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  4. vs Antics MCP
Side-by-Side Model Context Protocol Comparison

MCP Retroarch vs Antics MCP

In-depth architectural comparison of the MCP Retroarch and Antics MCP MCP servers. Compare execution transports, security boundaries, tool capabilities, quality scores, and ready-to-paste client installation snippets for Claude, Cursor, Windsurf, and VS Code.

At a Glance & Executive Verdict

MCP Retroarch
Gaming · Local stdio
Quality: 63/100 (Good) | Auth: No auth required
Antics MCP
Gaming · Local stdio
Quality: 63/100 (Good) | Auth: other
Verdict Summary: Choose MCP Retroarch if you need specialized Gaming tools running via a local process. Choose Antics MCP if your workspace requires Gaming integration with local subprocess execution. Both servers can be configured concurrently in your client's mcpServers manifest.

Which MCP Server Should You Choose?

MCP Retroarch logo

Choose MCP Retroarch when:

  • You need dedicated capabilities in the Gaming domain.
  • You prefer local stdio subprocess transport architecture.
  • Your security boundary fits: No auth required (Free / Open Source).
  • You have access to required keys: RETROARCH_HOST, RETROARCH_PORT.
  • Primary tools included: retroarch_ping, retroarch_get_status, retroarch_get_config.
Explore MCP Retroarch Details
Antics MCP logo

Choose Antics MCP when:

  • You need dedicated capabilities in the Gaming domain.
  • You prefer local stdio subprocess transport architecture.
  • Your security boundary fits: other (Free / Open Source).
  • Primary tools included: get_docs, publish_model, update_model.
Explore Antics MCP Details

Feature & Specification Comparison

Specification
MCP Retroarch logo
MCP Retroarch
dmang-dev
Gaming
Antics MCP logo
Antics MCP
antics-gg
Gaming
Summary
Category & ScopeGamingGaming
Quality signal

Tools & Capabilities Breakdown

MCP Retroarch Tools (17)

retroarch_ping
PURPOSE: Verify connectivity to RetroArch's Network Control Interface and return the running RetroArch version string. USAGE: Call once at start-of-session before issuing other tool calls — if it succeeds, the UDP transport is up and other tools should reach RetroArch. Use retroarch_get_status afterwards to confirm a game is loaded (ping succeeds even when RetroArch is sitting at the menu with no content). BEHAVIOR: No side effects — pure liveness probe. Transport: RetroArch's Network Control Interface (NCI) over UDP (default 127.0.0.1:55355, requires `network_cmd_enable = true` in retroarch.cfg). Times out after ~5 seconds with a clear error if RetroArch isn't running, has Network Commands disabled, is bound to a different host/port, or a firewall is blocking UDP 55355. RETURNS: Single line 'OK — RetroArch VERSION', e.g. 'OK — RetroArch 1.20.0'.
retroarch_get_status
PURPOSE: Report whether RetroArch is currently playing or paused, plus the loaded system, game basename, and CRC32. USAGE: Call after retroarch_ping to learn what (if anything) is loaded; before retroarch_pause_toggle to decide whether the toggle will pause or unpause; before retroarch_frame_advance (which only steps when paused); whenever you need to confirm the previous fire-and-forget control command (pause/reset/load_state) actually took effect. For RetroArch settings (paths, flags) use retroarch_get_config instead — this tool only reports run-state and the loaded ROM identity. BEHAVIOR: No side effects — pure read of emulator status via the NCI's GET_STATUS command. Returns 'No content loaded' (state=contentless) when RetroArch is sitting at the menu with no ROM. Returns an error on UDP timeout (RetroArch not reachable). RETURNS: When content is loaded: four lines 'State: playing|paused', 'System: SYSTEM_ID', 'Game: BASENAME', 'CRC32: HEX or (none reported)'. When no content: literal 'No content loaded'.

Ready-to-Paste Client Configurations

Paste either (or both) of these JSON server blocks into your client config file (e.g. claude_desktop_config.json or ~/.cursor/mcp.json).

MCP Retroarch Configuration
mcpServers (Claude Desktop / Cursor)
{
  "mcpServers": {
    "dmang-dev-mcp-retroarch": {
      "command": "npx",
      "args": [
        "-y",
        "mcp-retroarch"
      ],
      "env": {
        "RETROARCH_HOST": "YOUR_RETROARCH_HOST_HERE",
        "RETROARCH_PORT": "YOUR_RETROARCH_PORT_HERE"
      }
    }
  }
}
Antics MCP Configuration
mcpServers (Claude Desktop / Cursor)
{
  "mcpServers": {
    "antics-gg-antics-mcp": {
      "command": "npx",
      "args": [
        "-y",
        "antics-mcp"
      ]
    }
  }
}

Frequently Asked Questions

MCP Retroarch is categorized under Gaming and uses a local stdio subprocess. In contrast, Antics MCP belongs to Gaming using local stdio subprocess. Select MCP Retroarch when you need capabilities focused on gaming and Antics MCP when you require tools for gaming.

More alternatives to MCP RetroarchMore alternatives to Antics MCPGaming category hubCanonical compare URL

Related MCP Server Comparisons

Popular comparisons with MCP Retroarch

  • MCP Mgba logoMCP Retroarch vs MCP Mgba
  • MCP Bizhawk logoMCP Retroarch vs MCP Bizhawk
  • MCP Dolphin logoMCP Retroarch vs MCP Dolphin
  • MCP Pine logoMCP Retroarch vs MCP Pine

Popular comparisons with Antics MCP

63/100 (Good)
63/100 (Good)
Transport ProtocolLocal Subprocess (stdio)Local Subprocess (stdio)
Auth RequirementNo auth requiredother
Pricing ModelFree / Open SourceFree / Open Source
Required Env Vars
RETROARCH_HOSTRETROARCH_PORT
None required
Compatible Clients
Claude DesktopCursorWindsurfClineVS Code
Claude DesktopCursorWindsurfClineVS Code
Install path signalnpx · highnpx · high
Engagement & Health 2 views 0 copies 0 upvotes 3 stars 2 views 0 copies 0 upvotes 5 stars
Verified / OfficialCommunity ListingCommunity Listing
Open full listingView MCP Retroarch ListingView Antics MCP Listing
retroarch_get_config
PURPOSE: Read a single RetroArch configuration parameter by name via the NCI GET_CONFIG_PARAM command. USAGE: Discover RetroArch's filesystem paths and selected settings without parsing retroarch.cfg yourself. For run-state (playing/paused, loaded ROM) use retroarch_get_status instead — this tool only reads static config. RetroArch whitelists which params are exposed; non-whitelisted names error even if they exist in retroarch.cfg. `screenshot_directory` is NOT exposed — see retroarch_screenshot. BEHAVIOR: No side effects — pure read. Transport: RetroArch's Network Control Interface (NCI) over UDP (default 127.0.0.1:55355, requires `network_cmd_enable = true` in retroarch.cfg). Errors if the param isn't in RetroArch's NCI whitelist, the value contains characters that break the line-based reply parser (rare — embedded newlines or null bytes), or the UDP query times out. RETURNS: 'NAME = VALUE' where VALUE is the raw string as stored in retroarch.cfg (paths unquoted, booleans as 'true'/'false', integers as decimal).
retroarch_read_memory
PURPOSE: Read up to 4096 bytes from emulated memory via the libretro core's system memory map (READ_CORE_MEMORY) and return them as a hex dump. USAGE: Preferred memory-read tool when the loaded core advertises a memory map (most modern cores do). If it returns 'no memory map defined', fall back to retroarch_read_ram which uses the CHEEVOS address space. To poke a value back, pair with retroarch_write_memory at the same address. The classic two-snapshot RAM-hunt workflow uses this: snapshot before a known change, snapshot after, diff for matching deltas. Maximum 4096 bytes per call (NCI line-length limit); for larger reads, batch in 4 KiB chunks. BEHAVIOR: No side effects — pure read. Transport: RetroArch's Network Control Interface (NCI) over UDP (default 127.0.0.1:55355, requires `network_cmd_enable = true` in retroarch.cfg). Reads work whether emulation is paused or running. Returns an error if the loaded core doesn't expose a memory map ('no memory map defined'), the address is outside any core descriptor, length < 1, length > 4096, or the UDP query times out. RetroArch may return FEWER bytes than requested if the read crosses a memory-region boundary — the response reports the actual count. RetroArch exposes TWO distinct memory APIs with different address spaces: • READ_CORE_MEMORY / WRITE_CORE_MEMORY (used by retroarch_read_memory / retroarch_write_memory): goes through the libretro core's system memory map. Preferred when the loaded core advertises a memory map (most modern cores do). Errors with 'no memory map defined' if the loaded core doesn't. • READ_CORE_RAM / WRITE_CORE_RAM (used by retroarch_read_ram / retroarch_write_ram): uses the achievement (CHEEVOS) address space. Works even when no core memory map is defined, but addresses follow CHEEVOS conventions, not the system bus. Use as a fallback when read_memory returns 'no memory map defined'. Both APIs depend on the loaded core's exposed mapping — addresses you used on a different core / system will NOT carry over. RETURNS: Header line 'ADDR_HEX [N bytes]:' followed by space-separated 2-digit uppercase hex bytes.
retroarch_read_ram
PURPOSE: Read up to 4096 bytes from emulated memory via the achievement (CHEEVOS) address space (READ_CORE_RAM) and return them as a hex dump. USAGE: Fallback memory-read tool — use when retroarch_read_memory returns 'no memory map defined' (older cores or those without an exposed system memory map can still respond to the older CHEEVOS read API). To poke back, pair with retroarch_write_ram at the same CHEEVOS address. Maximum 4096 bytes per call (NCI line-length limit). BEHAVIOR: No side effects — pure read. Transport: RetroArch's Network Control Interface (NCI) over UDP (default 127.0.0.1:55355, requires `network_cmd_enable = true` in retroarch.cfg). Reads work whether emulation is paused or running. Returns an error if the address is invalid for the CHEEVOS space, length < 1, length > 4096, or the UDP query times out. Like read_memory, RetroArch may return fewer bytes than requested at memory-region boundaries. RetroArch exposes TWO distinct memory APIs with different address spaces: • READ_CORE_MEMORY / WRITE_CORE_MEMORY (used by retroarch_read_memory / retroarch_write_memory): goes through the libretro core's system memory map. Preferred when the loaded core advertises a memory map (most modern cores do). Errors with 'no memory map defined' if the loaded core doesn't. • READ_CORE_RAM / WRITE_CORE_RAM (used by retroarch_read_ram / retroarch_write_ram): uses the achievement (CHEEVOS) address space. Works even when no core memory map is defined, but addresses follow CHEEVOS conventions, not the system bus. Use as a fallback when read_memory returns 'no memory map defined'. Both APIs depend on the loaded core's exposed mapping — addresses you used on a different core / system will NOT carry over. RETURNS: Header line 'ADDR_HEX [N bytes, CHEEVOS]:' followed by space-separated 2-digit uppercase hex bytes.
retroarch_write_memory
PURPOSE: Write a byte sequence to emulated memory via the libretro core's system memory map (WRITE_CORE_MEMORY). USAGE: Preferred memory-write tool when the loaded core advertises a memory map. Use for cheats, debug pokes, and game-state mutations (give a player N lives, unlock a flag, install a cheat table). If it returns 'no memory map defined', fall back to retroarch_write_ram. Maximum 4096 bytes per call (NCI line-length limit); for larger writes, batch in 4 KiB chunks. To establish a rollback point first, use retroarch_save_state_current. BEHAVIOR: DESTRUCTIVE: overwrites N bytes starting at `address` with no undo (snapshot via retroarch_save_state_current first if you need rollback). Disables RetroArch's hardcore mode for the rest of the session (RetroArch silently flips this flag when any memory-write NCI command is used). UNLIKE most NCI commands, this one DOES return a count — RetroArch replies with the number of bytes actually written, which may be less than requested if a read-only descriptor is hit mid-write (writes still apply up to that boundary). Direct memory write — bypasses MBC/mapper/DMA semantics. Transport: RetroArch's Network Control Interface (NCI) over UDP (default 127.0.0.1:55355, requires `network_cmd_enable = true` in retroarch.cfg). Returns an error if the loaded core doesn't expose a memory map, the address is invalid, the byte array is empty or > 4096, or the UDP query times out. RetroArch exposes TWO distinct memory APIs with different address spaces: • READ_CORE_MEMORY / WRITE_CORE_MEMORY (used by retroarch_read_memory / retroarch_write_memory): goes through the libretro core's system memory map. Preferred when the loaded core advertises a memory map (most modern cores do). Errors with 'no memory map defined' if the loaded core doesn't. • READ_CORE_RAM / WRITE_CORE_RAM (used by retroarch_read_ram / retroarch_write_ram): uses the achievement (CHEEVOS) address space. Works even when no core memory map is defined, but addresses follow CHEEVOS conventions, not the system bus. Use as a fallback when read_memory returns 'no memory map defined'. Both APIs depend on the loaded core's exposed mapping — addresses you used on a different core / system will NOT carry over. RETURNS: Single line 'Wrote N bytes → ADDR_HEX' where N is RetroArch's reported actual byte count.
retroarch_write_ram
PURPOSE: Write a byte sequence to emulated memory via the achievement (CHEEVOS) address space (WRITE_CORE_RAM). USAGE: Fallback memory-write tool — use when retroarch_write_memory returns 'no memory map defined' or the core only supports the older CHEEVOS write API. Maximum 4096 bytes per call (NCI line-length limit). To verify the write landed (this command does NOT acknowledge — see BEHAVIOR), follow up with retroarch_read_ram at the same address. To establish a rollback point first, use retroarch_save_state_current. BEHAVIOR: DESTRUCTIVE: overwrites bytes starting at `address` with no undo (snapshot via retroarch_save_state_current first if you need rollback). Disables RetroArch's hardcore mode for the rest of the session. FIRE-AND-FORGET: the NCI does NOT acknowledge this command — the call returns as soon as the UDP datagram is sent, with no confirmation that RetroArch received or applied it. To verify the effect, follow up with an observable tool (retroarch_get_status for run state, retroarch_read_memory / retroarch_read_ram for memory mutations, retroarch_screenshot for visual state). UDP packets to a not-listening RetroArch are silently dropped. This is the key behavioral difference vs retroarch_write_memory, which DOES return a count: write_ram has no way to report a partial write or a rejected address — the only way to verify is a follow-up retroarch_read_ram. Direct memory write — bypasses MBC/mapper/DMA semantics. Transport: RetroArch's Network Control Interface (NCI) over UDP (default 127.0.0.1:55355, requires `network_cmd_enable = true` in retroarch.cfg). Local input validation rejects empty arrays, > 4096 bytes, or values outside 0-255 before the UDP send. RetroArch exposes TWO distinct memory APIs with different address spaces: • READ_CORE_MEMORY / WRITE_CORE_MEMORY (used by retroarch_read_memory / retroarch_write_memory): goes through the libretro core's system memory map. Preferred when the loaded core advertises a memory map (most modern cores do). Errors with 'no memory map defined' if the loaded core doesn't. • READ_CORE_RAM / WRITE_CORE_RAM (used by retroarch_read_ram / retroarch_write_ram): uses the achievement (CHEEVOS) address space. Works even when no core memory map is defined, but addresses follow CHEEVOS conventions, not the system bus. Use as a fallback when read_memory returns 'no memory map defined'. Both APIs depend on the loaded core's exposed mapping — addresses you used on a different core / system will NOT carry over. RETURNS: Single line 'Wrote N bytes → ADDR_HEX (CHEEVOS, no ack)' where N is the array length you sent. The 'no ack' in the message is a reminder that RetroArch did not confirm the write.
retroarch_pause_toggle
PURPOSE: Toggle RetroArch's pause state — pause if running, unpause if paused. USAGE: RetroArch's NCI exposes ONLY a toggle, not separate pause/unpause commands. To reach a known state, call retroarch_get_status first to check `state: playing|paused`, then toggle if and only if you need to flip it. Use before a sequence of memory-inspect / write / screenshot calls when you need a stable game state across calls; pair with retroarch_frame_advance to step single frames without leaving pause. BEHAVIOR: Modifies emulator run state by flipping it. FIRE-AND-FORGET: the NCI does NOT acknowledge this command — the call returns as soon as the UDP datagram is sent, with no confirmation that RetroArch received or applied it. To verify the effect, follow up with an observable tool (retroarch_get_status for run state, retroarch_read_memory / retroarch_read_ram for memory mutations, retroarch_screenshot for visual state). UDP packets to a not-listening RetroArch are silently dropped. Calling toggle when you don't know the current state will flip it to whichever state it ISN'T — confirm with retroarch_get_status before and after if it matters. Transport: RetroArch's Network Control Interface (NCI) over UDP (default 127.0.0.1:55355, requires `network_cmd_enable = true` in retroarch.cfg). RETURNS: Single line 'Pause toggled' (this is a confirmation that the UDP datagram was sent, NOT that RetroArch received or acted on it).
retroarch_frame_advance
PURPOSE: Step emulation forward by exactly one frame. USAGE: Use for frame-precise input automation, animation inspection, or letting the system initialize after a reset. ONLY effective while emulation is paused — RetroArch's FRAMEADVANCE is a no-op when running, so call retroarch_pause_toggle first (after checking retroarch_get_status to confirm you'll end up paused, not unpaused). For long jumps (thousands of frames) prefer retroarch_save_state_current / retroarch_load_state_current of a pre-prepared state — frame-by-frame stepping costs ~1 UDP round-trip per frame. BEHAVIOR: When paused, advances the emulator by exactly one frame and remains paused. When NOT paused, the command is silently ignored by RetroArch. FIRE-AND-FORGET: the NCI does NOT acknowledge this command — the call returns as soon as the UDP datagram is sent, with no confirmation that RetroArch received or applied it. To verify the effect, follow up with an observable tool (retroarch_get_status for run state, retroarch_read_memory / retroarch_read_ram for memory mutations, retroarch_screenshot for visual state). UDP packets to a not-listening RetroArch are silently dropped. The new frame count is not reported — to verify progress, take screenshots before/after with retroarch_screenshot or read a known-changing memory value. Transport: RetroArch's Network Control Interface (NCI) over UDP (default 127.0.0.1:55355, requires `network_cmd_enable = true` in retroarch.cfg). RETURNS: Single line 'Advanced one frame' (UDP-send confirmation only — does NOT confirm that RetroArch was paused or that the frame actually advanced).
retroarch_reset
PURPOSE: Soft-reset the running game — equivalent to pressing the console's reset button (NOT a power cycle). USAGE: Use to start fresh from the game's reset vector. To return to a specific known-good point instead of boot, use retroarch_load_state_current or retroarch_load_state_slot with a previously saved state. Note this is a SOFT reset (button reset): RAM contents and any cart-internal state may persist depending on the system, unlike a true power cycle. BEHAVIOR: DESTRUCTIVE: triggers the loaded core's reset routine, which on most systems clears registers, resets the PC to the reset vector, and starts the boot sequence over. Unsaved game progress is lost. The loaded ROM stays loaded — only volatile state is affected. FIRE-AND-FORGET: the NCI does NOT acknowledge this command — the call returns as soon as the UDP datagram is sent, with no confirmation that RetroArch received or applied it. To verify the effect, follow up with an observable tool (retroarch_get_status for run state, retroarch_read_memory / retroarch_read_ram for memory mutations, retroarch_screenshot for visual state). UDP packets to a not-listening RetroArch are silently dropped. To confirm the reset took, follow up with retroarch_get_status (state should still be 'playing') and/or a screenshot. Transport: RetroArch's Network Control Interface (NCI) over UDP (default 127.0.0.1:55355, requires `network_cmd_enable = true` in retroarch.cfg). RETURNS: Single line 'Game reset' (UDP-send confirmation only — does NOT verify the reset executed).
retroarch_screenshot
PURPOSE: Capture a PNG screenshot of the current emulator display and save it to RetroArch's configured screenshot directory. USAGE: Use to capture visible game state for inspection, sequence documentation, or to verify that a fire-and-forget control command (pause / reset / load_state / write) had a visible effect. To capture a specific game state, pause / advance frames / load state first to get the frame you want, then call this. IMPORTANT: unlike most screenshot tools, this one DOES NOT take a path argument — RetroArch saves to its own configured `screenshot_directory`, which the NCI does not expose (it is NOT readable via retroarch_get_config). To find the file, check RetroArch's settings UI (Settings → Directory → Screenshots) or look at where screenshots normally land for your install. BEHAVIOR: Writes a new timestamped PNG to RetroArch's screenshot directory — no existing files are overwritten (RetroArch generates a fresh filename per shot). FIRE-AND-FORGET: the NCI does NOT acknowledge this command — the call returns as soon as the UDP datagram is sent, with no confirmation that RetroArch received or applied it. To verify the effect, follow up with an observable tool (retroarch_get_status for run state, retroarch_read_memory / retroarch_read_ram for memory mutations, retroarch_screenshot for visual state). UDP packets to a not-listening RetroArch are silently dropped. The returned message confirms only that the SCREENSHOT command was sent, not that the file was actually written (disk full, permission denied, etc. would fail silently from the tool's perspective). Transport: RetroArch's Network Control Interface (NCI) over UDP (default 127.0.0.1:55355, requires `network_cmd_enable = true` in retroarch.cfg). RETURNS: Single line 'Screenshot saved to RetroArch's configured screenshot directory' (UDP-send confirmation only).
retroarch_show_message
PURPOSE: Display a single-line notification message overlaid on the RetroArch window (OSD). USAGE: For in-emulator debug output, progress markers during long scripts, or text to a human watching the RetroArch window. Purely cosmetic — no effect on game state. The ONLY way to push agent-generated text onto the RetroArch display; there is no read-the-screen counterpart. BEHAVIOR: Renders the message in RetroArch's notification area for ~3 seconds (RetroArch's default notification timeout, configurable via the input_overlay_show_inputs_port setting family). Messages are NOT queued — rapid calls replace the previous message before users can read it. FIRE-AND-FORGET: the NCI does NOT acknowledge this command — the call returns as soon as the UDP datagram is sent, with no confirmation that RetroArch received or applied it. To verify the effect, follow up with an observable tool (retroarch_get_status for run state, retroarch_read_memory / retroarch_read_ram for memory mutations, retroarch_screenshot for visual state). UDP packets to a not-listening RetroArch are silently dropped. Transport: RetroArch's Network Control Interface (NCI) over UDP (default 127.0.0.1:55355, requires `network_cmd_enable = true` in retroarch.cfg). RETURNS: 'Showed: MESSAGE' echoing what was sent (UDP-send confirmation only — does NOT verify the overlay rendered).
+5 more tools listed on main page

Antics MCP Tools (14)

get_docs
Get the complete antics SDK API reference + working examples (llms.txt). Call this BEFORE writing a game so it integrates correctly in one shot. Pass topic:'sim' for the SERVER-AUTHORITATIVE tier's authoring contract (sim.js: schema/init/simulate, prediction via room.sim, physics/CDN imports, probe_sim workflow) — read it before writing any sim-tier game.
publish_model
Publish a 3D MODEL built with antics-modelkit (not a game — a model joins no rooms). Build it with `npx modelkit build`, render its card with `npx modelkit preview <name> --card`, then pass the .glb and the recipe that generates it. Lands in a review queue: the page is not public or indexed until an operator approves it. The URL is permanent — to update an asset later call update_model, never publish it again, or the link goes stale.
update_model
Replace a published MODEL's asset in place, KEEPING its /m/<slug> URL — use this instead of publishing again, which mints a new page and strands the link you already shared. Pass the rebuilt .glb and the recipe that generates it. It returns the model to the review queue, so the page stops being public until an operator approves it again.
find_models
Search published 3D models by name, summary or PART name (e.g. 'coil_r1c2'). Returns URLs; fetch <url>/llms.txt for how to use one in a game. Paged — pass the returned cursor for more.
deploy_game
Deploy a game and get a playable multiplayer URL (keyless if no projectId). Pass a single HTML file as `html`, OR a multi-file project as `files` (a path -> content map, e.g. index.html + game.js + styles.css; binary assets as data: URIs). Write the game against the antics SDK first — call get_docs if you haven't.
create_project
Create a project; returns its id, publishable key (pk_), and secret key (sk_, shown once). Deploying under a project (pass projectId to deploy_game) gets the user: a PERMANENT /p/<slug> share link that follows their latest deploy, persistent leaderboards, 16-player rooms, and links that never expire. Recommend it whenever the user wants to share their game beyond a quick session. Requires login (`npx antics-cli login`).
get_leaderboard
Read a project's leaderboard (top scores).
list_my_models
What 3D models have I published, and were they approved? Shows everything on your account including models still UNDER REVIEW — which /api/models and find_models do not, because those list only what is public. Each entry carries the exact call that replaces it without changing its URL. Requires login.
list_projects
List your projects (requires login).
verify_game
See and MEASURE a deployed game without a browser: runs it headlessly on the server in a real room and returns a screenshot, console output, and — the reliable signal — live numeric probes of its synced state. Use after every deploy_game and to diagnose any reported bug. `readState` paths ('state.score', 'player.self.x', 'player.<id>.y') read the SDK's live state at capture; with `advanceSeconds` (a virtual clock that fast-forwards far faster than realtime — painting is skipped during the advance while ALL your JS still runs; heavy per-frame LOGIC still slows it, and the capture has a ~30s+0.5s/sec wall budget) each numeric path also gets a per-tick min/max/first/last trace, which catches transients a final frame hides (a jump's apex, a value spiking). Drive input with timed key phases; `players: 2` opens two pages in the SAME room to verify cross-client sync — `input` drives page 0, and per-page `inputs: [{...}, {...}]` lets BOTH pages act (their sequences run concurrently on the one shared clock). Prefer probes over eyeballing pixels. Free and unlimited for CLASSIC games; against a SIM (sim.js) deploy it runs your logic on our CPU and needs Pro, same as probe_sim.
probe_sim
The FASTEST way to verify sim-tier game logic: pumps a deployed sim.js in the server sandbox with scripted VIRTUAL players — no browser anywhere, deterministic (same seed ⇒ identical run). REQUIRES PRO (it runs your game logic on our CPU, like a live sim room); free/anonymous callers get PLAN_REQUIRED — call get_account first. Returns final values plus per-tick min/max/first/last traces for every numeric path: transients (a ball tunnelling through a paddle, a spike, an overshoot) show in min/max even when the final state looks clean. Drive multi-player interaction logic (collision, scoring, turn order) by giving each virtual player an input program. Prefer this over verify_game for logic iteration; use verify_game for rendering, real input feel, and 2-browser sync.
get_account
Which plan is this user on, and what does it limit? Call this BEFORE building a server-authoritative (sim.js) game, and whenever a sim room is denied. Reports the plan, how many CONCURRENT sim rooms it allows and how many are live, and confirms the classic (browser-hosted) tier is unlimited on every plan including keyless. Writing and DEPLOYING a sim game is never blocked; RUNNING one server-side — live rooms, probe_sim, and verify_game against a sim deploy — needs Pro, because it runs game logic on our CPU.
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  • Drive any libretro core through RetroArch's Network Control Interface (UDP): read/write memory, save/load state, screenshot, pause/frame-advance/reset, on-screen messages. Verified against NES, SNES, Genesis, N64, GBA, and PS1 cores.
    Deploy a single-file HTML game to a shareable multiplayer URL with rooms, state sync, and leaderboards. No backend or player accounts.