New interviews and closely guarded documents, some of which have never been publicly disclosed, shed light on the persistent doubts about the OpenAI C.E.O. Sam Altman. @AndrewMarantz and @RonanFarrow report. newyorkermag.visitlink.me/ej…
Interesting: Google DeepMind shows that AI agents are already being systematically manipulated through hidden, human-invisible attack vectors embedded in web content, images, and documents. Current defenses fail to detect or prevent these attacks, creating a large, largely invisible security risk across agentic systems. Alex Prompter (@alex_prompter) 🚨 BREAKING: Google DeepMind just mapped the attack surface that nobody in AI is talking about. Websites can already detect when an AI agent visits and serve it completely different content than humans see. > Hidden instructions in HTML. > Malicious commands in image pixels. > Jailbreaks embedded in PDFs. Your AI agent is being manipulated right now and you can't see it happening. The study is the largest empirical measurement of AI manipulation ever conducted. 502 real participants across 8 countries. 23 different attack types. Frontier models including GPT-4o, Claude, and Gemini. The core finding is not that manipulation is theoretically possible it is that manipulation is already happening at scale and the defenses that exist today fail in ways that are both predictable and invisible to the humans who deployed the agents. Google DeepMind built a taxonomy of every known attack vector, tested them systematically, and measured exactly how often they work. The results should alarm everyone building agentic systems. The attack surface is larger than anyone has publicly acknowledged. Prompt injection where malicious instructions hidden in web content hijack an agent's behavior works through at least a dozen distinct channels. Text hidden in HTML comments that humans never see but agents read and follow. Instructions embedded in image metadata. Commands encoded in the pixels of images using steganography, invisible to human eyes but readable by vision-capable models. Malicious content in PDFs that appears as normal document text to the agent but contains override instructions. QR codes that redirect agents to attacker-controlled content. Indirect injection through search results, calendar invites, email bodies, and API responses any data source the agent consumes becomes a potential attack vector. The detection asymmetry is the finding that closes the escape hatch. Websites can already fingerprint AI agents with high reliability using timing analysis, behavioral patterns, and user-agent strings. This means the attack can be conditional: serve normal content to humans, serve manipulated content to agents. A user who asks their AI agent to book a flight, research a product, or summarize a document has no way to verify that the content the agent received matches what a human would see. The agent cannot tell the user it was served different content. It does not know. It processes whatever it receives and acts accordingly. The attack categories and what they enable: → Direct prompt injection: malicious instructions in any text the agent reads overrides goals, exfiltrates data, triggers unintended actions → Indirect injection via web content: hidden HTML, CSS visibility tricks, white text on white backgrounds invisible to humans, consumed by agents → Multimodal injection: commands in image pixels via steganography, instructions in image alt-text and metadata → Document injection: PDF content, spreadsheet cells, presentation speaker notes every file format is a potential vector → Environment manipulation: fake UI elements rendered only for agent vision models, misleading CAPTCHA-style challenges → Jailbreak embedding: safety bypass instructions hidden inside otherwise legitimate-looking content → Memory poisoning: injecting false information into agent memory systems that persists across sessions → Goal hijacking: gradual instruction drift across multiple interactions that redirects agent objectives without triggering safety filters → Exfiltration attacks: agents tricked into sending user data to attacker-controlled endpoints via legitimate-looking API calls → Cross-agent injection: compromised agents injecting malicious instructions into other agents in multi-agent pipelines The defense landscape is the most sobering part of the report. Input sanitization cleaning content before the agent processes it fails because the attack surface is too large and too varied. You cannot sanitize image pixels. You cannot reliably detect steganographic content at inference time. Prompt-level defenses that tell agents to ignore suspicious instructions fail because the injected content is designed to look legitimate. Sandboxing reduces the blast radius but does not prevent the injection itself. Human oversight the most commonly cited mitigation fails at the scale and speed at which agentic systems operate. A user who deploys an agent to browse 50 websites and summarize findings cannot review every page the agent visited for hidden instructions. The multi-agent cascade risk is where this becomes a systemic problem. In a pipeline where Agent A retrieves web content, Agent B processes it, and Agent C executes actions, a successful injection into Agent A's data feed propagates through the entire system. Agent B has no reason to distrust content that came from Agent A. Agent C has no reason to distrust instructions that came from Agent B. The injected command travels through the pipeline with the same trust level as legitimate instructions. Google DeepMind documents this explicitly: the attack does not need to compromise the model. It needs to compromise the data the model consumes. Every agentic system that reads external content is one carefully crafted webpage away from executing attacker instructions. The agents are already deployed. The attack infrastructure is already being built. The defenses are not ready. — https://nitter.net/alex_prompter/status/2040731938751914065#m
Sam Altman wants to take OpenAI public as early as Q4 2026. His own CFO isn't so sure that's a good idea. According to reporting by The Information, Sarah Friar has privately told colleagues she doesn't believe the company will be ready for an IPO this year, pointing to massive spending commitments, slowing revenue growth, and a mountain of organizational work still ahead. The tension is real: Friar was reportedly excluded from key financial discussions, including meetings with major investors about server procurement. In an unusual structural shift, she no longer reports directly to Altman but instead to Fidji Simo, the head of applications.
🚨🚨 @sama tells me he feels such URGENCY about the power of coming AI models that @OpenAI is unveiling a New Deal for superintelligence – ideas to wake up DC He says AI will soon be so mindbending that we need a new social contract 👇 Altman's top 6 ideas axios.com/2026/04/06/behind-… [Translated from EN to English]
4-6-2026 ($) • OpenAI Buys TBPN
• Tech and the Token Tsunami https://stratechery.com/2026/openai-buys-tbpn-tech-and-the-token-tsunami/ [Translated from EN to English]
There is a reason why NVIDIA is investing in brain/computer interfaces. Dustin (@r0ck3t23) Elon Musk just declared the human eye optional. Not improved. Not repaired. Not reconstructed. Optional. Musk: "Blindsight will enable those who have total loss of vision to be able to see again." That alone would be historic. Musk: "Including if they have lost their eyes, or the optic nerve." Eyes gone. Nerve gone. The entire optical pipeline physically missing from the skull. And the solution is not to rebuild what broke. It is to skip it entirely and wire synthetic signal straight into the visual cortex. Every surgery ever performed has tried to restore original hardware to factory condition. Neuralink does not restore. Neuralink treats the biological organ as optional infrastructure. Eye is gone. You do not rebuild the eye. You route around it. You stream raw visual data into the brain and let the cortex do what it was always doing anyway. Processing signal. Your eye never saw anything. Your brain saw. The eye was the middleman. It captured a narrow band of electromagnetic radiation and shipped it to the visual cortex. That is where the image was actually built. Neuralink is firing the middleman. Musk: "Maybe have never seen, were even blind from birth." A person who has never perceived a single photon of light. Given vision for the first time. Not through healing. Through hardware. And then Musk said the part that should rewire how you think about being human. Musk: "You can see in radar, you can see in infrared, ultraviolet." This is where it crosses from medical device to species upgrade. The human eye processes roughly 0.0035% of the electromagnetic spectrum. You are walking through [Translated from EN to English]
I have a feeling this week is going to be OpenAI's week! leo 🐾 (@synthwavedd) big week coming up — https://nitter.net/synthwavedd/status/2041056288067522677#m