复制安装命令
用 Codex 或 Claude 安装复制这段 Prompt,粘贴到 Codex、Claude 或其他助手里,让它先审查 Skill 页面再帮你安装。
复制前请先查看来源、License 和安全提示。
Official, NVIDIA-verified Agent Skills for Claude Code, Codex, and other coding agents.
用 Codex 或 Claude 安装复制这段 Prompt,粘贴到 Codex、Claude 或其他助手里,让它先审查 Skill 页面再帮你安装。
复制前请先查看来源、License 和安全提示。
来源文件:README.md
Official, NVIDIA-verified Agent Skills for Claude Code, Codex, and other coding agents.
📖 Docs: docs.nvidia.com/skills · 📺 Livestream: From Vulnerable to Verified · 📝 Blog: NVIDIA Verified Agent Skills: Capability Governance for AI Agents
Skills are portable instruction sets that teach AI agents how to use NVIDIA software optimally: Physical AI and robotics workflows, simulation, CUDA-X libraries, RAG and AI Blueprints, and platform tools. This repository is a catalog: skills are maintained in their respective product repos, and mirrored here daily via an automated sync pipeline. Skills are being added continuously, so check back for updates. We are building this infrastructure in the open, and contributions are welcome. See the Roadmap for what is planned next.
Install NVIDIA skills with the default skills CLI flow:
npx skills add nvidia/skills
The CLI runs through npx and prompts you to choose a skill and install destination. You do not need to clone this repo or copy skill folders by hand.
Requires a current
skillsCLI (v1.5.16 or newer). Installing vianpx skills@latest add nvidia/skillsalways uses the latest. On older CLIs (v1.5.15 and earlier), skills may install but not appear in Claude Code — see Troubleshooting.
The skill is available the next time your agent loads skills and encounters a relevant task. For example, ask your agent to "solve a linear programming problem with cuOpt" and the skill guides it through the cuOpt Python API. In Claude Code, run /reload-skills to load newly installed skills in your current session.
Use this when you already know the skill name and want to skip prompts.
npx skills add nvidia/skills --skill cuopt-numerical-optimization-api --yes
Replace cuopt-numerical-optimization-api with any skill name from the Skill Catalog.
Use --agent to target a specific AI coding agent. Initially, we'll support common client targets, expanding the list over time. For the full list of clients supported by the spec, see the skills CLI Supported Agents table.
Claude Code
npx skills add nvidia/skills --skill cuopt-numerical-optimization-api --agent claude-code
Codex
npx skills add nvidia/skills --skill cuopt-numerical-optimization-api --agent codex
Snowflake CoCo
npx skills add nvidia/skills --skill cuopt-numerical-optimization-api --agent cortex
Cursor
npx skills add nvidia/skills --skill cuopt-numerical-optimization-api --agent cursor
Kiro
npx skills add nvidia/skills --skill cuopt-numerical-optimization-api --agent kiro-cli
Use --agent more than once to install the same skill into multiple agents.
npx skills add nvidia/skills \
--skill cuopt-numerical-optimization-api \
--agent claude-code \
--agent codex \
--agent cursor \
--agent kiro-cli
New skills land continuously, and existing ones are revised, renamed, or consolidated as the catalog evolves. Refresh what you have installed with:
npx skills update
Run it interactively and the CLI also flags skills that were removed or merged upstream (for example, when several skills are consolidated into one) and offers to remove the stale local copies. Use npx skills list to see what is installed and npx skills check to preview what is out of date first.
Use this when you want to see available NVIDIA skills before installing anything.
npx skills add nvidia/skills --list
For non-interactive installs, global installs, agent-specific installs, updates, removals, and fallback manual copying, see Advanced installation.
Where to file an issue depends on what's broken:
Per-product source repo links:
For issues with this catalog repo itself (README, structure, listing a new product): open an issue here.
Every published skill ships with a detached OMS signature (skill.oms.sig). The sync pipeline drops any skill missing the required artifacts before publishing, so every skill in the catalog carries:
SKILL.md — the skill instructions consumed by the agentskill-card.md — skill identity and governance cardskill.oms.sig — detached OMS signature (verifiable against nv-agent-root-cert.pem)evals/evals.json, evals/*.json, eval/*.json, or benchmark/evals.jsonBENCHMARK.md — generated benchmark report capturing verifiable uplift dataVerify a skill against the NVIDIA trust anchor nv-agent-root-cert.pem:
pip install model-signing
model_signing verify certificate SKILL_DIR \
--signature SKILL_DIR/skill.oms.sig \
--certificate_chain nv-agent-root-cert.pem \
--ignore_unsigned_files
A successful verification confirms that the skill contents have not been modified since signing by NVIDIA.
See Verify Signed Agent Skills for signature layout, the trust pipeline, and policy options.
NVIDIA/skills/
├── skills/ # NVIDIA-verified skills (count grows continuously),
│ │ synced from upstream product repos
│ ├── README.md # Browser-facing install guidance
│ ├── <product-prefix>-*/ # Flat layout — one dir per skill, product-prefixed
│ │ # e.g. aiq-*, cuopt-*, cupynumeric-*,
│ │ # dali-*, deepstream-*, dicom-*, digital-health-*,
│ │ # dynamo-*, earth2studio-*, holoscan-*, hsb-*,
│ │ # jetson-*, launch-nemo-rl, mcore-*,
│ │ # nemo-automodel-*, nemo-data-designer-plugin,
│ │ # nemo-evaluator-plugin, nemo-mbridge-* (20 skills),
│ │ # nemo-retriever, nemo-rl-* (4 skills),
│ │ # nemoclaw-user-guide, nemotron-*, nemotron-speech,
│ │ # nv-* (medical AI), physicsnemo-*, rag-*,
│ │ # skill-card-generator, tao-*, tilegym-*,
│ │ # vss-* (15 skills), accelerated-computing-cudf,
│ │ # cudaq-guide, portfolio-optimization
│ ├── omniverse-*/ # Physical AI — manually staged (see manual-components.yml)
│ └── physical-ai-*/ # Physical AI — manually staged
├── components.d/ # Product registry — one file per component, teams onboard here
│ ├── README.md # Schema and onboarding instructions
│ └── <product>.yml # one file per registered product
├── plugins/ # Packaged plugin distributions
│ └── nvidia-skills/ # Curated NVIDIA skills bundle (Claude Code, Codex)
├── plugins.d/ # Plugin build registry — config for `build-plugins.py`
│ ├── README.md
│ ├── _defaults.yml
│ └── nvidia-skills.yml
├── .claude-plugin/ # Claude Code marketplace metadata
│ └── marketplace.json
├── .agents/plugins/ # Agent marketplace metadata (other clients)
│ └── marketplace.json
├── docs/ # Long-form documentation (published via Fern)
│ ├── README.md # How to build the docs locally
│ ├── index.mdx
│ ├── advanced-install.mdx
│ ├── agent-skill-trust-pipeline.mdx
│ ├── release-checklist.mdx
│ ├── scanning-agent-skills.mdx
│ ├── signing-agent-skills.mdx
│ └── skill-cards.mdx
├── fern/ # Fern docs site configuration
├── .github/
│ ├── workflows/ # Sync pipeline, plugin validation, DCO check, author verify
│ └── scripts/ # regenerate-readme.sh, build-plugins.py,
│ # manual-components.yml (temp Physical AI catalog
│ # exception, removed after Computex 2026),
│ # marketplace/metadata.json (skill metadata sidecar)
├── nv-agent-root-cert.pem # Trust anchor for OMS signature verification
├── skills.sh.json # Skills.sh marketplace grouping config
├── CHANGELOG.md
├── CONTRIBUTING.md # Contribution guidelines
├── SECURITY.md # Security reporting policy
├── CODE_OF_CONDUCT.md # Community code of conduct
├── LICENSE-APACHE # Apache 2.0 (source code)
└── LICENSE-CC-BY-4.0 # CC BY 4.0 (documentation/skills)
Skills are maintained in their respective product repos (see the Source column in the Skill Catalog) and synced to this repo daily. Products only appear under skills/ after the sync pipeline confirms each skill carries:
skill.oms.sig — detached OMS-format signature (verifiable against nv-agent-root-cert.pem)skill-card.md — skill identity and governance cardevals/evals.json, evals/*.json, eval/*.json, or benchmark/evals.jsonWhen evaluation runs produce a BENCHMARK.md, it ships alongside the skill so consumers can see verifiable benchmark uplift data.
This repository adheres to the Agent Skills specification:
SKILL.md file at their root.name and description fields.skills-ref reference library.Copyright (c) 2026 NVIDIA CORPORATION & AFFILIATES. All rights reserved.
This code is dual-licensed with documentation/skills under the CC-BY-4.0 AND source code under Apache-2.0 license terms. The full license texts can be found in LICENSE-APACHE and LICENSE-CC-BY-4.0 respectively.
name: vss-setup-video-analytics-api
description: Use to deploy the vss-video-analytics-api REST service standalone (config-source, data-log bind, Elasticsearch, optional Kafka). Not for full warehouse deploy.
license: Apache-2.0
metadata:
author: "NVIDIA Video Search and Summarization team"
version: "3.2.0"
github-url: "https://github.com/NVIDIA-AI-Blueprints/video-search-and-summarization"
tags: "nvidia blueprint operational deployment video-analytics-api rest-api"Deploy the video-analytics-api REST service standalone with the user's chosen config, data-log bind, and Elasticsearch / Kafka connectivity.
Follow the routing tables and step-by-step workflows below. Each section that ends in workflow, quick start, or flow is intended to be executed top-to-bottom. Detailed reference material lives in references/.
Worked end-to-end examples are kept under evals/ (each *.json manifest
contains a runnable scenario). Run a Tier-3 evaluation to replay them:
nv-base validate skills/vss-setup-video-analytics-api --agent-eval
A minimal standalone bring-up looks like:
cd $REPO/deploy/docker
export VSS_APPS_DIR=$(pwd)
export VSS_DATA_DIR=${VSS_DATA_DIR:-/tmp/vss-data}
mkdir -p "$VSS_DATA_DIR/data_log/vss_video_analytics_api"
docker compose -f services/analytics/video-analytics-api/compose.yml up -d vss-video-analytics-api
curl -sf http://localhost:8081/livez
Follow references/deploy-video-analytics-api-service.md for the full
workflow (config source, data-log bind, infrastructure dependencies, REST endpoints).
For the field-by-field JSON config reference, see references/configuration.md.
/docs or /health; redeploy via vss-deploy-profile or the matching vss-deploy-* skill.NGC_CLI_API_KEY. Solution: docker login nvcr.io and re-export the key before retrying.docker compose down.Deploy just the vss-video-analytics-api container (the Node.js REST API from the upstream video-analytics-api repo), not as part of the full warehouse blueprint stack.
The full operational walkthrough — config-source options, data-log volume behavior, infrastructure dependencies, REST API endpoints, deploy + verify, troubleshooting — lives in references/deploy-video-analytics-api-service.md. The field-by-field JSON config reference lives in references/configuration.md. This SKILL.md only handles routing and prerequisites.
Repo checkout with $VSS_APPS_DIR pointing at <repo>/deploy/docker/. Required by the service compose's volume binds.
NGC credentials — $NGC_CLI_API_KEY set so docker can pull the image. See references/ngc-api-key-registry-login.md.
Secure-handling note for
NGC_CLI_API_KEY: this key is a long-lived credential that pulls all NVIDIA private images available to your NGC org. Never commit the key, never paste it into chat, never store it in/tmp. Read it interactively (read -rs NGC_CLI_API_KEY) or load it from your secret manager (Vault, AWS Secrets Manager, sealed-secrets) at deploy time. Write any derived.envfiles withumask 077+chmod 600, add them to.gitignore, and rotate the key on a defined cadence and after every host decommission. If it has ever been exposed (host snapshot, shared screen, ticket attachment), rotate immediately.
Docker runtime — Docker Engine 28.3.3 with Docker Compose plugin v2.39.1+. Verify with docker --version and docker compose version.
Elasticsearch — must be reachable at the URL configured in elasticsearch.node. The server pings ES on startup; if unreachable, it exits (and restart: always brings it back). If you need to bring up ES too, use the infra compose: docker compose -f services/infra/compose.yml up -d elasticsearch.
Optional Kafka broker. The API can run without Kafka. If you want a quiet broker-less deployment, use the image-baked config or a custom config with kafka.brokers: []; the service-shipped compose config points at localhost:9092, so Kafka-dependent features (dynamic config, dynamic calibration, RTLS/AMR) will fail until a broker is reachable.
$VSS_DATA_DIR for the default compose. The base compose bind-mounts $VSS_DATA_DIR/data_log/vss_video_analytics_api for multipart upload handling and file-backed assets such as calibration images. Set the directory to a writable host path and pre-create it, or remove that mount if image uploads are not needed.
If any required prerequisite fails, surface the gap before going further.
Hand the user references/deploy-video-analytics-api-service.md and walk them through its steps in order:
docker compose up and health check.The compose-file edits, config options, deploy + verify commands, REST API endpoint table, and troubleshooting table all live in that reference — don't duplicate them here.
Use references/deploy-video-analytics-api-service.md for the REST endpoint table and runtime dependency notes.
Once the container is up and a Kafka broker is reachable, three additional capabilities are available:
The API acts as the producer for dynamic config updates. When an operator POSTs to /config, the API publishes an upsert message to the mdx-notification topic with Kafka key behavior-analytics-config. The downstream behavior-analytics container consumes this and ACKs back. The API also handles the bootstrap flow — when behavior-analytics starts, it publishes a request-config message, and the API replies with upsert-all containing the latest verified config from Elasticsearch.
Consumer-side validation, ACK semantics, and the full wire contract are documented in the vss-setup-behavior-analytics dynamic-config reference.
The API produces calibration update notifications on mdx-notification with Kafka key calibration. Supports upsert-all (full snapshot), upsert (per-sensor merge), and delete (per-sensor removal). The downstream behavior-analytics container consumes these and applies them to the live calibration.
Consumer-side validation and per-action policy are documented in the vss-setup-behavior-analytics dynamic-calibration reference.
The API consumes real-time location (mdx-rtls) and AMR (mdx-amr) messages from Kafka and exposes them via REST endpoints.
vss-deploy-profile with profile warehouse (or alerts). Don't run this skill in parallel.vss-setup-behavior-analytics./config or calibration endpoints and point them at the behavior-analytics dynamic-update references for the consumer wire contract.vss-setup-behavior-analytics dynamic-config and dynamic-calibration references.src/app/specification/openapi.json in the video-analytics-api repo.bump:1
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