Medium Risk

solve_schedule

Assign tasks to time slots maximizing productivity, matching task energy requirements with slot energy levels. Use specifically for task→slot assignment with energy matching (deep-work scheduling, shift planning, exercise scheduling). For general resource allocation with arbitrary linear constrai...

Risk signalsHigh parameter count (11 properties)

Part of the Oraclaw server.

solve_schedule can modify Oraclaw data, with no limits today. PolicyLayer puts allow, deny, and rate-limit rules on every call. Live in minutes.

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AI agents use solve_schedule to create or modify resources in Oraclaw. Write operations carry medium risk because an autonomous agent could trigger bulk unintended modifications. Rate limits prevent a single agent session from making hundreds of changes in rapid succession. Argument validation ensures the agent passes expected values.

Without a policy, an AI agent could call solve_schedule repeatedly, creating or modifying resources faster than any human could review. PolicyLayer's rate limiting ensures write operations happen at a controlled pace, and argument validation catches malformed or unexpected inputs before they reach Oraclaw.

Write tools can modify data. A rate limit prevents runaway bulk operations from AI agents.

policy.json
{
  "version": "1",
  "default": "deny",
  "tools": {
    "solve_schedule": {
      "limits": [
        {
          "counter": "solve_schedule_rate",
          "window": "minute",
          "max": 30,
          "scope": "grant"
        }
      ]
    }
  }
}

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These attack patterns abuse exactly the kind of access solve_schedule gives an agent. Each links to the full case and the policy that stops it:

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Every attack above starts with a tool call. PolicyLayer checks each one against your policy first, so solve_schedule only ever does what you allow.

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Other write tools across the catalogue. The same approach applies to each: rate-limit and validate the arguments.

What does the solve_schedule tool do? +

Assign tasks to time slots maximizing productivity, matching task energy requirements with slot energy levels. Use specifically for task→slot assignment with energy matching (deep-work scheduling, shift planning, exercise scheduling). For general resource allocation with arbitrary linear constraints, use solve_constraints. For sequence/route problems, use plan_pathfind. Deterministic.. It is categorised as a Write tool in the Oraclaw MCP Server, which means it can create or modify data. Consider rate limits to prevent runaway writes.

How do I enforce a policy on solve_schedule? +

Register the Oraclaw MCP server in PolicyLayer and add a rule for solve_schedule: allow, deny, rate-limit, or require approval. Point your MCP client at the PolicyLayer proxy URL and the rule is enforced on every call, before it reaches Oraclaw. Nothing to install.

What risk level is solve_schedule? +

solve_schedule is a Write tool with medium risk. Write tools should be rate-limited to prevent accidental bulk modifications.

Can I rate-limit solve_schedule? +

Yes. Add a rate_limit block to the solve_schedule rule in your PolicyLayer policy. For example, setting max: 10 and window: 60 limits the tool to 10 calls per minute. Rate limits are tracked per agent session and reset automatically.

How do I block solve_schedule completely? +

Set action: deny in the PolicyLayer policy for solve_schedule. The AI agent will receive a policy violation error and cannot call the tool. You can also include a reason field to explain why the tool is blocked.

What MCP server provides solve_schedule? +

solve_schedule is provided by the Oraclaw MCP server (@oraclaw/mcp-server). PolicyLayer sits as a proxy in front of this server to enforce policies before tool calls reach the server.

Enforce policy on every Oraclaw tool call.

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