fold-2 chunk C1 (drew's Fam8-13 plan): 960_opaque_decl_run.c and 962_opaque_assign_cast_run.c were value-row C drivers. Migrate their 3+3 cases to test/lang/opaque_decl_test.ww and opaque_assign_cast_test.ww as @test row-tables. The test-lang byte-id (LANGBYTEID) gate gives cs==ww automatically -- 960 was cstage-only-run before, so this strengthens it. Both byte-id clean, no cs!=ww carve. Retire the 2 C drivers (LANGBYTEID floor 57->59) and repoint a dead comment ref in lib/sort/sort.ww. 961_opaque_guards (reject/guards) stays in C -- fold-3 territory, not in the Fam12 fold-2 worklist.
110 lines
4.8 KiB
Plaintext
110 lines
4.8 KiB
Plaintext
// opaque_assign_cast_test — runtime proof of #108 sub-fold (c): opaque as a
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// type-erasure sink. Two assignability rules + the reinterpret casts sort's
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// implementation relies on. Migrated from test/wcc/962_opaque_assign_cast_run.c.
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//
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// rule 1 `*T -> *opaque` IMPLICIT (no cast). Any pointer is the universal
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// void-pointer. harec type_is_assignable, pointer arm:
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// ref/harec/src/types.c:1053 (`case STORAGE_OPAQUE: break;` — the
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// referent need not match).
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// rule 2 `[]T -> []opaque` IMPLICIT (no cast). Any slice is the type-erased
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// slice; the {ptr,len,cap} header is normal, the byte stride is
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// supplied at runtime (itemsz). harec slice arm: types.c:1094
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// (`if (to_secondary->storage == STORAGE_OPAQUE) return true;`).
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// casts `[]opaque -> *u8` (slice -> byte ptr; cgexpr leaves the ptr in AX,
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// so the cast naturally takes .ptr) and `*opaque -> *u8` /
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// `*opaque -> *i32` (ptr->ptr reinterpret, a no-op). drew described
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// the Hare idiom as `*[*]u8`; ww has no unbounded-array `[*]`, so the
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// ww-faithful reinterpret target is `*u8` + uintptr stride arithmetic.
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//
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// rules 1 & 2 are CSTAGE-led; the wwstage check.ww isassignable is a
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// resolve-only AST approximation that returns "can't tell, stay quiet"
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// (confident=false) for a ptr/slice whose element it cannot match, so it
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// already ACCEPTS every form here. The casts are validation-free in BOTH stages
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// (N_CAST never checks legality). The T2 byte-id floor (LANGBYTEID) carries the
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// cs==ww rule-10 proof directly — opaque is inert on the selfhost corpus so the
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// 990-997 gates never exercise it.
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//
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// Array->[]opaque (harec's array->slice decay) is deliberately EXCLUDED: ww has
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// no implicit array->slice conversion for any element type (a slice is built
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// only via an explicit `a[0:n]`), so there is no array->slice-header cgen.
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//
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// Call results are bound to locals before each assert (the test/lang idiom),
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// not compared inline. The C original avoided an inline `if (f(x) != k)` shape
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// (arg from a prior uintptr-arith call) that a pre-#116-era cgen bug once
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// mis-compiled; that form now compiles correct + cs==ww on HEAD, so the binding
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// is style, not a live workaround. The opaque feature is exercised in full.
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package opaque_assign_cast_test;
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fn readi32(p: *opaque) i32 = { let pi: *i32 = p: *i32; return *pi; };
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fn slen(o: []opaque) i32 = { return o.len: i32; };
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fn first(o: []opaque) i32 = { let p: *opaque = o.ptr; let pi: *i32 = p: *i32; return *pi; };
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fn elemptr(items: []opaque, i: size, itemsz: size) *opaque = {
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let base: *u8 = items: *u8; // []opaque -> *u8 (takes .ptr)
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let off: uintptr = (i * itemsz): uintptr;
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return ((base: uintptr) + off): *opaque;
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};
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fn swap(items: []opaque, x: size, y: size, itemsz: size) void = {
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let pa: *u8 = elemptr(items, x, itemsz): *u8;
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let pb: *u8 = elemptr(items, y, itemsz): *u8;
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let k: size = 0;
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for (k < itemsz) {
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let qa: *u8 = ((pa: uintptr) + k: uintptr): *u8;
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let qb: *u8 = ((pb: uintptr) + k: uintptr): *u8;
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let t: u8 = *qa;
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*qa = *qb;
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*qb = t;
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k = k + 1;
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};
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};
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@test fn rule1_implicit_ptr() void = {
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// rule 1: `*T -> *opaque` IMPLICIT (no cast) at a let-init AND a call-arg.
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// Round-trip a real *i32 through *opaque and back, deref.
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let n: i32 = 42;
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let po: *opaque = &n; // let-init *i32 -> *opaque
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let v: i32 = readi32(po);
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let v2: i32 = readi32(&n); // call-arg *i32 -> *opaque
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assert(v == 42);
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assert(v2 == 42);
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};
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@test fn rule2_implicit_slice() void = {
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// rule 2: `[]T -> []opaque` IMPLICIT (no cast) at a let-init AND a call-arg.
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// Read .len, round-trip .ptr (a *opaque) back to *i32.
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let a: [4]i32 = [11, 22, 33, 44];
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let s: []i32 = a[0:4];
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let o: []opaque = s; // let-init []i32 -> []opaque
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let n: i32 = slen(o);
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let n2: i32 = slen(s); // call-arg []i32 -> []opaque
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assert(n == 4);
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assert(n2 == 4);
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let f: i32 = first(s);
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assert(f == 11);
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};
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@test fn sort_pattern() void = {
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// sort's actual usage end-to-end: a `fn(items: []opaque, itemsz: size)`
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// called with a []i32; inside, reinterpret the slice as a byte base
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// (`items: *u8`), uintptr-arith two element addresses, byte-swap them by
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// itemsz. Then read back through the *opaque element path and the original
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// []i32 view — the type erasure round-trips iff both agree.
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let a: [4]i32 = [10, 20, 30, 40];
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let s: []i32 = a[0:4];
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swap(s, 0: size, 3: size, size(i32)); // []i32 -> []opaque call-arg
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assert(a[0] == 40); // erased swap round-trips
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assert(a[3] == 10);
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let p0: *opaque = elemptr(s, 0: size, size(i32));
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let v0: i32 = readi32(p0);
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assert(v0 == 40);
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let nn: i32 = 77;
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let pn: *opaque = &nn; // *i32 -> *opaque let-init
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let vn: i32 = readi32(pn);
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assert(vn == 77);
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let o: []opaque = s;
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let ol: i32 = o.len: i32;
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assert(ol == 4);
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};
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