Bridges the OTP callback boundary: a framework call through a variable module — cowboy's Handler:init / Middleware:execute folds, a plugin manager's Mod:callback(...) — now links to the repo's implementers of the behaviour declaring that callback, so codegraph_explore connects flows end-to-end across behaviour dispatch instead of stopping at it. Precision gates: the callback arity must match the site, exactly one in-repo behaviour may declare that (name, arity) — a collision bails (cowboy's init/2 is declared by five handler-flavored behaviours and correctly stays silent) — the implementer must export the callback, and above the fan-out cap the site is skipped entirely (ejabberd's gen_mod with ~230 implementers stays a visibly dynamic boundary). Behaviour discovery scans -callback declarations in every module so implementer-less behaviours still gate ambiguity. Edges carry provenance:'heuristic' with synthesizedBy:'erlang-behaviour' and the wiring site, rendered as dynamic dispatch in explore. Validated per the dispatch-family playbook: cowboy 38 edges (middleware chain, stream-handler folds, sub-protocol upgrade), ejabberd 598, emqx 843; 36/36 sampled edges precise (target declares the via-behaviour and exports the callback); node counts unchanged; ~1.4s added on emqx's 2,273 files; zero-control clean. The cowboy request flow connects in one explore call. Includes an Erlang comment stripper (%-comments, string/atom/$-char aware) for the dispatch-site scans. Co-authored-by: Claude Fable 5 <noreply@anthropic.com>
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@@ -11,6 +11,7 @@ and adheres to [Semantic Versioning](https://semver.org/spec/v2.0.0.html).
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### New Features
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- Erlang behaviour dispatch is now followed through the graph: a framework call through a variable module — cowboy's `Handler:init`/`Middleware:execute` folds, a plugin manager's `Mod:callback(...)` — links to the repo's implementations of the behaviour that declares that callback, so flow traces and impact cross the OTP callback boundary instead of stopping at it. The links are precision-gated: the callback arity must match, exactly one behaviour may own that callback shape (a collision stays unlinked rather than guessed), the implementer must actually export the callback, and the fan-out is bounded — a behaviour with hundreds of implementers stays a visibly dynamic boundary. Every bridged hop is labeled as dynamic dispatch with its wiring site, never shown as a plain static call.
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- CodeGraph now indexes **Erlang** (`.erl`, `.hrl`) — functions, with clauses and arities of the same name grouped as one symbol spanning all of them, plus records with their fields, `-type`/`-opaque` aliases, `-define` macros, and `-spec` signatures attached to every function. Cross-module `mod:fn(...)` calls resolve to the target module's function, `fun name/arity` values are captured as references (so callback registrations like `lists:foreach(fun submit/1, ...)` link up), `-include`/`-include_lib` connect to the header files they pull in, `-behaviour` declarations link a callback module to its behaviour (and only ever to a module — a same-named macro or function elsewhere in the repo is never mistaken for one), and `-export` lists (plus `-compile(export_all)`) drive each function's public/private flag. OTP's indirection idioms are followed where the target is static: `spawn`/`apply`/`proc_lib`/`timer`/`rpc` calls that name their target as `(Module, Function, Args)` arguments produce call edges, and a module's public API wrappers connect to its own `handle_call`/`handle_cast` when `gen_server:call`/`cast` targets `?MODULE` (including the `-define(SERVER, ?MODULE)` idiom). Truly dynamic dispatch (`Mod:handle(...)`, message sends, var-module spawns) is deliberately left unlinked rather than guessed. `codegraph_explore` also understands Erlang-native symbol spelling in queries — `mod:fn/3` and `init/2` find the symbols they name. (#635, #648)
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- CodeGraph now indexes **Visual Basic .NET** (`.vb`) — classes, Modules, interfaces, structures, enums, properties, events, `MustOverride` abstract members, and `Declare` P/Invoke signatures, with `Inherits`/`Implements` hierarchy edges, call edges (resolved through VB's ambiguous call-vs-index parentheses), and `New`/`As New` instantiation links. Real-world VB styles parse cleanly: WinForms designer files, interpolated and multi-line strings, XML literals (embedded `<%= %>` expressions included), single-line and multi-line LINQ queries, multi-line lambdas, `Handles`/`WithEvents` event wiring, Custom Events, date literals, classic type-character identifiers (`i%`, `name$`), and non-English (Unicode) identifiers. (#648, #639, #170)
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- CodeGraph now indexes **COBOL** (`.cbl`, `.cob`, `.cpy`) — programs, sections and paragraphs with `PERFORM`/`GO TO` call edges, `CALL` cross-program calls, `COPY` copybook imports (standalone copybooks included), and DATA DIVISION records with 88-level condition names, in both fixed and free source format. Impact queries work on data items: every `MOVE`/`ADD`/`COMPUTE`/`SUBTRACT` write-site links back to the field it changes, so "what touches this copybook field" answers across programs. CICS flows connect too: `EXEC CICS LINK`/`XCTL` program targets, `EXEC SQL INCLUDE` copybooks, and pseudo-conversational `RETURN TRANSID(...)` hops resolve to the program owning the transaction id. (#590, #648)
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