compiler: make package exports self-contained
This commit is contained in:
@@ -4012,6 +4012,14 @@ fn ffiresolve(c: *cgen, ident: str) str = {
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return ident;
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};
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// The compiler intrinsic `alloc` has a package-mode runtime ABI independent
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// of whichever transitive interfaces happen to be present. Raw w6c remains
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// declaration-driven so existing @symbol/FFI behavior is unchanged.
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fn allocresolve(c: *cgen) str = {
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if (c.sepmode != 0) { return "rt_malloc"; };
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return ffiresolve(c, "malloc");
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};
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fn argregname(i: i32) str = {
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if (i == 0) { return "DI"; };
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if (i == 1) { return "SI"; };
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@@ -6242,7 +6242,7 @@ fn cgalloc(c: *cgen, n: *syntax.node) void = {
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emitint(sz: i64);
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emitline(", DI\n");
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emitline("\tCALL\t");
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emitline(ffiresolve(c, "malloc"));
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emitline(allocresolve(c));
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emitline("(SB)\n");
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emitline("\tCMPQ\t$0, AX\n");
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emitline("\tJNE\t"); emitline(okl); emitline("\n");
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@@ -2276,7 +2276,7 @@ fn cgletbody(c: *cgen, n: *syntax.node, off: i32) void = {
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};
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emitline("\tMOVQ\tAX, DI\n");
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emitline("\tCALL\t");
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emitline(ffiresolve(c, "malloc"));
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emitline(allocresolve(c));
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emitline("(SB)\n");
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if (viatryunw) {
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let okl: str = mklabel(c, "tryunw_ok");
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@@ -518,6 +518,21 @@ fn installdecl(c: *checker, file: *syntax.node, d: *syntax.node) void = {
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// checkinit-synthesized N_TYPEDECL with an empty .file) — user decls
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// always carry their parsed source file.
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fn installtop(c: *checker, d: *syntax.node, nm: str, mod: str, k: syntax.skind, kind: str) void = {
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// A self-contained interface can carry the same origin-owned type/def
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// fact through both arms of a dependency diamond. In -c package mode,
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// reuse the first exact compiler-export binding so all references obtain
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// one nominal tinfo identity. Raw w6c keeps strict duplicate diagnostics.
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if (c.sepmode != 0 && d.imported != 0 && d.exported != 0 && mod.len > 0) {
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if (k == syntax.skind.SK_TYPE || k == syntax.skind.SK_DEF) {
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let same: *syntax.sym = syntax.scopesamekeysym(c.top, nm, mod);
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if (same != nil) {
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if (same.skind == k && same.decl != nil && same.decl != d
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&& same.decl.imported != 0 && same.decl.exported != 0) {
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return;
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};
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};
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};
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};
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// #30: a top-level value/type decl whose leaf ALSO names an imported
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// module PROMOTES that same-leaf SK_USE in place — one correctly-kinded
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// sym carrying use_alias=1, so bare refs (call/structlit/var) resolve to
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@@ -638,6 +653,17 @@ fn resolvewalk(c: *checker, n: *syntax.node) void = {
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// `use IDENT;` — name is a module label, not a free ident.
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if (k == syntax.nkind.N_USE) { return; };
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// `_ = rhs` is a discard assignment. The parser represents `_` as an
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// empty identifier; it is an lvalue marker, not an unresolved package
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// value. Evaluate the rhs for its normal checks and never send the blank
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// lhs through ordinary identifier resolution (cstage N_ASSIGN twin).
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if (k == syntax.nkind.N_ASSIGN && n.lhs != nil) {
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if (n.lhs.kind == syntax.nkind.N_IDENT && n.lhs.str.len == 0) {
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if (n.rhs != nil) { resolvewalk(c, n.rhs); };
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return;
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};
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};
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if (k == syntax.nkind.N_IDENT) {
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let nm: str = n.str;
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if (nm.len > 0) {
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@@ -663,6 +689,12 @@ fn resolvewalk(c: *checker, n: *syntax.node) void = {
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};
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if (k == syntax.nkind.N_TNAME) {
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// A declaration-owned type reference may be revisited when its AST
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// is propagated as an inferred consumer type. Its canonical tinfo was
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// resolved while c.curmod named the declaring package; retain that
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// compiler fact instead of reinterpreting the spelling as consumer
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// source (which would incorrectly require a transitive import).
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if (c.sepmode != 0 && n.type_ != nil) { c.nresolved += 1; return; };
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let nm: str = n.str;
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if (nm.len > 0) {
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let s: *syntax.sym = lookupvisibletype(c, nm);
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@@ -695,7 +727,7 @@ fn resolvewalk(c: *checker, n: *syntax.node) void = {
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};
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};
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if (s == nil && !builtin) {
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if (syntax.scopelookup(c.cur, nm) != nil) {
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if (c.sepmode != 0 || syntax.scopelookup(c.cur, nm) != nil) {
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cerr(n.file); cerr(":");
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cerr(strconv.i32tos(n.line, strconv.base.DEC)); cerr(":");
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cerr(strconv.i32tos(n.col, strconv.base.DEC));
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@@ -981,7 +1013,15 @@ fn resolvewalk(c: *checker, n: *syntax.node) void = {
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};
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};
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let l: *syntax.node = n.list;
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for (l != nil) { resolvewalk(c, l); l = l.next; };
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for (l != nil) {
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// A blank multi-assignment target is the same discard marker as
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// `_ = rhs`, not a value lookup. stamptuplebinds below still
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// stamps its slot from the rhs tuple for downstream invariants.
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if (l.kind != syntax.nkind.N_IDENT || l.str.len != 0) {
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resolvewalk(c, l);
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};
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l = l.next;
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};
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stamptuplebinds(c, n.list, pt, false, "");
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return;
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};
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@@ -1006,6 +1046,13 @@ fn resolvewalk(c: *checker, n: *syntax.node) void = {
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return;
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};
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// Enum member value identifiers name prior siblings in the same enum;
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// they are not package-scope values. The enum-specific evaluator below
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// validates and folds the complete member list, then stampenumvals gives
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// every expression node its storage type. Do not feed those identifiers
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// through the ordinary package/local expression lookup.
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if (k == syntax.nkind.N_TENUMMEMBER) { return; };
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// Walk children (mirroring ast.ww's printer descent order).
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if (n.attr != nil) { resolvewalk(c, n.attr); };
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if (n.lhs != nil) { resolvewalk(c, n.lhs); };
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@@ -1724,6 +1771,22 @@ fn astunsized(c: *checker, t: *syntax.node) bool = {
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// call use it). The #241 `yield <binder>` fallback (the dominant
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// match-bind-then-yield idiom, Hare's parseint `case let t => yield t`)
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// stays, now resolving btype to a tinfo.
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fn exprusesname(n: *syntax.node, name: str) bool = {
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if (n == nil || name.len == 0) { return false; };
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if (n.kind == syntax.nkind.N_IDENT && syntax.streq(n.str, name)) {
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return true;
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};
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if (exprusesname(n.lhs, name) || exprusesname(n.rhs, name)
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|| exprusesname(n.cond, name) || exprusesname(n.body, name)
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|| exprusesname(n.els, name)) { return true; };
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let e: *syntax.node = n.list;
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for (e != nil) {
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if (exprusesname(e, name)) { return true; };
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e = e.next;
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};
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return false;
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};
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fn matchyieldtype(c: *checker, body: *syntax.node, bname: str, btype: *syntax.node,
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nodeout: **syntax.node) *syntax.tinfo = {
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if (body == nil) { return nil; };
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@@ -1746,6 +1809,19 @@ fn matchyieldtype(c: *checker, body: *syntax.node, bname: str, btype: *syntax.no
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};
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return body.lhs.type_: *syntax.tinfo;
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};
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// The pre-walk runs before the N_MCASE scope exists. Resolve the
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// declared arm binder from the case node directly; calling exprtype
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// first would misclassify this valid local as an undefined package
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// name now that -c rejects genuinely absent transitive values.
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if (body.lhs.kind == syntax.nkind.N_IDENT && bname.len > 0
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&& syntax.streq(body.lhs.str, bname)) {
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*nodeout = btype;
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return tinfofornode(c, btype);
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};
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// A derived expression such as `yield sub.len` also depends on the
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// arm scope. The pre-walk cannot type it yet; defer to the normal
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// in-scope N_MCASE walk, whose cached type_ the post-walk reads.
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if (exprusesname(body.lhs, bname)) { return nil; };
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let t: *syntax.node = exprtype(c, body.lhs, nil);
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if (t != nil) {
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*nodeout = t;
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@@ -2602,7 +2678,14 @@ fn tinfofornode(c: *checker, n: *syntax.node) *syntax.tinfo = {
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let named: *syntax.tinfo = syntax.typenamed(s.name, nil);
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s.type_ = named;
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named.resolving = 1;
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// Resolve a named declaration's body in the package that
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// owns it. A direct dependency's fact may be demanded while
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// walking a consumer-owned type; keeping the consumer module
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// here can bind bare names in the fact to the wrong package.
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let savedmod: str = c.curmod;
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c.curmod = s.mod;
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let under: *syntax.tinfo = tinfofornode(c, body);
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c.curmod = savedmod;
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// #62/#69: alias-root cycle (`type a = b;
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// type b = a` / `type a = a`) — checked
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// BEFORE clearing the flag so self-aliases
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@@ -3733,11 +3816,15 @@ fn exprtype(c: *checker, e: *syntax.node, hint: *syntax.node) *syntax.node = {
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// L2439, #53 at L688. Tracked in the cluster note at L685-687.
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let s: *syntax.sym = lookupvisible(c, e.str);
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if (s == nil) {
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// abort/assert are dedicated compiler builtins and intentionally
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// have no callee symbol; the surrounding N_CALL arm validates and
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// stamps them. Package-mode undefined checks must not preempt it.
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if (isassertfam(c, e)) { return nil; };
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// A same-named flattened symbol that fails lookupvisible is a
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// transitive implementation fact, not an unresolved external.
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// Diagnose it like cstage's N_IDENT path and stamp tyerr so
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// later call checking does not obscure the causal error.
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if (syntax.scopelookup(c.cur, e.str) != nil) {
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if (c.sepmode != 0 || syntax.scopelookup(c.cur, e.str) != nil) {
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cerr(e.file); cerr(":");
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cerr(strconv.i32tos(e.line, strconv.base.DEC)); cerr(":");
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cerr(strconv.i32tos(e.col, strconv.base.DEC));
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@@ -13,8 +13,9 @@
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// - check_exported_type rides the producer entry (flag-gated), off on
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// the normal `.s` path. It rejects exactly one thing: an exported
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// signature naming a non-exported nominal type.
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// - A `.wwi` is ONE package's interface; the emit filters to PRIMARY
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// decls (imported==0).
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// - A `.wwi` is ONE package's self-contained interface. Its primary
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// section is followed by compiler-owned origin sections containing the
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// exported foreign type/const facts reachable from the public surface.
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package wcc;
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@@ -72,8 +73,67 @@ fn wquote(fd: i32, s: str) void = {
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// resolve, no double error). A primitive/keyword resolves to no SK_TYPE
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// → leaf. By producer time checkfile has finished and c.cur == c.top.
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fn wwitypesym(c: *checker, nm: str) *syntax.sym = {
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fn wwimodeq(a: str, b: str) bool = {
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if (a.len == 0 || b.len == 0) { return a.len == b.len; };
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return syntax.streq(a, b);
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};
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// Map an import alias in the source package that owns the reference. The
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// flattened parser file contains every imported interface's N_USE nodes, so
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// this owner filter is what prevents cross-package alias capture.
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fn wwiusepath(c: *checker, owner: str, alias: str) str = {
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if (owner.len > 0) {
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let dotidx: i32 = -1;
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let i: i32 = 0;
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for (i < owner.len) {
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if (owner[i] == 46u8) { dotidx = i; };
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i += 1;
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};
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let leaf: str = owner;
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if (dotidx >= 0) {
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leaf.ptr = owner.ptr + ((dotidx + 1): u64);
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leaf.len = owner.len - dotidx - 1;
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};
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if (syntax.streq(alias, leaf)) { return owner; };
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};
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let u: *syntax.node = c.file.list;
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for (u != nil) {
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if (u.kind == syntax.nkind.N_USE && syntax.streq(u.str, alias)) {
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let same: bool = false;
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if (owner.len == 0) {
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same = u.imported == 0;
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} else {
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same = u.imported != 0 && syntax.streq(u.nmod, owner);
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};
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if (same) {
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if (u.usepath.len > 0) { return u.usepath; };
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return u.str;
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};
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};
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u = u.next;
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};
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let empty: str;
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return empty;
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};
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fn wwidirectmodvisible(c: *checker, owner: str, mod: str) bool = {
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if (mod.len == 0) { return false; };
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let dotidx: i32 = -1;
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let i: i32 = 0;
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for (i < mod.len) {
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if (mod[i] == 46u8) { dotidx = i; };
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i += 1;
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};
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let alias: str = mod;
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if (dotidx >= 0) {
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alias.ptr = mod.ptr + ((dotidx + 1): u64);
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alias.len = mod.len - dotidx - 1;
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};
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let path: str = wwiusepath(c, owner, alias);
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return path.len > 0 && syntax.streq(path, mod);
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};
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fn wwitypesym(c: *checker, owner: str, nm: str) *syntax.sym = {
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let dotidx: i32 = -1;
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let i: i32 = 0;
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for (i < nm.len) {
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@@ -88,20 +148,28 @@ fn wwitypesym(c: *checker, nm: str) *syntax.sym = {
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let leaf: str;
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leaf.ptr = nm.ptr + ((dotidx + 1): u64);
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leaf.len = nm.len - dotidx - 1;
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let u: *syntax.node = c.file.list;
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for (u != nil) {
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if (u.kind == syntax.nkind.N_USE && wwiprimary(u)) {
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if (syntax.streq(u.str, head)) {
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let mod: str = u.usepath;
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if (mod.len == 0) { mod = u.str; };
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s = syntax.scopelookupinmodule(c.cur, mod, leaf);
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break;
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};
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};
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u = u.next;
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let mod: str = wwiusepath(c, owner, head);
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if (mod.len > 0) {
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s = syntax.scopelookupinmodule(c.cur, mod, leaf);
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};
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} else {
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s = syntax.scopelookuptype(c.cur, empty, nm);
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s = syntax.scopelookuptype(c.cur, owner, nm);
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if (s == nil) {
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let p: *syntax.scope = c.cur;
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for (p != nil && s == nil) {
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let b: *syntax.sym = p.first;
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for (b != nil) {
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if (b.skind == syntax.skind.SK_TYPE
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&& syntax.streq(b.name, nm)
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&& wwidirectmodvisible(c, owner, b.mod)) {
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s = b;
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break;
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};
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b = b.snext;
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};
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p = p.parent;
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};
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};
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};
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if (s == nil) { return nil; };
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if (s.skind != syntax.skind.SK_TYPE) { return nil; };
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@@ -120,15 +188,15 @@ fn wwireject(d: *syntax.node, nm: str) void = {
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};
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// Returns 1 if a non-exported nominal was named (loud), else 0.
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fn wwichecktype(c: *checker, d: *syntax.node, t: *syntax.node) i32 = {
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fn wwichecktype(c: *checker, owner: str, d: *syntax.node, t: *syntax.node) i32 = {
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if (t == nil) { return 0; };
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// rule-10: the wwstage checker wraps N_TTUPLE.list elements in
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// N_TPARAM (ast.ww:101); cstage keeps the type-AST pristine. Unwrap
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// transparently so the recursion sees the same shape cstage walks.
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if (t.kind == syntax.nkind.N_TPARAM) { return wwichecktype(c, d, t.lhs); };
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if (t.kind == syntax.nkind.N_TPARAM) { return wwichecktype(c, owner, d, t.lhs); };
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let bad: i32 = 0;
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if (t.kind == syntax.nkind.N_TNAME) {
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let s: *syntax.sym = wwitypesym(c, t.str);
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let s: *syntax.sym = wwitypesym(c, owner, t.str);
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// sym.exported is vestigial (never set); the nominal's export
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// status lives on its decl node, parser-set.
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if (s != nil) {
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@@ -156,53 +224,54 @@ fn wwichecktype(c: *checker, d: *syntax.node, t: *syntax.node) i32 = {
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t.kind == syntax.nkind.N_TBANG ||
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t.kind == syntax.nkind.N_TCHAN
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) {
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bad = bad | wwichecktype(c, d, t.lhs);
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bad = bad | wwichecktype(c, owner, d, t.lhs);
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} else { if (t.kind == syntax.nkind.N_TARRAY) {
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// element only; the length is a const-expr, not a type.
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bad = bad | wwichecktype(c, d, t.lhs);
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bad = bad | wwichecktype(c, owner, d, t.lhs);
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} else { if (t.kind == syntax.nkind.N_TFN) {
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let p: *syntax.node = t.list;
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for (p != nil) {
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bad = bad | wwichecktype(c, d, p.lhs);
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bad = bad | wwichecktype(c, owner, d, p.lhs);
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p = p.next;
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};
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bad = bad | wwichecktype(c, d, t.lhs);
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bad = bad | wwichecktype(c, owner, d, t.lhs);
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} else { if (t.kind == syntax.nkind.N_TSTRUCT) {
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let f: *syntax.node = t.list;
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for (f != nil) {
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bad = bad | wwichecktype(c, d, f.lhs);
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bad = bad | wwichecktype(c, owner, d, f.lhs);
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f = f.next;
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};
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} else { if (t.kind == syntax.nkind.N_TTAGGED || t.kind == syntax.nkind.N_TTUPLE) {
|
||||
let e: *syntax.node = t.list;
|
||||
for (e != nil) {
|
||||
bad = bad | wwichecktype(c, d, e);
|
||||
bad = bad | wwichecktype(c, owner, d, e);
|
||||
e = e.next;
|
||||
};
|
||||
} else { if (t.kind == syntax.nkind.N_TENUM) {
|
||||
// the inline enum body is the definition, not a reference;
|
||||
// recurse only its storage type (members are values).
|
||||
bad = bad | wwichecktype(c, d, t.lhs);
|
||||
bad = bad | wwichecktype(c, owner, d, t.lhs);
|
||||
};};};};};};};
|
||||
return bad;
|
||||
};
|
||||
|
||||
fn wwicheckdecl(c: *checker, d: *syntax.node) i32 = {
|
||||
let owner: str;
|
||||
let bad: i32 = 0;
|
||||
if (d.kind == syntax.nkind.N_FNDECL) {
|
||||
let p: *syntax.node = d.list;
|
||||
for (p != nil) {
|
||||
bad = bad | wwichecktype(c, d, p.lhs);
|
||||
bad = bad | wwichecktype(c, owner, d, p.lhs);
|
||||
p = p.next;
|
||||
};
|
||||
bad = bad | wwichecktype(c, d, d.lhs);
|
||||
bad = bad | wwichecktype(c, owner, d, d.lhs);
|
||||
} else { if (d.kind == syntax.nkind.N_TYPEDECL) {
|
||||
bad = bad | wwichecktype(c, d, d.lhs);
|
||||
bad = bad | wwichecktype(c, owner, d, d.lhs);
|
||||
} else { if (d.kind == syntax.nkind.N_DEF) {
|
||||
// the declared type; the rhs const value is not a type.
|
||||
bad = bad | wwichecktype(c, d, d.lhs);
|
||||
bad = bad | wwichecktype(c, owner, d, d.lhs);
|
||||
} else { if (d.kind == syntax.nkind.N_LET) {
|
||||
bad = bad | wwichecktype(c, d, d.lhs);
|
||||
bad = bad | wwichecktype(c, owner, d, d.lhs);
|
||||
};};};};
|
||||
return bad;
|
||||
};
|
||||
@@ -303,10 +372,16 @@ fn wwiexpr(fd: i32, e: *syntax.node) void = {
|
||||
} else { if (e.kind == syntax.nkind.N_UN) {
|
||||
wputs(fd, syntax.tokname(e.op));
|
||||
wwiexpr(fd, e.lhs);
|
||||
} else { if (e.kind == syntax.nkind.N_CAST) {
|
||||
wputb(fd, '(');
|
||||
wwiexpr(fd, e.lhs);
|
||||
wputs(fd, ": ");
|
||||
wwitype(fd, e.rhs);
|
||||
wputb(fd, ')');
|
||||
} else {
|
||||
wputs(2, "wwi: unhandled const-expr node kind\n");
|
||||
os.exit(1);
|
||||
};};};};};};};};};};
|
||||
};};};};};};};};};};};
|
||||
};
|
||||
|
||||
fn wwiparam(fd: i32, p: *syntax.node) void = {
|
||||
@@ -501,7 +576,7 @@ fn wwidecl(fd: i32, d: *syntax.node) void = {
|
||||
// side const-fold of an aggregate def's FIELDS — a no-op, ww
|
||||
// never folds struct-literal field access, and an aggregate-def
|
||||
// field demanded in a const-fold context stays a LOUD error (#71).
|
||||
if (d.rhs != nil && (d.rhs.kind == syntax.nkind.N_STRUCTLIT ||
|
||||
if (d.rhs == nil || (d.rhs.kind == syntax.nkind.N_STRUCTLIT ||
|
||||
d.rhs.kind == syntax.nkind.N_ARRLIT)) {
|
||||
wputs(fd, ";\n");
|
||||
} else {
|
||||
@@ -569,6 +644,265 @@ fn wwisortdecls(keys: []str, nodes: []*syntax.node, n: i32) void = {
|
||||
};
|
||||
};
|
||||
|
||||
// Compiler-owned reachable facts. Parallel arrays keep the self-hosted
|
||||
// representation narrow and make the deterministic ordering explicit.
|
||||
type wwifactset = struct {
|
||||
c: *checker,
|
||||
factnodes: []*syntax.node,
|
||||
factmods: []str,
|
||||
factranks: []i32,
|
||||
nfacts: i32,
|
||||
seennodes: []*syntax.node,
|
||||
seenmods: []str,
|
||||
seenranks: []i32,
|
||||
nseen: i32,
|
||||
bad: i32,
|
||||
};
|
||||
|
||||
fn wwifactrank(d: *syntax.node) i32 = {
|
||||
if (d.kind == syntax.nkind.N_TYPEDECL) { return 0i32; };
|
||||
if (d.kind == syntax.nkind.N_DEF) { return 1i32; };
|
||||
if (d.kind == syntax.nkind.N_FNDECL) { return 2i32; };
|
||||
return 3i32;
|
||||
};
|
||||
|
||||
fn wwifactsame(mod: str, rank: i32, d: *syntax.node,
|
||||
smod: str, srank: i32, sd: *syntax.node) bool = {
|
||||
return rank == srank && wwimodeq(mod, smod) && syntax.streq(d.str, sd.str);
|
||||
};
|
||||
|
||||
fn wwifactvaluesym(c: *checker, owner: str, name: str) *syntax.sym = {
|
||||
let p: *syntax.scope = c.top;
|
||||
for (p != nil) {
|
||||
let s: *syntax.sym = p.first;
|
||||
for (s != nil) {
|
||||
if (s.skind == syntax.skind.SK_DEF && syntax.streq(s.name, name)
|
||||
&& wwimodeq(s.mod, owner)) { return s; };
|
||||
s = s.snext;
|
||||
};
|
||||
p = p.parent;
|
||||
};
|
||||
p = c.top;
|
||||
for (p != nil) {
|
||||
let s: *syntax.sym = p.first;
|
||||
for (s != nil) {
|
||||
if (s.skind == syntax.skind.SK_DEF && syntax.streq(s.name, name)
|
||||
&& wwidirectmodvisible(c, owner, s.mod)) { return s; };
|
||||
s = s.snext;
|
||||
};
|
||||
p = p.parent;
|
||||
};
|
||||
return nil;
|
||||
};
|
||||
|
||||
fn wwifactreject(d: *syntax.node, kind: str, name: str) void = {
|
||||
wputs(2, d.file);
|
||||
wputs(2, ":");
|
||||
wputs(2, strconv.u64tos(d.line: u64, strconv.base.DEC));
|
||||
wputs(2, ":");
|
||||
wputs(2, strconv.u64tos(d.col: u64, strconv.base.DEC));
|
||||
wputs(2, ": error: exported declaration references unexported ");
|
||||
wputs(2, kind);
|
||||
wputs(2, " '");
|
||||
wputs(2, name);
|
||||
wputs(2, "'\n");
|
||||
};
|
||||
|
||||
fn wwiencodearrayreject(d: *syntax.node) void = {
|
||||
wputs(2, d.file);
|
||||
wputs(2, ":");
|
||||
wputs(2, strconv.u64tos(d.line: u64, strconv.base.DEC));
|
||||
wputs(2, ":");
|
||||
wputs(2, strconv.u64tos(d.col: u64, strconv.base.DEC));
|
||||
wputs(2, ": error: cannot encode array dimension\n");
|
||||
};
|
||||
|
||||
fn wwicollectdecl(fs: *wwifactset, owner: str, d: *syntax.node) void = {
|
||||
let rank: i32 = wwifactrank(d);
|
||||
let i: i32 = 0;
|
||||
for (i < fs.nseen) {
|
||||
if (wwifactsame(owner, rank, d, fs.seenmods[i],
|
||||
fs.seenranks[i], fs.seennodes[i])) { return; };
|
||||
i += 1;
|
||||
};
|
||||
fs.seennodes[fs.nseen] = d;
|
||||
fs.seenmods[fs.nseen] = owner;
|
||||
fs.seenranks[fs.nseen] = rank;
|
||||
fs.nseen += 1;
|
||||
|
||||
if (owner.len > 0) {
|
||||
if (d.exported == 0) {
|
||||
let kind: str = "def";
|
||||
if (d.kind == syntax.nkind.N_TYPEDECL) { kind = "type"; };
|
||||
wwifactreject(d, kind, d.str);
|
||||
fs.bad = 1;
|
||||
return;
|
||||
};
|
||||
fs.factnodes[fs.nfacts] = d;
|
||||
fs.factmods[fs.nfacts] = owner;
|
||||
fs.factranks[fs.nfacts] = rank;
|
||||
fs.nfacts += 1;
|
||||
};
|
||||
|
||||
if (d.kind == syntax.nkind.N_FNDECL) {
|
||||
let p: *syntax.node = d.list;
|
||||
for (p != nil) { wwicollecttype(fs, owner, p.lhs); p = p.next; };
|
||||
wwicollecttype(fs, owner, d.lhs);
|
||||
} else { if (d.kind == syntax.nkind.N_TYPEDECL) {
|
||||
wwicollecttype(fs, owner, d.lhs);
|
||||
} else { if (d.kind == syntax.nkind.N_DEF) {
|
||||
wwicollecttype(fs, owner, d.lhs);
|
||||
wwicollectexpr(fs, owner, d.rhs);
|
||||
} else { if (d.kind == syntax.nkind.N_LET) {
|
||||
wwicollecttype(fs, owner, d.lhs);
|
||||
};};};};
|
||||
};
|
||||
|
||||
fn wwicollectexpr(fs: *wwifactset, owner: str, e: *syntax.node) void = {
|
||||
if (e == nil) { return; };
|
||||
let s: *syntax.sym = nil;
|
||||
if (e.kind == syntax.nkind.N_IDENT) {
|
||||
s = wwifactvaluesym(fs.c, owner, e.str);
|
||||
} else { if (e.kind == syntax.nkind.N_DOT && e.lhs != nil) {
|
||||
if (e.lhs.kind == syntax.nkind.N_IDENT) {
|
||||
let mod: str = wwiusepath(fs.c, owner, e.lhs.str);
|
||||
if (mod.len > 0) { s = wwifactvaluesym(fs.c, mod, e.str); };
|
||||
};
|
||||
}; };
|
||||
if (s != nil && s.decl != nil) {
|
||||
if (s.decl.exported == 0) {
|
||||
wwifactreject(e, "def", e.str);
|
||||
fs.bad = 1;
|
||||
return;
|
||||
};
|
||||
wwicollectdecl(fs, s.mod, s.decl);
|
||||
return;
|
||||
};
|
||||
if (e.kind == syntax.nkind.N_BIN) {
|
||||
wwicollectexpr(fs, owner, e.lhs);
|
||||
wwicollectexpr(fs, owner, e.rhs);
|
||||
} else { if (e.kind == syntax.nkind.N_UN) {
|
||||
wwicollectexpr(fs, owner, e.lhs);
|
||||
} else { if (e.kind == syntax.nkind.N_CAST) {
|
||||
wwicollectexpr(fs, owner, e.lhs);
|
||||
wwicollecttype(fs, owner, e.rhs);
|
||||
}; }; };
|
||||
};
|
||||
|
||||
fn wwievalconst(fs: *wwifactset, owner: str, e: *syntax.node,
|
||||
out: *u64) bool = {
|
||||
let saved: str = fs.c.curmod;
|
||||
fs.c.curmod = owner;
|
||||
let ok: bool = evaldefconst(fs.c, e, out, 0);
|
||||
fs.c.curmod = saved;
|
||||
return ok;
|
||||
};
|
||||
|
||||
fn wwicollecttype(fs: *wwifactset, owner: str, t: *syntax.node) void = {
|
||||
if (t == nil) { return; };
|
||||
if (t.kind == syntax.nkind.N_TPARAM) { wwicollecttype(fs, owner, t.lhs); return; };
|
||||
if (t.kind == syntax.nkind.N_TNAME) {
|
||||
let s: *syntax.sym = wwitypesym(fs.c, owner, t.str);
|
||||
if (s != nil && s.decl != nil) {
|
||||
if (s.decl.kind == syntax.nkind.N_TYPEDECL) {
|
||||
wwicollectdecl(fs, s.mod, s.decl);
|
||||
};
|
||||
};
|
||||
} else { if (
|
||||
t.kind == syntax.nkind.N_TPTR || t.kind == syntax.nkind.N_TSLICE ||
|
||||
t.kind == syntax.nkind.N_TBANG || t.kind == syntax.nkind.N_TCHAN
|
||||
) {
|
||||
wwicollecttype(fs, owner, t.lhs);
|
||||
} else { if (t.kind == syntax.nkind.N_TARRAY) {
|
||||
// Array length is resolved type identity, not a source name
|
||||
// dependency. Canonicalize it so private constants stay private
|
||||
// and consumers never need implementation defs merely for layout.
|
||||
if (t.rhs != nil && t.rhs.kind != syntax.nkind.N_INTLIT) {
|
||||
let len: u64 = 0u64;
|
||||
if (!wwievalconst(fs, owner, t.rhs, &len)) {
|
||||
wwiencodearrayreject(t);
|
||||
fs.bad = 1;
|
||||
} else {
|
||||
let e: *syntax.node = t.rhs;
|
||||
e.kind = syntax.nkind.N_INTLIT;
|
||||
e.uval = len;
|
||||
e.lhs = nil; e.rhs = nil; e.list = nil;
|
||||
let empty: str; e.tsuffix = empty;
|
||||
};
|
||||
};
|
||||
wwicollecttype(fs, owner, t.lhs);
|
||||
} else { if (t.kind == syntax.nkind.N_TFN) {
|
||||
let p: *syntax.node = t.list;
|
||||
for (p != nil) { wwicollecttype(fs, owner, p.lhs); p = p.next; };
|
||||
wwicollecttype(fs, owner, t.lhs);
|
||||
} else { if (t.kind == syntax.nkind.N_TSTRUCT) {
|
||||
let f: *syntax.node = t.list;
|
||||
for (f != nil) { wwicollecttype(fs, owner, f.lhs); f = f.next; };
|
||||
} else { if (t.kind == syntax.nkind.N_TTAGGED || t.kind == syntax.nkind.N_TTUPLE) {
|
||||
let e: *syntax.node = t.list;
|
||||
for (e != nil) { wwicollecttype(fs, owner, e); e = e.next; };
|
||||
} else { if (t.kind == syntax.nkind.N_TENUM) {
|
||||
wwicollecttype(fs, owner, t.lhs);
|
||||
// Member identifiers refer to prior siblings in this enum, not
|
||||
// package defs; the declaration already carries the whole list.
|
||||
};};};};};};};
|
||||
};
|
||||
|
||||
fn wwisortfacts(fs: *wwifactset) void = {
|
||||
let i: i32 = 0;
|
||||
for (i < fs.nfacts) {
|
||||
let best: i32 = i;
|
||||
let j: i32 = i + 1;
|
||||
for (j < fs.nfacts) {
|
||||
let r: i32 = wwistrcmp(fs.factmods[j], fs.factmods[best]);
|
||||
if (r == 0) { r = fs.factranks[j] - fs.factranks[best]; };
|
||||
if (r == 0) { r = wwistrcmp(fs.factnodes[j].str, fs.factnodes[best].str); };
|
||||
if (r < 0) { best = j; };
|
||||
j += 1;
|
||||
};
|
||||
if (best != i) {
|
||||
let tn: *syntax.node = fs.factnodes[i]; fs.factnodes[i] = fs.factnodes[best]; fs.factnodes[best] = tn;
|
||||
let tm: str = fs.factmods[i]; fs.factmods[i] = fs.factmods[best]; fs.factmods[best] = tm;
|
||||
let tr: i32 = fs.factranks[i]; fs.factranks[i] = fs.factranks[best]; fs.factranks[best] = tr;
|
||||
};
|
||||
i += 1;
|
||||
};
|
||||
};
|
||||
|
||||
fn wwiowneduse(u: *syntax.node, owner: str) bool = {
|
||||
return u.kind == syntax.nkind.N_USE && u.imported != 0
|
||||
&& syntax.streq(u.nmod, owner);
|
||||
};
|
||||
|
||||
fn wwiemitfactimports(fd: i32, file: *syntax.node, owner: str) void = {
|
||||
let nuse: i32 = 0;
|
||||
let u: *syntax.node = file.list;
|
||||
for (u != nil) { if (wwiowneduse(u, owner)) { nuse += 1; }; u = u.next; };
|
||||
if (nuse == 0) { return; };
|
||||
let paths: []str = alloc([], nuse: u64)!; paths.len = nuse;
|
||||
let nodes: []*syntax.node = alloc([], nuse: u64)!; nodes.len = nuse;
|
||||
let k: i32 = 0;
|
||||
u = file.list;
|
||||
for (u != nil) {
|
||||
if (wwiowneduse(u, owner)) {
|
||||
if (u.usepath.len > 0) { paths[k] = u.usepath; } else { paths[k] = u.str; };
|
||||
nodes[k] = u;
|
||||
k += 1;
|
||||
};
|
||||
u = u.next;
|
||||
};
|
||||
wwisortdecls(paths, nodes, nuse);
|
||||
let previous: str;
|
||||
let i: i32 = 0;
|
||||
for (i < nuse) {
|
||||
if (previous.len == 0 || !syntax.streq(previous, paths[i])) {
|
||||
wputs(fd, "import "); wputs(fd, paths[i]); wputs(fd, ";\n");
|
||||
previous = paths[i];
|
||||
};
|
||||
i += 1;
|
||||
};
|
||||
};
|
||||
|
||||
export fn wwiemit(c: *checker, file: *syntax.node, path: str) i32 = {
|
||||
// §5: check_exported_type FIRST, before any byte — a producer
|
||||
// without it can emit a dangling `.wwi`.
|
||||
@@ -582,6 +916,34 @@ export fn wwiemit(c: *checker, file: *syntax.node, path: str) i32 = {
|
||||
};
|
||||
if (bad != 0) { return 1i32; };
|
||||
|
||||
// The complete closure cannot contain more declarations than the checked
|
||||
// compilation unit. Allocate once; collection deduplicates by semantic
|
||||
// (owner, kind, name), then sorting supplies the byte-stable order.
|
||||
let nall: i32 = 0;
|
||||
d = file.list;
|
||||
for (d != nil) { if (wwiisdecl(d)) { nall += 1; }; d = d.next; };
|
||||
if (nall == 0) { nall = 1; };
|
||||
let fs: wwifactset;
|
||||
fs.c = c;
|
||||
let factnodes: []*syntax.node = alloc([], nall: u64)!; factnodes.len = nall;
|
||||
let factmods: []str = alloc([], nall: u64)!; factmods.len = nall;
|
||||
let factranks: []i32 = alloc([], nall: u64)!; factranks.len = nall;
|
||||
let seennodes: []*syntax.node = alloc([], nall: u64)!; seennodes.len = nall;
|
||||
let seenmods: []str = alloc([], nall: u64)!; seenmods.len = nall;
|
||||
let seenranks: []i32 = alloc([], nall: u64)!; seenranks.len = nall;
|
||||
fs.factnodes = factnodes; fs.factmods = factmods; fs.factranks = factranks;
|
||||
fs.seennodes = seennodes; fs.seenmods = seenmods; fs.seenranks = seenranks;
|
||||
let primary: str;
|
||||
d = file.list;
|
||||
for (d != nil) {
|
||||
if (wwiprimary(d) && d.exported != 0 && wwiisdecl(d)) {
|
||||
wwicollectdecl(&fs, primary, d);
|
||||
};
|
||||
d = d.next;
|
||||
};
|
||||
if (fs.bad != 0) { return 1i32; };
|
||||
wwisortfacts(&fs);
|
||||
|
||||
let fd: i32 = os.open(path,
|
||||
os.flag.WRONLY | os.flag.CREATE | os.flag.TRUNC, 420i32); // 0o644
|
||||
if (fd < 0) {
|
||||
@@ -710,6 +1072,30 @@ export fn wwiemit(c: *checker, file: *syntax.node, path: str) i32 = {
|
||||
};
|
||||
};
|
||||
|
||||
// Compiler-owned public fact closure. Origin markers preserve nominal
|
||||
// ownership but do not create source imports in the eventual consumer.
|
||||
let lastmod: str;
|
||||
let fi: i32 = 0;
|
||||
for (fi < fs.nfacts) {
|
||||
let mod: str = fs.factmods[fi];
|
||||
if (lastmod.len == 0 || !syntax.streq(lastmod, mod)) {
|
||||
wputs(fd, "//ww:module "); wputs(fd, mod); wputs(fd, "\n");
|
||||
let dotidx: i32 = -1;
|
||||
let mi: i32 = 0;
|
||||
for (mi < mod.len) { if (mod[mi] == 46u8) { dotidx = mi; }; mi += 1; };
|
||||
let leaf: str = mod;
|
||||
if (dotidx >= 0) {
|
||||
leaf.ptr = mod.ptr + ((dotidx + 1): u64);
|
||||
leaf.len = mod.len - dotidx - 1;
|
||||
};
|
||||
wputs(fd, "package "); wputs(fd, leaf); wputs(fd, ";\n");
|
||||
wwiemitfactimports(fd, file, mod);
|
||||
lastmod = mod;
|
||||
};
|
||||
wwidecl(fd, fs.factnodes[fi]);
|
||||
fi += 1;
|
||||
};
|
||||
|
||||
os.close(fd);
|
||||
return 0i32;
|
||||
};
|
||||
|
||||
Reference in New Issue
Block a user