Commit Graph

40 Commits

Author SHA1 Message Date
a9b804935c w6l+selfhost: dynamic-link + .data — shared R+W segment
.data now lives at the end of the dyn-path R+W PT_LOAD, just after
.dynamic. The single segment covers .got.plt + .dynamic + .data; its
filesz drops trailing zeros (BSS) while memsz spans the full extent.

Relocation moves from main.c into each emit function so the static
and dynamic paths use their own data_va — text→data refs land on the
right VA regardless of path. Removes the early-error in dynout.c
that previously refused any .data with -l/-L.

Tests: 810_dyn gains two new dyn+.data fixtures (mutable read+write
of an i32, plus a zero-init i64 verifying the BSS scan still produces
a valid p_filesz<p_memsz under the shared segment).
2026-05-12 13:50:09 +09:00
2480f4c272 w6l+selfhost: BSS optimisation — trim trailing .data zeros from filesz
Scan the consolidated .data buffer (post-relocation) for trailing zero
bytes; set the R+W PT_LOAD's p_filesz to exclude them while p_memsz
covers the full region. The loader zero-fills the gap, so behaviour is
unchanged. Saves up to a page per binary on programs whose globals are
zero-init.

Mirrored in selfhost/cmd/w6l/out.ww so test 992's byte-identity diff
still holds. Dynamic-link path is untouched — it still errors on any
mutable global; that's the next feature.
2026-05-12 13:44:27 +09:00
548547a1d0 w6c: slice reassignment — full triple flow through N_IDENT/N_SLICE/N_ASSIGN
N_IDENT for a slice local now loads (AX=ptr, BX=len, CX=cap), matching
the existing global-slice load.

cgexpr learns N_SLICE: `base[lo:hi]` leaves the same triple in
registers, so callers (return, arg push, reassignment) all share
one shape. The let-init's pre-existing N_SLICE direct-store path
stays as a specialisation; the new generic slice let-init catches
fn-returning-slice and slice-ident initialisers.

N_ASSIGN gains a TY_SLICE branch parallel to TY_STR: store all
three halves to the local slot or, for globals, stash CX into DI
before LEAQ-ing the address (CX is both the new cap and the
address scratch).
2026-05-12 13:37:31 +09:00
328a53de5b w6c: tagged-union fields on struct globals — LEAQ-based read+write
Field write extends the existing TY_TAGGED branch with an is_global
arm: LEAQ name(SB),CX after cgexpr (no AX/BX clobber), then MOVQ
into slot+foff+0 (tag) and slot+foff+8 (value, plus +16 for str-
typed variants).

Field read now treats tagged fields specially — load AX=tag,
DX=val0, CX=val1 (when union >16B), mirroring the tagged-return
ABI that let-init and match dispatch already expect. Previously
the scalar-load path read 8B into AX and left DX/CX with junk,
which silently broke local tagged-field reads too.
2026-05-12 13:29:25 +09:00
6f04713601 w6c+selfhost: float globals — DATAW + LEAQ-indirect MOVSS/MOVSD
f32 → 4B slot, f64 → 8B. C cgen bakes the FLOATLIT bit pattern into
DATAW directly; selfhost emits zero-init only (its parser doesn't
lex N_FLOATLIT yet). Read/write goes LEAQ name(SB),CX + MOVSS/MOVSD
since w6a has no D_EXTERN operand form for SSE moves.
2026-05-12 13:23:45 +09:00
003f707618 w6c: emit DATAR for let s: str = "literal" initialisers
Use the new DATAR mechanism so str-literal init on a top-level
mutable `let` lands in .data and links cleanly.

emit_lets, when it sees `let s: str = "lit"` (non-empty strlit),
emits:

  DATAW s(SB),"<8 zero placeholder><8 LE bytes of len>"
  DATAR s+0(SB),<strlit_label>(SB)

The linker patches the placeholder with the strlit's runtime VA at
program load time, so `s.ptr` reads as the real pointer and `s.len`
as the literal length. A new let_pre_intern pass scans top-level
lets ahead of emit_data so the strlit gets a DATA row in the same
.s file; running emit_lets after emit_data instead would have
flipped the (DATA strlits, DATAW lets) section order in the .s and
broken byte-identity with the wwstage cgen.

The wwstage cgen still emits the zero-init shape for str lets,
which only matters if the wwstage is asked to compile source that
uses str-literal init. None of the selfhost combined sources do
that today, so test 994 / 990 stay green. The selfhost mirror for
DATAR + DATAW + this w6c branch is a follow-up.

630_let_global gains two fixtures: a length-readback and a first-
byte readback through the patched ptr.
2026-05-12 12:49:01 +09:00
d998425391 w6a+w6l: DATAR directive for absolute-address relocs in .data
Unblock literal initialisers for str/slice/struct globals by wiring
an R_X86_64_64 relocation kind through both assembler and static
linker.

w6a:
  - new A_DATAR directive, syntax `DATAR slot+off(SB),target(SB)`,
    records an R_X86_64_64 reloc at slot+off in .data pointing at
    target. The slot must be pre-defined by a prior DATAW;
  - parse_operand learned the `name+disp(SB)` shape so the slot's
    byte offset can be addressed explicitly;
  - Areloc carries a `section` flag (0=.text / 1=.data) and obj.c
    splits the reloc list into .rela.text and .rela.data, emitting
    the latter conditionally with sh_info pointing at .data.

w6l:
  - Lrel grows the same `section` flag; obj.c loads `.rela.data`
    sections into the global reloc list with offsets shifted by
    each input's data_off;
  - pass.c handles R_X86_64_64: target VA is data_va+sym.val for
    in_data symbols (else text_va+sym.val), addend is added, and
    the 8-byte slot is patched in l->data (or l->text).

Inputs without DATAR are unaffected — bootstrap, 991 (selfhost .o
diff) and 992 (selfhost exe diff) keep their byte-identical
output. 520_datar covers the new path: asm a DATAW+DATAR pair,
verify .rela.data has exactly one R_X86_64_64 entry, link, run,
confirm the relocated pointer feeds a 5-byte write that prints
"hello".

Selfhost mirror + w6c emission for str/slice/struct literal init
land in follow-ups.
2026-05-12 12:45:11 +09:00
00d1120441 w6c+selfhost: struct globals — zero-init DATAW + LEAQ-based field access
Extend top-level mutable `let` to cover structs. Same approach as
str / slice: take the field-access base through &name(SB) instead
of off(BP).

  - emit_lets / emitletdataw: emit `sizeof(T)` zero bytes for any
    struct global without a baked-in initialiser. Struct-literal
    init is skipped → undefined symbol at link if used;
  - cgdot read path: when the IDENT base's local lookup misses and
    the name is a struct let, LEAQ name(SB), CX and load the field
    at fi.foff(CX) with the width-aware op (MOVQ / MOVL /
    MOVZBQ / MOVSXD; MOVQ pair for str fields);
  - cgassign write path: parallel handling for plain `=` (incl. str
    fields) and the compound ops (+=, -=) via load → push → eval
    rhs → combine → store with a re-LEAQ between cgexpr clobbers.

Tagged-union fields on struct globals are unsupported in v1 — the
local path's tagged branch isn't generalised yet. Whole-struct
by-value flow through expressions remains NYI (matches the local
status). 630_let_global gains 3 fixtures (read/write, compound +=,
narrow u8 field); selfhost mirror keeps test 990 / 994 / 995 byte
identical; bootstrap fixed point holds.
2026-05-12 12:26:21 +09:00
97eb1fe20d w6c+selfhost: slice globals — 24B DATAW + (AX,BX,CX) load
Extend top-level mutable `let` to cover slices. Same shape as the
str work, with one more 8-byte field and the address holder CX
overwritten by the cap as the last load step:

  - emit_lets / emitletdataw: 24-byte zero DATAW for `let v: []u8;`
    (and the trivial `nil` init); no slice-literal syntax exists
    so the no-init path is the only supported shape;
  - cgident: LEAQ name(SB), CX → MOVQ (CX), AX → MOVQ 8(CX), BX →
    MOVQ 16(CX), CX, so the slice ABI triple lands in (AX, BX, CX);
  - cgdot: .cap delta 16 wired alongside .ptr / .len through the
    same &name(SB) base.

Slice reassignment (`v = some_slice;`) is still unsupported — slice
values don't yet flow as a full (AX, BX, CX) triple through general
expressions even for locals — so reads/`&` are the supported surface
today. Manual fill through `(&v): *u64` continues to work.

Tests 630 (10/10), 990, 994, 995 stay green; bootstrap fixed point
holds.
2026-05-12 12:16:52 +09:00
208bdd25df w6c+selfhost: str globals — 16B DATAW + (LEAQ, MOVQ, MOVQ) sequences
Extend top-level mutable `let` to cover str. The cgen now:

  - emits a 16-byte zero DATAW for `let s: str;` (and the trivial
    `nil` / `""` inits); a non-empty strlit init is skipped because
    a compile-time .data → .text reloc isn't supported yet, so the
    user gets a clean undefined-symbol error at link;
  - loads `s` as `(LEAQ s(SB), CX; MOVQ (CX), AX; MOVQ 8(CX), BX)`
    so the (AX=ptr, BX=len) pair convention is preserved;
  - stores via the same `&s` indirection for `s = expr;` and routes
    the `.ptr` / `.len` pseudo-field N_DOT branch through it; and
  - tracks the declared type on each LetVar so cgident / cgdot /
    cgassign pick the right load/store shape.

Selfhost cgen mirrors all four paths byte-for-byte; test 990
(cgen-match on err.ww) and tests 994/995 (self-rebuild) stay
green. 630_let_global gains two new fixtures (`let msg: str;` +
runtime assign, plus reassign from a helper).

Slice and struct globals still NYI — same scope deferred.
2026-05-12 12:10:23 +09:00
3c812faa08 w6c+selfhost: codegen for top-level mutable let
Third step toward writable globals. The C cgen and its selfhost
mirror now:

  - emit DATAW <name>(SB),"<8 LE bytes>" for every top-level `let`
    whose type lands in the scalar set (i8..i64/u8..u64/bool/rune/
    int/uint/uintptr/ptr; floats and multi-word types deferred);
  - drop the "no writable .data" silent-drop guard at the N_IDENT
    store path, replacing it with a RIP-relative MOVQ for `=` and
    a load→combine→store sequence for the compound ops; and
  - route `&name` through LEAQ name(SB) instead of dropping it.

Type aliases resolve via aliaslookup so `type counter = i32; let c:
counter = 0;` still emits a DATAW slot. Non-literal initialisers
silently skip, which surfaces as a clean undefined-symbol error if
the binding is ever referenced.

The selfhost mirror lands in the same commit because test 990
diffs the C cgen against wwdump_ww -c on err.ww (which has
top-level `let nerrors: i32 = 0; ... nerrors += 1;`). Any drift
between the two cgens makes 990 fail. Bootstrap stays at a fixed
point: ww2 == ww3 == ww4 byte-identical.
2026-05-12 11:56:51 +09:00
38e0b6510a w6l: route writable globals into a second PT_LOAD
Second step toward top-level mutable `let`. The static path now loads
.data PROGBITS sections from input .o files, page-aligns them after
.text, and emits a second PT_LOAD (R+W) covering them. Relocations
targeting data symbols compute against the data VA; text→text
displacements still cancel the absolute VAs and stay correct.

Inputs without any .data keep the original single-PT_LOAD layout
byte-for-byte — 992 (selfhost w6l .o diff) and 995 (self-rebuild)
depend on that invariant.

Dynamic-link path (-l/-L) rejects .data for now with a clear error;
folding writable globals into the existing R+W segment alongside
.got.plt/.dynamic is a follow-up.
2026-05-12 11:42:30 +09:00
1b0955c97b w6a: DATAW directive for writable .data section
First step toward top-level mutable `let`. Adds a sibling directive to
DATA whose bytes land in a separate writable .data PROGBITS section
(SHF_ALLOC|SHF_WRITE, STT_OBJECT) instead of .text. The section is
emitted only when DATAW was used, so inputs without it produce a
byte-identical .o — tests 991 (selfhost .o diff) and 995 (self-rebuild)
keep passing unchanged.

w6l still treats data-resident syms as undefined; that's the next step.
2026-05-12 11:35:50 +09:00
922877309b ww+wcc: Hare-strict enum types — back out the int↔enum relaxation
Cascades the four enum kinds through every signature and local that
holds one of their values, then removes the type_assignable /
unify_arith relaxation that previously let bare i32 mix with the
named enum types.

Signature updates:
  - kwlookup() now returns `tkind` (not i32); tokname() takes `tkind`
  - accepttok / expecttok / bprec / isassignop take `tkind`
  - parsearglist's closekind is `tkind`
  - newtype / prim take `tykind`; scopedefine takes `skind`
  - newnode / nkname take `nkind`

Struct fields:
  - tok.kind is `tkind`; parser.curkind is `tkind`
  - node.kind is `nkind`; node.op is `tkind`
  - tinfo.kind is `tykind`; sym.skind is `skind`

Locals holding kinds across lex/parse/check/cgen are now typed with
their enum, including sentinel patterns like `let lkind: nkind =
nkind.N_NONE; if (...) lkind = tn.kind;`.

The selfhost cgen had a load-width bug exposed by this: fieldsize()
fell back to 8 bytes for any TNAME that wasn't a struct or primitive.
For a tkind-typed field that gave `MOVQ (BX), AX` instead of `MOVL`,
diverging from the C cgen on tok.kind / parser.curkind / etc. Two
fixes:
  - fieldsize now consults the enum registry and returns the storage
    type's size (4 for `enum i32`)
  - collectenums runs before collectstructs in cgfile so the registry
    is populated when registerstruct asks for field sizes

All 22 tests stay green; 990/993/995 byte-identity probes pass with
the strict typing in place.
2026-05-12 05:04:33 +09:00
408ea2a322 ww+wcc: graduate selfhost TK_* defs to tkind enum
`type tkind = enum i32 { TK_NONE = 0, TK_EOF = 1, ... TK_LAST = 86 }`
replaces the 87-line `def TK_*: i32 = N` cluster in lib/ww/lex/tok.ww.
Numeric values explicit so 990_selfhost's byte-diff against the C-side
`Tkind` enum still passes.

All ~270 reference sites in lib/ww and selfhost/cmd/{wcc,wwdump}
sed-renamed `TK_X` → `tkind.TK_X`. Struct fields (`tok.kind`,
`parser.curkind`) intentionally kept as `i32` — making them `tkind`
shifted some byte-positions in the cgen output and broke 990/993/995
byte-identity probes without an obvious win.

To make the rename non-cascading on every signature, type_assignable
and unify_arith in cmd/wcc/check+type relax to allow enum ↔ int
mixing when storage matches (a `tkind` value flows into an `i32`
slot and vice versa, no explicit cast). This deviates from Hare's
strict enum semantics; doc'd as an explicit pragmatic relaxation
for the compiler's internal enum-shaped kinds. External user code
can still get the type-safety benefit if they declare their
parameters with the enum type.

combined.ww files regenerated by ww build.
2026-05-12 04:50:36 +09:00
5149d10618 wcc+selfhost: pkg-qualified enum access (os.whence.CUR)
Driver-side concatenation flattens module names, but enum member
lookup keyed off the exact lhs ident — so `whence.CUR` worked while
`os.whence.CUR` fell through to w6l with `undefined main.whence`.

C side: fold TY_ENUM members in the post-cexpr cascade too, not
just the early SK_TYPE shortcut. The recursive cexpr lands the
inner N_DOT(os, whence) on the named enum type; the outer access
then folds normally.

Selfhost: cgdot now treats `N_IDENT.MEMBER` and `N_DOT.MEMBER` the
same way, keying off the leaf name. enumlookup strips a trailing
`.`-prefix from the lookup key.

Adds e2e test 700: `use os; os.whence.CUR as i32 == 1`.
2026-05-12 04:30:20 +09:00
34817eedcd wcc: Hare-style enum [storage] { ... } type
`type Foo = enum [intT] { NAME [= expr], ... };`. Storage defaults
to i32; members auto-increment from 0 (or last+1) when `= expr` is
omitted, and value expressions can reference earlier siblings —
enough surface for io::mode-style flag enums (`RDWR = READ | WRITE`).

`Foo.MEMBER` folds to an N_INTLIT in the checker, typed as the
named enum. Binops on enum values yield the same enum (type_eq on
the named pointer), so `mode.R | mode.W` is a `mode`. Enum ↔ int
is a reinterpret-only `as` cast — same register, no tag wrap — so
`mode.RDWR as i32` and `1 as mode` both work without runtime ops.

`is`/`?`/`!` are still tagged-union-only. CSP runtime (chan/proc)
is unchanged; only the type-system slot is touched here.
2026-05-12 04:15:31 +09:00
751271a6bd wcc: case T => variant validity check (C + selfhost)
`match (u) { case T => ... }` where T isn't a variant of u was
silently accepted by both checkers. The cgen would emit a tag
comparison against an index that never appears, leaving the arm
unreachable — wasted code that's almost always a bug or typo.

C check.c now mirrors the existing is/as rule for match arms:
each `case T` and each alt of multi-pattern `case T1 | T2` is
checked against the scrutinee's variant list via variant_present.

selfhost check.ww gets the same shape with AST-level type_eq_ast
comparison. Both checks land in the same scope-aware pass that
already runs exhaustiveness and ? subset.

New test rows in 300_check (C side) and 950_selfcheck (selfhost
side) exercise both single-pattern and multi-pattern alt typos.
The 950 driver's err_present detector picks up the new
"case: not a variant" prefix.
2026-05-12 03:37:21 +09:00
906e17b128 wcc: @test marker attributes + runner
Hare-style `@test fn check_foo() void = { ... }` now parses. The
attribute is recognised by making the args list optional in
parseattrs: `@symbol("rt_syscall")` still requires the parens;
`@test` doesn't. Same change mirrored in lib/ww/parse/decl.ww.

The runner (test/wcc/910_at_test.c) scans a fixture for
`@test fn IDENT(`, synthesises a wrapper `main()` that calls each
test fn, builds it via `ww run`, and asserts exit 0. A failing
@test would either explicitly call abort or trip a runtime trap
(div-by-zero, etc.) and the whole driver exits non-zero.

The 910_at_test target sits alongside the existing C-side test
binaries; `make test` now runs 20 tests instead of 19.

Fixture: test/wcc/data/attest_pass.ww exercises two passing tests
(simple arithmetic and a match-with-yield).
2026-05-12 03:14:20 +09:00
f267f99a2b wcc: match-as-expression with yield
`match (e) { ... }` can now sit in expression position, with each
arm using `yield expr;` to produce the match's value:

    let v = match (r) {
    case let n: i32 => yield n + 1;
    case let s: str => yield s.len: i32 + 100;
    };

TK_YIELD keyword + N_YIELD AST node, both appended at the tail of
their enums to keep prior numeric values byte-stable for the
wwdump-diff gates.

Checker: cexpr for N_MATCH walks each arm's body looking for the
first N_YIELD; the match's type is the unified yield type (or
ty_void if no yield, preserving the statement-form semantics).
Mismatched arm yields are flagged.

Cgen: a yield-target stack (separate from the loop break stack)
holds each enclosing match's end label. N_YIELD evaluates its
expression into AX (and BX for str) and JMPs to the topmost entry.
cgmatch pushes its end label on entry and pops on exit.

Selfhost mirror: lib/ww/lex/tok.ww kwtab+name, lib/ww/ast.ww
N_YIELD def+print, lib/ww/parse/stmt.ww yield-stmt; selfhost cgen
adds a yieldbuf to the cgen struct and a cgyield helper. Verified
end-to-end: a yield-using program compiled via the wwstage cgen
matches the C-cgen build's exit code.
2026-05-12 03:08:00 +09:00
f4efaac144 wcc: nullable pointer folding for (*T | void)
A tagged union with exactly one `*T` variant and one `void` variant
collapses to a single 8-byte pointer slot, where the null bit
pattern is the void variant and any non-null is the *T variant.
Mirrors Hare's `(*T | null)` ABI optimisation.

Detected in resolve_type when the post-flatten variant list has
exactly two entries of the right shape; Type.nullable = 1 and
size = 8. Codegen branches every tagged-handling site on the flag:

- match: discriminator = pointer-vs-zero, not slot+0 tag word.
  Binding for the *T case copies the same word (the pointer itself)
  rather than slot+8.
- is/as: same ptr-vs-zero discriminator.
- ?: null = error (propagate AX=0 to caller's matching null
  encoding); non-null = success (AX is already the pointer).
- !: null aborts; non-null falls through with AX = pointer.
- let-init / return: spill or set just AX (no tag/value pair).
- call-arg push: push only AX, not the now-unused DX/CX.

Prologue spill already pulled size/8 = 1 arg register via the
existing tagged-arg loop, so no change needed there.

Two existing helpers in cgen.c get nullable-aware spelling:
type_isnullable() and nullable_ptr_tag() (which variant index is
the *T side; the void side is the other one).

The Hare-style `(*T | null)` spelling isn't supported — `null` is
not a type keyword in ww. Callers use `void` instead, which is
already a real type. The result is the same bit-level layout.
2026-05-12 02:53:47 +09:00
594a2bad62 wcc: Hare-style !T error marker on tagged-union variants
A type prefixed with `!` is flagged as an error variant. When any
variant in a tagged union carries the flag, `?` propagation uses
those (and only those) as the error subset; the unflagged variant
is the success type. The legacy "first variant = success" rule still
applies when no `!`-flag is present, so existing code keeps working.

- TK_NOT in parsetype → N_TBANG wrapper (lhs = inner type expr).
  Appended to Nkind tail for wwdump-diff byte stability.
- resolve_type N_TBANG: wraps primitives in a fresh Type copy so the
  iserror bit doesn't taint shared globals like ty_str/ty_i32; flips
  the bit in place on NAMED (already unique per alias decl).
- Type.iserror; type_named and typedecl inherit it from under.
- New check.c helpers: tagged_has_errflag, tagged_is_error_variant,
  tagged_success_type. N_TRYPROP uses them to find the error subset
  and verify each error variant is propagatable to the enclosing
  return.
- cgen mirrors with cg_tagged_success_tag + cg_variant_is_error.
  `?` compares AX against the success tag (no longer always 0) and
  remaps each error variant's tag for the enclosing fn. `!` aborts
  on any non-success tag.

strconv.invalid and strconv.overflow now use `!`-flagged shape
(`!i32` and `!void`) — visible signal in the API surface that they
are error types, matching Hare. The (i64 | invalid | overflow)
return shape and behavior are unchanged for callers; their match
arms still bind the same way.

Selfhost: lib/ww/parse/parse.ww recognises `!T` and emits N_TBANG.
The selfhost typechecker and cgen ignore the flag — none of the
selfhost sources use `!`, so byte-identity gates are unaffected.
The selfhost mirror catches up when there's a source using it.
2026-05-12 02:39:54 +09:00
4085742853 strconv: graduate to (T | invalid | overflow); add void expression
`type invalid = i32` (payload: byte index of first bad rune; mirrors
Hare's strconv::invalid = !size) and `type overflow = void` (Hare's
overflow = !void). stoi64/stou64 now return these instead of the
str-error placeholder. atoi64 dropped — lib/CLAUDE.md says graduate
in one go, don't keep both shapes around.

To produce the void variant payload, `void` is now a real
expression literal (TK_VOID kw, N_VOIDLIT). It evaluates to ty_void;
codegen emits MOVQ $0, AX. Both kinds are appended at the tail of
their enums to keep prior numeric values byte-stable for the
wwdump-diff fixtures.

check_file reorder: USE declarations are now installed in pass 1
alongside the type-decl placeholders so dotted type references
(`strconv.invalid` from a typedecl body) resolve. DEF/FN/LET silently
overwrite a USE-occupied slot — matches the old behavior where USE
silently no-op'd when a same-name fn/def existed (the conflict
manifested in selfhost main.combined.ww at `use parse;` colliding
with `export fn parse(a)`).

selfhost mirror: lib/ww/lex/tok.ww kwtab+name; lib/ww/ast.ww
N_VOIDLIT def+print; lib/ww/parse/{expr,parse}.ww TK_VOID handling;
selfhost/cmd/wcc/cgenexpr.ww N_VOIDLIT codegen.
2026-05-12 02:02:08 +09:00
1e2f55aed8 lib: graduate bytes/strings find-funcs to (i32 | void)
Replaces the -1 sentinel return on indexbyte/byteindex/rbyteindex/
index with Hare's optional-shaped tagged union. Callers `match` on
the result and bind the index from the i32 variant.

Two cgen fixes were needed first:

1. resolve_type for N_TTAGGED rounded value payload up to an 8-byte
   multiple. (i32 | void) was sized 12 — tag (8) + payload (4) —
   which made the reg-passing ABI compute size/8 = 1 word and drop
   the value word.

2. The call-arg push path special-cased struct and slice args but
   not tagged-return calls. A nested `f(g())` where g returns a
   tagged union pushed only AX (tag); the matching pop loaded a
   stale DX/SI for the value. Now pushes AX/DX[/CX] in order so
   the pop side drains tag → arg-reg[0], value(s) → arg-reg[1..].

strings.contains rewritten to match on the new tagged result. No
other callers existed in lib/ — bufio/io still use their own
shapes.
2026-05-12 01:49:00 +09:00
41a82021a3 wcc: ? error-subset propagation typecheck + tag remap
`expr?` previously did a brain-dead RET through whatever AX/DX/CX
held — only safe when operand and enclosing fn had identical variant
ordering. Tests relied on that alignment by construction.

Now:
- Typecheck: each non-first variant of operand must appear as a
  variant of the enclosing fn's return tagged union. Enclosing must
  itself be tagged (a non-tagged return has no slot for errors to
  land in).
- Cgen: on tag != 0, walk operand's error variants and emit a
  conditional tag remap (cmp/jne/mov/jmp) for any whose index in
  enclosing differs from operand's. Identity cases emit nothing,
  so same-shape operands cost zero extra instructions.

Selfhost cgen doesn't implement N_TRYPROP at all (no selfhost source
uses `?`); byte-identity tests still pass.

One existing e2e row used `?` with main returning i32 — relied on
the old loose semantics. Switched to `!` (abort-on-error); it was
exercising success-unwrap, not propagation.
2026-05-12 01:40:02 +09:00
fa070b6d07 wcc: tagged-union foundations (never, void, flatten, exhaust)
- `never` bottom type: TY_NEVER, assignable to anything; size 0.
- Type-set normalization for N_TTAGGED in resolve_type:
  - flatten nested anonymous (A|B)|C → (A|B|C); named aliases stay
    nominal (not flattened through)
  - dedup duplicates (NAMED pointer-id; others structural)
  - drop `never` variants
  - collapse single-element set: (T|never) → T, (T|T) → T
- Match exhaustiveness: error when a variant is unhandled and no
  default arm covers it. Multi-pattern `case T1 | T2 =>` counts
  each alt.
- (T | void) optionals: bare `return;` from a tagged-union-returning
  fn emits the void variant's tag (payload undefined; void size 0).

selfhost mirrored: TY_NEVER constant + tynever in tctx + seedprim
entry; voidvariantindex helper; cgreturn bare-return handling.
2026-05-12 01:31:35 +09:00
1ac1d985f6 lib: rename stdlib surface to Hare names; add endian/math
Sweeping rename so the lib/ surface mirrors Hare's stdlib spellings.
- ascii: rune-taking predicates; ishex -> isxdigit
- bufio: rinit -> init; take1/takeline -> readbyte/readline
- bytes: indexsub -> index
- encoding/utf8: runelen -> runesz
- errors: eEOF/eShortRead/... -> eof/underread/...
- fmt: errln -> errorln; println/fprintln return i64
- os: readfull/writefull -> readall/writeall; unlink -> remove
- path: isabs -> abs; drop lastindex (now strings.rbyteindex)
- strconv: u64toa/i64toa -> u64tos/i64tos; parse64/parseu64 -> stoi64/stou64
- strings: drop len/isempty; equal -> compare; indexbyte -> byteindex; +rbyteindex
- types: drop numeric helpers (moved to math)
- new lib/endian (htonu16/ntohu16), lib/math (absi32/absi64)
- net: drop htons (use endian.htonu16)

Callers in selfhost/, lib/ww/, cmd/w6c/cgen.c, and test/wcc/700_e2e.c
updated to match.
2026-05-12 00:45:18 +09:00
35421f2561 wcc: Hare-style struct embedding (anon + bare-name)
Struct members can be `struct { ... }` (anonymous nested) or a bare
named type, in addition to `name: type`. The inner struct's fields
are promoted to the outer scope with offsets shifted by the embed
base; codegen already keys off Tfield.offset so cgen needs no change.
Errors on non-struct embed or name collision.
2026-05-11 23:32:44 +09:00
dd188ca460 ww: add Hare-style is/as postfix ops on tagged unions
`e is T` returns bool (variant tag == T's index); `e as T` unwraps
to T or exit(1) on mismatch. Postfix, same precedence as `:` cast.
TK_IS / N_TYPETEST / N_TYPEASSERT appended at the tail of their
enums so every prior numeric value stays unchanged — the
990_selfhost wwdump-diff stays byte-clean.

Cgen mirrors the match-case slot-based load (tag at +0, value at
+8/+16), so an N_IDENT tagged-union local works just like a
match scrutinee. Selfhost cgen inlines the slot resolution
because the wwstage cgen drops sign bits on `*i32` output
parameters in this position.

Renames `errors.is` -> `errors.equal` (the only naming collision;
the existing comment already noted it shared shape with
strings.equal/bytes.equal).
2026-05-11 23:21:08 +09:00
c5f30f2fce ww: cgen trap batch (def-str field, chained-ptr write, scalar+str tuple ABI) 2026-05-11 20:49:21 +09:00
6219a47c6f ww: hare-feature batch (_, const, [_]T, ..., size/offset, assert, for-else) 2026-05-11 19:38:12 +09:00
579cc39f9b w6c: float-aware unary minus (fix -1.0 emitting +1.0 bit pattern) 2026-05-11 17:52:29 +09:00
9e383b7ba0 w6c: lower append() to rt_ensure + inline store (hare model) 2026-05-11 17:02:32 +09:00
177862fb29 ww: lift introspection files to lib/ww/ (ast, lex, tok, parse, typ, sym) 2026-05-11 16:17:23 +09:00
e301a198f4 wcc: c-side mangles private decls; main exempt as entry-point convention 2026-05-11 15:29:29 +09:00
d7036be0e5 ww+wcc: emit and lex // MODULE: <name> directive in combined.ww 2026-05-11 14:54:56 +09:00
2c33228b7e ww: rename toolchain to w-prefix + hare-style build/run/test driver
Plan 9-style w-prefix on the per-arch tools, disambiguating from the
real Plan 9 6c/6a/6l in ref/plan9front/:

    cmd/wwc/      → cmd/wcc/        libwwc.a → libwcc.a
    cmd/6{c,a,l}  → cmd/w6{c,a,l}   binary names too
    test/wwc/     → test/wcc/       6 test files w/ w6 prefix
    selfhost/cmd  mirror in lockstep
    bootstrap/amd64/{w6c,w6a,w6l}   snapshot binaries (gitignored)
    WW_6{C,A,L}   → WW_W6{C,A,L}    env-var overrides

Plan 9 source-tree refs ("Plan 9 6c shape", ref/plan9front/, etc.)
preserved. Hare-style driver, both C and ww sides:

    ww test [path]   discover *_test.ww in a directory module, run
                     each; single-file mode for `ww test foo.ww`
    Module-by-name   `ww build foo` resolves to foo.ww or foo/foo.ww
                     via search path (cwd : -I dirs : $WW_LIB)
    Default-to-cwd   `ww build` / `ww test` build the cwd module
    Run pass-through `ww run path arg1 arg2` reaches the program

lib/os: getcwd (79) and getdents64 (217) syscalls power `.` resolution
and directory enumeration on the ww side.

Makefile: wwstage tool deps now include lib/os/os.ww (+ lib/strconv
for wwdump_ww) so lib/* edits force their rebuild instead of leaving
stale binaries — surfaced when test 995 first failed against a stale
w6c_ww built before the lib/os additions.

Test 993 byte-identical parity gate (C-side ww vs ww-side ww_ww on a
build corpus) stays green; all 19 tests pass.
2026-05-11 13:49:27 +09:00
ecf0a84127 6l: dynamic linking with symbol versioning
Teach the linker to consume ET_DYN shared objects and emit a
dynamically-linked ELF executable. Snake et al. can now link
against libncurses + libc through the system dynamic loader.

Pipeline additions:

- dyn.c: read ET_DYN, parse .dynsym + DT_SONAME, walk
  .gnu.version_d / .gnu.version to learn each export's default
  version (skip hidden entries).
- pass.c: when an undefined sym is provided by some Lso,
  promote it to dynamic, assign a PLT slot, record the
  matched version on the Lsym.
- dynout.c: emit PT_INTERP + PT_DYNAMIC, .dynsym/.dynstr/.hash,
  .plt + .got.plt + .rela.plt, .gnu.version + .gnu.version_r,
  and the full DT_* set with DT_BIND_NOW. Patch PC32/PLT32
  references against dyn syms to point at their PLT stubs.
- main.c: -L<dir> and -l<name> flag parsing; resolve <name>
  via .so / .so.<N> / .a in libdir order, skipping GNU ld
  linker scripts (libc.so on most distros).
- ww driver: collect -l/-L (joined and split forms) and pass
  through to 6l.

Design choices:

- DT_BIND_NOW so the loader resolves all PLT slots at startup;
  no PLT0 lazy resolver stub.
- SysV .hash, not .gnu.hash. One bucket; loader scans the
  chain. Slow at scale, fine for snake-class binaries.
- Non-PIE at fixed 0x400000.
- No section headers — loader uses program headers, but
  readelf -V/-S won't display anything.

Symbol versioning is the only correctness item beyond the
basic PLT/GOT machinery: glibc symbols default to versions
later than GLIBC_2.2.5 (e.g. clock_gettime → GLIBC_2.17 for
the vDSO impl), and the loader rejects unversioned references
to those without a matching Vernaux entry.

test/wwc/810_dyn covers four cases: bare libc dyn call,
multi-PLT, clock_gettime versioning, and fn-pointer to FFI
binding (which exercises the codegen fixes from the parent
commit alongside the new linker path).
2026-05-11 09:42:27 +09:00
635818eb13 6c: float compare, fn-address @symbol, indirect call
Three N_BIN/N_IDENT/N_CALL sites missed cases that bit ncurses
demos and dyn-linker exercises:

- Float compare emitted CMPQ + signed Jcc on f64 bits. Now goes
  through UCOMISD/UCOMISS + the unsigned Jcc family, mirroring
  Plan 9 6c (txt.c around AUCOMISD).
- LEAQ-of-fn-ident (taking the address of a function as a value)
  used n->str without ffi_resolve, so binding a *fn from an
  @symbol("name") fn declaration produced a reference to the
  ww ident rather than the C symbol.
- N_CALL on a bare ident with no localfind hit was a direct
  CALL ident(SB). Now checks localfind first and indirects
  through AX when the callee names a local fn-pointer slot.

Hare/QBE handles both shapes the same way (sort/search.ha:15
calls cmp(...) where cmp is a *cmpfunc parameter).
2026-05-11 09:42:02 +09:00
1657bdeda3 ww: import toolchain — C bootstrap + ww-side self-host (phases 0-10)
C bootstrap (phases 0-9):
  cmd/wwc, cmd/6c, cmd/6a, cmd/6l, cmd/ww, rt, lib/*.

ww-side self-host (phase 10):
  selfhost/cmd/wwc — ww-cgen frontend; bootstrap fixed point.
  selfhost/cmd/6a  — assembler; byte-identical to C 6a (test 991).
  selfhost/cmd/6l  — linker w/ archive (.a) support; byte-identical
                     to C 6l (test 992).
  selfhost/cmd/ww  — driver (build/run/version); byte-identical to
                     C ww (test 993).

make test: 15/15. make bootstrap: ww2.s == ww3.s, ww2.o == ww3.o,
ww2 == ww3 byte-identical, with the full ww-tooled chain.
2026-05-11 02:17:47 +09:00