let x: []T = g.buf on a module-global struct dispatched only str
fields to the 3-word header load; a []T field fell to the scalar
tail (ptr word only), so len/cap read stale registers and the shape
was byteid-divergent against cstage's TY_STR||TY_SLICE arm (#263).
The four graduated pin families byte-compared under test-data-byteid
but their original fixtures masked the miscompiles at runtime (lone
frame slot, dead code path, pointer accident). Add the discriminating
programs as run fixtures: adjacent-element clobber for the 2-byte
deref store, second-variant match dispatch for fn-type dedup, payload
integrity across the tagged widen of a padded struct, and base64
clear() actually zeroing its buffers. Corpus pins move to 1,229
fixtures / 137 run / 766 run-exit / 2,458 cells with the new identity
hash; the data-byteid floor moves to 915.
The N_TFN arm stamped only size and return, so every fn tinfo carried
a nil param chain and typeeq judged any two same-return fn types
equal: tagged-union dedup collapsed (*fn(A) T | *fn(B) T) to a bare
8-byte pointer and match read the pointer word as a tag, falling
through every arm for a real second-variant value. Build the tparam
chain like cstage's N_TFN resolve (bare ... sets the FFI variadic
flag; a Hare T... param wraps to []T with a per-param variadic bit
that typeeq now compares, mirroring cstage type_eq). Graduates the
four r76_typeeq_fn pins; the DATABYTEID_DIVERGED ledger is empty.
cstage types the binding ty_u8; the wwstage single-binder arm peeled
the element only for slice/array iterables, so a str scrutinee fell to
the N_FORRANGE fallback decl and exprtype stamped the binding str.
The stamp-keyed call-arg marshal then pushed the 3-word str ABI for a
1-word scalar, and an uncast compare on the binding was falsely
rejected. Route str through the same synthetic-N_LET binder with a u8
element. Graduates r940_str_forrange_arg.
cgwidentaggedstorebp's struct-ident arms (local and module-global)
counted copy bytes from structinfo.totsize, the round-8 slot width, so
a struct whose natural size is not a multiple of 8 took the MOVQ word
loop and copied the source slot's dirty pad bytes over the zero-fill
the arm itself just established; the width-true tail emitter beneath
was dead code. cstage keys the same copy on su->size. Route both arms
through copysrcnatsize (the stamped-tinfo natural size, #71).
Graduates r71_tagged_return_scratch_mixed.
pushargsrev's N_SLICE arm resolved esz and the base address from the
stamped tinfo of an N_DOT [N]T-field base but let the omitted hi bound
fall to $0, so the #258 array-to-slice borrow desugar handed callees a
zero-length slice: base64 clear()'s bytes.zero(e.ibuf) was a runtime
no-op under the wwstage frontend. Take the element count from the
field's array tinfo like the cgslice #252 arm and cstage's bu->alen.
Graduates r989_libprecond_decodedsize_aligned and the 989_lib_byteid
#59.3 base64 pin.
The plain `*p = v` arm's storeop map handled 1- and 4-byte pointees
but let a 2-byte one fall to MOVQ, an 8-byte over-store that clobbers
six adjacent bytes (masked in the pinned fixture by the lone frame
slot; loud with `&a[0]` of a [4]i16). cstage fldstoreop maps 2 to
MOVW. Graduates r660_i16_out_param_negative.
Every probe's assertion is owned by a current gate: the compile and
link probes by make all and the bootstrap fixed point; build/run and
cs/ww byte identity by the fixture corpus, test-data-byteid, and
989_lib_byteid; wwstage driver and toolchain parity by 993/995;
checker-diagnostic parity by the corpus' both-stage //ww:error rows.
The wwdump -t/-a dump-parity probes gated the frontend port's
convergence, which the compiler-output identity gates now own end to
end; carrier ran green at retirement.
What was still uniquely alive migrates: smoke.ww becomes corpus
fixture selfhost_smoke (upgraded from a cstage-only build to both
frontends, byte-identical, exit 42 on both toolchains; corpus pins
move to 1,225/763/2,450 with the new identity hash in the same
commit), and sym_link.ww's scope/sym behavior rows become in-language
lib/ww/syntax/symtest.ww under LIBRARY_TESTS. uses.ww (parser-stub-era
-a fixture) and the already-orphaned tagged_ptr_ret.ww/trypromote.ww
retire with the probe corpus. Bootstrap native gates drop to six;
frontend numeric-sync comments now cite the rule-6 mirror instead of
the retired diff probe.
Same contract as the 27 repaired byte/artifact survivors: checked
acquisition, one all-exit cleanup funnel per carrier, ENOENT-tolerant
checked unlinks, exact-path deletion, and cleanup failure fails a
passing carrier without overwriting its diagnostic. Also closes the
vacuous-green channels: empty-artifact pairs no longer byte-compare
equal, capture and staging failures fail their row loudly, 950 requires
a clean checker exit on no-error rows and hard-fails on a missing
wwdump_ww, 992 keys its scratch per invocation so a failed cleanup
cannot leak stale objects into the next tool's compare, and 995 no
longer pre-sweeps a workdir it never created. No assertion is weakened;
990_selfhost is retired in the next commit rather than repaired.
test-system-v2.md is the authoritative owner table and target graph;
CLAUDE.md rule 13 moves from the sizelint gate to authoritative layout
helpers and rule 14 names the new targets; PROJECT_PLAN.md is marked
historical where superseded.
peel-ok/sizelint-ok/primsize-ok annotations lose their tools; sites
keep the WHY in plain words. Citations of retired carriers move to
their fixture or @test successors (949_errtype_compare -> r949_*,
900_stdlib -> library owners).
Presence-is-registration wrapper classification replaces the 296-entry
TESTS list, its per-wrapper rules, the test/run scheduler, the
last-green cache, and auto -j; test is five in-process units plus one
fixture smoke; test-commit composes behavior suites; byte identity,
bootstrap, and platform stay explicit gates. test-data-byteid builds
every non-error corpus fixture twice through the fixed cstage driver
swapping only WW_W6C and byte-compares every per-package .s, with a
910-fixture vacuity floor and the DATABYTEID_DIVERGED loud-pin ledger
(8 real cs/ww divergences: r660, r71, r76_typeeq_fn x4, r940, r989 -
the base64 #59 pin). The 61 carriers whose only assertion that
comparator subsumes retire with it, leaving the 27 survivors that
observe asm patterns, symbols, frames, .wwi round-trips, inline-only
sources, or the wwstage driver leg.
One commit because the wildcard classification sweeps any leftover .c
into test-compiler, where the retired carriers' --sep invocations
cannot run against the current driver; the 61 deletions, the 27-entry
byteid list, and the blanket comparator are a single consistent state.
tools/peellint and tools/sizelint (and the 944 gate wired to them)
retire with the target graph that carried them; rule-13 layout
discipline stays on the authoritative-helper rule.
Behavior and reject carriers whose rows now live as test/wcc/data
fixtures or test/lang @test tables; the 31 library launchers plus
900_stdlib, whose only assertion was an existing @test source's exit
status (LIBRARY_TESTS runs those sources directly); and the test/run
shell harness, its protocol self-test, and the runww corpus runner.
Their Makefile registrations dangle until the target-graph flip in
the next commits.
local_zeroinit_test.ww takes the 840/944 zero-init seam (dirty-frame
prime and probe share one @test because the runtime forks per test);
alias_cgen_b6, alloc_nested_field, array_static_init, and
strarray_static gain the rows their retired wrappers held; the
remaining files re-point reject-row citations at the r788_* and
stage-matrix fixtures.
Every surviving carrier now owns its artifacts: checked mkdir/mkdtemp/
fopen acquisition, one all-exit cleanup funnel per carrier, ENOENT-
tolerant checked unlinks, exact-path deletion (rm -rf only for an
owned pid-keyed dir or a .sepwork beneath one), and cleanup failure
fails a passing carrier without overwriting its diagnostic. In the
same pass the carriers adapt to the driver contract this branch lands:
--sep and WW_PKGCACHE are gone, -S and the /tmp/ww_run_<pid> scratch
contract are asserted, and rows whose runtime or reject coverage moved
to test/wcc/data fixtures or test/lang @test owners are trimmed to the
byte/artifact/diagnostic observations only they can make.
Repair and adaptation ride together because most files interleave both
in the same hunks; splitting would manufacture intermediate carrier
states that never existed and cannot run against either driver.
000_smoke drops its popen ww -V leg (driver version parity moves to
949_driver_flagargs); 400_w6c feeds its sources through lex/parse/
check/cgen into open_memstream instead of spawning w6c. The five unit
binaries now hold zero subprocess calls.
Discovers test/wcc/data, hard-pins corpus identity (1,224 fixtures,
314 error / 12 compile / 136 run / 762 run-exit, sha256 name hash),
schedules both frontend cells per fixture through os.exec with
per-cell capture dirs, and emits the strict wwfix TSV result stream.
integration.sh is the black-box owner of the CLI/protocol boundary.
The r-prefixed waves absorb the runtime, reject, and byte-compare rows
of the migrated native carriers; each fixture is one directory with one
case.ww and a //ww:error, //ww:compile, //ww:run, or //ww:run-exit
directive covering both frontends.
Scratch acquisition is one bare mkdir that refuses a pre-existing
.sepwork; the path reaches cleanup only after acquisition succeeds.
ww build and ww test -o keep the tree for the caller; ww run and
no-output ww test build under an owned /tmp/ww_{run,test}_<pid> dir
and remove it on every result, escalating rc on cleanup failure.
The content-keyed package cache is deleted from both stages; -S stops
after per-package .s emission; --sep is gone and unknown flags are
rejected; directory ww test delegates to the wwtest coordinator; the
wwstage driver routes every subprocess through os.exec.
The wwstage Makefile recipes move off the persistent <tool>_ww.d
build-in-place shape to a per-invocation mktemp workspace: the old
recipes relied on the retired pre-wipe semantics and any rebuild
would trip the new refusal on their leftover main.sepwork.
The three 989_pkgcache_* carriers lose their subject with the cache
and go with it; the rest of the wave's carrier adaptation follows in
its own commits.
Single-directory package-test planner: discovers *.ww, groups white-box
and external <pkg>_test sources, composes the combined test package,
builds it through the sibling ww driver, and runs it with the runtime's
-package/-list/-timeout-ms contract. test/package holds its E2E corpus
and the manual runtime fixture set.
Captured-async start/poll/cancel plus inherited-stdio run/runstdio with
process-group creation, close-on-exec errno marker for exec-setup
failure, TERM-grace-KILL escalation, and a signalfd interrupt watch.
test/wwfixture/process/main.ww is its self-exec harness, built by both
driver stages.
Each @test forks into its own process group with a nonblocking control
pipe carrying framed ready/complete/skip/expect-abort records; timeouts
escalate SIGTERM then SIGKILL over the group. New exports skip,
expectabort, current; new flags -list, -timeout-ms=, -package=. A clean
exit without a completion frame is a harness error, and the exit code
is 0/1 with a discovered/selected/started/completed accounting line.
toktest drops its fixed /tmp path for temp.named so parallel invocations
cannot collide.
A module-global base has no frame slot; treating its local-lookup miss
as offset zero wrote .ptr/.len/.cap at the caller return address. LEAQ
the symbol like the struct-field global arms do. Both stages.
The a[i] = src copy loop enumerated ident/field/deref sources; an
N_INDEX rhs fell to the scalar tail and truncated the element. Route
it through the generic place-address funnel. Both stages.
The direct-field assignment arms enumerate CALL, STRUCTLIT, and local
IDENT producers; an addressable N_DOT/N_INDEX/deref rhs fell through to
the scalar tail, so a 16-byte struct field copied only its first word.
Resolve both places through the existing address funnels and use the
tail-aware aggregate copier. Both stages.
A str `def` has no name(SB) header; the streq push arms read a frame
slot that does not exist. Load the literal through cgexpr (AX=ptr,
BX=len) instead. Both stages.
wwstage exprtype's N_CALL fn-value arm peeled ALL pointer levels before the
TY_FN gate, so a deref-less `pf(21)` where pf:**fn type-checked and lowered --
then segfaulted at runtime (a silent miscompile). cstage peels exactly one
level and loud-rejects (the C6a discipline, check.c:1947).
Align wwstage DOWN: peel one level (loop -> if); a remaining non-TY_FN callee
hits a loud "calling non-function" reject mirroring cstage's message. Both
stages now reject the exotic deref-less `**fn`/`***fn` shape; the legitimate
`(*pf)(21)` and one-level deref-less `f(21)` (f:*fn) still compile + run.
Multi-level autoderef is a separate deferred FEATURE, not a miscompile to lower
(rule 7/10 -- align the richer stage down to the leaner, no value ships).
ww-only change (cstage is the correct oracle); a reject emits no asm, so the
byte-id baselines and LANGBYTEID floor are unchanged.
Pins: cfail test/wcc/data/fnptr_pp_derefless_reject (both stages reject,
reddens-on-revert -- the silent miscompile resurfaces if the fix is reverted) +
test/lang/fnptr_derefless_call_test (positive guard (*pf)(21)==42 and one-level
f(21), value-asserted + byte-id, so the fix does not over-reject the legitimate
one-level autoderef).
The W1/W2/W5/W4b store / structlit-fill arms still resolved struct field
LAYOUT by bare-leaf name (structlookupchain / structlookup / letvarstructinfo)
inside the per-field store loop -- the write-side twin of commit-1's read fix.
Under a cross-module same-leaf collision (two modules each exporting a `pair`,
16B vs 24B) the field is stored at the wrong offset/width; an interior 2-byte
field store silently corrupted neighbours. cstage walks the resolved Type*
(never a name) and is correct; this aligns wwstage UP (ww-only change).
Convert each store loop to a tinfo-native fill. Two new helpers in cgenutil.ww:
sretretsizetn (a verbatim port of cstage cg_sret_retsize -- 4 kind-branches,
no TY_BANG, dropping the #129 module-juggling that was pure name-keying
compensation, redundant once the lookup walks resolved tinfo) and
cgstructlitfilltn (the tinfo-native twin of cgstructlitfill, recursing on
tichase(tf.type_).fields with NO name lookup at any nesting level). Supporting
twins storeopsz / tfieldlookup / cgdotfieldhardstoptn. Because the fill never
bottoms out on a name, the W4b "decisive wall" (a structlit that needed a
(sname,smod)-keyed structinfo the stamped leaf-only tinfo couldn't supply)
dissolves by construction, with no module-aware tinfo->structinfo bridge.
This CLOSES the nine in-loop nested sub-arms (N_CALL / N_STRUCTLIT / N_IDENT
field receive) by construction -- the tf walk has no name lookup. The
non-reddenable global arms (W5/W4b) are converted-for-construction: a qualified
global decl resolves its bare leaf correctly today, so byte-id (cs.s==ww.s) is
their net, not a value pin. `!T` is kind-preserving in both stages
(resolve_type / tinfofornode), so a `!struct` sret sizes as the inner struct,
never TAGGED -- the #129 drop changes no size.
Completes the 2-commit #31 arc (RULING R2 / Opt-2, .ai/ken-31-spec.md): the
#224 name-keyed receiver-layout cluster is now closed by construction. The
residual nested-field surface (the shared cgstructlitfill kept for its non-#31
callers + the cgenstmt/cgenutil let-receive/fill family) is tracked as #32.
Pins: test/wcc/797 value-asserts ptr-WRITE (W1) and val-WRITE (W2), each
reddening under independent per-arm revert; nestfill_box drives
cgstructlitfilltn's nested recursion (bootstrap-uncovered -- the corpus has no
struct-literal field store -- so the value pin is its only net).
wwstage cgen resolved struct field LAYOUT (offset + field type) by bare-leaf
name (structlookupchain / structlookup / letvarstructinfo) at nine field
READ / addr-of / let-copy receiver arms whose base is a *struct pointer, a
value struct, or a module global. Under a cross-module same-leaf collision
(two modules each exporting a `pair`, 16B vs 24B) the bare-leaf lookup
first-matches the wrong-size struct -> the field is read / addressed / copied
at the wrong offset with the wrong width. cstage type-keys off the stamped
node.type_ (type_chase_named(base->type)->fields) and is correct; this aligns
wwstage UP to it (ww-only change).
Route the nine arms off the stamped receiver tinfo: R1/R2 *struct reads via a
new shared choke-point cgptrfieldloadtf (the tinfo twin of cgptrfieldload);
A1/A2/A3 addr-of and W3 scalar global-store via tichase(recv.type_)->fields;
C1/W4a copy/size via structabisizetn(tichase(.type_)). Mirrors #21 (5ae6e34);
the *struct arms peel the pointee with tichase(.type_).sub, the faithful twin
of cstage type_chase_named(bu->sub).
The global value-struct arms (R2/R3/A3/W3/W4a) are converted-for-construction:
a global struct's type is always explicitly qualified, so the bare leaf already
resolved correctly and they cannot be reddened -- byte-id (cs.s==ww.s) is their
net, not a value pin. Labelled so the absent reddening pin is explained, not
silent.
Commit 1 of a 2-commit arc (RULING R2 / Opt-2, .ai/ken-31-spec.md): closes the
field-LAYOUT read/copy/addr surface. Commit 2 converts the W1/W2/W5/W4b store
loops to a tinfo-native fill (cgstructlitfilltn + sretretsizetn) and closes the
in-loop nested sub-arms by construction. Part of the #224 name-keyed-cgen
cluster retirement.
Pin: test/wcc/797 value-asserts R1 ptr-read / C1 let-copy / A1/A2 addr, each
reddening under independent per-arm revert (a ratchet proves nothing for this
silent-capable class).
wwstage cgen resolved struct LAYOUT by bare-leaf name (structlookup /
structparamsize) at three caller-side sites — the by-value arg push
(cgenutil), the let-receive copy width (cgenstmt), and the field-read
offset (cgenexpr). Under a cross-module same-leaf collision (two modules
each exporting a `pair`, 16B vs 24B) the name lookup first-matches the
WRONG type, so the push dropped the 2nd eightbyte, the receive over-copied,
and the field read the wrong offset. cstage type-keys off the stamped
tinfo and is correct; this aligns wwstage UP to it (ww-only change).
Route all three sites through the stamped node.type_ via a new
structabisizetn(*tinfo) accessor (push + receive) and tichase(type_).fields
(field-read, structlookupchain removed). One commit (rule-11 carve-out):
the collision drives all three at once and no per-site fixture isolates, so
it cannot bisect-split. A scoped slice of the #209/#211 name-keyed-cgen
cluster retirement; the cgdot *struct-ptr/global and let-copy siblings stay
name-keyed and are filed (#31).
New table-driven test 793_xmod_struct_argpush_collide_run (4 scenarios:
push/recv/field over 16B and 12B tails) reddens under a revert of the three
cgen files. Full make test green (336 passed); make sizelint clean.
Flip the soft-default to a hard "missing package clause" error symmetrically in
both stages (cmd/wcc/parse.c + lib/ww/syntax/parse.ww): the first real decl of a
primary section with empty pathmod/resetmod and no seen clause is now rejected.
Closes the documented soft-default divergence (the 63-wrapper carve-out).
The gate flip can't be split from the migration it breaks, so this is one atomic
commit: ~80 test/wcc wrappers gain `package main;` via a shared wwtestpkg.h
helper, 6 data fixtures plus 17 asm-grep assertions update for the bare->main.<leaf>
root-helper mangle shift, and rt/ declares `package rt;` with @symbol pinning the
bare rt_ensure/rt_malloc linker names.
Root mangling narrows: the executable entry `main` stays bare (existing
carve-out), but root helper symbols become main.X. The #84 cluster is rewritten
to assert main.run distinct from aa.run/test.run; its cgen fix and bare machinery
are retained — still load-bearing for package-less module-reset deps. New
table-driven test 782_strict_package.c (6 rows, both stages).
Retiring //ww:module-reset is deferred to #24b: it is load-bearing (clears the
.wwi pathmod so the body's package clause asserts), not a vestige; fusing its
removal here would be a silent mismatch.
All byte-id gates green; full make test reports "all 335 tests passed".
Completes the #14 close-by-construction begun by the helper extraction (e7fefa3): every <=24B aggregate register-store now routes through cg_agg_reg_store/cgaggregstore and handles all tail sizes. B/C/D/G fix a silent both-stage drop of a 3/5/6/7-byte tail (byte-id-blind: both stages dropped identically, so the gate could not see it). A/F enable a previously loud-rejected shape (a cgen backend gap, not a type rejection; harec accepts and lowers it). G (global g=f() array) routes symmetrically, dest_padded=false. The #11 arr[i].f scratch loops fold into the helper (dest_padded=true, byte-id zero-change), completing the grep-audit. Pins value-assert each eightbyte (the class is byte-id-blind) and redden under each stage's independent revert; site H's 3/5/6/7 let-receive stays a loud fatal (#22).
A stack array literal returned into a tagged-union slice success variant (fn mk() ([]i32|e) = { return [10,20,30]; }) slipped past reject_arrlit_borrow — it bailed when the dst was not TY_SLICE, but a union dst is TY_TAGGED — so cgen built an all-zeros slice header: a silent both-stage miscompile (and the .ptr would dangle anyway, no outliving backing). Extend the reject to chase a TY_TAGGED dst to its slice success variant, then apply the existing reject; this is the #25/#31 treatment seen through the union, and matches Hare (rule-9). Reached by all acceptance sites (return/assign/call-arg) so the class closes by construction. Both stages converge on an identical accept/reject decision (an array literal assignable to a union is assignable to a slice or array variant; neither stage can accept it). Full support — promoting the literal to an outliving backing — is the separate #33 arc. Compile-error fixture + a positive over-reach guard (a real slice into the union still compiles). No asm emitted by a reject, so byte-id is unchanged (no floor ratchet).
cg_structlit_fill/cgstructlitfill dispatched scalar field stores as {1->MOVB, 4->MOVL, else->MOVQ} with no fsz==2 case, so a 2-byte field was stored with an 8-byte MOVQ. Interior over-stores were harmlessly overwritten by the next field, but the LAST field at the frame edge corrupted the saved base pointer: an (S|e) union success variant places the struct payload after the 8B tag, landing the last field at -4(BP), so MOVQ AX,-4(BP) wrote into saved [BP] and POPQ BP restored garbage — a silent both-stage caller-frame clobber. Route the scalar store through the existing fldstoreop/fieldstoreop helper ({1->MOVB,2->MOVW,4->MOVL,else->MOVQ}), both stages; the #13 graduation comments already pre-documented this resolution. Pure width fix, no loud-stop (scalar widths are always {1,2,4,8} and narrowing is always correct). Value-asserting pin: an i64 sentinel live across the union-maker call (detects the clobber directly) + all members, with a non-union control.
A struct/array success variant in an (S|e)! / r? unwrap dropped eightbytes on BOTH stages (byte-id blind). Two layers: (L1) the unwrap success shuffle (cgtrytaggedshift) matched no arm for a struct/array success and fell to a bare MOVQ DX,AX, materializing only w0 — widen the existing nested-TAGGED shift's gate to admit TY_STRUCT/TY_ARRAY (the in-cap union packs the payload as raw GP words past the tag, so that shift is exact); (L2) the aggregate store arms gated on rhs.kind==N_CALL and stored one word for an unwrap rhs — relax to also admit N_TRYUNW/N_TRYPROP at the three silent store shapes (arr[i]=, single-dot field, indexed-field), reusing the materialise scratch path (now #10-correct). Rule-7 LOUD-STOP for a float-bearing success variant (an SSE eightbyte cannot ride the GP {AX,DX,CX} shift, #165). The four already-loud unwrap consumers (let-receive #7, call-arg #271, assign-existing #49, resolver-field #24) stay loud; global/chained single-dot field (#16) and the sub-8-tail-through-unwrap union-maker frame clobber (#15) are separate follow-ups. Value-asserting pin, reddens under each stage's independent revert.