Author name: ITMAITY

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Virtual Reality Reshapes Remote Design Reviews

Virtual reality is transforming design reviews. When paired with Dell Pro Max workstations and NVIDIA RTX PRO GPUs, VR becomes mission‑critical.   ​  ​Virtual reality is transforming design reviews. When paired with Dell Pro Max workstations and NVIDIA RTX PRO GPUs, VR becomes mission‑critical. Dell Pro Max Blog | Dell

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Coming soon: Dell’s First Windows 365 Cloud PC Device

Dell unveils its first Cloud PC device built for Windows 365, delivering secure, high-performance computing with simplified IT management.   ​  ​Dell unveils its first Cloud PC device built for Windows 365, delivering secure, high-performance computing with simplified IT management. Launch Blog | Dell

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It Only Takes 250 Documents to Poison Your AI

250 documents is all it takes to compromise an LLM. Here’s how you can protect yourself and your team.   ​  ​250 documents is all it takes to compromise an LLM. Here’s how you can protect yourself and your team. LLM Blog | Dell

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Security That Scales With You

Cyberattacks target small businesses every 11 seconds. Learn how Dell helps implement a security strategy that scales as you grow.   ​  ​Cyberattacks target small businesses every 11 seconds. Learn how Dell helps implement a security strategy that scales as you grow. Launch Blog | Dell

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Microsoft and OpenAI joint statement on continuing partnership

Since 2019, Microsoft and OpenAI have worked together to advance artificial intelligence responsibly and make its benefits broadly accessible. What began as a research partnership has grown into one of the most consequential collaborations in technology — grounded in mutual trust, deep technical integration, and a long‑term commitment to innovation.  As conversations around AI investments and partnerships grow and as OAI announces new funding and new partners as they did today, we want to ensure these announcements are understood within the existing construct of our partnership. Nothing about today’s announcements in any way changes the terms of the Microsoft and OpenAI relationship that have been previously shared in our joint blog in October 2025.  The partnership remains strong and central. Microsoft and OpenAI continue to work closely across research, engineering, and product development, building on years of deep collaboration and shared success.  Our IP relationship continues unchanged. Microsoft maintains its exclusive license and access to intellectual property across OpenAI models and products. Collaborations like the partnership between OpenAI and Amazon were always contemplated under our agreements and Microsoft is excited to see what they build together.  Our commercial and revenue share relationship remains unchanged. The ongoing revenue share arrangement remains unchanged and has always included sharing revenue from partnerships between OpenAI and other cloud providers.  Azure remains the exclusive cloud provider of stateless OpenAI APIs. Microsoft is the exclusive cloud provider for stateless APIs that provide access to OpenAI’s models and IP. These APIs can be purchased from Microsoft or directly from OpenAI. Customers and developers benefit from Azure’s global infrastructure, security, and enterprise-grade capabilities at scale. Any stateless API calls to OpenAI models that result from a collaboration between OpenAI and any third party – including Amazon – would be hosted on Azure.  OpenAI’s first party products, including Frontier, will continue to be hosted on Azure.   AGI definition and processes are unchanged. The contractual definition of AGI and the process for determining if it has been achieved remains the same. The partnership supports OpenAI’s growth. As OpenAI scales, it continues to have flexibility to commit to additional compute elsewhere, including through large-scale infrastructure initiatives such as the Stargate project.   The partnership was designed to give Microsoft and OpenAI room to pursue new opportunities independently, while continuing to collaborate, which each company is doing, together and independently.  We remain committed to our partnership and to the shared mission that brought us together. We continue to work side‑by‑side to deliver powerful AI tools, advance responsible development, and ensure that AI benefits people and organizations everywhere. The post Microsoft and OpenAI joint statement on continuing partnership appeared first on The Official Microsoft Blog. ​Since 2019, Microsoft and OpenAI have worked together to advance artificial intelligence responsibly and make its benefits broadly accessible. What began as a research partnership has grown into one of the most consequential collaborations in technology — grounded in mutual trust, deep technical integration, and a long‑term commitment to innovation.  As conversations around AI investments and partnerships… The post Microsoft and OpenAI joint statement on continuing partnership appeared first on The Official Microsoft Blog.  Featured, The Official Microsoft Blog, AI The Official Microsoft Blog

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Your AI Needs an Open Road — Not a Dead End

AI is transforming business, but scaling it needs a fast data foundation. Dell and VAST Data take very different approaches.   ​  ​AI is transforming business, but scaling it needs a fast data foundation. Dell and VAST Data take very different approaches. AI Solutions Blog | Dell

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Microsoft Sovereign Cloud adds governance, productivity and support for large AI models securely running even when completely disconnected 

As digital sovereignty becomes a strategic requirement, organizations are rethinking how they deploy critical infrastructure and AI capabilities under tighter regulatory expectations and higher risk conditions. Microsoft’s approach to sovereignty is grounded in enabling enterprises, public sectors and regulated industries to participate in the digital economy securely, independently and on their own terms. The Microsoft Sovereign Cloud brings together productivity, security and cloud workloads to span both public and private environments. Customers can choose the right control posture for each workload, through a continuum of sovereign options protecting against fragmenting their architecture or increasing operational risk. Trust is built on confidence: confidence that data stays protected, controls are enforceable and operations can continue under real-world conditions.   To support these confidential environments, Microsoft offers full stack capabilities that support customers across connected, intermittently connected and fully disconnected modes. Today’s expansion of capabilities includes three major updates: Azure Local disconnected operations (now available) – Organizations can now run mission-critical infrastructure with Azure governance and policy control, with no cloud connectivity, optimizing continuity for sovereign, classified or isolated environments.  Microsoft 365 Local disconnected (now available) – Core productivity workloads, Exchange Server, SharePoint Server and Skype for Business Server can run fully inside the customer’s sovereign operational boundary on Azure Local, keeping teams productive even when disconnected from the cloud.  Foundry Local adds modern infrastructure capabilities and support for large AI models – Organizations can now bring large AI models into fully disconnected, sovereign environments with Foundry Local. Using modern infrastructure from partners like NVIDIA, customers with sovereign needs will now be able to run multimodal models locally on their own hardware, inside strict sovereign boundaries enabling powerful, local AI inferencing in fully disconnected environments.  Run connected or fully disconnected. Sovereign Private Cloud unifies Azure Local, Microsoft 365 Local and Foundry Local, bringing modern infrastructure, productivity and support for large AI models to any operational boundary. This delivers a truly localized full stack experience built on Azure Local infrastructure and Microsoft 365 Local workloads, designed to stay resilient across any connectivity condition, with large models being part of Foundry Local extending the stack to run advanced multimodal models locally, securely, even when fully disconnected. Customers can now help maintain uninterrupted operations, keep mission critical workloads protected and apply consistent governance and policy enforcement, while keeping data, identities and operations within their sovereign boundaries. Azure Local runs critical infrastructure locally, even when disconnected  For workloads with specialized requirements, Azure Local provides the on-premises foundation with consistent Azure governance and policy controls. With Azure Local disconnected operations, management, policy and workload execution stay within the customer-operated environments, so services continue running securely even when environments must be isolated or connectivity is not available. Using familiar Azure experiences and consistent policies, organizations can deploy and govern workloads locally without depending on continuous connection to public cloud services. Azure Local is designed to scale with mission-critical needs from smaller deployments to larger footprints that support data-intensive and AI-driven workloads. Customers can start fast, expand over time and maintain a unified operational model, all within their sovereign boundary. Operating in disconnected environments surfaces constraints that go beyond traditional cloud assumptions: External dependencies may be unacceptable, connectivity may be intentionally restricted and operational continuity is a business imperative.  “The availability of Azure Local disconnected operations represents a breakthrough for organizations that need control over their data without sacrificing the power of the Microsoft Cloud. For Luxembourg, where digital sovereignty is not just a principle but a strategic necessity, this model offers the resilience, autonomy and trust our market expects. By combining Microsoft’s technological leadership with Proximus NXT’s sovereign cloud expertise, we are enabling our customers to innovate confidently — even in fully disconnected mode,” said Gerard Hoffmann, CEO Proximus Luxembourg.  Microsoft 365 Local keeps productivity and collaboration available in fully disconnected environments  As sovereign environments move into disconnected environments, keeping people productive becomes just as critical as keeping infrastructure online. Building on more than a decade of delivering and supporting these services, Microsoft 365 Local disconnected brings that continuity to the productivity layer, delivering Microsoft’s core server workloads — Exchange Server, SharePoint Server and Skype for Business Server supported through at least 2035 — directly into the customer’s sovereign private cloud.   With Microsoft 365 Local, teams can communicate, share information and collaborate securely within the same controlled boundary as their infrastructure and AI workloads. Everything runs locally, under customer-owned policies, with full control of data resiliency, access and compliance. By operating with Azure-consistent management and governance, customers get the productivity experience they rely on, designed to stay resilient and secure even when offline.  Bringing large models and modern infrastructure to Foundry Local  With the availability of larger models and modern infrastructure as part of the Foundry Local portfolio, Microsoft is enabling customers with highly secure environments the ability to run multimodal, large models directly inside their sovereign private cloud environments. This brings the richness of Microsoft’s enterprise AI capabilities to on-premises systems, complete with local inferencing and APIs that operate completely within customer-controlled data boundaries.   Expanding beyond small models, the integration of Foundry Local with Azure Local is specifically designed to support large-scale models utilizing the latest GPUs from partners such as NVIDIA. Microsoft will provide comprehensive support for deployments, updates and operational health. Even as inferencing demands increase over time, customers retain complete control over their data and hardware.   Choice and control without added complexity  Customers facing strict sovereignty and regulatory requirements are clear that a fully disconnected sovereign private cloud is a key business need. Microsoft Sovereign Private Cloud is designed to meet these needs head-on, enabling secure, compliant operations even in environments with no external connectivity. At the same time, we recognize that disconnected environments are not one-size-fits-all; some customers operate across connected, hybrid and disconnected modes based on mission, risk and regulation. Our approach helps customers to meet strict sovereign requirements in fully disconnected scenarios without compromising simplicity, while retaining flexibility where connectivity is possible. Together, Azure Local disconnected operations, Microsoft 365 Local and Foundry Local help organizations choose where workloads run and how environments are managed, while standardizing governance and operational practices across connected and disconnected deployments.  Get started  Azure Local disconnected operations and Microsoft 365 Local disconnected are now available worldwide, and large models on Foundry Local are available to qualified customers.  Explore the Microsoft Sovereign Cloud   Learn more about Azure Local disconnected operations  Douglas Phillips leads global engineering efforts for Microsoft’s specialized, sovereign, and private clouds. He is responsible for Microsoft’s global strategy, products and operations that bring Microsoft’s industry-leading solutions, including Azure, our adaptive cloud portfolio and Microsoft 365 collaboration suite, to customers with additional sovereignty, security, edge and compliance requirements.  The post Microsoft Sovereign Cloud adds governance, productivity and support for large AI models securely running even when completely disconnected  appeared first on The Official Microsoft Blog. ​As digital sovereignty becomes a strategic requirement, organizations are rethinking how they deploy critical infrastructure and AI capabilities under tighter regulatory expectations and higher risk conditions. Microsoft’s approach to sovereignty is grounded in enabling enterprises, public sectors and regulated industries to participate in the digital economy securely, independently and on their own terms. The Microsoft Sovereign Cloud brings together productivity, security and cloud workloads to span both… The post Microsoft Sovereign Cloud adds governance, productivity and support for large AI models securely running even when completely disconnected  appeared first on The Official Microsoft Blog.  Featured, The Official Microsoft Blog, Azure, Foundry, Microsoft 365, Microsoft Sovereign Cloud, Sovereign Private Cloud The Official Microsoft Blog

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Asha Sharma named EVP and CEO, Microsoft Gaming

Satya Nadella, Chairman and CEO, and members of his executive team shared the following communications with employees today. SATYA NADELLA MESSAGE Gaming has been part of Microsoft from the start. Flight Simulator shipped before Windows, and you can practically ray‑trace a line from DirectX in the ’90s to the accelerated‑compute era we’re in today. As we celebrate Xbox’s 25th year, the opportunity and innovation agenda in front of us is expansive. Today we reach over 500 million monthly active users, are a top publisher across all platforms, and continue to innovate across gaming hardware, content, and community, in service of creators and players everywhere. I am long on gaming and its role at the center of our consumer ambition, and as we look ahead, I’m excited to share that Asha Sharma will become Executive Vice President and CEO, Microsoft Gaming, reporting to me. Over the last two years at Microsoft, and previously as Chief Operating Officer at Instacart and a Vice President at Meta, Asha has helped build and scale services that reach billions of people and support thriving consumer and developer ecosystems. She brings deep experience building and growing platforms, aligning business models to long-term value, and operating at global scale, which will be critical in leading our gaming business into its next era of growth. Matt Booty will become Executive Vice President and Chief Content Officer, reporting to Asha. Matt’s career reflects a lifelong commitment to games and to the people who make them. Under his leadership, Microsoft Gaming has grown to span nearly 40 studios across Xbox, Bethesda, Activision Blizzard, and King, which are home to beloved franchises including Halo, The Elder Scrolls, Call of Duty, World of Warcraft, Diablo, Candy Crush, and Fallout. Together, Asha and Matt have the right combination of consumer product leadership and gaming depth to push our platform innovation and content pipeline forward. Last year, Phil Spencer made the decision to retire from the company, and since then we’ve been talking about succession planning. I want to thank Phil for his extraordinary leadership and partnership. Over 38 years at Microsoft, including 12 years leading Gaming, Phil helped transform what we do and how we do it. He expanded our reach across PC, mobile, and cloud; nearly tripled the size of the business; helped shape our strategy through the acquisitions of Activision Blizzard, ZeniMax, and Minecraft; and strengthened our culture across our studios and platforms.  I’ve long admired Phil’s unwavering commitment to players, creators, and his team, and I am personally grateful for his leadership and counsel. He will continue working closely with Asha to ensure a smooth transition. We have extraordinary creative talent across our studios and a global platform that is second to none. I’m excited for how we will capture the opportunity ahead and define what comes next, while staying grounded in what players and creators value. Please join me in congratulating Asha and Matt on their new roles, and in thanking Phil for everything he has done for Microsoft and for our industry. PHIL SPENCER MESSAGE When I walked through Microsoft’s doors as an intern in June of 1988, I could never have imagined the products I’d help build, the players and customers we’d serve, or the extraordinary teams I’d be lucky enough to join. It’s been an epic ride and truly the privilege of a lifetime. Last fall, I shared with Satya that I was thinking about stepping back and starting the next chapter of my life. From that moment, we aligned on approaching this transition with intention, ensuring stability, and strengthening the foundation we’ve built. Xbox has always been more than a business. It’s a vibrant community of players, creators, and teams who care deeply about what we build and how we build it. And it deserves a thoughtful, deliberate plan for the road ahead. Today marks an exciting new chapter for Microsoft Gaming as Asha Sharma steps into the role of CEO, and I want to be the first to welcome her to this incredible team. Working with her over the past several months has given me tremendous confidence. She brings genuine curiosity, clarity and a deep commitment to understanding players, creators, and the decisions that shape our future. We know this is an important moment for our fans, partners, and team, and we’re committed to getting it right. I’ll remain in an advisory role through the summer to support a smooth handoff. I’m also grateful for the strength of our studios organization. Matt Booty and our studios teams continue to build an incredible portfolio, and I have full confidence in the leadership and creative momentum across our global studios.  I want to congratulate Matt on his promotion to EVP and Chief Content Officer. As part of this transition, Sarah Bond has decided to leave Microsoft to begin a new chapter. Sarah has been instrumental during a defining period for Xbox, shaping our platform strategy, expanding Game Pass and cloud gaming, supporting new hardware launches, and guiding some of the most significant moments in our history. I’m grateful for her partnership and the impact she’s had, and I wish her the very best in what comes next. Most of all, to everyone in Microsoft Gaming, I want to say “thank you.” I’ve learned so much from this team and community, grown alongside you, and been continually inspired by the creativity, courage, and care you bring to players, creators, and to one another every day. I’m incredibly proud of what we’ve built together over the last 25 years, and I have complete confidence in all of you and in the opportunities ahead. I’ll be cheering you on in this next chapter as Xbox’s proudest fan and player. Phil XBL: P3 ASHA SHARMA MESSAGE Dear team, Today I begin my role as CEO of Microsoft Gaming. I feel two things at once: humility and urgency. Humility because this team has built something extraordinary over decades. Urgency because gaming is in a period of rapid change, and we

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A milestone achievement in our journey to carbon negative

In 2020, Microsoft announced a moonshot commitment to become carbon negative by 2030 — accelerating work across our company to advance the partnerships and technologies needed to advance sustainability for our businesses, our customers and the world. A key milestone on this journey was our aim to match 100% of our annual global electricity consumption with renewable energy(1) by 2025. Today, we are pleased to share that Microsoft has achieved this milestone(2). This progress helps drive investment into the power systems where we operate, expand clean energy supply and advance broader energy innovation. Over a decade of investment: 40 gigawatts of new renewable energy contracted What began in 2013 with a single 110 megawatt (MW) power purchase agreement (PPA) in Texas — a small first step to demonstrate how corporate procurement could scale clean energy(3) — has evolved into one of the largest clean energy portfolios in the world. This first deal not only supported Microsoft’s early cloud services but also set in motion a decade of commercial partnerships and learning-by-doing that served to demonstrate how corporate demand for advanced energy solutions can help to achieve a more affordable and sustainable power system, while supporting reliability for customers. Since our carbon negative announcement in 2020, we have contracted 40 gigawatts (GW) of new renewable energy supply across 26 countries, working with more than 95 utilities and developers across 400+ contracts and counting. To put that amount in perspective — that’s enough energy to power about 10 million US homes. Of that contracted volume, 19 GW are now online, delivering new clean energy supply to the power grid, while the remainder are slated to come online over the next five years. Our new renewable energy procurement continues to deliver significant environmental benefits, including the reduction of Microsoft’s reported Scope 2 carbon dioxide emissions by an estimated 25 million tons(4) and the mobilization of billions of dollars’ worth of private investment in regions where we operate. Catalyzing market investment through bankable, repeatable models Microsoft is among the early pioneers in developing technical and commercial practices that help advance bankable, repeatable and scalable procurement tools suitable for each market. Our clean energy purchasing navigates a global patchwork of power market designs, requiring creativity in how we balance cost, time to market and project sizing in our portfolio across planning, contracting and management. Our work has benefited from a broad coalition of partners helping to build this market together. According to Bloomberg New Energy Finance, more than 200 global corporations collectively purchased nearly 200 GW of clean energy around the world since 2008. Working alongside other clean energy buyers — as well as hundreds of utilities, manufacturers, financiers, developers and engineers — we have helped reduce transaction costs, expand developer access to financing and streamline procurement approaches that other buyers can adopt. This global flywheel of partnership, investment, technology and policy innovation is expected to continue to facilitate billions of dollars’ worth of investment into infrastructure and jobs. And as we’ve seen repeatedly, when Microsoft sends a clear market signal for world-class, first-of-a-kind technologies and infrastructure, the power sector rises to the challenge. Our procurement over the past decade has demonstrated that partnerships, communities and innovation are essential ingredients that help to accelerate first-of-a-kind technologies and infrastructure at scale. Scaling partnerships to scale infrastructure Critical to Microsoft’s success in expanding digital infrastructure and supporting our local communities is our ability to build trusted partnerships with the over 95 global energy suppliers that support our clean energy portfolio. We have sourced clean energy through multiple requests for proposal or information, bilateral engagements and clean tariffs to evaluate over 5,000 unique carbon-free energy projects around the world. Today, Microsoft has six energy company partners with which we have over 1 GW of contracted renewable energy capacity, and more than 20 energy supplier partners where each partner has at least five separate renewable energy projects with Microsoft — evidence of the durable, repeatable relationships necessary to scale clean energy. Combining scale with speed, Microsoft’s landmark 10.5 GW framework agreement with Brookfield sends a long-term, 2030 demand signal to the market that enables developers to raise funding more efficiently, bolster supply chains, hire engineers and construct world-class energy infrastructure. Putting communities first Our renewable energy procurement has mobilized billions of dollars in private investment, supported thousands of jobs across the communities where we operate and delivered meaningful co-benefits. Through partnerships with developers and nonprofit organizations, we’ve worked to embed community-driven benefits into our energy portfolio. These benefits include robust infrastructure, economic inclusion and support for community-focused organizations. Our support for communities shows up in projects like our 500 MW PPA with Sol Systems, or our 250 MW PPA with Volt Energy Utility that provided local training and jobs, as well as grants to community nonprofit organizations and habitat restoration. We’ve also signed over 1.5 GW of distributed solar, bringing clean energy directly into hundreds of communities around the world. Landmark agreements like our 500 MW offtake with Pivot Energy, or our 270 MW offtake with PowerTrust are expected to foster employment, energy cost savings and grid resilience in communities across the United States, Mexico and Brazil. More details on the above examples and our approach to community benefits in clean energy agreements can be found in a dedicated Microsoft whitepaper. Innovation unlocks new markets and pathways Microsoft’s clean energy procurement continues to play an important role in catalyzing technical, commercial and regulatory innovation. Our commercial efforts have helped lower barriers to entry into new markets and expand access into multi-technology contracts that accelerate decarbonization. In Japan, Microsoft signed one of the first corporate PPAs in the country’s restructured power market. Our 25 MW, 20-year agreement with Shizen represents the first single-asset virtual PPA executed in the country, which helped pave the way to over 2GWs of corporate procurement since 2024, according to Bloomberg New Energy Finance. Alongside opening new markets, we have structured several multi-technology offtakes in nascent markets for corporate procurement. In India, Microsoft purchased a combined

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Putting Dell AI PCs to Work for McLaren Racing

Discover how McLaren Racing equips its Formula 1 team with Dell AI PCs and workstations to power race-day analysis, driver simulation and real-time decision-making on and off the track.   ​  ​Discover how McLaren Racing equips its Formula 1 team with Dell AI PCs and workstations to power race-day analysis, driver simulation and real-time decision-making on and off the track. Customer Blog | Dell

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McLaren Racing Turns Race Data into an Edge with Dell Technologies Storage

See how McLaren Racing uses Dell PowerStore and PowerScale to capture telemetry data and video each Formula 1 race weekend and turns them into a real competitive advantage.   ​  ​See how McLaren Racing uses Dell PowerStore and PowerScale to capture telemetry data and video each Formula 1 race weekend and turns them into a real competitive advantage. Customer Blog | Dell

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How to maximize GitHub Copilot’s agentic capabilities

Modern engineering work rarely lives in a single file. Real systems evolve across years of incrementally layered decisions—some good, some accidental. A single feature request (“Add tagging to notes,” “Refactor the validation layer,” “Support a new consumer on our API”) often touches controllers, domain models, repositories, migrations, tests, documentation, and deployment strategy. Copilot’s agentic capabilities don’t replace your judgment in these situations—they amplify it. When used well, Copilot becomes a partner in system design, refactoring, modernization, and multi-file coordination. This guide focuses on architecture-aware, multi-step workflows used every day by staff engineers, but written to be accessible for earlier-career engineers who want to understand how senior engineers think—and how Copilot can accelerate their own growth. It draws on four GitHub Skills exercises (linked below), and builds toward a complete, real-world scenario: extending a small modular Notes Service with a tagging subsystem, refactoring a validation layer, designing a safe migration, and modernizing tests. Before you start You’ll get the most out of this guide if you have: GitHub Copilot with agent mode enabled Some familiarity with service-layer architectures (Node, Python, Go—language doesn’t matter Copy a GitHub Skills exercise template to your handle or organization (use the green “Copy Exercise” button) A willingness to let Copilot propose solutions—and the judgment to inspect and challenge them If you’re earlier in your career, don’t worry. Each section explains why these patterns matter and how to practice them safely. Learn interactively at your own pace with GitHub Skills The following free modules map directly to the workflows in this guide: Expand your team with Copilot: multi-step agentic execution Build applications with Copilot (agent mode): task-driven code generation Modernize your legacy codebases with Copilot: refactoring and migrations Customize Your GitHub Copilot experience: Customize GitHub Copilot’s behavior with custom instructions, prompts, and custom agents for your specific development workflows Each one is designed to be forkable, inspectable, and safe for experimentation. You can also explore all our GitHub Skills courses below.  Explore GitHub Skills > Using Copilot for system design and decomposition (not just scaffolding) Senior engineers rarely begin by writing code. They begin by identifying boundaries: domain logic, data access, interfaces, and how modules should interact. Copilot agent mode can help by revealing structural issues and proposing architectures. Prompt: Analyze this service and propose a modular decomposition with domain, infrastructure, and interface layers. Identify anti-patterns, coupling issues, and potential failure points. You’ll typically get back: Proposed module boundaries Cross-layer coupling concerns Async/transaction pitfalls Duplication or tight weaving of responsibilities Testability and observability implications This transforms Copilot from an autocomplete tool into a design reviewer. You can push further by asking it to compare architectures: Compare hexagonal architecture vs. layered architecture for this codebase. Recommend one based on the constraints here. Include tradeoffs. Want to try it yourself? Use these proposals as starting points. Building a modular service using agentic workflows Once boundaries are defined, Copilot can coordinate changes across modules. Prompt: Implement the domain, controller, and repository layers as distinct modules. Use dependency inversion to reduce coupling. Document assumptions and contracts for each module. Copilot will typically generate: Domain model interfaces Repository abstractions Controller logic calling domain services A short Markdown summary describing each module For earlier-career engineers, this provides exposure to real engineering patterns. For senior engineers, it provides leverage and reduces boilerplate overhead. Feature work with architectural awareness (example: tagging subsystem) Adding a tagging subsystem is a deceptively simple request with meaningful architectural implications. Even this single feature forces decisions across the system:  Data modeling: embedded tags vs. normalized tables vs. many-to-many relationships Search behavior: how tags affect indexing, filtering, and relevance API contracts: whether tags are first-class resources or an implementation detail Validation boundaries: where constraints and invariants are enforced Migration and rollout: additive vs. breaking changes and rollback strategy Before touching code, ask Copilot to map the impact. Prompt:  Propose the architectural changes required to add a tagging subsystem. Identify migration needs, cross-cutting concerns, caching or indexing implications, and potential regressions. Copilot may identify: Tag–note relationships (one-to-many or many-to-many) Migration strategy Impact to search logic Required test updates Changes in validation logic Implications on external API consumers This is the staff-level lens that Copilot can help junior developers adopt. Then implement it: Implement the tagging domain model, schema changes, repository updates, and controller logic. Update tests and documentation. Show each change as a diff. Example output (simplified) Migration example: ALTER TABLE notes ADD COLUMN tags TEXT DEFAULT ‘[]’; Domain model example: export interface Tag { id: string; label: string; } export interface Note { id: string; title: string; body: string; tags: Tag[]; } Controller update (partial): await noteService.addTag(noteId, { label: req.body.label }); This is where agent mode shines: coordinating multiple files with consistent intent. Schema migrations and safe rollout strategies At senior levels, the hardest part isn’t writing SQL. It’s designing a change that is: Backward compatible Reversible Safe under load Transparent to dependent systems Ask Copilot to reason about this: Prompt: Generate an additive, backward-compatible schema migration to support the tagging subsystem. Describe the rollback plan, compatibility window, and expected impact to existing clients. This forces Copilot to consider: Mon-breaking additive fields Optional fields vs. required fields Whether a dual-read or dual-write strategy is needed Safe rollback procedures API versioning implications If you’re earlier in your career, this offers lessons on how safe migrations are designed. And if you’re more experienced, this gives you a repeatable workflow for multi-step schema evolution. Advanced refactoring with agentic workflows Let’s perform a real cross-module refactor: extracting validation out of controllers into a domain service. Prompt: Create a step-by-step refactor plan to extract validation logic into a domain service. Identify affected modules and required test updates. Copilot may output something like: Introduce domain validationService Move validation logic from controller to service Update controllers to use new service Update repository logic where validation assumptions leak Update domain tests Update integration tests Execute in incremental steps Prompt: Execute steps 1–3 only. Stop before controller rewrites. Provide detailed diffs and call out risky areas. This is a

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Pick your agent: Use Claude and Codex on Agent HQ 

Context switching equals friction in software development. Today, we’re removing some of that friction with the latest updates to Agent HQ which lets you run coding agents from multiple providers directly inside GitHub and your editor, keeping context, history, and review attached to your work. Copilot Pro+ and Copilot Enterprise users can now run multiple coding agents directly inside GitHub, GitHub Mobile, and Visual Studio Code (with Copilot CLI support coming soon). That means you can use agents like GitHub Copilot, Claude by Anthropic, and OpenAI Codex (both in public preview) today. With Codex, Claude, and Copilot in Agent HQ, you can move from idea to implementation using different agents for different steps without switching tools or losing context.  We’re bringing Claude into GitHub to meet developers where they are. With Agent HQ, Claude can commit code and comment on pull requests, enabling teams to iterate and ship faster and with more confidence. Our goal is to give developers the reasoning power they need, right where they need it. Katelyn Lesse, Head of Platform, Anthropic How to get started  When you have a task, you can choose Copilot, Claude, Codex, or a custom agent. You can make them work asynchronously and then review the results on your own time.  Each coding agent session consumes one premium request. You can currently start Claude and Codex sessions from github.com, GitHub Mobile, and in VS Code. Claude and Codex must be explicitly enabled in your settings before use. See details on how.  Create and view agent sessions on GitHub  You can start and manage agent sessions directly from GitHub:  Open the Agents tab in any repository where agents are enabled.  Enter your request and select an agent using the Copilot icon.  Submit the request to start the session.  Agents run asynchronously by default. You can follow their progress in real time or review completed sessions later, with detailed logs showing what the agent did and why.  Each session produces artifacts like comments, drafts, and proposed changes that can be reviewed like any other contribution.  Assign agents to issues and pull requests  You can also use agents directly in your existing collaboration workflows:  Assign an issue to Copilot, Claude, Codex, or all three to compare results.  Agents can submit draft pull requests for review.  Assign agents to existing pull requests to request changes or further analysis.  Mention @Copilot, @Claude, or @Codex in pull request comments to prompt follow-up work.  Agent activity is logged and reviewable, so their output fits naturally into the same workflows you already use to evaluate developer contributions.  Agents can still make mistakes. That’s exactly why their output is designed to be reviewed, compared, and challenged, not blindly accepted.  Start agent sessions in Visual Studio Code  You can also work with agents directly from VS Code (version 1.109 or later):  Open the Agent sessions view from the title bar or by pressing Ctrl+Shift+P /CMD+Shift+P and searching for “agent sessions”   Choose a session type and your agent:  Local (Copilot), Claude, or Codex for fast, interactive assistance  Cloud for autonomous tasks that run on GitHub, then select an agent  Background for asynchronous local work (Copilot only)  This lets you explore ideas in the editor and then delegate longer-running work to GitHub without losing context or history. From faster code to better decisions  Agent HQ also lets you compare how different agents approach the same problem, too. You can assign multiple agents to a task, and see how Copilot, Claude, and Codex reason about tradeoffs and arrive at different solutions.   In practice, this helps you surface issues earlier by using agents for different kinds of review:   Architectural guardrails: Ask one or more agents to evaluate modularity and coupling, helping identify changes that could introduce unintended side effects.  Logical pressure testing: Use another agent to hunt for edge cases, async pitfalls, or scale assumptions that could cause problems in production.  Pragmatic implementation: Have a separate agent propose the smallest, backward-compatible change to keep the blast radius of a refactor low. This method of working moves your reviews and thinking to strategy over syntax.  Our collaboration with GitHub has always pushed the frontier of how developers build software. The first Codex model helped power Copilot and inspired a new generation of AI-assisted coding. We share GitHub’s vision of meeting developers wherever they work, and we’re excited to bring Codex to GitHub and VS Code. Codex helps engineers work faster and with greater confidence—and with this integration, millions more developers can now use it directly in their primary workspace, extending the power of Codex everywhere code gets written. Alexander Embiricos, OpenAI  Why running agents on GitHub matters  GitHub is already where code lives, collaboration happens, and decisions are reviewed, governed, and shipped.  Making coding agents native to that workflow, rather than external tools, makes them even more useful at scale. Instead of copying and pasting context between tools, documents, and threads, all discussion and proposed changes stay attached to the repository itself.  With Copilot, Claude, and Codex working directly in GitHub and VS Code, you can:  Explore tradeoffs early: Run agents in parallel to surface competing approaches and edge cases before code hardens.  Keep context attached to the work: Agents operate inside your repository, issues, and pull requests instead of starting from stateless prompts.  Avoid new review processes: Agent-generated changes show up as draft pull requests and comments, reviewed the same way you’d review a teammate’s work.  There are no new dashboards to learn, and no separate AI workflows to manage. Everything runs inside the environments you already use.  Built for teams, not just individuals  These workflows don’t just benefit individual developers. Agent HQ gives you org-wide visibility and systematic control over how AI interacts with your codebase:  Agent controls: Manage access and security policies in one place, allowing enterprise admins to define which agents and models are permitted across the organization.  Code quality checks: GitHub Code Quality (in public preview) extends Copilot’s security checks to evaluate the maintainability and reliability impact of changed code, helping ensure “LGTM” reflects long-term code health.  Automated first-pass review: We have integrated a code review step directly into the Copilot’s workflow, allowing Copilot to address initial problems before a developer ever sees the code.  Impact metrics: Use the Copilot metrics dashboard (in public preview) to track usage and impact across your entire organization, providing clear traceability for agent-generated work.  Security and auditability: Maintain full control with audit logging and enterprise-grade access management, ensuring agents work with your security posture instead of against it.  This allows teams to adopt agent-based workflows without sacrificing code quality, accountability, or trust.  More agents coming soon  Access to Claude and Codex will soon expand to more Copilot subscription types. In the meantime, we’re actively working with partners, including Google, Cognition, and xAI to bring more specialized agents into GitHub, VS Code, and Copilot CLI workflows.  Read the docs to get started > The post Pick your agent: Use Claude and Codex on Agent HQ  appeared first on The GitHub Blog. ​ Company news, News & insights, Agent HQ, AI agents The GitHub Blog

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