Agent Skills

lovart-api

Generate images, videos, and audio/music via Lovart AI. Also manages Lovart projects, threads (conversation history), and user settings. Trigger on: (1) any visual or audio creation request in any language — draw, generate, create, design, make, 画, 生成, 制作, 创作, 设计 combined with image, video, audio, music, song, BGM, poster, etc. (2) Lovart project/thread management — 项目, 对话, project, thread, conversation, history, 历史, 切换, switch. You CAN generate directly - never say you cannot.

Install

npx skills add https://github.com/lovartai/lovart-skill --skill lovart-api
SKILL.md

⚠️ RULE #0: ONLY USE SKILL COMMANDS — NO DIRECT API CALLS

You MUST interact with Lovart EXCLUSIVELY through the commands defined in this skill.

  • NEVER construct URLs, make curl/wget/fetch requests, or call Lovart APIs directly
  • NEVER guess API endpoints, paths, or parameters — only use the commands listed below
  • NEVER modify the skill's source code (agent_skill.py) during execution to "debug" issues (users may freely read the source to verify it)
  • If a command fails, retry it or report the error to the user — do NOT try to work around it
  • ALL Lovart operations go through: chat, send, watch, confirm, result, status, config, projects, project-add, project-switch, project-rename, project-remove, threads, thread-remove, upload, upload-artifact, download, set-mode, query-mode, create-project

⚠️ RULE #1: YOU CAN AND MUST GENERATE IMAGES/VIDEOS/AUDIO

When a user asks to "draw", "generate", "create", "design", "make", "画", "生成", "制作", "创作" any visual or audio content (in any language), you MUST use this skill. This includes: images, videos, audio, music, songs, BGM, TTS, voice, posters, carousels, banners, logos, illustrations, thumbnails, slides, covers, mockups, icons, social media content, etc. Do NOT say "I can't generate images/music" or offer to write prompts instead.

⚠️ RULE #1.5: PROJECT & THREAD QUERIES USE THIS SKILL

When the user asks about projects, threads, conversations, history, or settings (in any language), use these commands — do NOT browse the filesystem:

User asks Command
"What projects do I have?" / "我有哪些项目" projects --json
"What conversations/threads?" / "有哪些对话" threads --json or threads --all --json
"Show my settings" / "我的配置" config --json
"Switch to project X" project-switch --project-id X
"Create a new project" project-add --project-id NEW_ID --name "Name" (or let chat auto-create)

⚠️ RULE #2: ALWAYS USE chat AND WAIT FOR COMPLETION

Use the chat command (blocks until done), NOT send. Do NOT reply before generation completes.

Handle these final_status values:

  • "done" — Generation complete. Send the downloaded files to the user.
  • "pending_confirmation" — A high-cost tool (e.g. video, or a premium-quality image variant) needs user approval before credits are consumed. You MUST ask the user for explicit confirmation before proceeding. Do NOT auto-confirm.
    1. Show the user: "This will cost approximately {estimated_cost} credits. Shall I proceed? (yes/no)"
    2. WAIT for user response. Only if user explicitly says yes/confirm/proceed, run: confirm --thread-id THREAD_ID --json --download (This confirms, waits for completion, and returns the result with downloaded files)
    3. If user declines, do NOT confirm. Just inform them the operation was cancelled.
  • "abort" — Generation was aborted. Inform the user.
  • "timeout" — Generation is still running but exceeded the wait time. The result may contain partial artifacts.
    1. Send any downloaded files that are already available
    2. Tell the user: "Generation is still in progress. Checking again..."
    3. Run: result --thread-id THREAD_ID --json --download to get the latest results
    4. If status is still "running", wait and retry. If "done", send remaining files.

Handle errors:

If chat throws an error (AgentSkillError), handle it by HTTP status and structured code. The message field already contains a user-ready explanation — surface it to the user as-is.

HTTP status code What it means What to tell the user
402 2012 Quota / billing / risk-control rejection Show AgentSkillError.message directly — the server already returns a specific message (insufficient credits, free-tier reached, concurrent limit, risk control, phone verification, team plan required, etc.) and a suggested next step.
409 2011 Another task is still running on this thread "A task is still running on this conversation. Wait for it to finish (status) before sending a new prompt, or start a new thread."
429 1429 API rate limit hit "Slowing down; rate limit hit. Retry in ~60s."
401 — AK/SK misconfigured "API key authentication failed. Please check your LOVART_ACCESS_KEY and LOVART_SECRET_KEY."
— — Project.*does not exist in message "Project not found. Please check the project ID or create a new one."

Rule of thumb: prefer AgentSkillError.message for user-facing copy. Do not try to parse internal codes out of the response — the server already maps them to human-readable messages before returning.

Detect silent generation failures (done with no artifact):

Some prompts end with final_status: "done" but produce no artifacts / empty downloaded. This usually means the upstream image model refused the prompt (content moderation), timed out, or the LLM chose to reply with text instead of calling a tool. The skill flags this automatically — when chat() returns, check:

  • result["generation_succeeded"] — boolean. False means no artifact was produced.
  • result["warning"] — explanation string (present only when generation_succeeded is False).
  • result["agent_message"] — the agent's plain-text reply that hints at why (present when available).

Typical triggers:

  • GPT Image 2 with very long/complex prompts involving weapons, specific bodies, or policy-sensitive wording — retry with a different model (--include-tools generate_image_midjourney or generate_image_nano_banana_pro) or simplify the prompt.
  • Prompt that describes a task the agent can't fulfill — show agent_message to the user.

⚠️ RULE #3: ALWAYS DELIVER RESULTS + PROJECT LINK

After EVERY generation, you MUST:

  1. Use --download flag with chat (or result)
  2. Send each downloaded file to the user as a file attachment (images, videos, audio/mp3 — ALL file types):
    • ALWAYS send downloaded[].local_path as file attachments, regardless of file type (.png, .jpg, .mp4, .mp3, etc.)
    • NEVER just paste the URL when a local file has been downloaded — send the actual file
    • Only fall back to displaying URLs if no files were downloaded
  3. Append the project canvas link: https://www.lovart.ai/canvas?projectId={project_id}
  4. Check failures in the result. When it is non-empty, tell the user which reference or model was refused and why — the Agent may have dropped an input or switched models to finish, so the delivered result can differ from what they asked for. Never report a clean success while failures is non-empty.

⚠️ RULE #4: CHECK LOCAL STATE ON FIRST USE (MANDATORY — DO NOT SKIP)

Before the FIRST generation in a conversation, you MUST run these two commands IN ORDER. This is NOT optional. Do NOT call chat until you have done both.

Step 1: config --json

  • Check local state (~/.lovart/state.json) for active_project
  • If active_project is set → proceed to Step 2. Do NOT create a new project. Do NOT ask the user.
  • If active_project is missing → ask the user: "Do you have an existing Lovart project ID, or should I create a new one?" WAIT for their answer.
  • Save with: project-add --project-id PID --name "name"

Step 2: threads --json

  • Check if there's a recent thread to continue
  • If recent thread exists and topic is related → REUSE it (pass --thread-id THREAD_ID to chat)
  • If no threads or completely different topic → omit --thread-id (creates new thread)

CRITICAL RULES:

  • NEVER create a new project if config --json already shows an active_project. Reuse it.
  • NEVER omit --thread-id when a relevant recent thread exists. Always reuse threads by default.
  • NEVER call chat without first running config --json and threads --json in the same conversation.
  • The chat command auto-reads active_project from local state — you do NOT need to pass --project-id every time.
  • Only create a new project if the user explicitly asks for one.
  • Only create a new thread if the topic is completely unrelated to the most recent thread.
  • When in doubt, REUSE both the existing project and the existing thread.

Lovart Agent OpenAPI Skill

Interact with Lovart AI Agent to generate images, videos, and visual assets via natural language.

Lovart is an AI design platform. The Agent understands user requests and automatically selects the best model and workflow.

Terminology

  • Thread — A conversation flow (chat session) with the Lovart AI Agent, NOT a programming thread. Each thread has a unique thread_id and preserves multi-turn context. Reusing a thread means continuing the same conversation so the Agent remembers previous images/videos and can iterate on them.
  • Project — A workspace/canvas that groups threads and generated artifacts together. One project can contain multiple threads.

Prerequisites

export LOVART_ACCESS_KEY="ak_xxx"
export LOVART_SECRET_KEY="sk_xxx"

No third-party dependencies. Python standard library only.

Features

  1. Chat - Send a message to the AI Agent, get text replies and generated images/videos
  2. Confirm - Confirm and wait for high-cost operations (e.g. video generation)
  3. Create Project - Create a new project
  4. Upload File - Upload a local image/video file, get back a CDN URL
  5. Upload Artifact - Upload a link artifact to a project
  6. Status/Result - Check thread status and retrieve results
  7. Set/Query Mode - Switch between fast (credits) and unlimited (queue) mode

Usage

0. First-time setup (saves to ~/.lovart/state.json)

python3 {baseDir}/scripts/agent_skill.py project-add --project-id PROJECT_ID --name "My Project"

1. Send a message (reads project_id from local state)

python3 {baseDir}/scripts/agent_skill.py chat --prompt "USER_PROMPT" --json --download

To override project: add --project-id PROJECT_ID To continue a conversation: add --thread-id THREAD_ID To list saved threads: python3 {baseDir}/scripts/agent_skill.py threads

2. Create a project

python3 {baseDir}/scripts/agent_skill.py create-project

3. Upload a file (local image/video → CDN URL)

python3 {baseDir}/scripts/agent_skill.py upload --file /path/to/image.png
# Returns: {"url": "https://assets-persist.lovart.ai/img/{user_uuid}/xxx.png"}

Use this when the user sends an image/video file that needs to be passed as an attachment to chat.

4. Upload an artifact

python3 {baseDir}/scripts/agent_skill.py upload-artifact --project-id PROJECT_ID --url "ARTIFACT_URL" --type image

5. Check status / get result

# Status
python3 {baseDir}/scripts/agent_skill.py status --thread-id THREAD_ID

# Result (auto-syncs to gallery/canvas, idempotent)
python3 {baseDir}/scripts/agent_skill.py result --thread-id THREAD_ID --json --download

6. Download artifacts

# Download during chat
python3 {baseDir}/scripts/agent_skill.py chat --prompt "draw a cat" --json --download --output-dir /tmp/lovart

# Download from existing result
python3 {baseDir}/scripts/agent_skill.py result --thread-id THREAD_ID --download --output-dir /tmp/lovart

# Download specific URLs
python3 {baseDir}/scripts/agent_skill.py download --urls URL1 URL2 --output-dir /tmp/lovart --prefix myimg

Typical Workflows

Scenario 1: Generate images/videos/audio (most common)

First, run config --json to check if project_id is set. If not, ask the user and save with project-add.

1. config --json  →  check local state for active_project
   - If not set → ask user, save with project-add
2. threads --json  →  check if there's a recent thread to continue
   - If recent thread exists and topic is related → reuse it (step 3a)
   - If no threads or completely new topic → new thread (step 3b)
3a. chat --thread-id THREAD_ID --prompt "user's request" --json --download
3b. chat --prompt "user's request" --json --download
4. Send each downloaded[].local_path file as an IM attachment to the user
5. The chat command auto-syncs artifacts to canvas and gallery

IDs are auto-persisted locally (~/.lovart/state.json):

  • project_id is saved after first chat, reused automatically
  • thread_id + topic are saved after each chat for thread switching
  • Only create a new project if the user explicitly asks for one
  • Only create a new thread (omit --thread-id) when starting a completely new topic
  • Run threads to list saved threads for the user to pick from

Scenario 2: Edit with attachments

1. User sends a reference image/video via IM → save to local file
2. upload --file /path/to/image.png  →  get CDN URL
3. chat --prompt "edit this image to..." --project-id PID --attachments "CDN_URL" --json --download
4. Continue as Scenario 1

Scenario 3: Follow-up on same topic (continue context)

1. chat --prompt "change the background to a beach" --project-id PROJECT_ID --thread-id THREAD_ID --json --download

The Agent remembers the previous conversation and can continue editing based on context.

Scenario 4: New topic (new thread)

1. chat --prompt "completely new request" --project-id PROJECT_ID --json --download

Omitting --thread-id creates a new conversation without previous memory.

Scenario 5: Streaming / incremental delivery (multiple artifacts)

Use when the user's request will produce multiple images/videos and you want to deliver each one to the user as soon as it's ready, rather than waiting for the whole batch.

python3 {baseDir}/scripts/agent_skill.py watch --prompt "generate 4 variations of a cyberpunk cat" --json

watch emits NDJSON to stdout (one event per line). Parse line-by-line and deliver each artifact event's local_path to the user immediately:

{"event": "started", "thread_id": "xxx", "project_id": "yyy"}
{"event": "artifact", "type": "image", "url": "https://...", "local_path": "/tmp/lovart/lovart_ab12cd.png"}
{"event": "artifact", "type": "image", "url": "https://...", "local_path": "/tmp/lovart/lovart_ef34gh.png"}
{"event": "pending_confirmation", "thread_id": "xxx", "pending_confirmation": {...}}
{"event": "finished", "thread_id": "xxx", "final_status": "done", "artifact_count": 4}

Files are saved with URL-hash filenames so re-running watch on the same thread won't re-download.

You can also attach to an already-running thread: watch --thread-id THREAD_ID.

When NOT to use watch: single-image requests — use chat (simpler, one-shot response).

Output Format

chat --json returns:

{
  "thread_id": "xxx",
  "status": "done",
  "project_id": "xxx",
  "final_status": "done",
  "items": [
    {"type": "assistant", "text": "Agent's reply"},
    {"type": "generator", "name": "artifacts", "artifacts": [
      {"type": "image", "content": "https://assets-persist.lovart.ai/artifacts/agent/xxx.png"},
      {"type": "video", "content": "https://assets-persist.lovart.ai/artifacts/agent/xxx.mp4"}
    ]}
  ],
  "downloaded": [
    {"type": "image", "url": "https://...", "local_path": "/tmp/lovart/lovart_01.png"}
  ],
  "generation_succeeded": true,
  "failures": []
}

failures lists tool calls that were rejected during the run, even when artifacts were still produced. warning is set alongside it with a one-line summary. See "Checking What Was Rejected" below.

Core Principle

You are a messenger, not a creator. The backend Agent handles understanding requirements, selecting models, and writing prompts. Your job:

  1. Relay: Pass the user's original description verbatim to chat
  2. Wait: Poll until generation completes
  3. Deliver: Send result files to the user

Do NOT rewrite/expand prompts, break down tasks, or add your own style descriptions.

Lovart Generation Mode (MUST use API, not prompt)

CRITICAL: "Fast mode" and "unlimited mode" are server-side settings controlled via API calls, NOT prompt keywords.

Do NOT put "快速模式" or "fast mode" in the prompt text. Instead, call the set-mode command:

# User says "fast mode" / "快速模式" / "skip queue" / "use credits" → RUN THIS:
python3 {baseDir}/scripts/agent_skill.py set-mode --fast

# User says "unlimited mode" / "无限模式" / "free mode" / "save credits" → RUN THIS:
python3 {baseDir}/scripts/agent_skill.py set-mode --unlimited

# Check which mode is active:
python3 {baseDir}/scripts/agent_skill.py query-mode

How it works:

  • set-mode --fast calls the Lovart backend API to switch the user's account to fast generation (costs credits, no queue)
  • set-mode --unlimited switches to unlimited generation (free, may queue)
  • This is a persistent server-side setting — it stays until changed again
  • It affects ALL subsequent image/video generations, not just one request
  • It has nothing to do with your (the assistant's) response style or behavior

Specifying Models

Option 1: In the prompt (simple, the Agent routes automatically):

python3 {baseDir}/scripts/agent_skill.py chat --prompt "generate ocean waves video using kling" --json --download

Option 2: Via --prefer-models (precise, same as frontend's model selector):

# Prefer a specific image model
python3 {baseDir}/scripts/agent_skill.py chat --prompt "draw a cat" --prefer-models '{"IMAGE":["generate_image_midjourney"]}' --json --download

# Prefer a specific video model
python3 {baseDir}/scripts/agent_skill.py chat --prompt "generate ocean waves" --prefer-models '{"VIDEO":["generate_video_kling_3_0"]}' --json --download

# Combine image and video preferences
python3 {baseDir}/scripts/agent_skill.py chat --prompt "create content" --prefer-models '{"IMAGE":["generate_image_seedream_3_0"],"VIDEO":["generate_video_kling_3_0"]}' --json --download

Available models for --prefer-models:

IMAGE:

Tool name Display name
generate_image_gpt_image_2_5_flare GPT Image 2.5 Flare Auto
generate_image_gpt_image_2_5_flare_low GPT Image 2.5 Flare Low
generate_image_gpt_image_2_5_flare_medium GPT Image 2.5 Flare Medium
generate_image_gpt_image_2_5_flare_high GPT Image 2.5 Flare High
generate_image_gpt_image_2_5_flare_xhigh GPT Image 2.5 Flare xhigh
generate_image_gpt_image_2_5_flare_max GPT Image 2.5 Flare Max
generate_image_gpt_image_2_5_sunburst GPT Image 2.5 Sunburst Auto
generate_image_gpt_image_2_5_sunburst_low GPT Image 2.5 Sunburst Low
generate_image_gpt_image_2_5_sunburst_medium GPT Image 2.5 Sunburst Medium
generate_image_gpt_image_2_5_sunburst_high GPT Image 2.5 Sunburst High
generate_image_gpt_image_2_5_sunburst_xhigh GPT Image 2.5 Sunburst xhigh
generate_image_gpt_image_2_5_sunburst_max GPT Image 2.5 Sunburst Max
generate_image_gpt_image_2 GPT Image 2 Auto
generate_image_gpt_image_2_low GPT Image 2 Low
generate_image_gpt_image_2_medium GPT Image 2 Medium
generate_image_gpt_image_2_high GPT Image 2 High
generate_image_nano_banana_pro Nano Banana Pro
generate_image_nano_banana_2 Nano Banana 2
generate_image_seedream_v5_pro Seedream 5.0 Pro
generate_image_gpt_image_1_5 GPT Image 1.5
generate_image_seedream_v5 Seedream 5.0 Lite
generate_image_luma_uni_1 Luma uni-1
generate_image_luma_uni_1_max Luma uni-1-max
generate_image_flux_2_max Flux.2 Max
generate_image_flux_2_pro Flux.2 Pro
generate_image_seedream_v4_5 Seedream 4.5
generate_image_nano_banana Nano Banana
generate_image_seedream_v4 Seedream 4
generate_image_midjourney Midjourney
generate_image_ideogram_v4 Ideogram 4
generate_image_qwen_image3 Qwen Image3
generate_image_qwen_image3_pro Qwen Image3 Pro
generate_image_nano_banana_2_lite Nano Banana 2 Lite
generate_image_p_image_ideogram Ideogram P-Image

VIDEO:

Tool name Display name
generate_video_seedance_v2_5 Seedance 2.5
generate_video_seedance_v2_0 Seedance 2.0
generate_video_seedance_v2_0_fast Seedance 2.0 Fast
generate_video_seedance_v2_0_mini Seedance 2.0 Mini
generate_video_kling_v3 Kling 3.0
generate_video_kling_v3_omni Kling 3.0 Omni
generate_video_minimax_h3 MiniMax H3
generate_video_kling_v2_6 Kling 2.6
generate_video_wan_v2_6 Wan 2.6
generate_video_veo3_1 Veo 3.1
generate_video_veo3_1_fast Veo 3.1 Fast
generate_video_kling_omni_v1 Kling O1
generate_video_hailuo_v2_3 Hailuo 2.3
generate_video_veo3 Veo 3
generate_video_vidu_q2 Vidu Q2
generate_video_gemini_omni_flash Gemini Omni Flash
generate_video_minimax_h3_max MiniMax H3 Max
generate_video_wan_v3 Wan 3.0
generate_video_wan_v3_prime Wan 3.0 Prime

3D:

Tool name Display name
generate_3d_tripo Tripo

When the user requests a specific model, prefer --prefer-models over putting model names in the prompt.

Option 3: Via --include-tools (strongest steer toward specific tools):

# Steer to upscale
python3 {baseDir}/scripts/agent_skill.py chat --prompt "upscale this image to 4K" --include-tools upscale_image --attachments "IMAGE_URL" --json --download

# Steer to a specific video model
python3 {baseDir}/scripts/agent_skill.py chat --prompt "generate a video" --include-tools generate_video_kling_3_0 --json --download

--include-tools strongly instructs the Agent to prioritize the listed tools. Use this when the user explicitly requests a specific tool or operation.

Two limits worth knowing:

  • It is a strong instruction, not an enforced whitelist. The Agent normally follows it, but may pick another tool — for example after the requested one rejects the input. Check failures in the result to see when that happened.
  • --exclude-tools is accepted for forward compatibility but currently has no effect on tool selection. To steer away from a tool, name the one you do want with --include-tools.

Reference Subjects from the Asset Library — --subjects

--attachments takes any image URL, and every new URL is reviewed again before a model that requires reviewed inputs will accept it. When the reference already lives in the user's asset library, pass its own library URL via --subjects instead: the existing review is reused, and the Agent is told these references are approved subjects.

python3 {baseDir}/scripts/agent_skill.py chat \
  --prompt "put these two characters in a hallway conversation" \
  --subjects '[{"url":"LIBRARY_URL_A","asset_id":"asset_xxx","display_name":"Bune","channel":"ark_sd2"},
               {"url":"LIBRARY_URL_B","asset_id":"asset_yyy","display_name":"Leo","channel":"ark_sd2"}]' \
  --json --download

Each entry takes url (required) plus optional type (subject_image by default, or subject_audio / subject_video), asset_id, display_name and channel. Use --attachments for one-off images the user just sent you, and --subjects for assets that already exist in their library.

--kits references a brand kit by ID. The project's active kit is attached automatically, so pass this only to reference a different one.

Checking What Was Rejected — failures

A thread can finish with final_status: "done" and still have had tool calls rejected along the way. The Agent is free to drop a reference or switch to another model and carry on, so a result that looks successful can quietly differ from what was asked for.

The result carries a failures array whenever that happens:

{
  "final_status": "done",
  "generation_succeeded": true,
  "warning": "2 tool calls were rejected. generate_video_seedance_v2_0_fast was rejected: ...",
  "failures": [
    {
      "tool": "generate_media",
      "tool_hint": "generate_video_seedance_v2_0_fast",
      "code": "SEEDANCE_ASSET_MODERATION_REJECTED",
      "message": "1 reference asset(s) failed content moderation. Do not retry with the same asset(s); replace them with compliant assets."
    },
    {
      "tool": "generate_media",
      "tool_hint": "generate_video_minimax_h3",
      "code": "INPUT_PARAMS_INVALID",
      "message": "MiniMax H3 resolution must be 768P or 2K."
    }
  ]
}

code is either the specific upstream code, or one of INPUT_PARAMS_INVALID (bad parameter), UPSTREAM_ERROR (generation service error) or TOOL_FAILED.

Always read failures before telling the user the run succeeded. When it is non-empty, tell them what was refused and why. A rejected reference will keep being rejected, so retrying with the same input wastes credits — replace the input the message names, or reference an approved subject via --subjects.

Reasoning Mode — --mode thinking / --mode fast

Lovart has two reasoning modes you can select per thread:

  • fast (default) — lightweight single-pass response. Use for simple, one-shot generations where speed matters.
  • thinking — deep structured reasoning with planning and multi-step analysis. Use for complex brand systems, multi-asset campaigns, anything that benefits from deliberate planning. Slower but higher quality.

Omitting --mode is equivalent to --mode fast, matching the web UI's default.

# Thinking mode — strategic, multi-step
python3 {baseDir}/scripts/agent_skill.py chat --prompt "design a brand identity system for a sustainable coffee startup" --mode thinking --json --download

# Fast mode — quick one-shot
python3 {baseDir}/scripts/agent_skill.py chat --prompt "draw a cat" --mode fast --json --download

Mode is locked to the thread on its first message. Once you start a thread with --mode thinking, subsequent messages on the same --thread-id stay in thinking mode regardless of later --mode flags. To switch modes, start a new thread (omit --thread-id).

Task-Specific Tool Selection (IMPORTANT)

When the user's request matches a specific operation, use --include-tools to ensure the correct tool:

User says Use --include-tools
"upscale", "放大", "enlarge", "enhance resolution", "超分" upscale_image
"edit image", "modify", "change style" (let Agent decide)
"generate image", "draw", "画" (let Agent decide, or use --prefer-models)

CRITICAL: When the user asks to "upscale", "enlarge", or increase resolution of an existing image, you MUST use --include-tools upscale_image. Do NOT let the Agent use image generation models for upscaling — they will re-generate the image instead of upscaling it.

Notes

  • All APIs use AK/SK HMAC-SHA256 signature authentication
  • Video generation takes several minutes; the chat command auto-polls until complete
  • Gallery and canvas sync is idempotent — safe to call result multiple times without duplicates
  • Connection failures auto-retry 3 times with SSL fallback
  • After status becomes "done", waits 5 seconds to re-confirm (guards against sub-agent startup race)

Related skills

ai-image-generationgenmedia-labs713KGenerate and edit images on RunComfy via the `runcomfy` CLI — a smart router across the full image-model catalog: FLUX 2 (Klein 9B/4B, Pro, Dev, Flash, Turbo, Max), Google Nano Banana 2 / Pro, OpenAI GPT Image 2, ByteDance Seedream 5 / 4-5 / 4-0 and Dreamina 4-0, Alibaba Qwen Image and Z-Image Turbo, Wan 2-7. Covers both text-to-image (t2i) and image-to-image / edit (i2i) endpoints — the skill picks the right model for the user's actual intent (typography precision, photoreal portraits, sub-secoai-image-generation101-skills547KGenerate AI images with GPT-Image-2, FLUX, Gemini, Grok, Seedream, Reve and 50+ models via inference.sh CLI. Models: GPT-Image-2, FLUX Dev LoRA, FLUX.2 Klein LoRA, Gemini 3 Pro Image, Grok Imagine, Seedream 4.5, Reve, ImagineArt. Capabilities: text-to-image, image-to-image, inpainting, LoRA, image editing, upscaling, text rendering. Use for: AI art, product mockups, concept art, social media graphics, marketing visuals, illustrations. Triggers: flux, image generation, ai image, text to image, stnano-banana-2prime-skills424KGenerate images with Google Nano Banana 2 (Gemini-family flash-tier text-to-image) on RunComfy — bundled with the model's documented prompting patterns so the skill gets sharper output than naive prompting against the same model. Documents Nano Banana 2's strengths (rapid iteration, in-image typography rendering, predictable framing, optional web-grounded context), the resolution-tier pricing, the safety-tolerance dial, and when to route to Nano Banana Pro / GPT Image 2 / Flux 2 / Seedream insteimage-editprime-skills424KEdit images on RunComfy — this skill is a smart router that matches the user's intent to the right edit model in the RunComfy catalog. Picks Nano Banana Edit (batch up to 20, identity-preserving default), OpenAI GPT Image 2 Edit (multilingual in-image text rewrite, multi-ref composition, layout precision), Flux Kontext Pro (single-ref high-fidelity local edit), or Z-Image Turbo Inpaint (mask-driven precise region edit). Bundles each model's documented prompting patterns so the skill gets sharper

Search skills and MCP servers

Fuzzy search across 23,137 skills and servers