GoFrame's standard router binds routes reflectively (group.Bind(ctrl)): the path and method live in a g.Meta struct tag on a request type, and the controller method that serves it is matched by that request type at runtime — so there was no path string and no edge from a route to its handler, and "where is this route handled / where are routes bound to controllers?" could only be answered lexically (issue #720's report). - frameworks/goframe.ts: detect gogf/gf in go.mod, extract each path-bearing g.Meta into a route node (requires path:, so response mime:-only tags are skipped), encoding the package-qualified request type for the join. - goframe-synthesizer.ts: join each route -> the controller method whose signature takes that request type — NOT by name (DeptSearchReq is served by List) — keyed pkg.Type to disambiguate the many identical bare names a large app defines one-per-module, with an addon-root tiebreak for cloned demo addons. Edge kind calls, provenance heuristic, synthesizedBy goframe-route, surfaced as a dynamic-dispatch hop in codegraph_explore. Validated on real repos: gf-demo-user 7/7, gfast 65/68 (3 genuinely handler-less), hotgo 242/247 (98%) — 100% precision (0 non-controller handlers, 0 core/addon cross-binding), node count stable. Agent A/B (gfast, sonnet/high, 2 runs/arm): with codegraph 1 explore call / 0 Read / ~20s vs without 7.5 Read avg + grep-hunting for the non-existent literal route string / ~42s; same correct answer. Co-authored-by: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
145 lines
6.4 KiB
TypeScript
145 lines
6.4 KiB
TypeScript
/**
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* GoFrame route → controller-method dispatch synthesis (#747).
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*
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* GoFrame binds routes reflectively (`group.Bind(user.NewV1())`), so the route
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* declared in a request type's `g.Meta` tag has no static edge to the method
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* that serves it. The `goframeResolver` extract pass turns each `g.Meta` into a
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* `route` node carrying its request type in the qualifiedName; this whole-graph
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* pass closes the loop by joining each route to its handler.
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*
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* The join key is the REQUEST TYPE, not the method name — GoFrame method names
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* are free (`DeptSearchReq` is served by `List`, `DeptAddReq` by `Add`), so the
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* only reliable link is the request type appearing in the handler's parameter
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* signature:
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*
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* func (c *sysDeptController) Add(ctx context.Context, req *system.DeptAddReq) (…)
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* ^^^^^^^^^^^^^^^^ the join
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*
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* Go method nodes already carry that signature, so no source re-read is needed.
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* Each synthesized edge is `kind:'calls'`, `provenance:'heuristic'`,
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* `metadata.synthesizedBy:'goframe-route'` — a reflective-dispatch bridge, so
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* `codegraph_explore` surfaces it as a dynamic hop rather than a literal call,
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* and the handler's callers list the route that reaches it. A project with no
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* GoFrame routes is a no-op.
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*/
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import type { Edge, Node } from '../types';
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import type { ResolutionContext } from './types';
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import { GOFRAME_ROUTE_MARKER } from './frameworks/goframe';
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const FANOUT_CAP = 2000; // backstop only; real apps are 1 route → 1 method.
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/**
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* Pointer-parameter types in a Go method signature, in both qualified and bare
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* forms: `(ctx context.Context, req *cash.ListReq)` → `["cash.ListReq",
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* "ListReq"]`. The qualified form disambiguates the many identical bare names a
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* large app defines (one `ListReq` per module); the bare form is the fallback
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* for a same-package (unqualified) handler. The response pointer (`*cash.ListRes`)
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* is captured too but never matches a request type, so it drops out of the join.
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*/
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function pointerParamTypes(sig: string): string[] {
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const out: string[] = [];
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const re = /\*\s*(?:(\w+)\.)?([A-Z]\w*)\b/g;
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let m: RegExpExecArray | null;
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while ((m = re.exec(sig)) !== null) {
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if (m[1]) out.push(`${m[1]}.${m[2]}`);
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out.push(m[2]!);
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}
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return out;
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}
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/** The addon/plugin module a path lives under (`addons/hgexample/…` → `hgexample`),
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* or `''` for the core app. Large GoFrame apps ship demo addons that CLONE the
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* whole module tree — identical package names and request types — so the package
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* qualifier can't tell an addon's `config.GetReq` from core's. The addon root can. */
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function addonRoot(p: string): string {
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return /(?:^|\/)addons\/([^/]+)\//.exec(p)?.[1] ?? '';
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}
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/**
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* Pick the one handler for a route from same-request-type candidates. Usually a
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* single candidate. When several share the request type (a cloned addon module),
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* keep controller-dir methods, then the one in the route's own module (core route
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* → core handler, addon route → that addon's handler). Ambiguity left over ⇒ no
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* edge (silent beats wrong).
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*/
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function selectHandler(candidates: Node[], routeFile: string): Node | null {
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if (candidates.length === 1) return candidates[0]!;
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let cands = candidates.filter((h) => /\/controller(s)?\//.test(h.filePath));
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if (cands.length === 0) cands = candidates;
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if (cands.length === 1) return cands[0]!;
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const ar = addonRoot(routeFile);
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const sameModule = cands.filter((h) => addonRoot(h.filePath) === ar);
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return sameModule.length === 1 ? sameModule[0]! : null;
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}
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export function goframeRouteEdges(ctx: ResolutionContext): Edge[] {
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// Route nodes the goframe extractor created, keyed by their package-qualified
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// request type (`cash.ListReq`). `wanted` holds every key a handler signature
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// could match — the qualified form plus its bare type fallback.
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const routesByReqType = new Map<string, Node[]>();
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const wanted = new Set<string>();
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for (const route of ctx.getNodesByKind('route')) {
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if (route.language !== 'go') continue;
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const marker = route.qualifiedName.indexOf(GOFRAME_ROUTE_MARKER);
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if (marker < 0) continue;
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const joinKey = route.qualifiedName.slice(marker + GOFRAME_ROUTE_MARKER.length);
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if (!joinKey) continue;
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let arr = routesByReqType.get(joinKey);
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if (!arr) { arr = []; routesByReqType.set(joinKey, arr); }
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arr.push(route);
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wanted.add(joinKey);
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const dot = joinKey.lastIndexOf('.');
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if (dot >= 0) wanted.add(joinKey.slice(dot + 1)); // bare fallback
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}
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if (routesByReqType.size === 0) return [];
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// Handler candidates: Go methods whose signature takes a wanted request type by
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// pointer, indexed by every matching (qualified + bare) form so a route can
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// match precisely on `pkg.Type` and fall back to the bare `Type`.
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const handlersByKey = new Map<string, Node[]>();
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for (const method of ctx.getNodesByKind('method')) {
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if (method.language !== 'go' || !method.signature) continue;
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for (const t of pointerParamTypes(method.signature)) {
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if (!wanted.has(t)) continue;
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let arr = handlersByKey.get(t);
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if (!arr) { arr = []; handlersByKey.set(t, arr); }
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arr.push(method);
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}
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}
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const edges: Edge[] = [];
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const seen = new Set<string>();
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let added = 0;
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for (const [joinKey, routes] of routesByReqType) {
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const bare = joinKey.includes('.') ? joinKey.slice(joinKey.lastIndexOf('.') + 1) : joinKey;
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// Precise package-qualified match first; bare type only as a fallback (covers
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// a same-package handler or an aliased import where the bare name is unique).
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const candidates = handlersByKey.get(joinKey) ?? handlersByKey.get(bare);
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if (!candidates || candidates.length === 0) continue;
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const requestType = bare;
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for (const route of routes) {
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const handler = selectHandler(candidates, route.filePath);
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if (!handler || route.id === handler.id) continue;
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const key = `${route.id}>${handler.id}`;
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if (seen.has(key) || added >= FANOUT_CAP) continue;
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seen.add(key);
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edges.push({
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source: route.id,
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target: handler.id,
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kind: 'calls',
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line: route.startLine,
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provenance: 'heuristic',
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metadata: {
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synthesizedBy: 'goframe-route',
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route: route.name,
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requestType,
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registeredAt: `${handler.filePath}:${handler.startLine}`,
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},
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});
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added++;
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}
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}
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return edges;
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}
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