Ito Inference

作者 affaan-mef648e01899b无许可证275K 个星标收录于 2026年10月8日更新于 2026年10月8日仓库3天前更新

Inspect the availability of model serving on a completed Itô compute booking and, when the canonical backend becomes available, hand off an explicitly confirmed serving manifest. Use after ito-compute has booked GPU nodes and the user asks for an OpenAI-compatible endpoint, ito-serve, hosted Kimi, or self-hosted open-weights inference. ECC implements no serving stack of its own.

仅含说明DevOps & Cloud
AI 生成的概览

对 Itô 推理服务可用性进行失败关闭式检查,报告缺失能力并交接已审阅的清单。

功能
该技能检查已完成的 Itô 计算预订上是否可提供模型服务;由于托管服务当前不可用,它会在身份验证或任何命令调用之前停止。它向发起方代理报告缺失的能力,并记录未来预期的服务契约,包括资格门槛、清单要求、确认、幂等性和生命周期操作。它不产生端点、工作负载或文件,仅作为可用性检查和文档交接。
适用场景
在 ito-compute 已预订 GPU 节点,且用户请求 OpenAI 兼容端点、ito-serve、托管 Kimi 或自托管开放权重推理之后使用。它也是命名 ito-serve 的请求的路由点。
运行要求
除代理外不需要脚本或工具。它依赖 ECC 桥接和规范运行时,其服务能力当前不可用;运行不需要凭据、网络访问或软件包。

Itô Inference

ito-inference is the sole canonical ECC skill for inference serving on Itô compute. Requests naming ito-serve route here; do not create or install a second ito-serve skill. ECC never SSHes to nodes, downloads weights, launches an engine, or exposes an endpoint; it never books, reserves, or spends.

Current production boundary

Managed serving is unavailable today. The ECC bridge exposes only login, auth, find, status, and explicitly gated evals. It has no serve verb. The canonical runtime documents inference only as an unsupported compatibility probe; ECC does not invoke or depend on it. The MCP surface exposes only auth, find, and status. The locally enforceable guarantee is that ECC rejects serve before resolving or spawning the credential-bearing canonical client.

Therefore stop before authentication or any command invocation. Report the missing capability and return to the originating agent. Never substitute a local runner, SSH helper, browser workflow, purchase endpoint, or any untracked local ito-serve draft.

Required entitlement

When serving is implemented, its first gate is a server-verified completed booking. Harness memory, an RFQ, a quote, node IPs, or SSH access are not proof of entitlement. The backend must return fresh serving eligibility bound to the authenticated account, booking, GPU topology, region, fabric, term, and model policy. Expired, revoked, mismatched, incomplete, or already-released bookings fail closed before confirmation.

Future CLI and API contract

The intended command name is serve; inference may remain only as an explicitly deprecated compatibility alias after the production contract lands. The future handoff must be equivalent to:

sh
ecc ito serve \  --booking <server-verified-booking-id> \  --manifest <absolute-reviewed-json-file> \  --confirmation-ref <opaque-non-authorizing-reference> \  --idempotency-key <stable-retry-key> \  --json

The reviewed manifest must identify the model revision, engine and version, quantization, tensor/pipeline topology, endpoint exposure policy, artifact checksums, storage ceiling, runtime limits, optional TTFT/TPOT objectives, and maximum incremental cost. No raw API key, SSH key, node password, or bearer token belongs in arguments, manifests, logs, MCP results, or chat.

The client must canonicalize the manifest path, reject symlinks, open a regular file without following links, require appropriate ownership and restrictive permissions, enforce a bounded size, and hash bytes from the opened descriptor. That digest must exactly equal the digest bound into confirmation before any workload mutation. A path swap, digest mismatch, oversized file, or mutable unsafe file fails closed.

The canonical API—not ECC—must own workload creation and return structured JSON with ok, live_api_contacted, notice, and either data or error. Serving data must include stable booking, workload, manifest, and idempotency IDs plus a state enum; it must not claim an endpoint is live until health and model checks pass. Errors must include a stable code and safe message without secrets.

Confirmation and execution gates

Before workload creation, require all of the following:

  1. Fresh entitlement and serving eligibility from the canonical backend.
  2. A reviewable immutable manifest and deterministic digest.
  3. A separate single-use confirmation bound to account, action, manifest, and cost, with a short expiry and replay protection. CLI arguments carry only an opaque, non-authorizing confirmation reference; the server resolves and consumes the bearer capability out of band.
  4. A caller-supplied idempotency key reserved atomically with the workload.
  5. Server-side fabric, capacity, model-policy, storage, and cost validation.

Authentication is identity, not workload authority. A login, API key, quote, or completed booking never substitutes for the serving confirmation. Inspection and plan generation must not create a workload. Cancel and cleanup are separate mutations with their own scoped confirmation and idempotency boundaries.

Lifecycle and recovery

The production surface is incomplete until the same canonical client exposes tenant-scoped status, logs, metrics, cancel, and cleanup operations. Every operation needs bounded connect and overall timeouts, revocation-aware errors, and structured output. After an ambiguous transport failure, query status by the idempotency key before retrying; never create a second workload merely because the first response was lost. A revoked credential stops polling and returns control to the originating agent without starting login automatically.

Only report ready after endpoint health, model identity, and canary inference all pass. Report intermediate and terminal failure states honestly. Cleanup must be observable and must not release or modify the underlying booking unless that separate economic action was explicitly authorized.

Proposed backend stages

These stages describe the future backend, not code that exists in ECC:

  1. Verify entitlement, topology, fabric, and cost gates.
  2. Fetch checksum-pinned weights into backend-managed storage.
  3. Emit and validate a reviewable topology/engine plan.
  4. Launch through the provider control plane, never direct root SSH from ECC.
  5. Warm up, test health and model identity, run an SLO canary, then register the endpoint and redacted configuration.

Until every gate and lifecycle operation above exists in the canonical runtime, this skill remains a fail-closed availability check and documentation handoff.

来源与署名

来源:affaan-m/ecc位于skills/ito-inference提交ef648e0

许可证: 无许可证

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