- the function that calls every reducer (and the action queue) is written in the program's own file: in the first action's file it belonged to that module, depended on every module with a reducer, and joined a game's modules into one 69-module cycle (examples/actions/modules and a ludic deps case hold it); the state instances, the queue and the reducers make no deps edges - ludicc --check / ludic build --check lower the program too and write nothing, so the code writer's refusals are in it: a bind to a function that is gone, an unknown name (and the checker now refuses fn <missing> itself); rejects bind_missing_fn, unknown_name, registry_count_key - def R count is refused: its constant would be PREFIX_COUNT, the registry's size - a file's module, package, trust and numbers-float are tables, and from the check on the lookups of functions, enums, records, globals and externs are too (tagged enums kept as a list): Maroon Lake's check-only build went from about 20 s to 7 s including lowering, its IR from about 2 minutes to under 10 s; duplicate declarations are found by table, not a pair of loops - threads.ludic's pool check gives each call a little work, so a busy machine cannot run them all on the caller before a worker wakes (it failed one run in three under load) Co-Authored-By: Claude Opus 5.5 <noreply@anthropic.com>
76 lines
3.3 KiB
Text
76 lines
3.3 KiB
Text
# emit_vis.ludic — L3: module scope. A file belongs to the module its own `module NAME` line or
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# its importer's names (frontend/parse.ludic, module_of); a file in no module is public. A
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# reference from one module to another module's function, global, record or event needs that
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# declaration `export`ed, and - when the referring module says `uses` - that module (or, for a
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# package with no module line, the package) named there (frontend/modules.ludic), unless the
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# referring module is a friend of it (a test harness). The engine's runtime needs no naming.
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# LUDIC_VIS_REPORT=1 prints every violation as `vis: <file>: <module>.<name>` (a private name) or
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# `uses: <file>: ...` (a module not in the uses list) and goes on, so a tool can add the exports
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# and the uses a codebase needs before the rule is switched on for it.
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var g_vis_report: int = -1
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var g_vis_off: bool = false # a port's binding: checked where it is written (ports.ludic)
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function vis_reporting() -> bool {
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if g_vis_report < 0 {
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g_vis_report = 0
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if getenv("LUDIC_VIS_REPORT") != null { g_vis_report = 1 }
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}
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return g_vis_report == 1
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}
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# `what` is the name as written at the reference
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# a generic function's instance is named for its type arguments (grow$int); a message names grow
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function vis_plain(what: pointer) -> pointer {
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var i = 0
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while i < len(what) {
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if what[i] == '$' { return what[0 .. i] }
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i += 1
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}
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return what
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}
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function vis_say(m: pointer) -> void {
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file_write(file_stderr(), m, len(m))
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}
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# does s start with p - without making the slice a comparison of s[0 .. n] would (asked for every
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# reference)
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function str_prefix(s: pointer, p: pointer) -> bool {
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if s == null { return false }
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let n = len(p)
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if len(s) < n { return false }
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var i = 0
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while i < n {
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if s[i] != p[i] { return false }
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i += 1
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}
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return true
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}
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function vis_check(d: Node, what0: pointer) -> void {
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if d == null { return }
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port_check_bound(d)
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# 0.S/0.R: a state's instance, the action queue and a reducer are the runtime's to supply and to
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# call - the code that names them depends on no module for it
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if d.kind == N_VAR and d.uns == 1 and str_prefix(d.s, "state$") and is_state_ty(d.ty) { return }
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if d.kind == N_FN and (str_prefix(d.s, "ludic_reduce__") or is_action_builtin(d.s)) { return }
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deps_edge(d, what0) # LUDIC_DEPS: the graph ludic deps reads (emit_deps.ludic)
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if g_vis_off { return }
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if d.file == null { return }
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let what = vis_plain(what0)
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var here = g_err_file
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if here == null { return }
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let from = module_of(here)
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let uto = module_for_uses(d.file)
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if not (uto == "") and not (from == uto) and not module_friend_of(from, uto) and not module_may_use(from, uto) {
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if vis_reporting() {
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vis_say(`uses: {d.file}:{itoa(d.line)}: {uto}.{what} used from {here} (module {from})\n`)
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} else {
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perr(`{from} uses {uto}.{what} ({d.file}:{itoa(d.line)}): add 'uses {uto}' to {from}'s module line, or take it through a port`)
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}
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}
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let to = module_of(d.file)
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if (to == "") or (from == to) { return }
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if module_friend_of(from, to) { return }
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if d.vis == 1 { return }
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if vis_reporting() {
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vis_say(`vis: {d.file}:{itoa(d.line)}: {to}.{what} used from {here}\n`)
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return
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}
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perr(`{what} is private to module {to}; mark it 'export' where it is declared ({d.file})`)
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}
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