasible to construct exhaust of ZFS as the root file device given that Solaris 10 10/08 release in 2008. youngsters, some Solaris users ignored the aptitude to live capable of build and set up "flash archive" photographs -- which they might finish with united states of americaand never ZFS What Oracle is announcing now's that the ultimate barrier to using ZFS instead of americabecause the root file gadget has long gone away.

    "Oracle Solaris 10 8/eleven includes points designed to simplify the transition from usaprimarily based device disks to Oracle Solaris ZFS," Oracle's liberate notes state. "by making certain that each one valuable installing capabilities obtainable with united statesare also attainable with ZFS, Oracle Solaris 8/11 makes a superb ZFS transition factor to grasp capabilities of the profit of administration, facts integrity, and constructed-in records features supplied by pass of Oracle Solaris ZFS."

    New Solaris 10 techniques can now also live installed from a Solaris ZFS scintillate Archive, which is intended to construct it more straightforward and quicker for clients to install the operating device.

    ZFS has additionally benefitted from numerous efficiency improvements as neatly. in keeping with Oracle, in internal testing of Oracle Solaris 10 eight/eleven versus the frail unencumber, Oracle Solaris 10 9/10, ZFS enhancements resulted in a examine performance improvement of between 9 p.c and 23 percent, and write efficiency enhanced eleven percent to 17 percent.

    With the new Solaris replace, Oracle is additionally carrying on with to enrich the manner that Oracle purposes sprint on the Unix working gadget. in accordance with Oracle, the Solaris 10 eight/eleven replace comprises evolution in startup and shutdown time for Oracle 11g database clients. Startup time is now 26 p.c of what it took in advance of this update on the reference SPARC system Oracle established internally, and about 36 % of what it took on a reference x86 device.

    "This replace takes the finest UNIX for SPARC and x86 and makes it even greater,” stated John Fowler, government vp, techniques, Oracle in a statement. "With Oracle Solaris 10 eight/11 and the upcoming Oracle Solaris eleven release, we're continuing to expose their ongoing commitment to Oracle Solaris, proposing the simplest, most competitively priced course to leading-aspect innovation for both new and existing shoppers."

    Oracle got Solaris as portion of its acquisition of solar in 2010. on the finish of 2010, Oracle released Solaris 11 categorical as a preview for the subsequent era of Solaris points. trying out and structure on Solaris 11 has been ongoing this year.

    Sean Michael Kerner is a senior editor at, the advice provider of, the network for technology specialists.

    comply with ServerWatch on Twitter

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    Oracle Solaris 11 Installation and(R) Configuration Essentials

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    Meltdown/Spectre Status for Red Hat and Oracle | actual questions and Pass4sure dumps

    The Red Hat family of operating systems addressed Meltdown and Spectre in its v3.10 kernel quickly, but relied too much upon Intel's flawed microcode and was forced to revert from a complete solution. Oracle implemented alternate approaches more suited to its v4.1 UEK, but both kernels continue to want plenary Spectre coverage while they wait for Intel. Conspicuously absent from either Linux arm is Google's retpoline, which offers far greater and more efficient coverage for complete CPUs. Auditing this status is a challenge. This article presents the latest tools for vulnerability assessments.

    A frenzy of patch activity has surrounded this year's Meltdown and Spectre CPU vulnerability disclosures. Normally inaudible microcode packages for Intel chips believe seen four updates in the month of January, one of which was finally to roll back flawed code that triggers random reboots. For enterprise-grade hardware, Intel's character control has left much to live desired.

    It is likely premature to deploy new monitoring and compliance tools, and a final solution for this set of vulnerabilities will wait until amend microcode is obtained. Still, it may live essential for many organizations to evaluate the patch status of servers running Linux kernels packaged by Oracle and/or Red Hat.

    Meltdown patches exist now and should live deployed immediately on vulnerable servers. Remediating complete Spectre vulnerabilities requires not only the latest kernels, but also a patched GCC to compile the kernel that is capable of implementing "retpolines", or compatible microcode from your CPU vendor.


    Red Hat was one of the first Linux distributions to publish guidance on Meltdown and Spectre. It established three files as "kernel tunables" in the /sys/kernel/debug/x86 directory to monitor and control these patches: pti_enabled for Meltdown, ibpb_enabled for Spectre v1 and ibrs_enabled for Spectre v2. Only the root user can access these files.

    When these files accommodate a numerical zero, the patches are not active. If allowed for the CPU, a numerical one may live written to the file to enable the relevant remediation, and a zero may live written later to disable it. This is not always allowed—AMD processors are not vulnerable to Meltdown, and the value in the pti_enabled file is locked to zero and cannot live changed. If the fixes are vigorous and present 1, the performance of the CPU may live reduced. Compatible microcode is required to enable complete patches on vulnerable CPUs, which adds new assembler/machine language op codes that erase vulnerable kernel data from CPU pipelines and caches to close the exploit.

    It is not generally understood that, although the BIOS is accountable for providing a basis microcode image, the Linux kernel is able to update some CPUs at boot with a volatile, runtime upgrade for Intel microcode. The update must near from the CPU vendor, carrying its digital signature; it cannot live produced independently by the OS maintainers. This is accomplished on Intel CPUs with the back of the following RPM (microcode for AMD CPUs is contained within the larger "linux-firmware" package):

    # rpm -qi microcode_ctl Name : microcode_ctl Epoch : 2 Version : 2.1 Release : Architecture: x86_64 Install Date: Sun 21 Jan 2018 12:58:36 PM CST Group : System Environment/Base Size : 1001060 License : GPLv2+ and Redistributable, no modification permitted Signature : RSA/SHA256, Sat 20 Jan 2018 08:32:03 PM CST, Key ID 72f97b74ec551f03 Source RPM : microcode_ctl-2.1- Build Date : Sat 20 Jan 2018 08:31:55 PM CST Build Host : Relocations : (not relocatable) Vendor : Oracle America URL : Summary : utensil to transform and deploy CPU microcode update for x86. Description : The microcode_ctl utility is a companion to the microcode driver written by Tigran Aivazian <>. The microcode update is volatile and needs to live uploaded on each system boot i.e. it doesn't reflash your cpu permanently, reboot and it reverts back to the frail microcode.

    Red Hat has "washed its hands" of Intel's recent flawed microcode, reverted to previous packages, and is advising customers to obtain BIOS updates for Spectre remediation. Although Red Hat very likely will publish new Intel microcode updates again at some point in the remote future, there is pellucid and obvious frustration that could retard plenary security compliance.


    Oracle distributes the Unbreakable Enterprise Kernel (UEK) as its recommended Linux. Where used within its distribution, it has retroactively renamed the Red Hat-Compatible Kernel (RHCK), which now contains the files in /sys/kernel/debug/x86.

    The UEK is a celebrated option in enterprise Linux, and it brings many new features to RPM distributions. It is the easiest and most stable method to implement a v4.1 performance-tuned kernel in a supported manner on a Red Hat-derivative OS (which usually runs v3.10 at best).

    The UEK is especially notable as it works with Ksplice (as does the RHCK), which allows for online kernel patches and upgrades without rebooting, and it even can extend this aptitude to select userland libraries (glibc and OpenSSL). This service is offered for free to Fedora and Ubuntu users, and as a paid-support option for both CentOS (after a scripted conversion to Oracle Linux) and Red Hat. Ksplice is the oldest and most mature high-availability option for Linux security upgrades.

    The UEK implements a different set of world-readable monitor files, and they finish not loom to allow adjustment. This is not generally well known (the information was obtained from Oracle support).

    Oracle suggests that you can learn the Meltdown and Spectre status under a running UEK from the following:

    # awk '{print FILENAME":"$0}' /sys/devices/system/cpu/vulnerabilities/* /sys/devices/system/cpu/vulnerabilities/meltdown:Mitigation: PTI /sys/devices/system/cpu/vulnerabilities/spectre_v1:Not affected /sys/devices/system/cpu/vulnerabilities/spectre_v2:Vulnerable

    The UEK also adds commentary to /proc/cpuinfo regarding the bug status of the running CPU (which does not loom when booted on the RHCK):

    # egrep '(model name|bugs)' /proc/cpuinfo | sort -u bugs : cpu_meltdown spectre_v2 model appellation : Intel(R) Core(TM)2 Duo CPU E4600 @ 2.40GHz

    Oracle further recommends that Document ID 2348448.1 live consulted for plenary details on Meltdown and Spectre remediation under Linux. Oracle Solaris is also vulnerable and is addressed in the latest faultfinding Patch Update. Note that, since updated microcode will live required to remediate Spectre on supported Intel CPUs, a reboot will live required even for systems on Ksplice.


    Stephane Lesimple published an intricate detection script on Github The script is a tour de constrain that tests for complete known mitigations and microcode. The latest version is now (mostly) able to detect the UEK properly, and it has output options for JSON and NRPE. This is likely to remain the authoritative audit utensil for speculative attacks on Linux for the immediate future.

    Lesimple's script also probes for the presence of "retpolines" in the kernel. Retpolines concern a CPU's "indirect addressing modes" when a register is involved in computing the target of a arm ("jump tables" often are mentioned). The retpoline essentially plays out the Spectre exploit for every vulnerable jump in the kernel binary, and a capable compiler is required to implement it. A Linux kernel that implements retpolines is not vulnerable to Spectre even when running on older microcode and maintains complete control of speculative execution. The performance repercussion has been demonstrated to live far less dramatic than a kernel using the microcode fixes on Intel's own pellucid Linux distribution.

    Google (who developed and introduced the concept) has pushed retpolines into Android's January security advisory and deployed retpoline-enabled kernels throughout its data centers. It likely will live some time before retpolines initiate to loom outside of supported Nexus and Pixel devices—LineageOS (known for its speed in pushing patches) has only a sole device with a retpoline-enabled kernel at this time.

    Unfortunately, neither the UEK nor the RHCK loom to believe retpoline support at present. The backporting worry into legacy GCC appears to live an obstacle.

    In any case, here are demonstration runs of Lesimple's script on various architectures. To start is an Oracle Linux system on the first Meltdown-aware RHCK with the first January microcode release. You can notice from the RHCK tunables that complete patches are active:

    # for x in /sys/kernel/debug/x86/*_enabled; finish echo "$x:$(<$x)"; done /sys/kernel/debug/x86/ibpb_enabled:1 /sys/kernel/debug/x86/ibrs_enabled:1 /sys/kernel/debug/x86/pti_enabled:1

    The script warns that the microcode is not stable, but confirms the system is (mostly) patched—it is not detecting the Spectre V1 fix:

    # ./ Spectre and Meltdown mitigation detection utensil v0.34 Checking for vulnerabilities on current system Kernel is Linux 3.10.0-693.11.6.el7.x86_64 #1 SMP Wed Jan 3 18:59:47 ↪PST 2018 x86_64 CPU is Intel(R) Pentium(R) CPU G3220T @ 2.60GHz We're missing some kernel info (see -v), accuracy might live reduced Hardware check * Hardware support (CPU microcode) for mitigation techniques * indirect arm Restricted Speculation (IBRS) * SPEC_CTRL MSR is available: YES * CPU indicates IBRS capability: YES (SPEC_CTRL feature bit) * indirect arm Prediction Barrier (IBPB) * PRED_CMD MSR is available: YES * CPU indicates IBPB capability: YES (SPEC_CTRL feature bit) * sole Thread indirect arm Predictors (STIBP) * SPEC_CTRL MSR is available: YES * CPU indicates STIBP capability: YES * Enhanced IBRS (IBRS_ALL) * CPU indicates ARCH_CAPABILITIES MSR availability: NO * ARCH_CAPABILITIES MSR advertises IBRS_ALL capability: NO * CPU explicitly indicates not being vulnerable to Meltdown ↪(RDCL_NO): NO * CPU microcode is known to cause stability problems: YES (model 60 * stepping 3 ucode 0x23) The microcode your CPU is running on is known to cause instability ↪problems, such as intempestive reboots or random crashes. You are advised to either revert to a previous microcode version ↪(that might not believe the mitigations for Spectre), or ↪upgrade to a newer one if available. * CPU vulnerability to the three speculative execution attacks variants * Vulnerable to Variant 1: YES * Vulnerable to Variant 2: YES * Vulnerable to Variant 3: YES CVE-2017-5753 [bounds check bypass] aka 'Spectre Variant 1' * Kernel has array_index_mask_nospec: UNKNOWN (couldn't check (couldn't * find your kernel image in /boot, if you used netboot, this is normal)) * Checking import of LFENCE instructions following a jump in kernel: * UNKNOWN (couldn't check (couldn't find your kernel image in /boot, if * you used netboot, this is normal)) > STATUS: UNKNOWN (Couldn't find kernel image or tools missing to > execute the checks) CVE-2017-5715 [branch target injection] aka 'Spectre Variant 2' * Mitigation 1 * Kernel is compiled with IBRS/IBPB support: YES * Currently enabled features * IBRS enabled for Kernel space: YES * IBRS enabled for User space: NO * IBPB enabled: YES * Mitigation 2 * Kernel compiled with retpoline option: UNKNOWN (couldn't read * your kernel configuration) * Kernel compiled with a retpoline-aware compiler: NO * Retpoline enabled: NO > STATUS: NOT VULNERABLE (IBRS/IBPB are mitigating the vulnerability) CVE-2017-5754 [rogue data cache load] aka 'Meltdown' aka 'Variant 3' * Kernel supports Page Table Isolation (PTI): YES * PTI enabled and active: YES * Running as a Xen PV DomU: NO > STATUS: NOT VULNERABLE (PTI mitigates the vulnerability) A unsuitable sense of security is worse than no security at all, ↪see --disclaimer

    Running the latest version of the script under the UEK now yields reasonable results. The UEK files are specifically mentioned in the script, with the following repeated commentary: # this kernel has the /sys interface, dependence it over everything. Here are the results:

    # ./ Spectre and Meltdown mitigation detection utensil v0.34 Checking for vulnerabilities on current system Kernel is Linux 4.1.12-112.14.13.el7uek.x86_64 #2 SMP Thu Jan 18 ↪11:38:29 PST 2018 x86_64 CPU is Intel(R) Core(TM)2 Duo CPU E4600 @ 2.40GHz Hardware check * Hardware support (CPU microcode) for mitigation techniques * indirect arm Restricted Speculation (IBRS) * SPEC_CTRL MSR is available: NO * CPU indicates IBRS capability: NO * indirect arm Prediction Barrier (IBPB) * PRED_CMD MSR is available: NO * CPU indicates IBPB capability: NO * sole Thread indirect arm Predictors (STIBP) * SPEC_CTRL MSR is available: NO * CPU indicates STIBP capability: NO * Enhanced IBRS (IBRS_ALL) * CPU indicates ARCH_CAPABILITIES MSR availability: NO * ARCH_CAPABILITIES MSR advertises IBRS_ALL capability: NO * CPU explicitly indicates not being vulnerable to Meltdown ↪(RDCL_NO): NO * CPU microcode is known to cause stability problems: NO (model 15 * stepping 13 ucode 0xa4) * CPU vulnerability to the three speculative execution attacks variants * Vulnerable to Variant 1: YES * Vulnerable to Variant 2: YES * Vulnerable to Variant 3: YES CVE-2017-5753 [bounds check bypass] aka 'Spectre Variant 1' * Mitigated according to the /sys interface: YES (kernel confirms * that your CPU is unaffected) * Kernel has array_index_mask_nospec: NO * Checking import of LFENCE instructions following a jump in kernel: ↪YES (34 * jump-then-lfence instructions found, which is >= 30 (heuristic)) > STATUS: NOT VULNERABLE (Not affected) CVE-2017-5715 [branch target injection] aka 'Spectre Variant 2' * Mitigated according to the /sys interface: NO (kernel confirms your * system is vulnerable) * Mitigation 1 * Kernel is compiled with IBRS/IBPB support: YES * Currently enabled features * IBRS enabled for Kernel space: NO * IBRS enabled for User space: NO * IBPB enabled: UNKNOWN * Mitigation 2 * Kernel compiled with retpoline option: NO * Kernel compiled with a retpoline-aware compiler: NO * Retpoline enabled: NO > STATUS: VULNERABLE (IBRS hardware + kernel support OR kernel with > retpoline are needed to mitigate the vulnerability) CVE-2017-5754 [rogue data cache load] aka 'Meltdown' aka 'Variant 3' * Mitigated according to the /sys interface: YES (kernel confirms * that the mitigation is active) * Kernel supports Page Table Isolation (PTI): YES * PTI enabled and active: YES * Running as a Xen PV DomU: NO > STATUS: NOT VULNERABLE (Mitigation: PTI) A unsuitable sense of security is worse than no security at all, ↪see --disclaimer

    Note that the UEK's Spectre V1 fix is detected via "heuristic" counts of jump-then-lfence instructions; hopefully this is reliable.


    It is essential for OS kernel vendors to understand that the user community wants these security fixes with a minimum loss of performance and stability. Intel's microcode updates believe failed to meet this requirement, and it now falls upon operating system maintainers to close the exploits. There should live continuing questions pointed at Intel regarding why faulty firmware emerged, why it was slower than retpolines, and how a redesigned microcode solution could help upon retpoline performance. From the perspective of performance, nothing is literally preferable to Intel's January efforts.

    However, if Red Hat continues to profess that it has "washed its hands" of this issue, there is a pellucid opening for Oracle to establish a retpoline-enabled UEK as a widely adopted option in the user community. Although one would hope that complete vendors are attentive and responsive to their users, the UEK would become a much more visible and formidable option in the RPM world if retpolines were added to its already considerable advantages. Even a (clearly labeled) beta test version would grasp it far in this regard.

    What is certain is that this tale is far from over. The prerogative people believe not spoken, and the prerogative words believe not been said. Hopefully, it ends quickly and well.


    The views and opinions expressed in this article are those of the author and finish not necessarily reflect those of Linux Journal.

    Device Autoconfiguration | actual questions and Pass4sure dumps

    This chapter is from the reserve 

    Autoconfiguration offers many advantages over the manual configuration method used in earlier versions of SunOS, in which device drivers were manually added to the kernel, the kernel was recompiled, and the system had to live restarted. Now, with autoconfiguration, the administrator simply connects the new device to the system and performs a reconfiguration startup. To discharge a reconfiguration startup, ensue these steps:

  • Create the /reconfigure file with the following command:

    # feel /reconfigure<cr>

    The /reconfigure file causes the Oracle Solaris software to check for the presence of any newly installed devices the next time you swirl on or start up your system.

  • Shut down the system using the shutdown procedure described in Chapter 3.

    If you exigency to connect the device, swirl off power to the system and complete peripherals after Oracle Solaris has been properly shut down.

  • After the new device is connected, restore power to the peripherals first and then to the system. Verify that the peripheral device has been added by attempting to access it.
  • An optional method of performing a reconfiguration startup is to type “boot -r” at the OpenBoot prompt.

    On an x86-based system, discharge a reconfiguration reboot by editing the boot command in the GRUB menu as described in Chapter 3.

    During a reconfiguration restart, a device hierarchy is created in the /devices file system to portray the devices connected to the system. The kernel uses this to associate drivers with their appropriate devices.

    Autoconfiguration offers the following benefits:

  • Main remembrance is used more efficiently because modules are loaded as needed.
  • There is no exigency to reconfigure the kernel if new devices are added to the system. When you add devices such as disks or tape drives other than USB and hot-pluggable devices, the system needs to live shut down before you connect the hardware so that no damage is done to the electrical components.
  • Drivers can live loaded and tested without having to rebuild the kernel and restart the system.
  • Occasionally, you might install a new device for which Oracle Solaris does not believe a supporting device driver. Always check with the manufacturer to construct certain any device you blueprint to add to your system has a supported device driver. If a driver is not included with the standard Oracle Solaris release, the manufacturer should provide the software needed for the device to live properly installed, maintained, and administered.

    The DB2 Configuration Files Revealed - Page 3 | actual questions and Pass4sure dumps

    node_num.env - DB2 instance node smooth profile registry

    File Name Default Location "node_num".env $HOME/sqllib/nodes

    An SDP configured database system, with the DB2 database divided across different physical database partitions, has a node_num.env registry file on every database partition. My demo DB2 database ARTIST was running on only one physical machine and did not believe a node-level profile registry file.

    db2profile - DB2 instance owner profile

    File Name Default Location db2profile /opt/IBM/db2/V7.1 (template)/opt/IBM/db2/V8.1 ( template)$HOME/sqllib

    The dB2profile is the most essential DB2 configuration file. It is created automatically by the DB2 installation, and has complete of the needed settings to activate DB2 software properly.

    $ ls -lrt $HOME/sqllib/db2profile -rwxr-xr-x 1 db2inst1 db2dba 4906 May 26 15:39 $ cat db2profile DB2DIR="/opt/IBM/db2/V8.1" AddtoString() { var=$1 addme=$2 awkval='$1 != "'${addme?}'"{print $0}' newval=`eval /usr/bin/echo \\${$var} | /usr/bin/awk "${awkval?}" RS=:` eval ${var?}=`/usr/bin/echo $newval | /usr/bin/sed 's/ /:/g'`:${addme?} unset var addme awkval newval } DB2INSTANCE=instancename export DB2INSTANCE INSTHOME=instancehomedir AddtoString PATH ${INSTHOME?}/sqllib/bin AddtoString PATH ${INSTHOME?}/sqllib/adm AddtoString PATH ${INSTHOME?}/sqllib/misc export PATH if [ -f ${INSTHOME}/dmb/dmbprofile ]; then . ${INSTHOME}/dmb/dmbprofile fi CLASSPATH=${CLASSPATH:-""} if [ -f ${INSTHOME?}/sqllib/java/ ]; then AddtoString CLASSPATH ${INSTHOME?}/sqllib/java/ fi if [ -f ${INSTHOME?}/sqllib/java/db2jcc.jar ]; then AddtoString CLASSPATH ${INSTHOME?}/sqllib/java/db2jcc.jar fi if [ -f ${INSTHOME?}/sqllib/java/ ]; then AddtoString CLASSPATH ${INSTHOME?}/sqllib/java/ fi if [ -d ${INSTHOME?}/sqllib/function ]; then AddtoString CLASSPATH ${INSTHOME?}/sqllib/function fi if [ -f ${INSTHOME?}/sqllib/java/db2jcc_license_cisuz.jar ]; then AddtoString CLASSPATH ${INSTHOME?}/sqllib/java/db2jcc_license_cisuz.jar fi if [ -f ${INSTHOME?}/sqllib/java/db2jcc_license_cu.jar ]; then AddtoString CLASSPATH ${INSTHOME?}/sqllib/java/db2jcc_license_cu.jar fi AddtoString CLASSPATH . export CLASSPATH if [ -d ${INSTHOME?}/sqllib/templates ]; then VWS_TEMPLATES=${INSTHOME?}/sqllib/templates export VWS_TEMPLATES fi if [ -d ${INSTHOME?}/sqllib/logging ]; then VWS_LOGGING=${INSTHOME?}/sqllib/logging export VWS_LOGGING fi VWSPATH=${INSTHOME?}/sqllib export VWSPATH LD_LIBRARY_PATH=${LD_LIBRARY_PATH:-""} AddtoString LD_LIBRARY_PATH ${INSTHOME}/sqllib/lib export LD_LIBRARY_PATH THREADS_FLAG=native export THREADS_FLAG if [ -f ${INSTHOME?}/sqllib/userprofile ] then . ${INSTHOME?}/sqllib/userprofile fi Listing 11: db2profile - DB2 instance owner profile

    db2nodes.cfg - partition configuration file

    File Name

    Default Location



    db2nodes.cfg is the DB2 ESE database partition (node) definition file. A standard, non-partitioned database instance does not exhaust this configuration file.

    $ ls -lrt db2nodes.cfg -r--r--r-- 1 db2inst1 db2dba 39 Dec 17 2002 $ cat db2nodes.cfg 0 ARTIST001 0 1 ARTIST001 1 2 ARTIST001 2 Listing 12: db2nodes.cfg - DB2 node instance configuration file

    Beginning with DB2 version 8, db2nodes.cfg is enhanced with the resourcename column. This new column provides the opening to direct one rational node to exhaust a particular set of system resources. The new db2nodes.cfg file format has the following structure:

    nodenum hostname rational port netname resourcename

    Only Sun Solaris, version 9 is appropriate to exhaust this new enhancement. For example, a UNIX machine with 8 CPUs could employ 4 CPUs for DB2, leaving the other CPUs for any applications running on the very machine.


    Writing this article, one question crossed my mind.

    Has anyone attempted to install DB2 software packages into any other directory than default provided by IBM (/var/db2), or has anyone read specific DB2 documentation describing how to organize the DB2 database directories on the server for the most optimal handling?

    What I am definitely missing in the DB2 documentation, is a standardized database file structure recommendation. IBM has not published anything, such Oracle has, (an OFA "The Optimal springy Architecture"). An OFA is a set of standards that defines how to set up "complex Oracle systems at sites demanding tall performance with low maintenance under continually evolving requirements."

    Oracle kept this standard for internal exhaust only for some time, but later this came out as a public standard. Thus far, DB2 has not published a similar standard, and they are forced to accept installation procedure defaults along with their consequences.

    » notice complete Articles by Columnist Marin Komadina

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