Posts Tagged ‘GitHub’

IBM Moves Quantum Computing Toward Commercial Systems

September 20, 2017

IBM seem determined to advance quantum computing. Just this week IBM announced its researchers developed a new approach to simulate molecules on a quantum computer that may one day help revolutionize chemistry and materials science. In this case, the researchers implemented a novel algorithm that is efficient with respect to the number of quantum operations required for the simulation. This involved a 7-qubit processor.

7-cubit processor

In the diagram above IBM scientists successfully used six qubits on a purpose-built seven-qubit quantum device to address the molecular structure problem for beryllium hydride (BeH2) – the largest molecule simulated on a quantum computer to date.

Back in May IBM announced an even bigger quantum device. It prototyped the first commercial processor with 17 qubits and leverages significant materials, device, and architecture improvements to make it the most powerful quantum processor created to date by IBM. This week’s announcement certainly didn’t surpass it in size. IBM engineered the 17-qubit system to be at least twice as powerful as what is available today to the public on the IBM Cloud and it will be the basis for the first IBM Q early-access commercial systems.

It has become apparent to the scientists and researchers who try to work with complex mathematical problems and simulations that the most powerful conventional commercial computers are not up to the task. Even the z14 with its 10-core CPU and hundreds of additional processors dedicated to I/O cannot do the job.

As IBM puts it: Even today’s most powerful supercomputers cannot exactly simulate the interacting behavior of all the electrons contained in a simple chemical compound such as caffeine. The ability of quantum computers to analyze molecules and chemical reactions could help accelerate research and lead to the creation of novel materials, development of more personalized drugs, or discovery of more efficient and sustainable energy sources.

The interplay of atoms and molecules is responsible for all matter that surrounds us in the world. Now “we have the potential to use quantum computers to boost our knowledge of natural phenomena in the world,” said Dario Gil, vice president of AI research and IBM Q, IBM Research. “Over the next few years, we anticipate IBM Q systems’ capabilities to surpass what today’s conventional computers can do, and start becoming a tool for experts in areas such as chemistry, biology, healthcare and materials science.”

So commercial quantum systems are coming.  Are you ready to bring a quantum system into you data center? Actually you can try one today for free here  or through GitHub, which offers a Python software development kit for writing quantum computing experiments, programs, and applications. Although DancingDinosaur will gladly stumble through conventional coding, quantum computing probably exceeds his frustration level even with a Python development kit.

However, if your organization is involved in these industries—materials science, chemistry, and the like or is wrestling with a problem you cannot do on a conventional computer—it probably is worth a try, especially for free. You can try an easy demo card game that compares quantum computing with conventional computing.

But as reassuringly as IBM makes quantum computing sound, don’t kid yourself; it is very complicated.  Deploying even a small qubit machine is not going to be like buying your first PC. Quantum bits, reportedly, are very fragile or transitory. Labs will keep them very cold just to better stabilize the system and keep them from switching their states before they should.  Just think how you’d feel about your PC if the bit states of 0 and 1 suddenly and inextricably changed.

That’s not the only possible headache. You only have limited time to work on cubits given their current volatility when not super cooled. Also, work still is progressing on advancing the quantum frameworks and mapping out ecosystem enablement.

Even IBM researchers admit that some problems may not be better on quantum computers. Still, until you pass certain threshold, like qubit volume, your workload might not perform better on a quantum computer. The IBM quantum team suggests it will take until 2021 to consistently solve a problem that has commercial relevance using quantum computing.

Until then, and even after, IBM is talking about a hybrid approach in which parts of a problem are solved with a quantum computer and the rest with a conventional system. So don’t plan on replacing your Z with a few dozen or even hundreds of qubits anytime soon.

DancingDinosaur is Alan Radding, a veteran information technology analyst, writer, and ghost-writer. Please follow DancingDinosaur on Twitter, @mainframeblog. See more of his IT writing at and here.


IBM Puts Open DBaaS on IBM OpenPOWER LC Servers

June 15, 2017

Sometimes IBM seems to be thrashing around looking for anything hot that’s selling, and the various NoSQL databases definitely are hot. The interest is driven by DevOps, cloud, and demand for apps fast.

A month or so ago the company took its Power LC server platform to the OpenPOWER Developer Conference in San Francisco where they pitched Database-as-a-Service (DBaaS) and a price-performance guarantee: OpenPOWER LC servers designed specifically for Big Data to deliver a 2.0x price-performance advantage over x86 for MongoDB and 1.8x for EDB PostgreSQL 9.5 guaranteed. With organizations seeking any performance advantage, these gains matter.

There are enough caveats that IBM will almost never be called to deliver on the guarantee. So, don’t expect to cash in on this very quickly. As IBM says in the miles of fine print: the company will provide additional performance optimization and tuning services consistent with IBM Best Practices, at no charge.  But the guarantee sounds intriguing. If you try it, please let DancingDinosaur know how it works out.

IBM Power System S822LC for Big Data

BTW, IBM published the price for the S822LC for big data as starting at $6,399.00 USD. Price includes shipping. Linux OS, however, comes for an additional charge.

Surprisingly, IBM is not aiming this primarily to the IBM Cloud. Rather, the company is targeting the private cloud, the on-premises local version. Its Open DBaaS toolkit, according to IBM, provides enterprise clients with a turnkey private cloud solution that pre-integrates an Open Source DB image library, OpenStack-based private cloud, and DBaaS software packages with hardware (servers/storage/network switches/rack) and a single source of support to enable a DBaaS self-service portal for enterprise developers and LOB users to provision MongoDB, Postgres, and others in minutes. But since it is built on OpenStack, it also supports hybrid cloud integration with IBM Cloud offerings via OpenStack APIs.

In terms of cost it seems remarkably reasonable. It comes in four reference configurations. The Starter configuration is ~$80k (US list price) and includes 3 Power 822LC servers, pair of network switches, rack, DBaaS Toolkit software, and IBM Lab Services. Other configurations include Entry, Cloud Scale, and Performance configurations that have been specified for additional compute, storage, and OpenStack control plane nodes along with high-capacity JBOD storage drawers. To make this even easier, each configuration can be customized to meet user requirements. Organizations also can provide their own racks and/or network switches.

Furthermore, the Power 822LC and Power 821LC form the key building blocks for the compute, storage and OpenStack control plane nodes. As a bonus, however, IBM includes the new 11-core Power 822LC, which provides an additional 10-15% performance boost over the 10-core Power 822LC for the same price.

This is a package deal, at least if you want the best price and to deploy it fast. “As the need for new applications to be delivered faster than ever increases in a digital world, developers are turning to modern software development models including DevOps, as-a-Service, and self-service to increase the volume, velocity and variety of business applications,” said Terri Virnig, VP, Power Ecosystem and Strategy at IBM. Open Platform for DBaaS on IBM in the announcement. Power Systems DBaaS package  includes:

  • A self-service portal for end users to deploy their choice of the most popular open source community databases including MongoDB, PostgreSQL, MySQL, MariaDB, Redis, Neo4j and Apache Cassandra deployable in minutes
  • An elastic cloud infrastructure for a highly scalable, automated, economical, and reliable open platform for on-premises, private cloud delivery of DBaaS
  • A disk image builder tool for organizations that want to build and deploy their own custom databases to the database image library

An open source, cloud-oriented operations manager with dashboards and tools will help you visualize, control, monitor, and analyze the physical and virtual resources. A turnkey, engineered solution comprised of compute, block and archive storage servers, JBOD disk drawers, OpenStack control plane nodes, and network switches pre-integrated with the open source DBaaS toolkit is available through GitHub here.

DancingDinosaur is Alan Radding, a veteran information technology analyst, writer, and ghost-writer. Please follow DancingDinosaur on Twitter, @mainframeblog. See more of his IT writing at and here.


AI and IBM Watson Fuel Interest in App Dev among Mainframe Shops

December 1, 2016

BMC’s 2016 mainframe survey, covered by DancingDinosaur here, both directly and indirectly pointed to increased activity in regard to data center applications. Mainly this took the form of increased interest in Java on the z as a platform for new applications. Specifically, 72% of overall respondents reported using Java today while 88% reported plans to increase their use Java. At the same time, the use of Linux on the z has been steadily growing year over year; 41% in 2014, 48% in 2015, 52% in 2016. This growth of both point to a heightened interest in application development, management, and change.


IBM’s Project DataWorks uses Watson Analytics to create complex visualizations with one line of code

IBM has been feeding this kind of AppDev interest with its continued enhancement of Bluemix and the rollout of the Bluemix Garage method.  More recently, it recently announced a partnership with Topcoder, a global software development community comprised of more than one million designers, developers, data scientists, and competitive programmers with the aim of stimulating developers looking to harness the power of Watson to create the next generation AI apps, APIs, and solutions.

According to Forrester VP and Principal Analyst JP Gownder in the IBM announcement, by 2019, automation will change every job category by at least 25%. Additionally, IDC predicts that 75% of developer teams will include cognitive/AI functionality in one or more applications by 2018. The industry is driving toward a new level of computing potential not witnessed since the introduction of Big Data

To further drive the cultivation of this new style of developer, IBM is encouraging participation in Topcoder-run hackathons and coding competitions. Here developers can easily access a range of Watson services – such as Conversation, Sentiment Analysis, or speech APIs – to build powerful new tools with the help of cognitive computing and artificial intelligence. Topcoder hosts 7,000 code challenges a year and has awarded $80 million to its community. In addition, now developers will have the opportunity to showcase and monetize their solutions on the IBM Marketplace, while businesses will be able to access a new pipeline of talent experienced with Watson and AI.

In addition to a variety of academic partnerships, IBM recently announced the introduction of an AI Nano degree program with Udacity to help developers establish a foundational understanding of artificial intelligence.  Plus, IBM offers the IBM Learning Lab, which features more than 100 curated online courses and cognitive uses cases from providers like Codeacademy, Coursera, Big Data University, and Udacity. Don’t forget, IBM DeveloperWorks, which offers how-to tutorials and courses on IBM tools and open standard technologies for all phases of the app dev lifecycle.

To keep the AI development push going, recently IBM unveiled the experimental release of Project Intu, a new system-agnostic platform designed to enable embodied cognition. The new platform allows developers to embed Watson functions into various end-user devices, offering a next generation architecture for building cognitive-enabled experiences.

Project Intu is accessible via the Watson Developer Cloud and also available on Intu Gateway and GitHub. The initiative simplifies the process for developers wanting to create cognitive experiences in various form factors such as spaces, avatars, robots, or IoT devices. In effect, it extends cognitive technology into the physical world. The platform enables devices to interact more naturally with users, triggering different emotions and behaviors and creating more meaningful and immersive experiences for users.

Developers can simplify and integrate Watson services, such as Conversation, Language, and Visual Recognition with the capabilities of the device to act out the interaction with the user. Instead of a developer needing to program each individual movement of a device or avatar, Project Intu makes it easy to combine movements that are appropriate for performing specific tasks like assisting a customer in a retail setting or greeting a visitor in a hotel in a way that is natural for the visitor.

Project Intu is changing how developers make architectural decisions about integrating different cognitive services into an end-user experience – such as what actions the systems will take and what will trigger a device’s particular functionality. Project Intu offers developers a ready-made environment on which to build cognitive experiences running on a wide variety of operating systems – from Raspberry PI to MacOS, Windows to Linux machines.

With initiatives like these, the growth of cognitive-enabled applications will likely accelerate. As IBM reports, IDC estimates that “by 2018, 75% of developer teams will include Cognitive/AI functionality in one or more applications/services.”  This is a noticeable jump from last year’s prediction that 50% of developers would leverage cognitive/AI functionality by 2018

For those z data centers surveyed by BMC that worried about keeping up with Java and big data, AI adds yet an entirely new level of complexity. Fortunately, the tools to work with it are rapidly falling into place.

DancingDinosaur is Alan Radding, a veteran information technology analyst, writer, and ghostwriter. Please follow DancingDinosaur on Twitter, @mainframeblog. See more of his IT writing at and here.




IBM InterCONNECT 2016 as Cloud Fest for App Dev

February 29, 2016

IBM spent the last week of February announcing a constant stream of Cloud deals that focused mostly on various aspects of App Dev. All IBM software is now enabled for private, public and hybrid cloud.  It announced expansion of Bluemix public, dedicated, and local services, IoT and the Weather Company, a growing suite of cognitive APIs for Watson, and hybrid object storage. These should be no surprise to DancingDinosaur readers who have seen a steady trickle of IBM Cloud announcements for months. Let’s sample just a few:

IBM/vmware execs (Alan M Rosenberg/Feature Photo Service for IBM)

IBM senior VP Robert LeBlanc and VMware COO Carl Eschenbach

For DancingDinsosaur, this announcement: IBM and VMware Announce Strategic Partnership to Accelerate Enterprise Hybrid Cloud Adoption, was the most eyebrow raising. IBM and VMware have jointly designed an architecture and cloud offering that will enable customers to automatically provision pre-configured VMware SDDC environments, consisting of VMware vSphere, NSX and Virtual SAN on the IBM Cloud. With this SDDC environment in place, customers will be able to deploy workloads in this hybrid cloud environment without modification, due to common security and networking models based on VMware. This appears intended to encompass SoftLayer too as just another new application environment.

Apple’s Swift development language adds more developer news: IBM to Bring Swift to the Cloud to Radically Simplify End-to-End Development of Apps. IBM has become the first cloud provider to enable the development of applications in native Swift, unlocking its full potential in radically simplifying the development of end-to-end apps on the IBM Cloud. This announcement is the next phase of its roadmap to bring Swift to the Cloud with a preview of a Swift runtime and a Swift Package Catalog to help enable developers to create apps for the enterprise.  DancingDinosaur, a former wannabe developer, is a fan of Swift as well as node.js and Go. Where were all these nifty tools when I was younger?

Watson is another longtime favorite of DancingDinosaur: IBM Announces New and Advanced Watson APIs on the Cloud. New and expanded cognitive APIs for developers that enhance Watson’s emotional and visual senses will further extend the capabilities of the industry’s largest and most diverse set of cognitive technologies and tools.  IBM is also adding tooling capabilities and enhancing its SDKs (Node, Java, Python, and the newly introduced iOS Swift and Unity) across the Watson portfolio and adding Application Starter Kits to make it easy for developers to customize and build with Watson. All APIs are available through the IBM Watson Developer Cloud on Bluemix.

And just in case you didn’t think these weren’t enterprise-class announcements: IBM and GitHub Form Strategic Partnership to Offer First GitHub Enterprise Service in Dedicated and Local Hybrid. IBM and GitHub plan to deliver GitHub Enterprise as a dedicated service on Bluemix to customers across private and hybrid cloud environments. By working with IBM Cloud, developers can expect to learn, code and work with GitHub’s collaborative development tools in a private, environment with robust security capabilities. GitHub and IBM, through this strategic partnership, aim to advance the development of next generation cloud applications for enterprise customers.

IBM WebSphere Blockchain Connect – A new service available to all WebSphere clients is designed to provide a safe and encrypted passage from their blockchain cloud to their enterprise. Starting immediately, enterprises currently using IBM’s on-premises software can tap these new offerings as an on ramp to hybrid cloud, realizing immediate benefits and new value from their existing investments. Blockchain is just one part of a series of tools intended to make it easier for developers to unlock the valuable data, knowledge and transaction systems. Also coming is fully integrated DevOps tools for creating, deploying, running and monitoring Blockchain applications on IBM Cloud that enables the applications to be deployed on IBM z Systems.

Blockchain still may be unfamiliar to many. Recognized most as the technology behind bitcoins, it should prove particularly valuable for IoT systems by providing a mechanism to securely track any of the various things. It enables what amounts to trustless transactions by eliminating the need for an intermediary between buyers and sellers or things and things. For those who want open trustworthy IoT communications without relying on intermediaries blockchain could provide the answer, facilitating the kind of IoT exchanges people have barely begun to imagine could be possible.

Finally, IBM Unveils Fast, Open Alternative to Event-Driven Programming through the Bluemix OpenWhisk platform, which enables developers to quickly build and link microservices that execute software code in response to events such as mouse clicks or receipt of sensor data from an IOT device. Developers won’t to need worry about things like pre-provisioning infrastructure or operations. Instead, they can simply focus on code, dramatically speeding the process.

DancingDinosaur is Alan Radding, a veteran information technology analyst and writer. Please follow DancingDinosaur on Twitter, @mainframeblog. See more of his IT writing at and here.

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