Per-package .a archives are written by a self-hosted deterministic ar
writer (zeroed mtime/uid/gid, fixed mode 100644, stable member order)
so cstage and wwstage emit byte-identical archives. The linker
force-loads the root .o positionally and pulls deps from .a; a
post-pull PASS-3 over unloaded members reports duplicate symbols
through the archive (#31). Both stages mirrored (cmd/ + selfhost/).
USER-ruled D2 (self-hosted ar writer); pike P1/P2 link model. Gate
989_separchive_run proves cs.a==ww.a byte-identity, 3x-determinism,
link-consumes-.a (exit 7), and the masked-dup-through-.a loud fire.
Promote commit-3's tri-color topo bail into a loud dep_cycle error that names the full import cycle, byte-identical both stages (cmd/ww/main.c + selfhost/cmd/ww/main.ww, deps.ha:243 parity).
Add a non-vacuous negative gate (989_sepcycle_dup) proving the pre-existing w6l duplicate-symbol reject fires loud + non-zero on a cross-package collision; no new linker code.
#58(b)(c) link-arg parity deferred (system()-string vs procrun()-argv is structurally un-unifiable in this scope); #61 filed for the byte-id-blind w6l_ww dup-message divergence.
build_one_sep (both stages + ww/main.combined.ww regen): discover_deps
(transitive directory-package set, dotted-path identity), tri-color
reverse-topo (cycle bails; loud reject is commit 4), the transitive
producer loop (one w6c -c -I pass per package, dep-first, each both
consumer and producer of its .wwi), and a flat w6l of the .o set.
combined.ww stays the DEFAULT live path; --sep is additive.
Every dep is tagged by its full dotted import path on prepend
(//ww:module <path>), so the definer's qualified symbol (#53) == the
consumer's qualified reference (#40) and the sep .o set links. The
prepend is the TRANSITIVE closure (lead-ratified, superseding
rob-c3-spec §1.3 direct-deps): a dep's interface can name a transitive
dep's type (os exposes time.instant), so the consuming unit needs the
whole closure for resolution — direct-deps-only does not type-check.
Consistent with the current flat-unit transitive-namespace model (the
visibility tighten is #45, post-M4).
Gate 989_sepbuild_run drives ww + ww_ww --sep on the real chain
root->os->{rt,time}: build+run (exit 7) + cs==ww per-pkg .s/.wwi/.unit
+ final binary + transitive-topo discovery + keystone bodies==.wwi
(os,root) through the real driver. Cold scratch; -o-redirected.
Under M1 mangling, EXPORTED non-fn decls (let/def/type) skipped path-
qualification and emitted a BARE symbol (`types.I64_MAX` -> `I64_MAX`).
Under separate compilation two packages exporting the same data leaf
would then collide at w6l. Masked in-tree only because no two packages
export the same non-fn leaf.
§7-A (USER-locked, harec's model): path-qualify EVERY exported decl
(fn AND data) at the single mangle choke-point — mod_collect /
collectmods. Retire the `!isfn && d->export` (cstage) and `exported==0`
(wwstage) skips: every decl with a module now mangles `<mod>.<name>`.
The ONLY bare symbols left are @symbol FFI overrides (ffi_resolve at
emit) and the ROOT unit's `main` — both already carved out before the
map insert.
With exported decls in the map the exact-(name,hint)-or-bare value
dance is dead — its sole purpose was the bare-exported case. Delete
mod_lookup_value / mod_mangle_value / mahint (cstage) and
modlookupvalue / emitsymnamehint (wwstage); the value-global sites now
route through the same hint-aware-with-fallback lookup as fns
(mod_mangle_fn/mafn, emitfnname). Net negative LOC in the mangler.
Transparent rename on the live combined path: ref and def move in
lockstep, so cs==ww byte-id holds and the self-host still builds + runs
(fixed-point/995). Byte-id REBASELINE — all 5 ww binaries shift. The
w6c/wwdump combined.ww embed wcc cgen and are regenerated.
Strlit labels were emitted as `_S_<n>` from a global counter with no
per-unit prefix (cgen.c intern_strlit + wwstage internstrlit twin).
Under separate compilation two str-bearing packages both emit `_S_0`..
-> w6l link collision.
Prefix the label with the owning package PATH (`<module>._S_<n>`,
matching mklabel's spelling). The prefix is c->cur_mod, set per-fn by
cgfn and now per-decl by let_pre_intern (save/restore so the later
emit passes, which read cur_mod for fn-ptr relocs, are unaffected).
Pure function of the module path — NOT a build-nonce — so the
self-host fixed-point holds across ww2/ww3/ww4. Both stages, symmetric.
Transparent rename on the live combined path: the label is interned
once and shared by every reference, so ref and def move in lockstep.
cs==ww byte-id holds; the w6c/wwdump combined.ww embed wcc/cgen.ww and
are regenerated.
746_strdef_inline: the strdef-inline sentinel pinned the bare
`LEAQ\t_S_` shape; update to the module-prefixed form (alpha._S_ for
the in-module def, beta._S_ for the use-site-interned cross-module
inline).
989_m3sep_run: add the #49 LINK leg. The str sub-fixture (sleaf+smid)
was keystone-only — never linked — precisely because the global
counter made both emit `_S_0`. With the prefix, compile both `-c`
separately, link (w6l) + run (sroot reads a distinguishing byte through
each string's .ptr, so a collided label would corrupt the exit), both
stages + cs==ww final exe.
lib/types limit consts were bare `def`s, so the .wwi (sep-compile's
interface) correctly omitted them while the flat combined.ww let a
cross-package user (lib/strings splitn → types.I32_MAX) reach the
private def — sep-compile then failed (wwstage `asserttyped: dot
'I32_MAX'`; cstage undefined-ref). Hare exports types::I32_MAX and the
whole limit family (ref/hare/types/limits.ha, arch+x86_64.ha); ww not
exporting them was the divergence.
export the 24 existing limit defs ({I,U}{8,16,32,64}_{MIN,MAX},
INT/UINT/SIZE/UINTPTR_{MIN,MAX}) and the existing RUNE_MIN, and add
exported RUNE_MAX. ww's derived machine-word int/uint/size/uintptr
VALUES are kept verbatim (user-ratified 64-bit-int divergence); fidelity
here is the NAME SET + export-visibility, not the values. RUNE_MAX is
written `0x10ffff: rune` — same codepoint as Hare's '\U0010ffff', forced
because ww's lexer has no \u/\U escape (#50).
Exporting the consts made `w6c -I` walk them and fatal on RUNE_MIN
('\0'): the .wwi const-expr unparser had no N_RUNELIT arm. Add one,
both stages (wwi_rune / wwirune), rendering a \xHH-escaped rune literal
(>0xFF fails loud, #50). Const casts need no arm — the checker folds
them to integer literals before the producer runs. 989_m2wwi_run gains
a types.wwi gate (byte-id + re-parse + asserts export def I32_MAX and
RUNE_MAX reach the interface). byte-id-neutral: a def emits no symbol.
The M2 .wwi producer rendered an exported fn carrying @symbol("...")
as a bare prototype, dropping the FFI link-symbol binding. A
sep-compiled consumer reading the .wwi then emitted `CALL malloc`
instead of `CALL rt_malloc` for `@symbol("rt_malloc") export fn
malloc`, breaking the bodies-vs-.wwi byte-id and the link. Affects
every package whose closure reaches rt/os.
Emit codegen/link-relevant attributes through a single named
predicate (wwi_attr_relevant / wwiattrrelevant), today true iff the
name is "symbol" — the only such attribute that exists. @align/@offset
are NOT field attributes in ww (the parser parses no field attrs, the
N_TFIELD node has no attr slot); the predicate is named for the class
so they slot in if ww ever grows them (#51). attr is assigned at
exactly one site per stage (parse.c:1351 / decl.ww:168), both inside
parsefn, so only N_FNDECL carries attrs and the fn-decl render path
covers the whole class.
Both stages, byte-identical (rule 10). 989_m2wwi_run synth gate gains
an @symbol fn + a content assertion that the .wwi carries it verbatim.
New `w6c -c` (both stages): separate-compile / primary-only codegen.
Emit code+DATA ONLY for a package's own (imported==0) decls; treat every
`.wwi`-sourced (imported==1) dep decl as an external. Pure addition behind
the flag — combined.ww stays the LIVE path, `-c` is off on every existing
invocation, so the 990-997 byte-id gates + all prior tests are unperturbed.
The keystone (rob): a `.wwi` is body-less/init-less prototype source, and
cgen already skips body-less fns as externs, so dep fns/types/defs emit
NOTHING for free. The single genuinely-new guard is an imported value-
global (`export let`): its DATAW would DUPLICATE the dep's own definition
(link collision), so it is skipped. The `imported==0` gate is applied at
all top-level emit sites for uniformity (close-by-construction): the fn
loop, emit_lets/emitletdataw, emit_defs/emitdefconstants, and
let_pre_intern/letpreintern — that last one because an imported dep's body
initializer interns strlits while its rhs-stripped `.wwi` does not, which
would shift the _S_ sequence; gating it keeps the strlit table a pure
function of the package's own decls. EXACTLY symmetric with M2's producer
`imported==0` filter — same predicate both directions.
Driver `--sep` build_one_sep + per-package archives + multi-.a link +
cache + BROAD real-target dual-path soak are M3-tail (#46, rob ruling B):
M3-core ships the codegen spine + a self-contained gate that proves all
codegen correctness without a production driver.
Gate 989_m3sep_run: a synth leaf->mid->root fixture carrying all four
cross-boundary fact-classes (fn signature, struct LAYOUT, `def` const
VALUE, `export let` value-global). Per package, holding `-c` constant:
`w6c -c` of (deps-as-bodies) == (deps-as-.wwi) byte-for-byte (the .wwi
conveys exactly the dep facts P's codegen needs); cs==ww at the .s AND
final-exe level (rule 10); sep-path determinism; the value-global guard
(imported origin_tag never re-emits DATAW); and behavioral identity (the
linked program's exit code is the real cross-boundary computation). COLD:
.wwi materialized fresh every run (no warm cache).
combined.ww regen'd for wwdump + w6c (both embed cgen.ww); diff is exactly
the four guards + the flag wiring, nothing spurious.
New `w6c -I <out.wwi>` flag (both stages) writes a re-parseable
ww-prototype rendering of a package's EXPORTED surface. M2 dead-code:
nothing consumes .wwi yet (combined.ww stays the live path); the flag is
off on every existing invocation, so the 990-997 byte-id gates and all
prior tests are unperturbed.
The unparse walks the AST type-expr subtree (N_T* nodes), not the
tinfo Type* (which collapses nominal pkg.Name identity). Deterministic
output: package line, byte-sorted imports, byte-sorted decls — a pure
function of the exported API. cmd/w6c/wwi.c + selfhost/cmd/wcc/wwi.ww
emit byte-identical .wwi (new cross-stage byte-id substrate, rule 10).
check_exported_type (drew) rides the producer entry, flag-gated: an
exported signature naming a non-exported nominal is loud-rejected before
any byte is written, identically on both stages. Ports harec
check.c:4092-4168, recursing the type-AST and gating on the resolved
SK_TYPE sym's decl export flag (Sym.exported is vestigial in both
stages; the predeclared synthetic `nomem` decl carries no source
position and is treated as a builtin leaf — cstage parity).
Two wwstage checker AST-mutations are normalized to cstage's pristine
view for byte-id: the N_TPARAM tuple-element wrapper (unwrapped) and the
variadic `T...`→`[]T` param desugar (peeled).
Gate 989_m2wwi_run: ascii/strings/getopt each produce a .wwi that
re-parses (wwdump -a) and is cs==ww byte-identical; a private-type-leak
fixture is rejected identically by both stages (non-vacuous check).
use_hint/usehint were unit-global first-leaf-match: two directory-
packages exporting the same fn leaf, each imported by a different module
aliasing the same bareword, mis-routed every qualified call to whichever
use was collected first. Identically wrong on both stages (byte-id-green
#263-class). Key the hint on (owner-module, alias) and prefer cur_mod,
mirroring the checker's use_path curmod-preference (55f54fb).
989_m1usehint_run: two same-leaf pick() across a.math/b.math, each
module's call routes to its own import (111/222) + cs.s==ww.s.
Switch symbol mangling from the import leaf clause to the full dotted import path for directory packages; single-file imports keep package-clause mangling (isdir-gate: imported<=>directory-import). The root build unit's fn main stays bare, every other top-level decl mangles, closing #31's duplicate-main hazard by construction (#32). Both stages, byte-identical.
Single commit, not split: the bare rename (f244af3) is red on its own because it unmasks cross-module resolution gaps that do not reproduce pre-M1, so the fixes are intrinsic to making the rename correct. Included: wwstage fnret/fnparamslookupmod map import alias->path (#199b cross-module union-variant scrutinee resolved the wrong fn's union); cstage use_path prefers the referencing module's import for an ambiguous leaf alias (sha256 crypto.math vs strconv math). Tests table-driven: 989_m1mangle_run/_sym, 989_m1union_run (gate-visible per-arm exit codes + cs==ww byte-id).
Dotted import paths lengthen mangled symbols; the assembler's
fixed symbol/TEXT/DATA name buffers must not silently truncate a
mangled name into a collision. Byte-id-neutral: no current symbol
reaches 63 chars. wwstage w6a already parses symbols via dynamic
dupstr, so no mirror cap exists there.
A tagged-union value nested in module-level array/struct static-init
mis-emitted in both stages: the lit-bytes emitters had no TY_TAGGED
arm, so a tagged element/field fell to the int path and the payload
landed in the TAG word -- match then read the wrong variant. The
zero-placeholder idiom (today the only way to declare a tagged global:
zero-init in static, write at runtime) was correct only by accident
(int-variant zero folds to (0,0), which equals the right (tag0,0)).
Extract a raw-byte core emittaggedbytes/emit_tagged_bytes -- variant
tag@+0, int payload@+8, zero-pad to the slot size; no directive, no
offset, no reloc -- and refactor the scalar tagged emitter to delegate
to it (byte-id-neutral). Add a TY_TAGGED member branch to the array
and struct lit-bytes emitters (both stages) that calls the core at the
existing full-slot stride, before the int fallthrough. Zero stays
(0,0) byte-identical; a non-zero element/field now emits (tag,payload)
correctly.
A wide (str/slice) or struct/>8B payload nested in an aggregate needs
reloc-at-member-offset machinery the aggregate byte-emitters don't
have, so it is loud-rejected (rule 7), deferred to #30; the existing
slice-of-tagged static-init reject is unchanged.
Regenerates the w6c and wwdump combined.ww. Table-driven 843 test:
non-zero array/struct (pre-fix returned the wrong variant), the
non-tag-0 bool-variant edge, byte-id-neutral zero-placeholder rows,
and wide-payload reject rows; each run row also pins cs-vs-ww asm.
A second top-level decl named `main` (fn/let/def/type) collides with
the entry main on the single bare `main` symbol: today both lower to a
bare `main`, w6l silently accepts the duplicate, and the program links
rc=0 then segfaults (or runs wrong), in both stages. The existing
duplicate-decl rejects key on (name, module), so a cross-module
`foo.main` vs the bare entry `main` read as distinct and slip through.
Add a program-global, name-only, cross-module uniqueness check on
`main` in the checker (both stages), colocated with the duplicate-decl
rejects and counting user decls before the -T synthesized test main.
Corpus-safe: a lone `fn main` in any package stays legal (ww has no
package-main convention -- cmatrix/lisp/mandelbrot are non-main-package
entries and keep building). This converts the silent segfault to a
loud compile error and subsumes the w6l silent-dup-main case (#31);
correct package-aware mangling of a non-entry main is deferred to the
root-unit entry-detection work (#22/#32).
Regenerates the w6c and wwdump combined.ww. Table-driven 842 test:
reject rows for let/fn/def/type main (genuine cross-module import form)
plus a negative single-main corpus-safe row that must still build+run.
A match whose scrutinee is a tagged field of a GLOBAL value-struct read
the tag/payload from the BP region (saved-BP + return-addr) instead of
g(SB) and returned garbage. Both stages were identical-wrong, so the
byte-id gate could not see it -- a gate-blind regression introduced by
M1 (#25): M1's in-place N_DOT match arm uses localfind(base), which
returns the 0 not-found sentinel for a global base, so 0+field.offset
landed in the frame.
Gate the in-place arm on a confirmed-local base -- `localfind(base)==0
&& let_islet/isletvar(base)`, verbatim from cstage's own global test at
cgen.c:2000 (both stages, same spelling). A global base now falls
through to the existing spill path, which cgexprs the scrutinee and
resolves g(SB). M1's local-field in-place ($32) path is untouched.
Regenerates the w6c and wwdump combined.ww. Table-driven 841 test
(global int/reassign/str-payload + a local-field M1 regression row),
runtime-discriminating: pre-fix returns garbage, post-fix 42 on both
stages; rob's direct-global-field spill caveat confirmed at runtime.
Compound `OP=` through an index (gs[i]/a[i]) or a bare ident (g) on a
tagged union silently misbehaved: cstage dropped the index compound and
plain-stored, and BOTH stages compiled an ident compound into an add on
the tag word -- byte-identical, so the gate stayed green while the tag
was corrupted. A compound op on a whole union is nonsense.
Gate the index plain-store arm on TK_ASSIGN so a compound falls to the
existing #133 reject (wwstage's byte-id twin); add a dedicated #21 ident
reject in both stages. This closes the compound half of the tagged-payload
write class (deref #18, dot #34 already reject).
#19 (global tagged-array static-init DATA) is a separate emitter, still open.
The indexed tagged-element assign arm computed its base without the
isglobal -> LEAQ name(SB) branch the scalar element arm already has, so
`gs[i] = v` on a global tagged array stored to a junk frame base and was
lost -- cstage rc=0 where wwstage (which has the branch) rc=42. Mirror
the scalar arm's base resolution; cstage aligns up to wwstage. Local
tagged arrays and scalar globals are unchanged.
The global tagged-array static initializer still mis-packs its DATA in
both stages -- a separate emitter path, filed as #19.
The N_UN/TK_STAR plain-deref assign arm fell to a single fldstoreop for
every pointee, so `*p = v` with p:*tagged wrote the rhs into the tag word
and never the payload -- identically in both stages, leaving the byte-id
gate green while the store corrupted the tag (#263-class, gate-blind).
Gate on TY_TAGGED and route through cg_widen_tagged_store into a scratch
slot, then word-copy to the destination -- the proven runtime-index arm.
Scalar pointees keep the single-store path unchanged.
A module-level nullable `(*T | void)` GLOBAL has no storage path in
either stage: let_emit_size / letemitsize returned 0 for the nullable
TY_TAGGED, so let_collect skipped registration and emit_lets skipped
DATA. The three READ paths then miscompiled SILENTLY and identically-
wrong (a #263-class both-wrong gap, not a wwstage align-up): match read
0(BP) = saved BP via the let_islet-gated #87 arm falling to localfind;
`g is *T` / `g as *T` emitted MOVQ name(SB) for a symbol with no DATA →
w6l undefined-reference. cstage's #87 match arm was itself `!is_nullable`-
gated, so both stages were wrong.
This is the silent→loud bridge: die loud at the size/storage layer the
instant a nullable global is declared, so all three read paths hit one
diagnostic instead of a silent miscompile. A silent gap here is exactly
what "stable before CSP" forbids — CSP's process/handle/chan singletons
(`let c: *Chan | void`) are THE canonical nullable-global consumer. The
full storage + read-class arc (real DATA, nil/void/address-of init, let-
registration, the three SB-resolution read arms) is deferred to task #15
(CSP-prereq); the `&`-init sub-problem additionally couples to the #48
static address-of relocation gap (which already bites a plain `*T` global
init the same way).
Diagnostic core text is identical both stages ("nullable-global storage
unimplemented (task #15)"); cstage's fatal() adds the harness-wide "ww: "
err.c prefix err.ww does not, the same per-stage asymmetry every existing
both-stage reject carries. Byte-id-neutral: the corpus declares zero
nullable globals (grep-verified), so the loud path is unreached in self-
compile and the emitted asm is zero-move; the embedded w6c/wwdump
combined.ww amalgamations are regenerated for the cgen.ww source change.
New 989_nullableglobal_reject: 6 reject rows (match/is/as on a &gv init,
plus nil-init and void-init match, plus an inline non-aliased nullable
form) prove rc!=0 + the shared diagnostic on both stages, init- and
form-invariant; 2 controls (non-nullable tagged global, plain nil-init
*T global) prove the reject is keyed on the nullable TY_TAGGED and the
#87 storage path is untouched.
A `x.f = o` copy of a whole struct field emits a MOVQ run for the
8-byte chunks plus a tail. Both stages inlined a tail that handled only
{4,1}: a 4-byte remainder went MOVL, a 1-byte MOVB, but {2,3,5,6,7} fell
through to an 8-byte MOVQ that OVER-READS the source and OVER-WRITES the
field's natural-offset successor. With #44 packing a successor at its
natural offset, that is a live clobber: outer2{i:inner2{u8,u8}, mark:i32}
copies i with `MOVQ -8(BP),AX; MOVQ AX,-16(BP)` and wipes mark@-12; the
correct move is a single MOVW. Same defect in cstage (cgen.c) and the
four wwstage field-copy sites (cgenexpr.ww: via-ptr, direct-BP-local,
global, and the multi-hop dot-chain CX variant).
Fix: replace each inline {4,1} tail with the descending greedy 4/2/1
(MOVL/MOVW/MOVB) the canonical aggregate-copy emitters already use, so
the tail is complete on every natural size. This is path (alpha) of the
#73 brief — a corpus-neutral, no-workaround completion of the inline
tail. Routing field copies through the shared aggcopy/cg_aggcopy choke-
point (beta) is the balloon: those emitters hardcode (SI)->(BX) at offset
k with zero base displacement, but the four field-copy dsts are
heterogeneous (foff(BX), boff+foff(BP) with no base reg, totaloff(CX)),
so routing forces per-site-per-stage LEAQ src->SI + LEAQ dst->BX rewrites
with no mechanical cross-stage mirror at the CX site = a gate-blind
cs!=ww risk. The emitter extraction is filed as a later addressing-
unification arc (#12). The ragged tail is corpus-absent (every corpus
field copy is tail in {0,4}, where greedy 4/2/1 emits exactly what the
old {4,1} tail did), so this is CLASS-N: zero corpus move on both stages,
byte-id holds by construction.
The cstage <=24 N_CALL receive site (cgen.c:5234) is a different copy
family (sret result read from AX/DX/CX, not a mem-to-mem field copy) and
already handles 4/2/1; left untouched. The str/slice/tagged/tuple 4/1
sites (#76) are likewise a separate family, filed not folded.
989_structcopytail_run pins it on both driver twins: tail2 (MOVW), tail6
(MOVL+MOVW), tail7 (the full MOVL+MOVW+MOVB ladder, the MOVB-path row),
plus an 8-aligned ctl8 (tail-0 control). Pre-fix cstage clobbers mark and
exits non-zero -> cs!=ww; post-fix 4/4 ok cs==ww.
When the dynamic section pushed the header past the first page, the
entry point kept its first-page address — every sufficiently large
dynamic binary SIGSEGV'd into the headers. Recompute e_entry as
entry - 0x1000 + text_off in both stages (ELF: the entry must point
into .text wherever it lands). Both stages move in one commit: one
ELF contract; the 989_dynentry gate pins the field and the run.
wwstage's unguarded loop-label push wrote out of bounds at depth 17
(compiler-heap corruption); cstage guarded but emitted a wrong break
target. Loud cap error at the limit, both stages, agreeing wording.
wwstage capped defers at 16 and SILENTLY DROPPED the 17th; cstage
capped at 32. Align the cap at 32 and make exceeding it a loud
compile error in BOTH stages — the silent 16-vs-32 split was the bug
(a defer that never runs is a leaked resource). Both stages move in
one commit: one cap contract.
The per-binding copy loop moved ONE word of a 24B str/slice binding —
.len and .cap read zero/garbage in BOTH stages (byte-identical, the
deepest both-wrong-identical of the drain: the F7-era stride fix
asserted convergence without re-measuring the absolute). Copy the full
extent for an sz>8 str/slice binding; the rewritten 989_tupfieldsize
pins all three header words with sliced caps so cap!=len has teeth.
The tagged-binding arm remains open as task #53 (wwstage
paramfieldsize). Review-era task #40, recategorized #263 fused.
Both stages move in one commit: one emission contract; splitting
would leave the byte-id gates red between the halves.
cstage dereferenced 0(BP) for the base — a SEGV on every store
through a module-global struct pointer; wwstage was already correct
(the inverse-set member). Mirror ww's global-pointer load. New
989_globptrfield_run pins cs==ww both stages. Task #47.
cstage's N_TYPEASSERT assumed cgexpr filled the registers and spilled
an uninitialized payload (cs=0 for any stored value); mirror the
landed wwstage emission (tag/payload/cap from g(SB)). Flips the
residual row to cs==ww==correct. Task #46.
cstage spilled frame garbage as the box; mirror the landed wwstage
emission (copy from gi(SB)). The F8-era divergence-only rows gain
pinned cs==ww values. Task #44.
cstage zeroed the return scratch; mirror the landed wwstage emission
(copy from the g(SB) base). Flips the F8-era residual row to
cs==ww==correct. Task #42.
cstage silently dropped the store on reassigning a module-global
tagged union; mirror the landed wwstage emission (tag+payload to
g(SB) via the widener). Closes the cs half of the F8 #263 pair; the
repro row flips to cs==ww==correct. Task #41.
Widening a runtime f64 into a tagged slot pushed a stale AX as the
payload while the value sat in X0 — both stages shared the push bug
(float literals dodged it because TK_FLOAT loads AX too); the
divergent pop sides then produced different garbage. Spill the
payload from X0 (MOVSD) with the variant tag. Review item #49.
Both stages move in one commit: one emission contract; splitting
would leave the byte-id gates red between the halves.
A str field reached through a chained dot (o.i.s) emitted two loads
(ptr, len) and stored a stale CX as the cap — both stages, at any
non-zero chain depth. Emit the full header at the chained-dot leaf.
Review item #29.
Both stages move in one commit: one emission contract; splitting
would leave the byte-id gates red between the halves.
Reading a slice-typed tuple element (t.0) loaded only the pointer
word; len and cap took whatever was left in BX/CX — silent garbage in
BOTH stages once anything clobbered the registers between build and
read. Load all three header words at the tuple-element arm. Review
item #28.
Both stages move in one commit: one emission contract; splitting
would leave the byte-id gates red between the halves.
s.f *= v silently became s.f = v (and the other non-+=/-= ops dropped
likewise) in BOTH stages across five lvalue sub-arms: via-ptr field,
direct local field, str/slice pseudo-field, and the two global-field
forms. Funnel all five through a shared combine dispatch
(cgdotfieldcombine / cg_dotfield_combine) emitting the load-OP-store
sequence at field width, hard-erroring the unhandled kinds — close-by-
construction so no arm stays on the old PLUSEQ-only path (the #133
BUS-routing lesson; #227 sites A/B are the closed siblings). The
refactor routes the corpus's existing +=/-= sites through the same
helper output-identically (byte-id held). Review item #34.
Both stages move in one commit: one emission contract; splitting the
halves would leave the byte-id gates red in between.
arr[i].field /= %= <<= >>= silently dropped the op (load-combine-store
emitted plain assignment) in BOTH stages — gate-blind, the #133 class.
Route every compound op through the combine dispatch at the indexed-
field arm and hard-error the unhandled operand kinds (float/str/slice/
tagged), per the #133 template (3986818). The runtime-correct target is
the op's own algebra (a OP= b == a = a OP b). Review item #33.
Both stages move in one commit: the fix is a single emission contract —
splitting cstage cgen.c from selfhost cgenexpr.ww would leave the
byte-id gates red between the halves.
wwstage's desugarcallargs ran no general per-arg typecheck (only the
narrow #258 array-to-slice arm): any mistyped scalar call-arg silently
miscompiled (int read as a 24B slice header; the -T face was a user
const __wwtests building a garbage test binary). Route every call-arg
through the predicate union isassignable()||assignableaddrfn(),
mirroring cstage type_assignable||assignable_addrfn and the check.c:1869
diagnostic. Confident scalar/aggregate and aggregate/aggregate
kind-mismatch rejects live in shared isassignable; the concrete-to-
tagged arm is shape-matched-lenient via tagshape() (AST mirror of cgen
taggedvariantindext) so genuine variant members keep flowing while
shape-mismatched aggregates reject. Reserve __wwtests under -T in both
stages (mirror the main reservation, check.c:2996). New table-driven
989_callarg_typecheck, 31 fixtures, reject rows proven red on pre-fix
binaries.
Deferred, filed, site-commented: the assign seam rides #178->#36
(typeeqast cannot compare variadic/module-qualified fn sigs); the
same-coarse-shape same-leaf nominal collision over-accept rides #37
(#10/#66 — the distinguishing module is absent from the AST surface
isassignable operates on).
`ww test <file> <pattern>` runs only the @test fns whose names match the
fnmatch glob; no pattern runs all (byte-for-byte the pre-filter path);
zero matches prints "No tests run" and exits 0 (Hare ground truth
ref/hare/test/+test.ha:114-117). A pattern in directory mode is rejected
"ww test: pattern needs a single test file" (rc 2), identical wording in
both twins (cmd/ww/main.c do_test + selfhost/cmd/ww/main.ww dotest).
Mechanism (a): rt/start.s stashes argc/argv into rt_argc/rt_argv getters
(rt_envp twin shape, -T synth untouched so 990-997 byte-id holds);
lib/os.args() rebuilds the []str view, build-once-cached; lib/test/run.ww
imports fnmatch and filters av[1..] (argv[0] is the binary path). The
driver forwards the 2nd positional as argv[1] via fork/execv (cstage) /
procrun (wwstage) so glob metachars aren't shell-expanded.
os.args() is the first `alloc`-caller in the base os module, so os.ww now
imports rt — the `alloc` builtin's malloc lowers to rt_malloc only when
the rt binding is bundled (mirror lib/strings/strings.ww:30); without it a
plain `ww build` of any os-importing program links bare libc `malloc`
(undefined). os is bundled by ~every program, so this is load-bearing.
The lib/test floor rises os-only -> os+fnmatch+ascii+strings in every -T
build; the bundled `ascii` module vs a `@test fn ascii` collision that
exposed is closed by the preceding #30 promote commit. 989_test_filter
pins the full matrix on both twins byte-identically; 949 gains the
dir-mode reject row. (#17)
lib/test/run.ww: fork+wait4 runner; each @test runs in its own child,
abort/SEGV/FPE decoded from wait-status, failures recorded and the run
continues; exit = fail count. Tests are hermetic: module globals do not
persist test-to-test (fresh fork image; sanctioned divergence from
harec's shared-process __test_main, no setjmp/signal layer needed).
-T synth (both stages) emits a module-global (str,*fn() void) table +
return run(table) instead of straight-line calls. Driver twins bundle
lib/test under test mode and gain ww test -c/-o (go test -c) so the
byte-id gates diff the same artifact the real path builds. Gates
989/910/997 rewired onto it; new 911 pins record-and-continue across
all three fault classes; 949 +3 rows. (#17-team commit-2)
Splice @test N_FNDECLs out of the unit after the body-check passes,
mirroring harec's checked-but-not-emitted: a broken @test body still
errors loudly in non-T; @test-free units are emission-unchanged.
910/997 table rows pin keep/test x non-T/-T, head+consecutive unlink,
undef-body reject, and plain-calls-dropped loud link-fail. w6c+wwdump
combined.ww regen. (#6-team)
Lone -I/-L/-l/-o now error "ww <cmd>: -X needs an argument" (rc2),
matching selfhost main.ww. do_test rewritten to an -I-only loop that
loud-rejects -l/-L/-o/unknown instead of silently swallowing them.
949_driver_flagargs: table-driven, 10 rows, each run against both
twins asserting identical rc+stderr. (#15-team)
'ww test' gains the istest build path (-T injection in build_one/
buildone) and do_test/dotest accept -I, mirroring do_run - both twins.
The 35 converted lib tests drop their interim bare mains (-T
synthesizes the entry from @test fns and rejects a user main); their
35 C run-drivers flip 'ww run' -> 'ww test'; 989_lib_byteid compiles
lib tests under -T (8 user-main probe fixtures stay non-T, gated on
the fixture field). Abort-on-first-failure stands until the deferred
record-and-continue harness lands with the multi-package arc.
A bare 'let x: T;' with 1 <= size(T) <= 7 matched no zero-fill arm in
either stage (8B and >8B were already zeroed) - 'let c: [3]u8;' read
stack garbage. User-ruled zero-value semantics: cstage gate sz>8 ->
sz>0; wwstage zsz==8 arm hoisted above the fill-run arm (required -
8B would otherwise route into the run and diverge) and run gate
zsz>0. New 840 pin: dirty-frame probe rows, dual-dim (run + cs/ww
byte-id); discriminators fail exit-154 on pre-fix binaries.
Fused with the lib/bytes test conversion (rule 11): either half alone
turns 967 red. The old exit(signalled+10) wrapped a real 1782-count
ltrim failure to exit 0 - green depended on the garbage. Converted to
assert form (completes the 35/35 @test conversion); ltrim rows keep
the bare 'let c: [3]u8;' as the consumer proof of the fix.
build_one/buildone gain an explicit objstem: 'ww build -o X' derives
main.{combined.ww,s,o} beside X; 'ww run' uses its per-pid /tmp stem;
default no--o stays next-to-source (load-bearing for the make regen of
tracked combined.ww and the freshness gate). Realizes the redirect TODO
in 995_self_rebuild.c. Kills the concurrent-test torn-read race on
selfhost/cmd/<tool>/main.* (the 991 transient). 993/995/949 pass -o
into their per-pid workdirs; 949's '-o /dev/null' relied on the old
driver ignoring -o (audited: the only live driver case). Atomic
combined write (os.rename) deferred to its own commit - lib/os lacks
rename and that addition is an import-floor regen.
Both driver twins: an import that neither locates as a file nor is
satisfied by an inline 'package <name>' declaration in the unit is now
fatal "ww: cannot find package <name>" (was a silent skip that masked
dead imports and typos). The inline scan is a new every-line helper on
the uncapped comment-skip core - peekpackage stops at the first decl,
and single-file multi-package fixtures declare several. 949 pins both
branches (miss->fatal, inline->build+run); 993 adds ww_ww parity.
check-(c): a package importing itself (any spelling) is a hard error,
mirroring Go. Predicate is leaf==owner at the N_USE/installdecl seam —
sound only after the PREP commits (dotted-test renames, package-less
boundary directive). Identical wording both stages; diagnostics-only,
byte-id-neutral. 948 pins the reject in both compilers; 708's
pos_selfimp (which pinned the abolished self-import skip) converts to
neg_selfimp + new pos_crossmod preserving the param-shadow tolerance
the case existed for. Checks (a) unused and (b)/(d) name-membership
stay deferred to the multi-package arc: imports are filename-keyed
pulls, so those need import->file provenance this compiler lacks.
Driver twins emit the line-comment directive only before package-less
files (peekpackage==nil); both lexers tokenize it (TK_MODRESET, appended
=87 so existing token values hold) and both parsers reset curmod — a
package-less file's decls get module "" instead of inheriting the last
bundled package (the sticky-curmod leak, task #11). Withdrawn
alternative: injecting 'package main' flips non-entry symbols
bare->main-prefixed (FFI-visible, broke 764). Codegen-neutral by proof:
bare symbols preserved, both stages emit byte-identical asm for a
directive-bearing combined. Transitional until strict-package rejects
package-less files outright. Includes 737 bad-deep pin for the
PREP-peek >2048 edge + 904/toktest rows for the new token.
@test was parsed then dropped (no consumer); `ww test` needed a hand-written
main listing each test by hand, so adding a @test and forgetting the call
silently skipped it. -T makes the checker collect @test N_FNDECLs in source
order, loud-reject a user main, and append a synthetic
`export fn main() i32 { t0(); ...; return 0; }` at the install->body-check seam;
the existing cgfn emits it (cgen untouched) -> byte-identical by construction.
Mirrors harec's checker-side is_test placement.
Plan-9-lean reduction (user-sanctioned, reinstatable post-CSP): sequential,
abort/nonzero=fail; no setjmp isolation, no fnmatch filter, no file:line.
910/997 rewired from a regex scanner to driving `w6c -T` directly (thin trusted
drivers; the @test content stays ww), with a cross-stage byte-id assert on the
-T output. attest_userman/attest_badsig pin the user-main and bad-signature
rejects.
A tuple whose element chases to TY_ARRAY/STRUCT/TUPLE (>8B) silently
miscompiled both stages: t.0[i] read segfaulted and construction dropped
the payload into the 8B slot. Reject the type at resolution (DISP-B);
faithful inline layout deferred to #60. cstage resolve_type N_TTUPLE
(declared) + N_TUPLE expr (inferred literal, was a cstage-only silent
miscompile + cs!=ww asymmetry); wwstage tinfofornode covers both.
test/wcc/832 + 941 migrated.
type pair = (int, int); let x: pair = (3, 4) -- an alias of a tuple
initialized from an untyped literal, and passing such a value to a fn --
was a both-stage bug, mirror-twins of the same TY_NAMED-not-chased root:
cstage CHECKER over-rejected the init (not assignable to declared pair):
type.c's tuple-assignable arm gated on the un-chased dst kind, so a
TY_NAMED alias skipped the per-element untyped->int coercion the direct
tuple path applies. Fix: chase TY_NAMED both sides (mirrors the #258
slice-borrow arm). Direct and typed-alias tuples already worked; only
alias+untyped was rejected.
wwstage CGEN dropped the second word of an alias-tuple fn-arg: the
tuple-param spill at cgendecl.ww gated on the syntactic N_TTUPLE, so an
alias param (N_TNAME) fell to the scalar path and spilled one slot ->
t.1 read frame garbage. Fix: chase the alias via aliaslookup to the
resolved N_TTUPLE and spill all its slots. cstage cgen was already
correct -- the bug was checker-only there. Converges cs==ww byte-id.
One commit: same construct, the two halves must ship together (either
alone leaves cs!=ww). test/wcc/826 (init/fn-arg/return, 2-field byte-id);
test/wcc/944 4 rows graduated err->run-correct. byte-id 990-997 8/8.