ludic/selfhost/frontend/modules.ludic
Orkuncakilkaya f4533331e7 feat(lang): module NAME uses A, B - a module reaches only the modules it names
A reference from a module that declares uses into a module it does not
name is refused, exported or not, naming the use and the fix. A module
with no uses clause keeps the old rule; a package's module is always
usable; a friend is not held to it; a cycle in the declared graph is
refused; LUDIC_VIS_REPORT=1 lists the violations as uses: lines. Reseed.

Co-Authored-By: Claude Opus 5.5 <noreply@anthropic.com>
2026-09-25 04:06:45 +03:00

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# modules.ludic — L3 the module graph. `module fishing uses base, data` says which other modules
# fishing may reach at all: a reference from fishing into a module it does not name is refused
# (backend/emit_vis.ludic), exported or not, unless fishing is a friend of that module. A module
# that says no `uses` keeps the old rule (anything exported), so the rule comes in one module at a
# time. A package's module (found through ludic_modules or the toolchain) is always usable, and
# the declared graph may not have a cycle.
#
# `friend module lab` sees every module's private names; `friend module lab of fishing, data`
# sees only those modules'.
var g_mu_mod: []pointer = new []pointer # a module that said `uses`
var g_mu_list: []pointer = new []pointer # ",a,b," - what it may use (union of its lines)
var g_mu_file: []pointer = new []pointer # where it said so first
var g_mu_line: []int = new []int
var g_fr_scope: []pointer = new []pointer # per g_mod_friends entry: "" for all, else ",a,b,"
var g_pkg_files: []pointer = new []pointer # files that belong to a package, not the project
var g_pkg_mods: []pointer = new []pointer # modules declared in a package's files
function mod_list_has(list: pointer, name: pointer) -> bool {
return has_sub(list, `,{name},`)
}
function mod_find_uses(m: pointer) -> int {
var i = 0
while i < len(g_mu_mod) {
if (g_mu_mod[i] == m) { return i }
i += 1
}
return -1
}
# `A, B, C` after `uses` / `of`, as ",A,B,C,"
function mod_parse_names() -> pointer {
var out = ","
out = out + eat_id() + ","
while is_op(",") {
pi += 1
out = out + eat_id() + ","
}
return out
}
# `module NAME [uses A, B]`
function mod_parse_line() -> void {
pi += 1
let name = eat_id()
module_set(g_parse_file, name)
if is_pkg_file(g_parse_file) and not mod_is_pkg(name) { push(g_pkg_mods, name) }
if not is_id("uses") { return }
let ln = toks[pi].line
pi += 1
let list = mod_parse_names()
let k = mod_find_uses(name)
if k >= 0 {
g_mu_list[k] = g_mu_list[k] + list
return
}
push(g_mu_mod, name)
push(g_mu_list, list)
push(g_mu_file, g_parse_file)
push(g_mu_line, ln)
}
# `friend module NAME [of A, B]`
function mod_parse_friend() -> void {
pi += 2
let fm = eat_id()
module_set(g_parse_file, fm)
let scope = ""
push(g_mod_friends, fm)
push(g_fr_scope, scope)
}
# may `from` see `to`'s private names?
function module_friend_of(from: pointer, to: pointer) -> bool {
var i = 0
while i < len(g_mod_friends) {
if (g_mod_friends[i] == from) {
if (g_fr_scope[i] == "") or mod_list_has(g_fr_scope[i], to) { return true }
}
i += 1
}
return false
}
function is_pkg_file(f: pointer) -> bool {
var i = 0
while i < len(g_pkg_files) {
if (g_pkg_files[i] == f) { return true }
i += 1
}
return false
}
function mod_is_pkg(m: pointer) -> bool {
var i = 0
while i < len(g_pkg_mods) {
if (g_pkg_mods[i] == m) { return true }
i += 1
}
return false
}
# may module `from` reach into module `to` at all? (L3 uses; the export rule is separate)
function module_may_use(from: pointer, to: pointer) -> bool {
if (from == "") or (to == "") or (from == to) { return true }
if mod_is_pkg(to) { return true }
let k = mod_find_uses(from)
if k < 0 { return true }
return mod_list_has(g_mu_list[k], to)
}
# the names in ",a,b," as a slice
function mod_names(list: pointer) -> []pointer {
let out = new []pointer
var a = 1
var j = 1
while j < len(list) {
if list[j] == ',' {
if j > a { push(out, list[a .. j]) }
a = j + 1
}
j += 1
}
return out
}
# the declared uses graph has no cycle: a depth-first walk that carries its path, "a -> b -> "
var g_mu_done: pointer = "," # modules whose every path is known to end
function mod_walk(m: pointer, path: pointer, first: pointer) -> void {
if has_sub(`-> {path}`, `-> {m} -> `) {
let k0 = mod_find_uses(first)
g_err_file = g_mu_file[k0]
g_err_line = g_mu_line[k0]
perr(`the modules' uses go round in a circle: {path}{m}; one of them has to take the other through a port`)
}
if has_sub(g_mu_done, `,{m},`) { return }
let k = mod_find_uses(m)
if k < 0 { return }
let next = mod_names(g_mu_list[k])
var n = 0
while n < len(next) {
mod_walk(next[n], `{path}{m} -> `, first)
n += 1
}
g_mu_done = g_mu_done + m + ","
}
function modules_finish() -> void {
let saved = g_parsing
g_parsing = false
var i = 0
while i < len(g_mu_mod) {
mod_walk(g_mu_mod[i], "", g_mu_mod[i])
i += 1
}
g_parsing = saved
}