Tagged-union widening already fired for `let r: (str|rune) = "...";`,
`r = "...";`, and `return "..."` from a tagged-returning fn — but not
at call sites, so `fn f(x: (str|rune))` couldn't be called with a bare
str or rune. The arg was pushed as its own static type (2 words for
str, 1 for rune) while the callee's slot expected 3 (tag + payload).
C cgen: at the call boundary, look up the callee's declared param
type per arg. When the param is TY_TAGGED and the arg is a concrete
variant, materialise (tag, value-words, padding) sized to the param's
tagged_arg_size — then the existing pop-into-arg-regs logic picks it
up. Nullable `(*T | void)` collapses to a single 8B push.
selfhost: fnret now carries the params head alongside rtype (amalloc
bumped to 48); pushargsrev takes the matching param node and runs the
same widening sequence per arg. The pop drain in cgcall already
handled extra slot words, so no change needed on that side.
Verified with a smoke covering str/rune literals, typed locals,
pre-existing tagged-local pass-through, and nullable widening from a
raw pointer. Selfhost emits byte-identical asm to C cgen on the test.
`type error = !(invalid | overflow)` miscompiled — istaggedtype
only matched N_TTAGGED directly, so an `e: error` param spilled
as 8B scalar and the match's slot+8 read trailed into saved BP.
Mirror isstrtype's alias+bang unwrap; add resolvetagged() for
is/as/match sites that need the inner N_TTAGGED. Frame scan
counts via slotsize so wwstage stays byte-identical to cstage.
Unblocks lib/strconv.strerror.
ascii: valid, validstr, ispunct, isprint, iscntrl, isgraph, isblank,
strcasecmp.
bytes: hasprefix, hassuffix, rindex, rindexbyte, contains, reverse,
zero.
strings: rindex, sub, trimprefix, trimsuffix, ltrimbyte, rtrimbyte,
trimbyte. The byte-set trim is a single-byte subset of Hare's
`trim(input, exclude: rune...)`; no variadic ABI yet.
path: dirname, basename, extension, join. Owned-str returns where the
result isn't a borrowed view of the input (join).
endian: full Hare table — be/le get/put for u16/u32/u64 plus the
network-order htonu/ntohu pair extended to 32/64.
lib/CLAUDE.md rewritten to reflect the post-graduation policy
(tagged-union returns, owned-str returns, plan9 names, documented
deviations for non-graduating modules).
Makefile picks up lib/ascii and lib/fmt as wwdump_ww / w6c_ww deps so
lib-only edits regenerate the affected binaries.
i64tos / u64tos / f64tos return a fresh owned str (caller frees via
os.free) instead of writing into a caller-supplied [N]u8. Adds typed
variants (i32tos / i16tos / i8tos and u32 / u16 / u8) and the missing
base parameter on stoi64 / stou64 + typed parse wrappers.
Base values are exported as plain-i32 `def`s (strconv.DEC,
strconv.HEX_UPPER, ...) rather than a `base` enum: cross-module
`strconv.base.DEC` chains miscompile in the cstage cgen — it emits a
memory load through `base(SB)` rather than inlining the constant.
The Sdef path resolves correctly, so callers say `strconv.DEC` and
both cgens lower to an immediate.
Also renames strings.byteindex / rbyteindex to strings.indexbyte /
rindexbyte, matching bytes.indexbyte and reserving the Hare name
`byteindex` for the future `(str | rune)`-needle shape.
fmt drops printint / printlnint / fprintint — those were stand-ins
for variadic `fmt::println(42)`; with the owned-str graduation the
substitute is one call: `fmt.println(strconv.i64tos(42, strconv.DEC))`.
strerror is sketched in a comment but not shipped — match arms over
the wider `error = !(invalid | overflow)` union still expose a
cstage-vs-wwstage spill divergence.
ascii.digitval/isidstart/isidpart are lexer-private, not Hare-stdlib.
Moved into lib/ww/lex/lex.ww as fn (renamed digitval to hexval since
its sole job is the \\xHH escape decoder).
bytes.copy and fmt.errpos have no Hare counterpart and no external
callers; gone.
Makefile sets WW_W6C=$(BIN)/w6c_ww so `make`, `make test`, and
`make demo` all use the ww-built backend. With the wwstage cgen
fixes in selfhost/cmd/wcc/ the demo no longer needs to dodge:
- bug #1+#2 (global addressing): symbol interner indexes
sym_off / sym_len / sym_blob directly. No `let blob = sym_blob;`
aliasing.
- bug #3 (chained non-pointer sub-struct field): not retired here
(lexer.cur is still flattened) but the cgen now handles the
shape; un-flattening is cosmetic.
- bug #4 (f64 through every boundary): vfloat writes p.fval = v
directly; promote_v's FLOAT branch is one assign; to_f64 reads
v.ival as f64 / v.fval directly. Drops fbuf, FVAL_OFF, copybytes.
- bug #7 (xs[i].field): builtins write xs[0].kind / xs[0].car
directly; no `let p = xs[0];` first.
lisp_test still 101/101.
CLAUDE.md marks each historical bug as retired or still load-
bearing; #6 (slice-len in tagged-union return) and #8 (f64
compound assign) are the remaining shapes to avoid.
Surfaced via examples/lisp, which had to work around the following in
source. Each lowering now matches cstage on the same shape.
- cgassign / cgdot: two-level field through a non-pointer sub-struct.
`(*L).cur.kind = k` (cur a struct-by-value field of L) silently
dropped the store; the corresponding read fell into the SB-symbol
fallback and the linker reported `undefined reference to kind`. The
two new branches resolve outer-field offset + inner-field offset
and emit a single direct store/load at the combined slot, both for
T-by-value and *T-base shapes.
- cgdot: `xs[i].field` chains the trailing field load through the
N_INDEX result for [N]T / []T / *T element-of-struct-ptr. The
cgforrange loop variable now carries the elem tnode so the same
fast path covers `for (let x .. xs) { x.field }`.
- cgindex / cgassign: top-level `[N]T` array and `*T` pointer used
as an index base. cgindex now emits LEAQ name(SB) (array) or
MOVQ name(SB) (pointer) with the correct element scaling; without
this the fallback emitted neither base and walked off the saved
BP slot. Adds letvartnode() helper, an N_TARRAY branch to
letemitsize so the array shows up in c.lets, and an N_TARRAY
initialiser path in emitletdataw that lays the literal bytes into
DATAW.
- cglet / scanlocals: infer the local's tnode for an unannotated
`let x = f()` / `let x = f()?`. inferletcalltype() reads the
callee's declared return; `?` and `!` strip to the success variant
so a tagged-union let allocates the full 24B slot and the
struct-field dispatch in cgdot/cgassign sees the right type.
letslotsize now defers to slotsize on the inferred type.
- slotsize: follow type aliases for tagged-union variants. With
`type parserr = !str;`, the variant slot was 8B instead of the
required 16B; the tagged let stomped on the next slot at the
AX/DX/CX spill.
- cgreturn: tagged-union return forwarding. `return f();` where f
also returns a tagged union now passes the (tag, payload1,
payload2) triple through unchanged instead of re-wrapping it.
- cgreturn / cglet / taggedvariantindex: dispatch by variant name
with module-qualified-vs-bare matching, and recognise N_STRUCTLIT
as the variant tag for `return eof{};`. cgexpr default emits
`MOVQ $0, AX` so the surrounding return shuffle isn't left with
a stale AX.
- isstrtype / nodeisstr: resolve through `!T` aliases. `parserr =
!str` was not propagating the str-shape to the rhs check and the
MOVQ BX,CX shuffle was being dropped from str-typed local
returns.
- exprfloatkind: recognise `p.field` as f64/f32 when the struct
field is so declared, so `v.fval: i64` lowers to CVTTSD2SI on X0.
- cgassign: str field on a direct struct local writes both halves.
`L.src = s;` previously dropped s.len.
- cgcall: pop into the int reg window only up to 6 (DI..R9); rest
stays on the stack and the caller emits ADDQ to clean up.
cgfnparams accepts >6-arg signatures by registering the overflow
params at positive BP offsets (16+8*k(BP)), no spill instruction
emitted.
All 26 harness tests pass; bootstrap reaches a byte-stable fixed
point at ww3 == ww4.
vstr now copies the input bytes into the trans arena and promote_v
does the same into perm at the top-level boundary. STR cells used
to borrow the lexer's input slice; the REPL's buf-shift between
forms overwrote those bytes, so a top-level (define x "...") would
print garbage after the next read. Mirror of Hare's strings::dup,
arena-routed so the bytes share the cell's lifetime.
Parser learns dotted-pair literals: '(a b . c) splices the tail
into the cdr of the last cons. A bare '.' inside a list lexes as
tkind.DOT; outside a list it's still a parser error. Pre-fix the
'.' lexed as a one-byte SYM, producing a 3-element proper list.
Drop the unused args_to_slice — eval inlines on purpose (the
wwstage cgen drops slice.len through a tagged-union return).
Tests: 18 new probes (str-survives-3-defines, str-from-lambda,
dotted-pair walk + error edges) + a check_str helper. 101/101.
cgexpr leaves float results in X0, not AX, but the struct-field paths
emitted MOVQ AX,off(BX) and MOVQ off(BX),AX — so every store wrote
garbage and every load read garbage, except by accidental register
survival across an unrelated call. examples/lisp only worked because
parsef's X0 happened to live across the broken MOVQ shuffle into
vfloat; any inserted f64 op between them would silently corrupt.
Wire MOVSD/MOVSS X0,… (and the matching loads) into eight field
sites on both compilers: alloc(T{...}), p.x = v through local/ptr/
global, chained r.sub.x = v, *p = v for *f64, let v: T = T{...},
base.x reads, *T.x reads, and chained a.b.c.x reads.
83/83 lisp_test probes still pass; bootstrap reaches a byte-stable
fixed point at ww3 == ww4.
Two bump arenas. arena_reset_trans() runs between top-level forms;
top-level define / set! deep-copy the bound value graph into perm
via Cheney-style forwarding (pin = -1 + stashed fwd pointer in
.car/.val) so no perm cell ever points into trans. Args slice in
eval's apply path also gets explicit os.free per dispatch — without
that the rt_ensure page-per-call leak dominated and masked the
reset. test_huge peaks at ~2.6 MB under massif --pages-as-heap=yes,
down from ~525 MB pre-arena (~200x).
Replaces rt_alloc-per-cell (one 4 KiB mmap each) with arena_alloc
over 64 KiB chunks. test_huge peak under massif --pages-as-heap=yes
drops from ~525 MB to ~253 MB. Same lifetime semantics; remaining
bulk is per-call append() in eval's arg slice (rt_ensure still
mmaps page-per-call).
Demo program that lives entirely on lib/* and libwwrt.a — no @symbol
FFI of its own. The interpreter sits in lispcore.ww (exports for the
test driver); lisp.ww is a 3-line entry that calls lispcore.repl().
Language surface: integers, floats, symbols, strings, lists, lambdas
with closures, define / set! / if / quote / let / begin, recursion
(fact / fib / ackermann / gcd), map / filter / reduce as user code.
REPL is line-buffered: each read tries to parse one top-level form,
asks for more on "unterminated list", evaluates and prints, then
shifts consumed bytes off the front of the buffer. Lookahead-aware —
the parser primes one extra token so we shift to L.curstart, not
L.pos, otherwise the first byte of the next form gets eaten.
lisp_test.ww exec'd as a regular binary (ww test drops -I in single-
file mode); 66 probes cover arithmetic, lists, closures, recursion,
errors. test_*.lisp drive the live REPL through `make demo`.
The wwstage cgen still mis-lowers a handful of patterns at this
shape of program — top-level array indexing, global-ptr deref,
two-level field stores, f64 routing through *T, alloc(structlit{})
for f64/str fields, (slice | E) returns, xs[i].kind chains, f64
compound assigns. Each workaround is annotated at its use site;
the full taxonomy is in examples/lisp/CLAUDE.md.
Exercises match/yield/?/!/alloc/free/slice/tagged-union end-to-end:
the @symbol FFI binds initscr/mvaddch/init_pair/getch/napms; setup
returns (*void | initerr) propagated via `?`; main unwraps the clock
via `!`; dispatch is a nested match-as-expression that yields a
bool; key handlers fold into switch/enum (q/space) and (i32 |
speederr | void) for 1..4 + the '0' error overlay.
No definite or indirect leaks under valgrind (the only "possibly
lost" / "still reachable" bytes are libncurses's process-lifetime
terminfo caches, freed only with --with-leaks).
Three gaps in the wwstage cgen relative to C w6c, plus a matching
C-side bug surfaced along the way.
cgmatch (selfhost) handles non-ident scrutinees: `match (foo())` now
spills the AX:DX:CX return triple into a 24B `@match_spill` slot
rather than reading garbage off BP+0. scanlocals counts the slot so
the prologue SUBQ stays in sync. For N_CALL we recover the return
type via fnretlookup so nullable dispatch picks the pointer-vs-null
discriminator. Mirrors @match_spill in cmd/w6c/cgen.c N_MATCH.
cgcall (selfhost) special-cases `alloc(structlit{...})`: lower to
rt_alloc(totsize) + per-field MOV* at the struct's field offsets,
mirroring cmd/w6c/cgen.c's existing path. Previously the structlit
fell into pushargsrev and produced wrong code.
check.ww's N_MCASE branch now pushes a fresh scope around each arm
body. Without this, `case let e: str` inside a fn with an outer
`let e: *T` collided with scopedefine's same-scope dedup, the inner
binding silently dropped, and references to `e` inside the arm
resolved through the outer type.
Both cgens save/restore the locals head around case bodies so arm
binds (and nested arm-body lets) don't leak past the arm — code
after the match resolves names back through the outer scope.
w6c gains `local_alloc`: same as `localoff` minus the dedup. N_MATCH
case-bind allocation switches to it. Previously `let e: *T` (8B)
shadowed by `case let e: str` (16B) reused the outer 8B slot and the
inner str.len store overflowed into the saved BP, segfaulting on
return.
Tests 26/26.
Mirror of 548547a in the wwstage cgen.
cgexpr learns N_SLICE: `base[lo:hi]` leaves (AX=ptr, BX=len, CX=cap)
so callers (return, arg push, reassignment, let init for fn-returning-
slice / slice-ident) share one triple ABI. Without this, the existing
let-init that just forwards (AX,BX,CX) to the slot was silently storing
junk on a base[lo:hi] rhs.
cgassign gains a slice branch parallel to str: for a local slice ident
lhs, store all three halves to off+0/+8/+16; for a slice global, stash
CX into DI before LEAQ-ing the symbol address into CX (CX is both the
incoming cap and the LEAQ scratch), then store AX/BX/DI at +0/+8/+16.
N_IDENT slice-local triple load was already in place from the earlier
selfhost port; only the cgexpr and cgassign halves needed adding.
Byte-identical to C w6c on the corpus — make test 26/26, 994_w6c_ww
passes on 10 inputs, 990_selfhost + 995_self_rebuild reach fixed point.
Lexer: `lexnum` now parses the digit/exponent tail into an f64 via a
new `parsef64` (decimal-only, integer-arith driver + pow-10 multiply,
no strtod). The IEEE bits are also stashed in tok.uval via pointer
reinterpret so cgen consumers stay integer-only.
Parser: TK_FLOAT → N_FLOATLIT, carrying both fval and uval. Parser
state grows curfval to plumb the lexer's f64 through refill.
cgen:
- cgfloatlit reads n.uval and materialises X0 via the standard
MOVQ-PUSHQ-MOVSD-ADDQ trampoline.
- cglet, cgident, cgassign learn float-typed branches: MOVSS/MOVSD
for locals; LEAQ-indirect MOVSS/MOVSD for globals.
- cgbin handles ADDSD/SUBSD/MULSD/DIVSD (+ SS variants) and
UCOMISD/UCOMISS-based comparisons. cgun handles float negate
via the `0 - X0` shape C cgen uses.
- cgcast routes int↔float and f32↔f64 through CVTSI2SD/CVTTSD2SI/
CVTSD2SS/CVTSS2SD and their SS twins.
- cgcall + pushargsrev push float args via SUBQ+MOVSD and pop into
the X0..X7 stream, tracked by a per-class counter alongside the
int DI..R9 stream. cgfnparams loads float params from the same
stream.
- emitletdataw bakes FLOATLIT init bits into DATAW (4B for f32,
8B for f64).
Tests: smoke programs (literal init, reassign, arithmetic, fn args/
returns, casts) produce byte-identical asm through `w6c` and
`wwdump_ww -c`, and the resulting binary exits with the same value
whether compiled by the C or wwstage toolchain. Full `make test` is
26/26 and `make bootstrap` still reaches its byte-identical
ww2==ww3==ww4 fixed point.
.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).
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.
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).
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.
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.
Bring the wwstage toolchain to parity with C-side DATAW / DATAR /
.data / .rela.data support. With this, w6c_ww + w6a_ww + w6l_ww can
compile, assemble and link `let g: str = "lit";` (and the scalar /
str / slice / struct globals that landed earlier) end-to-end, with
output that's byte-identical to the C-side pipeline.
w6a (types.ww / parse.ww / asm.ww / obj.ww):
- A_DATAW + A_DATAR opcodes; parser learns `name+disp(SB)`;
A_DATAR records an R_X86_64_64 reloc in .data via the new
addrelocdata helper; areloc gains a `section` flag and asym
an `isdata` flag; obj.ww splits relocs into .rela.text /
.rela.data, emits .data PROGBITS + .rela.data conditionally,
and shuffles section indices the same way cmd/w6a/obj.c does
so byte output stays identical when no DATAW/DATAR are used.
w6l (sym.ww / obj.ww / pass.ww / out.ww / dynout.ww / main.ww):
- lrel grows `section`; lsym grows `indata`; lobj tracks
dataoff / datasize; lnk grows combined .data buffer;
- obj.ww loads .data and .rela.data, registers data symbols
with indata=1 and val shifted by the input's data_off, and
the archive scanner includes both .text and .data globals;
- pass.ww adds R_X86_64_64 (patch 8 bytes in .text or .data
with sym_va + addend); relocate's signature becomes
(textva, datava);
- out.ww emits a second PT_LOAD (R+W) when datalen > 0, with
.data at the page-aligned offset after .text;
- dynout.ww refuses .data + -l/-L cleanly (matches the C-side
error message);
- main.ww computes text_va / data_va and passes both to
relocate.
wcc cgen (cgen.ww / cgendecl.ww):
- letpreintern walks top-level str-lets and interns the strlit
BEFORE emitdatasection emits its DATA row, so emitletdataw
can later look up the same label;
- emitletdataw's 16B branch detects non-empty strlit init and
emits the 8-zero + 8-LE-len DATAW plus a DATAR slot+0,strlit
reloc, mirroring cmd/w6c/cgen.c.
Verified: `wwdump_ww -c` byte-matches `w6c` on a `let g: str =
"hello world\n";` fixture; `w6a_ww` and `w6l_ww` produce a
binary byte-identical to the C-side pipeline that runs and
prints "hello world". Bootstrap fixed-point holds (ww2 == ww3 ==
ww4), 26/26 tests green.
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.
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.
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.
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.
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.
Mirror the C cgen's N_IDENT load fallback. Reads of a top-level
scalar `let` now emit `MOVQ name(SB), AX` (RIP-relative) instead
of silently dropping. Truly undefined names still fall through to
the silent return, matching the pre-existing defensive behaviour;
the C side's broader unconditional fallback is intentionally not
mirrored here so typos surface as nothing-emitted rather than a
link-time stub.
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.
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.
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.
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.
`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.
`type nr = enum i64 { READ, WRITE, OPEN, ... }`. syscall0..4 take
`num: nr` so the wrong-arg-order trap is now a compile error
(`syscall1(0i64, ...)` no longer typechecks — it has to be
`syscall1(nr.READ, ...)`).
Internal-only (callers outside os.ww never touched the constants),
so no external API change. ABI is unchanged: nr's storage is i64
and rt_syscall's RDI is unchanged.
The selfhost combined.ww files regenerate as a side effect of
`make wwstage`.
Mirrors Hare's `fs::flag` and `io::whence`:
export type flag = enum i32 {
RDONLY = 0,
WRONLY = 1,
RDWR = 2,
CREATE = 64, // 0o100
TRUNC = 512, // 0o1000
};
export type whence = enum i32 { SET = 0, CUR = 1, END = 2 };
open/tryopen/lseek signatures take the enum types (`flags: flag`,
`w: whence`) so callers get type-checked: `os.open(p, os.flag.RDONLY,
0)` is the correct shape, and `os.flag.WRONLY | os.flag.CREATE |
os.flag.TRUNC` typechecks as a `flag` via the same-named-type rule.
Callers in selfhost/cmd/{ww,w6c,w6a,w6l,wwdump} updated from
`os.O_RDONLY` etc. to `os.flag.RDONLY`. SYS_* syscall numbers kept
as `def` for now (internal-only, ABI surface, no Hare analogue in
this scope).
selfhost/test/smoke.ww keeps its standalone-compile property by
using a numeric literal (`0`, RDONLY's value) for the open flags
arg — probe 6 in 990_selfhost compiles smoke.ww with no `use`
expansion, so cross-module type refs like `os.flag.RDONLY` can't
resolve there. Untyped 0 → flag via type_isnum.
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`.
w6c_ww now compiles enum end-to-end and emits byte-identical
asm to the C w6c on the new 994 corpus case (`type mode = enum u8
{ R, W, RW = R | W }; main() { return (mode.RW): i32 }`). Mechanism
mirrors the C side:
- collectenums walks every `type X = enum {...}` at file scope and
pre-resolves each member's u64 value (auto-increment from prior,
sibling-ref folding for `RDWR = READ | WRITE`).
- cgdot recognises `EnumName.MEMBER` before the local lookup and
emits MOVQ $value, AX directly.
- cgtypeassert short-circuits when either side is enum: cgexpr on
the LHS lands the value in AX with the right integer width; no
tag/unwrap.
main.combined.ww (wwdump/ + w6c/) regenerated by ww build.
`ww build` on a lib/ module drops a .combined.ww snapshot next
to the source. Only the bootstrap-frozen copies under
selfhost/cmd/*/main.combined.ww are intentionally tracked; the
lib/ ones are transient. lex.combined.ww slipped in via an
ad-hoc `git add lib/`.
Parses byte-identical to the C frontend on enum sources (verified
via `diff` of wwdump vs wwdump_ww -a on an enum-using fixture).
The selfhost side reserves the slot in the AST and TY_* enums so
later check.ww and cgen mirror work doesn't shift numeric IDs.
Codegen-side enum support (member-value folding in cgdot, enum↔int
pass-through in cgtypeassert) is deferred — current selfhost sources
don't use enum, so 990_selfhost / 995_self_rebuild stay green.
main.combined.ww in wwdump/ and w6c/ regenerated by `ww build` as
a side effect of `make wwstage`.
`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.