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  • What are the best possible ways to benchmark RAM (no-ECC) under linux / arm?

    - by moul
    I want to test integrity and global performances of no-ECC memory chips on a custom board Are there some tools that run under linux so I can monitor system and global temperature in the same time ? Are there some no-ECC specific tests to do in general ? EDIT 1: I already know how to monitor temperature (I use a special platform feature /sys/devices/platform/......../temp1_input). For now : wazoox : it works but I've to code my own tests Jason Huntley : ramspeed : does not work on arm stream benchmark : it works and is very fast, so I'll look if it's accurate and complete memtest : I'll try later, since it does not run directly from linux stress for fedora : I'll try later too, it's too problematic for me to install fedora now I found this distribution : http://www.stresslinux.org/sl/ I'll continue to check tools that run directly under linux without too big dependencies, after I'll maybe give a try to solutions like stresslinux, memtest, stress for fedora. Thanks for you answers, I'll continue to investigate

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  • Windows X86 and ARM Compatible Remote Desktop

    - by John
    I'm looking for super-easy to use X86/ARM compatible remote desktop software. I need to do remote work with a client and because they know absolutely nothing they walked out of Best Buy with an ARM laptop that can't run jack. It must be freeware. It must be compatible with both x86/win7 and ARM/fail8 versions of Windows. It must be able to have something the first time it comes up that the user can tell me and I know how to connect to their computer (simple like Ammyy Admin). She is running some kind of Windows RT ARM laptop. I am running an x86 Windows 7 desktop.

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  • Is Ubuntu Touch a separate distribution or the same one?

    - by Nickolai Leschov
    I would like to install the latest Ubuntu Touch on a 2013 Nexus 7 tablet. Which version should I be looking for: the regular Ubuntu (for ARM platform) or a separate Ubuntu Touch? I understand that after Ubuntu Touch is in frantic development, but I would like to be able to keep track which one is which. I can see the following images: Ubuntu 14.09 RTM, daily-preinstalled Ubuntu Touch 14.10 (Utopic Unicorn) Daily Build Ubuntu 14.10 (Utopic Unicorn) Daily Build, but only i386 and amd64; no ARM. Does it mean that ARM variant has moved to one of the first two links?

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  • JavaOne - Java SE Embedded Booth - Pactron Java Programmable Automation Controller (JPAC)

    - by David Clack
    Hi All, So at the last JavaOne we talked about developing a Java powered Programmable Automation Controller (JPAC) with our partner Pactron in Santa Clara. We actually demoed it running first at the Embedded Show in Germany this March. JPAC is based on a Marvell 88F6282 Kirkwood ARM SOC, we partnered with Hilsher from just outside Frankfurt, Germany for the mini pci ProfiBus controllers, Revolution Robotics from Corvallis, Oregon wrote the Java SE Embedded for ARM to Hilscher Linux driver interface. Revolution Robotics also designed the HTML5 application that runs on a Marvell ARM tablet to actually send and receive commands via ProfiBus to a slave device. We will have the system running in our booth at JavaOne this year, come take a look. If you are registered at JavaOne you can come over to the Java Embedded @ JavaOne for $100 Come see us in booth 5605 See you there Dave

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  • ARM TechCON 2013 presentation: Java SE 8 Compact Profiles

    - by hinkmond
    I'll be giving a technical session presentation at ARM TechCON 2013 this Wed. 10/30 @ 11:30am. So if you are in Santa Clara, Calif. come over to the conference and hear me present on this fun-filled topic! See: Java SE 8 Compact Profiles Here's a quote: Java SE 8 has a new Compact Profiles feature that allows for three new specification–compliant subsets of Java SE 8 APIs. Compact Profiles will enable the creation of Java SE 8 runtimes that support configurations that previously were possible only with the CDC version of J2ME... It's an important topic in today's mad, mad world of Embedded Development. You never want to develop in Java for small devices with your Compact Profiles. It's just not what you'd want! Hinkmond

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  • Avec sa plateforme Moorestown, Intel s'attaque à ARM et au marché des terminaux nomades : avec quell

    Avec sa plateforme Moorestown, Intel s'attaque à ARM Et au marché des terminaux mobiles : avec quelles chances de réussite ? Intel vient de présenter officiellement Moorestown, sa plateforme Atom pour smartphones et Tablet PC. Un des atouts principaux de cette prochaine génération de plateformes est la baisse très significative de consommation d'énergie. Le fondeur revendique une autonomie « jusqu'à dix jours en mode veille, deux jours en lecture audio et cinq heures en navigation et lecture vidéo ». Et ce alors même que les performances sont, elles, à la hausse (multitasking, streaming HD, etc.). Dans le détail, Moorestowm embarque un processeur Intel Atom...

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  • Take Two: Comparing JVMs on ARM/Linux

    - by user12608080
    Although the intent of the previous article, entitled Comparing JVMs on ARM/Linux, was to introduce and highlight the availability of the HotSpot server compiler (referred to as c2) for Java SE-Embedded ARM v7,  it seems, based on feedback, that everyone was more interested in the OpenJDK comparisons to Java SE-E.  In fact there were two main concerns: The fact that the previous article compared Java SE-E 7 against OpenJDK 6 might be construed as an unlevel playing field because version 7 is newer and therefore potentially more optimized. That the generic compiler settings chosen to build the OpenJDK implementations did not put those versions in a particularly favorable light. With those considerations in mind, we'll institute the following changes to this version of the benchmarking: In order to help alleviate an additional concern that there is some sort of benchmark bias, we'll use a different suite, called DaCapo.  Funded and supported by many prestigious organizations, DaCapo's aim is to benchmark real world applications.  Further information about DaCapo can be found at http://dacapobench.org. At the suggestion of Xerxes Ranby, who has been a great help through this entire exercise, a newer Linux distribution will be used to assure that the OpenJDK implementations were built with more optimal compiler settings.  The Linux distribution in this instance is Ubuntu 11.10 Oneiric Ocelot. Having experienced difficulties getting Ubuntu 11.10 to run on the original D2Plug ARMv7 platform, for these benchmarks, we'll switch to an embedded system that has a supported Ubuntu 11.10 release.  That platform is the Freescale i.MX53 Quick Start Board.  It has an ARMv7 Coretex-A8 processor running at 1GHz with 1GB RAM. We'll limit comparisons to 4 JVM implementations: Java SE-E 7 Update 2 c1 compiler (default) Java SE-E 6 Update 30 (c1 compiler is the only option) OpenJDK 6 IcedTea6 1.11pre 6b23~pre11-0ubuntu1.11.10.2 CACAO build 1.1.0pre2 OpenJDK 6 IcedTea6 1.11pre 6b23~pre11-0ubuntu1.11.10.2 JamVM build-1.6.0-devel Certain OpenJDK implementations were eliminated from this round of testing for the simple reason that their performance was not competitive.  The Java SE 7u2 c2 compiler was also removed because although quite respectable, it did not perform as well as the c1 compilers.  Recall that c2 works optimally in long-lived situations.  Many of these benchmarks completed in a relatively short period of time.  To get a feel for where c2 shines, take a look at the first chart in this blog. The first chart that follows includes performance of all benchmark runs on all platforms.  Later on we'll look more at individual tests.  In all runs, smaller means faster.  The DaCapo aficionado may notice that only 10 of the 14 DaCapo tests for this version were executed.  The reason for this is that these 10 tests represent the only ones successfully completed by all 4 JVMs.  Only the Java SE-E 6u30 could successfully run all of the tests.  Both OpenJDK instances not only failed to complete certain tests, but also experienced VM aborts too. One of the first observations that can be made between Java SE-E 6 and 7 is that, for all intents and purposes, they are on par with regards to performance.  While it is a fact that successive Java SE releases add additional optimizations, it is also true that Java SE 7 introduces additional complexity to the Java platform thus balancing out any potential performance gains at this point.  We are still early into Java SE 7.  We would expect further performance enhancements for Java SE-E 7 in future updates. In comparing Java SE-E to OpenJDK performance, among both OpenJDK VMs, Cacao results are respectable in 4 of the 10 tests.  The charts that follow show the individual results of those four tests.  Both Java SE-E versions do win every test and outperform Cacao in the range of 9% to 55%. For the remaining 6 tests, Java SE-E significantly outperforms Cacao in the range of 114% to 311% So it looks like OpenJDK results are mixed for this round of benchmarks.  In some cases, performance looks to have improved.  But in a majority of instances, OpenJDK still lags behind Java SE-Embedded considerably. Time to put on my asbestos suit.  Let the flames begin...

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  • How early can I call kalloc in an arm linux kernel?

    - by Isaac Sutherland
    I would like to dynamically allocate memory from the machine_init function in my arm linux kernel. Calling kalloc can result in a complete failure of the system to boot. My debugging tools are very limited so I can't give much more information regarding the failure. Simply put, is it legal to call kalloc from a machine_init function in arm linux, and, if not, is there an alternative?

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  • How do I reorder vector data using ARM Neon intrinsics?

    - by goldenmean
    This is specifically related to ARM Neon SIMD coding. I am using ARM Neon instrinsics for certain module in a video decoder. I have a vectorized data as follows: There are four 32 bit elements in a Neon register - say, Q0 - which is of size 128 bit. 3B 3A 1B 1A There are another four, 32 bit elements in other Neon register say Q1 which is of size 128 bit. 3D 3C 1D 1C I want the final data to be in order as shown below: 1D 1C 1B 1A 3D 3C 3D 3A What Neon instrinsics can achieve the desired data order?

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  • How do i a vector data using ARM Neon intrinsics?

    - by goldenmean
    Hello, This is specifically related to ARM Neon SIMD coding.I am using ARM Neon instrinsics for certain module in a Video Decoder. I have a vectorized data as follows:- There are four, 32 bit elements in a Neon register say Q0 which is of size 128 bit. 3B 3A 1B 1A There are another four, 32 bit elements in other Neon register say Q1 which is of size 128 bit. 3D 3C 1D 1C I want the final data to be in order as shown below:- 1D 1C 1B 1A 3D 3C 3D 3A Using what Neon instrinscis can achive the desired data order? thanks, -AD

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  • ARM laptop available?

    - by Ken
    Hearing all the fuss about some new consumer product that uses an ARM Cortex A8, I'm interested to get in on some of the action. But I want a real programmable computer running something like Linux. I've seen many, many reports in the past 2 or 3 years about prototype ARM laptops with great battery life. Unfortunately, when I tried googling today, all I can find are the old videos and press releases about the prototypes, not a shipping product. Is there an actual ARM laptop available today? Or did everybody give up and just use Intel Atom chips?

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  • NVIDIA présente son premier CPU pour PC, fondé sur l'architecture ARM, « Denver » est déjà compatible Windows 8

    NVIDIA présente son premier CPU pour PC Fondé sur l'architecture ARM, « Denver » est déjà compatible Windows 8 NVIDIA vient de présenter, durant la très prolifique conférence du Consumer Electronics Show, une série de coeurs de CPU fondés sur l'architecture ARM et destinés aux PC. Cette présentation survient après celle de Microsoft, qui vient d'annoncer officiellement le virage ARM que prendra Windows. Steve Ballmer a en effet effectué hier la première présentation de Windows 8 sur des puces ARM NV...

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  • Does mprotect flush the instruction cache on ARM Linux?

    - by Adam Goode
    I am writing a JIT on ARM Linux that executes an instruction set that contains self-modifying code. The instruction set does not have any cache flush instructions (similar to x86 in that respect). If I write out some code to a page and then call mprotect on that page, is that sufficient to invalidate the instruction cache? Or do I also need to use the cacheflush syscall on those pages?

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  • How can I run ARM code from external memory?

    - by samoz
    I am using an LPC2132 ARM chip to develop a program. However, my program has grown larger than the space on the chip. How can I connect my chip to some sort of external memory chip to hold additional executable code? Is this possible? If not, what do people normally do when they run out of chip space?

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  • Need information regarding Ubuntu for Android

    - by a.premkumar
    As far as I understand, Ubuntu for Android is not the same as Actual Ubuntu in Desktops. So I am confusing both with each other. Please enlighten me on this. Could Ubuntu on Android run 32bit softwares same as the PC versions do? Or it is just the ARM version that would not be able to run the existing PC version softwares? If it is ARM now, would it be a 32 or 64 bit version in future?(Ofcourse if the mobile device architecture supports it). Will there be a separate version for Tablets, so that there would be no need for separate docking and allows seamless switching from Android to Ubuntu internally on the device? Regards, Premkumar. A

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  • JavaOne - Java SE Embedded Booth - Freescale Technologies

    - by David Clack
    Hi All, I've been working with Freescale this year on both the Power Architecture (PPC) and ARM solutions to test Java SE Embedded we will have a special Freescale demo case I had built, in the booth at JavaOne is the Freescale i.MX28, i.MX53 and i.MX6 demos plus the P1025 Tower Power Architecture demo. Freescale i.MX ARM Freescale Power Architecture This year we became a sponsor at the Freescale Technology Forum shows in San Antonio, TX, Beijing, China and Bangalore, India, FTF Japan is at the end of October in Tokyo. It's really exciting to get to see what is being developed in the M2M and IoT space on the Freescale technologies, lots of products use the Freescale chips with Java that we don't even really know about like the original Amazon Kindle. If you are registered at JavaOne you can come over to the Java Embedded @ JavaOne for $100 Come see us in booth 5605 See you there Dave

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  • How does EJIE, Basque Government's IT arm, uses Oracle WebLogic

    - by Ruma Sanyal
    Watch Mike Lehmann, Senior Director of Product Management from Oracle and Oscar Guadilla, Senior Architect from EJIE, Basque Government's IT Company, discuss EJIE's implementation of Oracle WebLogic Server. Hear EJIE's history with Oracle WebLogic Server, how and why they are using it for its web application platform, common services, file services, and intranet and the benefits they are gleaning. In addition, hear how EJIE is using WebLogic JMS for document management common service integration in its Eco-government project. While you are at it, since you are at our youtube channel (youtube.com/oracleweblogic) already, take a look at the various 'how to' videos Jeff West, Steve Button and others from our product management team have published here. Topics such as WebLogic Maven Plugin, TopLink Grid, How to Patch a WebLogic domain and much more are covered. Great way to spend some of your downtime during the holidays! :)   

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  • Shuttleworth: Linaro: Accelerating Linux on ARM

    <b>LWN.net:</b> "Mark Shuttleworth posts his thoughts about Linaro. Canonical will be working closely with the project, which has plans for six-month release cycles like Ubuntu. Linaro will also be using some Ubuntu infrastructure such as LaunchPad"

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  • How to write code that communicates with an accelerator in the real address space (real mode)?

    - by ysap
    This is a preliminary question for the issue, where I was asked to program a host-accelerator program on an embedded system we are building. The system is comprised of (among the standard peripherals) an ARM core and an accelerator processor. Both processors access the system bus via their bus interfaces, and share the same 32-bit global physical memory space. Both share access to the system's DRAM through the system bus. (The computer concept is similar to Beagleboard/raspberry Pie, but with a specialized accelerator added) The accelerator has its own internal memory (SRAM) which is exposed to the system and occupies a portion of the global address space (as opposed to how a graphics card would talk to teh CPU via a "small" aperture in the system memory space). On the ARM core (the host) we plan on running Ubuntu 12.04. The mode of operation of communicating between the processors should be that the host issues memory transactions on the system bus that are targeted at the accelerator internal memory. As far as my understanding goes, if I write a program for the host that simply writes to the physical address of the accelerator, most chances are that the program will crash due to a segmentation violation. So, I assume that I need some way of communicating with the device in real mode. What is the easiest way to achieve this mode of operation?

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  • How to do a multishot in xna?

    - by DeVonte
    I am trying to simulate a gun in which shoots multiple bullets at the same time(similar to a spread out shot). I am thinking I have to create another bullet array then do the same as I have below but in a different direction. Here is what I have so far: foreach (GameObject bullet in bullets) { // Find a bullet that isn't alive if (!bullet.alive) { //And set it to alive bullet.alive = true; if (flip == SpriteEffects.FlipHorizontally) //Facing right { float armCos = (float)Math.Cos(arm.rotation - MathHelper.PiOver2); float armSin = (float)Math.Sin(arm.rotation - MathHelper.PiOver2); // Set the initial position of our bullets at the end of our gun arm // 42 is obtained by taking the width of the Arm_Gun texture / 2 // and subtracting the width of the Bullet texture / 2. ((96/2)=(12/2)) bullet.position = new Vector2( arm.position.X + 42 * armCos, arm.position.Y + 42 * armSin); // And give it a velocity of the direction we're aiming. // Increae/decrease speed by changeing 15.0f bullet.Velocity = new Vector2( (float)Math.Cos(arm.rotation - MathHelper.PiOver4 + MathHelper.Pi + MathHelper.PiOver2), (float)Math.Sin(arm.rotation - MathHelper.PiOver4 + MathHelper.Pi + MathHelper.PiOver2)) * 15.0f; } else //Facing left { float armCos = (float)Math.Cos(arm.rotation + MathHelper.PiOver2); float armSin = (float)Math.Sin(arm.rotation + MathHelper.PiOver2); //Set the initial position of our bullet at the end of our gun arm //42 is obtained be taking the width of the Arm_Gun texture / 2 //and subtracting the width of the Bullet texture / 2. ((96/2)-(12/2)) bullet.position = new Vector2( arm.position.X - 42 * armCos, arm.position.Y - 42 * armSin); //And give it a velocity of the direction we're aiming. //Increase/decrease speed by changing 15.0f bullet.Velocity = new Vector2( -armCos, -armSin) * 15.0f; } return; }// End if }// End foreach

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