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Updated 7/21/2026, database is current

Language Model Security Database

959 research findings · 1077 evaluated models

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47 entries

Matches every word across titles, descriptions, sources, affected systems, and models.

The paper describes a reproducible black-box multimodal jailbreak evaluation, INFER/INFER+, in which dense image typography, nested cross-modal references, recursive visual layouts, and entropy-guided search increase processing complexity and weaken refusal behavior in large vision-language models. The authors report average ASRs of 88.6% on open-source models and 84.0% on commercial models; these are paper-reported measurements, not independently verified facts. For safe defensive…

Overloading Large Vision-Language Models for Jailbreaking
Affects: Qwen3-VL 8B, Qwen2-VL-7B, InternVL3.5-8B +5 more

Source: arXiv

MLingualFC is a reproducible black-box safety evaluation showing that harmful instructions rendered as multilingual flowchart images can bypass vision-language model safeguards more often than equivalent text-only inputs. The paper evaluates horizontal, vertical, and tortuous layouts across English, Hindi, Punjabi, Spanish, Romanian, and German. Reported results vary substantially by language, script, layout, and model; these are paper-reported measurements, not independently verified…

MLingualFC: Evaluating Jailbreak Vulnerabilities in Multilingual Vision-Language Models
Affects: Qwen 2.5 VL 3B Instruct, Gemma-4-E4B-it, Pangea-7B

Source: arXiv

The paper reports a reproducible black-box evaluation showing that vision-language models can recover prohibited intent encoded or implied through ostensibly benign visual inputs. Four tested families—visual ciphers, object replacement, text replacement, and analogy riddles—expose a cross-modality alignment gap: safeguards effective for explicit text may not reliably apply after harmful semantics are reconstructed from images. These are paper-reported results, not independently verified…

Jailbreaking Vision-Language Models Through the Visual Modality
Affects: GPT-5.2, Claude Haiku 4.5, Gemini 3 Flash +3 more

Source: arXiv

Multimodal Large Language Models (LLMs) are vulnerable to alignment bypass via Inter-Turn Modality Switching (ITMS). By systematically rotating the input modality (e.g., alternating between text, audio, and image) across successive turns in a multi-turn adversarial conversation, an attacker can destabilize the model's safety defenses. The cross-modal transition mechanism exploits alignment gaps between differing input processing pipelines, accelerating the erosion of safety guardrails and…

MUSE: A Run-Centric Platform for Multimodal Unified Safety Evaluation of Large Language Models
Affects: Gemini 2.5 Flash, Gemini 3 Flash Preview, GPT-4o +1 more

Source: arXiv

A vulnerability in the compositional reasoning architecture of Large Vision-Language Models (LVLMs) allows attackers to bypass multimodal safety alignments using a technique known as Reasoning-Oriented Programming (ROP). Current safety mechanisms primarily target explicit malicious patterns at the perception level (early layers). This vulnerability exploits late-stage reasoning by decomposing a harmful objective into a set of spatially isolated, semantically benign visual "gadgets". Because…

Reasoning-Oriented Programming: Chaining Semantic Gadgets to Jailbreak Large Vision Language Models
Affects: Qwen2-VL 7B Instruct, LLaVA v1.6 Mistral 7B, Llama 3.2 11B Vision Instruct +4 more

Source: arXiv

A temporal trajectory infilling vulnerability in Text-to-Video (T2V) generative models allows attackers to bypass input and output safety filters to generate policy-violating content. The vulnerability is exploited using a fragmented prompting technique known as Two Frames Matter (TFM). An attacker submits a prompt that specifies only sparse boundary conditions (the start and end frames) using semantically suggestive but lexically benign alternatives, entirely omitting the intermediate action…

Two Frames Matter: A Temporal Attack for Text-to-Video Model Jailbreaking

Source: arXiv

Updated 4/10/2026

The integration of the visual modality in Large Vision-Language Models (VLMs) introduces a vulnerability where appending an image to a harmful text prompt induces a "jailbreak-related representation shift" in the model's internal high-dimensional space. This shift forcibly steers the model's last-token hidden state away from a designated refusal state and into a distinct jailbreak state. The vulnerability occurs because the visual modality overrides the safety alignment of the underlying…

Understanding and Defending VLM Jailbreaks via Jailbreak-Related Representation Shift
Affects: LLaVA 1.5 7B, ShareGPT4V 7B, InternVL-Chat 19B

Source: arXiv

Frontier Multimodal Large Language Models (MLLMs) are vulnerable to Visual Exclusivity (VE) attacks, an "Image-as-Basis" threat where malicious intent is achieved through joint reasoning over benign text and complex technical visual content (e.g., blueprints, schematics, network diagrams). Unlike wrapper-based attacks that conceal malicious text via typography or adversarial noise, VE exploits the model's core visual reasoning capabilities. Attackers can bypass safety filters by combining…

Visual Exclusivity Attacks: Automatic Multimodal Red Teaming via Agentic Planning
Affects: Llama 3.2 11B Vision, InternVL3 8B, Qwen3-VL 8B +5 more

Source: arXiv

A vulnerability in advanced Vision-Language Models (VLMs) allows attackers to bypass safety alignment mechanisms via a Cross-Modal Entanglement Attack (COMET). By reframing malicious queries into multi-hop reasoning tasks, attackers can migrate visualizable key entities into a paired image and replace the textual entities with ambiguous spatial pointers. This forces the VLM to reconstruct the harmful intent through its own self-induced cross-modal reasoning, effectively bypassing filters that…

Red-teaming the Multimodal Reasoning: Jailbreaking Vision-Language Models via Cross-modal Entanglement Attacks
Affects: GPT-4.1, GPT-4.1 Mini, Gemini 2.5 Flash +6 more

Source: arXiv

Discrete image tokenizers are vulnerable to unsupervised embedding-space adversarial attacks. Attackers can apply $\ell_p$-bounded perturbations to an input image to maximize the $\ell_2$ distance of the pre-quantization continuous embeddings produced by the tokenizer's vision encoder. This forces the vector quantizer to cross discrete cell boundaries and assign incorrect codebook vectors, fundamentally altering the resulting token sequence. Because the attack targets the pre-quantization…

On the Adversarial Robustness of Discrete Image Tokenizers
Affects: Llama 2 7B

Source: arXiv

Research methodology

Entries summarize publicly available primary-source security research. Model names reflect only systems explicitly evaluated by the cited paper, and measurements are research-reported unless independent verification is stated.