This batches the in-flight [Unreleased] block from CHANGELOG.md into a single commit. Highlights: - Real MCP protocol layer (initialize / tools/list / tools/call) so vendor MCP clients can complete the handshake against the per-PID socket. Legacy direct-dispatch preserved for the harness. - New mcp_injection kinds — cli_override for codex, config_env for opencode — joining the existing env-var and config_file paths so patterm can slot into more agents without touching their real config or auth. - Ctrl+A/D and Ctrl+W/S focus navigation across tabs and intra-tab process lists, recognised in legacy / kitty CSI u / xterm modifyOtherKeys encodings. - Palette macros (sw / k / sp ) and reordering so open sessions surface above spawn-new entries. - Two-row tab bar, sidebar/tabbar/status chrome cache, viewport-wipe on agent spawn, CR-terminated orchestrator injections, and split- Enter PTY writes so paste-detecting TUIs see Enter as a key event. Also fixes the bug logged in TODO: claude's Ctrl+O tool-call expansion emits CSI 0 J, which the viewport renderer was forwarding verbatim — wiping the sidebar to the right of the cursor and leaving the chrome cache convinced nothing had changed. CSI 0 J and CSI 1 J are now translated into per-row ECH sequences clamped to the viewport, same as CSI 2 J and CSI K already were. Agent guides (CLAUDE.md / AGENTS.md) now spell out the TODO->CHANGELOG workflow so completed items land in the changelog rather than as ticked entries left behind in TODO.
416 lines
15 KiB
Go
416 lines
15 KiB
Go
package mcp
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import (
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"encoding/json"
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"fmt"
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)
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// MCP protocol surface. The patterm server originally exposed each
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// tool as its own JSON-RPC method (and the harness still drives it
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// that way). Real MCP clients (claude, codex, opencode) speak the
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// model-context-protocol RPC dialect: they send `initialize` first,
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// then `tools/list`, then `tools/call` with `{name, arguments}`. This
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// file wraps those four entry points around the existing tool dispatch
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// without changing the underlying tool implementations.
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// supportedProtocolVersion is the MCP protocol revision we advertise
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// when a client doesn't pin a specific version. Claude Code accepts
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// the dated-string scheme used by the MCP spec.
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const supportedProtocolVersion = "2025-06-18"
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// serverInfo identifies the server back to the client during the
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// initialize handshake. The version is intentionally kept generic so
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// it doesn't need bumping per release; clients only key behavior off
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// name + protocol version.
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var serverInfo = map[string]any{
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"name": "patterm",
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"version": "0.1.0",
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}
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// toolDescriptor is the shape returned by `tools/list`. inputSchema is
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// a JSON Schema object — we provide a minimal `{type: "object"}` schema
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// for each tool, which lets MCP clients accept arbitrary arguments and
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// rely on patterm's own server-side validation for typing.
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type toolDescriptor struct {
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Name string `json:"name"`
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Description string `json:"description"`
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InputSchema map[string]any `json:"inputSchema"`
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}
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// objectSchema builds an inputSchema for a tool that takes an object
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// with the listed properties. required lists property names that must
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// be present; passing nil makes them all optional. We always emit a
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// concrete `properties` object (never null) because some MCP clients
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// reject schemas where `properties` is not an object.
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func objectSchema(properties map[string]any, required []string) map[string]any {
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if properties == nil {
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properties = map[string]any{}
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}
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s := map[string]any{
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"type": "object",
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"properties": properties,
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"additionalProperties": true,
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}
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if len(required) > 0 {
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s["required"] = required
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}
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return s
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}
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func stringProp(desc string) map[string]any {
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return map[string]any{"type": "string", "description": desc}
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}
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func numberProp(desc string) map[string]any {
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return map[string]any{"type": "number", "description": desc}
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}
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func integerProp(desc string) map[string]any {
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return map[string]any{"type": "integer", "description": desc}
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}
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func booleanProp(desc string) map[string]any {
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return map[string]any{"type": "boolean", "description": desc}
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}
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// toolCatalog is the full list advertised via tools/list. Descriptions
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// are intentionally short — clients are expected to fetch help() for
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// detail. Schemas mirror the param structs in tools.go.
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func toolCatalog() []toolDescriptor {
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return []toolDescriptor{
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{
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Name: "spawn_agent",
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Description: "Spawn a sub-agent from an agent preset and optionally seed it with initial instructions.",
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InputSchema: objectSchema(map[string]any{
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"agent": stringProp("Preset name (e.g. \"claude\", \"codex\")."),
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"agent_instructions": stringProp("Initial prompt typed into the agent after it's ready."),
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"name": stringProp("Display name for the new pane."),
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}, []string{"agent"}),
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},
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{
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Name: "spawn_process",
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Description: "Spawn a process: a terminal, a process preset, or a freeform argv command.",
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InputSchema: objectSchema(map[string]any{
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"kind": stringProp("\"terminal\" or \"command\"."),
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"preset": stringProp("Process preset name (mutually exclusive with argv)."),
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"argv": map[string]any{"type": "array", "items": map[string]any{"type": "string"}, "description": "Argv vector for freeform commands."},
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"name": stringProp("Display name for the pane."),
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"working_dir": stringProp("Working directory for the spawned process."),
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"env": map[string]any{"type": "object", "additionalProperties": map[string]any{"type": "string"}, "description": "Extra environment variables."},
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"shell": booleanProp("Run argv through sh -lc."),
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}, nil),
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},
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{
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Name: "start_process",
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Description: "(Re)attach a PTY to a session-persistent command process that has exited.",
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InputSchema: objectSchema(map[string]any{
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"process_id": stringProp("Target process id."),
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}, []string{"process_id"}),
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},
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{
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Name: "restart_process",
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Description: "Signal the target process and restart it under a fresh PTY.",
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InputSchema: objectSchema(map[string]any{
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"process_id": stringProp("Target process id."),
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"signal": integerProp("Signal to send before relaunch (default SIGTERM)."),
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}, []string{"process_id"}),
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},
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{
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Name: "stop_process",
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Description: "Send a signal to a running process without removing its entry.",
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InputSchema: objectSchema(map[string]any{
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"process_id": stringProp("Target process id."),
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"signal": integerProp("Signal to send (default SIGTERM)."),
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}, []string{"process_id"}),
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},
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{
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Name: "close_process",
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Description: "Remove the process entry entirely; live children are SIGKILL'd first.",
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InputSchema: objectSchema(map[string]any{
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"process_id": stringProp("Target process id."),
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}, []string{"process_id"}),
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},
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{
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Name: "rename_process",
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Description: "Rename the pane label for a process.",
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InputSchema: objectSchema(map[string]any{
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"process_id": stringProp("Target process id."),
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"name": stringProp("New display name."),
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}, []string{"process_id", "name"}),
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},
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{
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Name: "select_process",
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Description: "Focus the named process in the host TUI.",
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InputSchema: objectSchema(map[string]any{
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"process_id": stringProp("Target process id."),
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}, []string{"process_id"}),
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},
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{
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Name: "list_processes",
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Description: "List visible processes, optionally filtered by kind (\"agent\", \"command\", \"terminal\").",
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InputSchema: objectSchema(map[string]any{
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"kind": stringProp("Optional kind filter."),
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}, nil),
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},
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{
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Name: "get_process_status",
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Description: "Return rich status (status, geometry, cursor, screen version) for one process.",
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InputSchema: objectSchema(map[string]any{
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"process_id": stringProp("Target process id."),
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}, []string{"process_id"}),
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},
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{
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Name: "get_project_status",
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Description: "One-shot orientation: project, caller, processes, scratchpads.",
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InputSchema: objectSchema(nil, nil),
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},
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{
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Name: "get_process_output",
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Description: "Read rendered grid (\"grid\") or scrollback (\"scrollback\") output, with screen-version watermark.",
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InputSchema: objectSchema(map[string]any{
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"process_id": stringProp("Target process id."),
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"mode": stringProp("\"grid\" (default) or \"scrollback\"."),
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"since_offset": integerProp("Watermark offset from a previous call."),
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}, []string{"process_id"}),
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},
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{
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Name: "get_process_raw_output",
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Description: "Read the raw ANSI byte stream since since_offset.",
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InputSchema: objectSchema(map[string]any{
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"process_id": stringProp("Target process id."),
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"since_offset": integerProp("Byte offset from a previous call."),
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}, []string{"process_id"}),
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},
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{
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Name: "search_output",
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Description: "Search a process's rendered or raw output and return matching lines.",
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InputSchema: objectSchema(map[string]any{
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"process_id": stringProp("Target process id."),
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"pattern": stringProp("Regex pattern."),
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"kind": stringProp("\"rendered\" (default) or \"raw\"."),
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"limit": integerProp("Max matches (default 20)."),
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}, []string{"process_id", "pattern"}),
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},
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{
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Name: "wait_for_pattern",
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Description: "Block until pattern appears in process output or timeout elapses.",
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InputSchema: objectSchema(map[string]any{
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"process_id": stringProp("Target process id."),
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"pattern": stringProp("Regex pattern."),
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"timeout_seconds": numberProp("Max time to wait (seconds)."),
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"scope": stringProp("\"new\" (default) or \"all\"."),
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}, []string{"process_id", "pattern"}),
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},
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{
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Name: "get_process_ports",
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Description: "Return URL-form port sightings observed in a process's output.",
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InputSchema: objectSchema(map[string]any{
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"process_id": stringProp("Target process id."),
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}, []string{"process_id"}),
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},
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{
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Name: "send_input",
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Description: "Type text, paste a block, or fire a named key into a process. Optional tail-after-send.",
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InputSchema: objectSchema(map[string]any{
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"process_id": stringProp("Target process id."),
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"kind": stringProp("\"text\", \"paste\", or \"key\"."),
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"text": stringProp("Text payload for kind=text/paste."),
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"key": stringProp("Named key for kind=key (e.g. \"enter\", \"esc\")."),
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"submit": booleanProp("Whether to append a submit keystroke."),
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"wait_ms": integerProp("After sending, wait this many ms before tailing."),
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"tail_mode": stringProp("\"none\" (default), \"stream\", or \"grid\"."),
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}, []string{"process_id", "kind"}),
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},
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{
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Name: "send_message",
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Description: "Deliver a text message to another process as orchestrator-owned input.",
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InputSchema: objectSchema(map[string]any{
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"target_process_id": stringProp("Recipient process id."),
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"message": stringProp("Message body."),
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}, []string{"target_process_id", "message"}),
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},
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{
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Name: "request_human_attention",
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Description: "Flag a process pane as needing human review.",
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InputSchema: objectSchema(map[string]any{
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"process_id": stringProp("Target process id."),
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"reason": stringProp("Short description shown to the human."),
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}, []string{"process_id", "reason"}),
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},
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{
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Name: "timer_wait",
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Description: "Sleep server-side for `seconds` and return a timer id (use to pace polling).",
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InputSchema: objectSchema(map[string]any{
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"seconds": numberProp("Sleep duration."),
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"label": stringProp("Optional label for diagnostics."),
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}, []string{"seconds"}),
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},
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{
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Name: "scratchpad_list",
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Description: "List shared per-project scratchpad entries.",
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InputSchema: objectSchema(nil, nil),
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},
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{
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Name: "scratchpad_read",
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Description: "Read a scratchpad entry, returning content and revision.",
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InputSchema: objectSchema(map[string]any{
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"name": stringProp("Scratchpad name."),
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}, []string{"name"}),
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},
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{
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Name: "scratchpad_write",
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Description: "Write a scratchpad entry with optimistic concurrency on expected_revision.",
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InputSchema: objectSchema(map[string]any{
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"name": stringProp("Scratchpad name."),
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"content": stringProp("New content."),
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"expected_revision": stringProp("Last-seen revision token."),
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}, []string{"name", "content"}),
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},
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{
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Name: "scratchpad_append",
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Description: "Append to a scratchpad entry without revision checking.",
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InputSchema: objectSchema(map[string]any{
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"name": stringProp("Scratchpad name."),
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"content": stringProp("Text to append."),
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}, []string{"name", "content"}),
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},
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{
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Name: "whoami",
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Description: "Return the caller's identity, role, parent, project metadata, and available tools.",
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InputSchema: objectSchema(nil, nil),
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},
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{
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Name: "help",
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Description: "Return human-readable help for a topic (e.g. tool name).",
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InputSchema: objectSchema(map[string]any{
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"topic": stringProp("Topic or tool name (empty for index)."),
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}, nil),
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},
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}
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}
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// handleProtocolMethod handles MCP protocol-level methods. Returns
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// (result, handled). When handled is false, the caller falls back to
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// the legacy direct-tool dispatch. For notifications, result is nil
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// and handled is true.
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func (s *Server) handleProtocolMethod(callerID, method string, params json.RawMessage, isNotification bool) (any, bool, int, string, any) {
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switch method {
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case "initialize":
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var p struct {
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ProtocolVersion string `json:"protocolVersion"`
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Capabilities map[string]any `json:"capabilities"`
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ClientInfo map[string]any `json:"clientInfo"`
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}
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_ = unmarshalParamsOptional(params, &p)
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protoVersion := p.ProtocolVersion
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if protoVersion == "" {
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protoVersion = supportedProtocolVersion
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}
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result := map[string]any{
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"protocolVersion": protoVersion,
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"capabilities": map[string]any{
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"tools": map[string]any{"listChanged": false},
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},
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"serverInfo": serverInfo,
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}
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return result, true, 0, "", nil
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case "notifications/initialized", "notifications/cancelled", "notifications/roots/list_changed":
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// Notifications get no response — handled is true so the caller
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// doesn't fall through to legacy dispatch, but result is nil.
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return nil, true, 0, "", nil
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case "ping":
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return map[string]any{}, true, 0, "", nil
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case "tools/list":
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return map[string]any{"tools": toolCatalog()}, true, 0, "", nil
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case "tools/call":
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var p struct {
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Name string `json:"name"`
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Arguments json.RawMessage `json:"arguments"`
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}
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if err := unmarshalParams(params, &p); err != nil {
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return nil, true, codeInvalidParams, err.Error(), nil
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}
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if p.Name == "" {
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return nil, true, codeInvalidParams, "tools/call: name required", nil
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}
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s.mu.Lock()
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host := s.host
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s.mu.Unlock()
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if host == nil {
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return nil, true, codeInternal, "patterm: tool host not initialized", nil
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}
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result, code, errMsg, data := callTool(host, callerID, p.Name, p.Arguments)
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if errMsg != "" {
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// MCP convention: errors during tool execution come back as
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// successful tools/call results with isError=true, so the
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// model sees the failure as content rather than a transport
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// error. Genuine transport errors (parse, etc.) stay as
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// JSON-RPC errors and are handled outside this branch.
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content := errMsg
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if data != nil {
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if kindMap, ok := data.(map[string]string); ok {
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if k, present := kindMap["kind"]; present && k != "" {
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content = fmt.Sprintf("%s (%s)", errMsg, k)
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}
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}
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}
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_ = code // code stays useful for legacy callers; tools/call surfaces text.
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return map[string]any{
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"content": []map[string]any{{"type": "text", "text": content}},
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"isError": true,
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}, true, 0, "", nil
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}
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return wrapToolResult(result), true, 0, "", nil
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case "resources/list":
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// We don't expose resources; respond with an empty list rather
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// than a method-not-found to keep clients happy.
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return map[string]any{"resources": []any{}}, true, 0, "", nil
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case "prompts/list":
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return map[string]any{"prompts": []any{}}, true, 0, "", nil
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case "logging/setLevel":
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return map[string]any{}, true, 0, "", nil
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}
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return nil, false, 0, "", nil
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}
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// wrapToolResult turns a structured tool result into an MCP tools/call
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// response. Plain strings (e.g. "ok") become text content; structured
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// values are JSON-encoded into a single text block and also exposed
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// under structuredContent so capable clients can read the shape.
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func wrapToolResult(result any) map[string]any {
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var text string
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switch v := result.(type) {
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case nil:
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text = "ok"
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case string:
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text = v
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default:
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b, err := json.Marshal(v)
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if err != nil {
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text = fmt.Sprintf("%v", v)
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} else {
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text = string(b)
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}
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}
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out := map[string]any{
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"content": []map[string]any{{"type": "text", "text": text}},
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"isError": false,
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}
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if result != nil {
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switch result.(type) {
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case string:
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// Skip — plain string already lives in content.
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default:
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out["structuredContent"] = result
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}
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}
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return out
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}
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