7e19d282f4ca1fbd8264f78f2ade17f68a33cea8
241 Commits
| Author | SHA1 | Message | Date | |
|---|---|---|---|---|
| 606c16a28f |
wcc/cgen: #19+#22 uniform index element-size for non-ident bases (wwstage)
Indexing a non-ident pointer-yielding base -- a direct cast ((&a):*[4]u32)[i], a call result mk(&a)[i], a slice, a type-assertion -- used wwstage's default 8-byte element stride/load instead of the real element type's, reading garbage (cast-base i32 index: cs=30, ww=0). The cgindex esz derivation gated on a whitelist of base node-kinds (DOT / UN-deref / INDEX); an N_CAST/N_CALL/N_SLICE/N_TYPEASSERT base matched none. Rather than extend the whitelist (whack-a-mole), this mirrors cstage's uniform idx_eff read: N_INDEX keeps its own arm (chained-index byte-id preserved), and every other non-ident base now derives esz/stride/load- width/signedness from the stamped n.type_ -- closing the class by construction (base set ident/dot/un/index/cast/call/slice/typeassert). cstage was already correct (uniform); w6c md5 unchanged. byte-id 990-997 8/8, no lib pin flips. test/wcc/830 (9 base shapes, byte-id per width, signed + unsigned). Folds the N_CALL sibling #22. |
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| 5dd239d01e |
wcc/cgen: #146 wwstage str ==/!= via rt_streq, not ptr-only CMPQ (the #154 ww-twin)
wwstage compiled str ==/!= as a single CMPQ on the eager-eval'd ptr word (len ignored), so two distinct-pointer equal-content strings compared unequal. cstage was already correct (CALLs rt_streq, the #154 cbinop fix). The wwstage cgbin had no str-awareness -- every comparison fell to the generic CMPQ tail; the #154 fix was never mirrored. wwstage-only: a cgstreqpush helper + a str ==/!= branch at the top of cgbin (before the generic eval collapses the header), byte-matching cstage cbinop:4564-4623 -- push rhs/lhs (len,ptr), POPQ DI/SI/DX/CX, CALL rt_streq, XORQ $1 for !=. Gated on typeisstr (= cstage node_isstr, which also catches module-global str idents). cstage cgen unchanged (w6c md5 unchanged). The str== .s is byte-identical cs==ww for local, global, aliased, chained, and condition operands. Graduates 3 lib byte-id pins (test/wcc/989_lib_byteid #59.1 asciitest, #59.11 toktest, #59.12 asttest) M_DIVERGE->M_ID -- they used == on str and were pinned divergent because of this bug; now byte-identical. byte-id 990-997 8/8. test/wcc/827 table-driven. |
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| fca979470f |
wcc/cgen: #52 error-first tagged-union success tag — successtag helper not hardcoded 0 (wwstage)
An error-first tagged union -- error variant at tag 0, success at tag 1+, e.g. (myerr | u16) -- was silently miscompiled by wwstage: the try/propagate codegen hardcoded success = tag 0, so the actual success value (tag 1) failed the CMPQ $0 and fell to the error path -> exit(1) instead of the value (44). cstage was correct (computes the success tag via cg_tagged_success_tag = first non-error variant). wwstage-only: a successtag/successvariant helper (mirroring cstage) replaces the hardcoded tag-0 / first-param assumption at all four try sites -- cgtryprop (?), cgtryunw (!), and the two latent shift sites cgtrytupleshift + cgtrytaggedshift (which bite an error-first union with an aggregate success payload). Success-first unions (the Hare idiom + what the selfhost uses) keep successtag=0 -> CMPQ $0 unchanged -> byte-id-neutral on 990-997. cstage untouched (w6c md5 unchanged). byte-id 990-997 8/8. test/wcc/825 table-driven (errfirst must/prop + tuple-success + success-first control). A separate nested-tagged-union construction divergence is filed (#10/#125). |
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| ef6fcbfc04 |
wcc/cgen: #135 inferred-float module-global — default untyped_float to f64 (wwstage)
let pi = 3.5; pi * 2.0 (an inferred-type float module-global) was silently miscompiled by wwstage: untyped_float wasn't defaulted, so letemitsize sized it 0 -> no DATAW emitted -> the pi load was dropped, X0 kept a stale spill -> 2.0*2.0 = 4 not 7. cstage became correct via #150-B's sym-repoint (stamps f64 -> MOVSD), so this aligns wwstage UP, byte-identical. wwstage-only: cgen.ww defaultinferredlets gains the untyped_float->f64 arm (mirrors the untyped_int->int arm; the codebase's own #135-deferred carve-out at cgen.ww:1079-1082, unblocked now that #150-B killed the rule-10 divergence it feared), and cgenexpr.ww cgident gets a letfloatprim fallback (the same primitive-TNAME SSoT letemitsize already uses, since a renamed primitive TNAME carries no tinfo stamp). cstage cgen unchanged (w6c md5 unchanged). int-inferred globals stay integer. byte-id 990-997 8/8. test/wcc/824 table-driven. The N_CAST-no-recurse parity (check.c:1276) is filed separately (#19). |
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| 1aaa0a3670 |
wcc/cgen: #8 def str-array element load — emit + pre-intern def-twin + ww load (both stages)
def C:[N]str; C[i] was loud (undefined main.C) both stages. Three folded fixes, one commit (splitting would ship a bisect point where wwstage silently returns an element address instead of .len): P0: the str-array static-init emitter dropped its vestigial directive =="DATAW" gate so a def table rides the same DATAW-header + DATAR-reloc path as let. A def str/slice table lives in DATAW by w6a's A_DATAR-holder constraint -- placement only; def immutability stays checker-enforced. P1: let_pre_intern / letpreintern walked N_LET only, so a def str-array's element string-literals were never interned (dangling _S_n). Extracted a pre_intern_strarray SSoT helper, called for a def str-array arm too, both stages. Scoped to str fixed arrays; def []T / def [N][]T stay loud (#270). P2: wwstage cgenexpr lacked a defvartnode fallback in the indexed-element classify, so a def str-array element load returned the element address instead of the slice header -- a silent miscompile. One line, aligning wwstage up to cstage (which was correct). C[1].len now = 3 both stages, byte-identical. byte-id 990-997 8/8; w6c/w6c_ww move. test/wcc/819 table-driven. The def-global scalar str index sibling (def S:str; S[0]) stays task #14. |
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| 267e81b89e |
wcc/cgen: GAP-A.ptr global-array base — LEAQ name(SB) not (BP) (#11, both stages)
A global fixed array's .ptr (= &A[0]) must take the SB base, but cstage emitted frame-relative LEAQ off(BP) for BOTH let- and def-global arrays -> *A.ptr read frame garbage (0 instead of the element). cstage-SILENT; wwstage def-global was a loud link-error. The .ptr read arm now gates off==0 && (let_islet || def_isarraydef) -> LEAQ name(SB), reusing the def-array index base predicate (cgen.c:4367, the #94/#231/#48 class). Locals (off != 0) stay BP-relative -- the 14 toolchain backing-ptr sites unaffected. wwstage let-global was already correct; this adds the missing def-global arm (cgenexpr.ww), converging cstage/wwstage byte-identical across all three flavors (local / let-global / def-global) and closing a latent cstage-only let-global cs!=ww divergence. Byte-id 990-997 8/8 (corpus has no global .ptr); w6c/w6c_ww binaries move (cgen changed). test/wcc/818 table-driven, build+run+byte-id per flavor. |
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| 7b0e09e065 |
wcc/cgen: GAP-A.len def-global array .len — def-twin cgdot arm (#7 lineage, wwstage align-up)
wwstage .len on a def-global array fell to the cgdot SB-fallback (w6l: undefined reference to 'len') — the #7 let-array arm gates on letvartnode (c.lets only), so def-globals (c.defs) missed it. Add a def .len-only arm in cgdot using the existing defvartnode (the def-side mirror of letvartnode), emitting the length immediate from the #11-stamped N_TARRAY length child. cstage cgen.c was already correct, so this is a wwstage-only source change: w6c unchanged, w6c_ww + wwdump regen'd (they embed the wcc cgen). .ptr (cstage itself buggy — emits LEAQ (BP), filed GAP-A.ptr) and .cap (wwstage silent garbage; arrays have no cap, filed GAP-A.cap) are NOT folded (rule-11, separate concerns). Pin: table-driven test/wcc/816_def_arr_len (def [3] + [_] inferred + 1-elem + u8 stride .len, both stages + byte-id), teeth-proven. |
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| 6e1d958d9b |
wcc/cgen: #145 slice-copy-assign LHS s.arr[lo:hi]=bs — N_SLICE-LHS arm, runtime byte-copy loop, esz via type table (both stages)
Probe-first find for the path c2 appendlit (buf.buf[lo..hi]=bs): a slice-copy-assign into a struct-field array sub-range emitted ZERO code — silent NO-OP, both stages, both-wrong-identical (#263), so runtime is the only net. N_ASSIGN gains an N_SLICE-LHS arm (cgen.c + cgenexpr.ww slicebaseesz twin) reusing the N_SLICE-read base/esz cascade and copying (hi-lo)*esz bytes from rhs.ptr via a runtime loop (len is runtime; no REP/MOVSB). esz routed through the type table (rule 13; [N]u8->1). Hare len(bs)==hi-lo assert deferred to #149. |
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| 2c09d13ca3 |
wcc/cgen: #59 append/insert struct-literal value eval-order — eval-to-scratch pre-grow + precise copy (both-stage)
append/insert of a struct-LITERAL value evaluated the literal's field
exprs AFTER the grow, so a field reading the destination (e.g. len(xs))
saw the grown length. Both stages, #263 gate-blind (cs==ww byte-identical,
both wrong — runtime is the only net). #50 fixed the scalar/boxing value
arm; the struct-lit arm still post-grew.
Fix (mirror #50, both stages): resolve the struct, fill the literal into a
fresh per-site scratch (@appendstructscr, sized esz, survives rt_ensure +
nested-append clobber) BEFORE the grow, then copy scratch -> post-grow slot.
The copy uses the precise descending 8/4/2/1 ladder (the proven N_IDENT
struct arm directly below), NOT a raw 8B-word block copy: a struct's size
rounds to maxalign (check.c:916), so a sub-8B struct packs at a 4/2/1B
slice stride and an 8B copy over-writes past the slot — at a power-of-2
capacity boundary that clobbers the adjacent allocation (heap corruption,
both stages). The ladder never reads past esz (no uninit high bytes) nor
writes past the slot; esz=8 stays a single MOVQ (byte-id preserved).
insert() rides by construction: both stages desugar it to append and
re-dispatch into this arm. The #49 aplace path already uses the precise
ladder (verified, not exposed). #59 closes the last composite-value
eval-order hole in append/insert.
Pin: 946_append_structlit_evalorder_run — append / insert / narrow-neighbor
(i32-field at the cap boundary with an adjacent-allocation survival assert)
rows, each base-fail at
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| 39432f717c |
wcc/cgen: #64+#68 tuple-literal cursor-fill decl-blind — massign + call-arg widen (both-stage)
A tuple LITERAL with a declared-tagged element reached the cursor-fill
helper (cg_tuple_lit_to_cursor) through the generic cgexpr(N_TUPLE) arm
with no declared type, so the element was stored stamped-keyed at its
constructed scalar width rather than widened into the declared tagged box.
Both consumers ran silent and wrong on both stages (#263 gate-blind:
cs==ww byte-identical, both wrong — runtime is the only net).
#64 massign: N_MASSIGN derives a declared tuple type from the lvalue
binding types and threads it into cg_tuple_lit_to_cursor + the receive
loop (mirror of the #57 N_LET wire); a `_` target falls back to the rhs
literal element type for cursor stride.
#68 call-arg: the send is made param-aware (fill over the PARAM tuple) and
the restage guard graduates a declared-tagged element to a real widen
(reusing cg_widen_tagged_store); nested tuple/struct/array elements and
tagged elements with no param decl stay rule-7 loud. The matching
pop/drain is made param-aware too so push count == pop count: a
param-aware send pushes the box's N words, so the drain must pop N or the
SysV arg sequence skews. This is a push/pop balance requirement of the
send change, not a separate latent under-drain (the standalone trailing-
arg drain is already correct at HEAD).
Closed by construction: the only remaining cg_tuple_lit_to_cursor caller
passing NULL/nil is the generic cgexpr(N_TUPLE) arm, provably non-widening
(constructed type == governing type). The four widening consumers — LET,
RETURN, MASSIGN, call-arg — are all decl-wired. Whole-tuple single-ident
reassign from a tuple literal is rule-7 loud (task #49), not a silent
widening consumer, so the residual NULL arm stays non-widening.
Pin: 945_tuple_lit_declblind_run — massign / call-arg / `_`-control /
call-arg-drain / nested-tuple-ERR rows, each base-fail at
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| f3750ae3ce |
lib/io: empty() stream; wcc/cgen: #129 sretretsize + #130 global tagged-field store
io.empty (discard+EOF stream, ref/hare/io/empty.ha:4-17) — needed by getopt's two-pass printusage width measurement. Diverges from Hare's `const empty: *stream`: a `let _empty_vt` + `fn empty()` that wires the fn-ptr slots per call, because const-init of a vtable struct with fn-ptr fields is blocked (#118, ruled accept). Co-discovered while making empty() byte-identical across stages: three wwstage-only cgen fixes (cstage was already correct; wwstage aligned down): - #129 sretretsize: consult the same-module pointer-alias before structlookup's any-module struct fallback (io.stream = *vtable was mis-sized as memio's 56B struct -> spurious sret save). - #129 callsretsize: swap curmod to the callee's module before sret-size classification (cross-module callee context). - #130 cgassign global-struct tagged-union field store: add the missing arm (was a 1-word store) mirroring cstage cgen.c:4893-4912. The three are inseparable from io.empty here — splitting them out leaves a divergent-asm intermediate (993/995 red), so they ride one commit per the one-class gate-repair carve-out (#133-expanded precedent). Regenerates the embedded combined.ww; 989_lib_byteid pins bufio + fmt graduated to M_ID. (cgenexpr.ww fix-3 inline comment cites the #129 cluster; narrow to #130 on next touch to avoid a regen for a comment.) |
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| 754944a755 |
wcc/cgen: #121 indexed tuple-element read + literal-store round-trip (both-stage)
Reading or storing a tuple element of an indexed array element was
broken across the board (the fold-6 read-path). One fused commit,
both stages, four faces of indexed tuple-element access:
- FIELD read `tbl[i].N`: was loud ("unsupported field-read shape" --
the field-read dispatch keyed on an N_IDENT base; an INDEX base fell
to a fatal). Now resolves &tbl[i] via the place-spine and reads the
field at addr+foff through the existing per-kind arms (str-triple /
scalar / fn-ptr).
- WHOLE read `let e = tbl[i]`: was a silent word0-only truncation
(plain-tuple kin of #37/#58, which covered only tagged). Now a full
cursor fill from &tbl[i].
- STORE `a[i] = (3,4)` (N_TUPLE-literal rhs): was a silent word0-only
store -- the write face of the read. The aggregate-store-into-index
site handled ident/dot/deref tuple rhs but not the literal; now it
materializes the literal and word-copies. Narrow: N_IDENT base only
(N_DOT/chained stay deferred, #270).
- for-range over a const-slice-of-tuple: was a divergent SEGV; now a
symmetric loud-stop on both stages (filed #122).
The store and read were a round-trip that passed test 809 only by luck
(broken store XOR broken read canceled). Fixing the read alone exposed
the silent store; rule-7 obliges fixing both, so 809 is now genuinely
correct, not luck-correct. Both faces are byte-id-blind (#263) -- the
net is a runtime round-trip pin with distinct-per-word values and a
real call clobbering the cursor registers between store and read, so a
word0-only store or read is caught. Both stages byte-identical
(990-997 green). Pin 947_tuple_index_read_run.
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| 351abb0ab3 |
wcc/cgen: #58 indexed tagged-field read+assign cursor arm (both-stage)
Reading or writing a tagged field of an indexed array element (xs[i].field) was broken on BOTH stages, byte-identically and silently (#263 gate-blind): the arr[i].field branches had arms for array/str/slice/float but no TY_TAGGED arm, so the tagged field fell to the single-word scalar path. READ loaded only the tag word (stale payload -> `xs[i].min as T` read garbage); ASSIGN stored the raw unboxed scalar into the tag slot, corrupting the box. Insert a TY_TAGGED cursor arm before each scalar fallback, both sites both stages (cgen.c read + assign; cgenexpr.ww cgdot N_INDEX-lhs read + cgassign indexed-field). READ mirrors cg_tagged_memread (payload -> DX/CX/R8, tag -> AX last). ASSIGN synthesizes the tag for the concrete variant (taggedvariantindext) and stores tag+payload via the str/slice 3-word store spine -- not the source-remap widener (concrete rhs has no source tag to remap). >32B / multi-word / float payloads are loud-stopped at all four arms (emission not yet wired; see #114). That shape is reachable today via a narrow-variant ctor, so it louds rather than silently miscompiling. Both stages get the same arm -> byte-id preserved (990-997 green; the runtime is the net for this #263 class). Pin 944_idx_tagged_field_run (read/assign runtime rows + >32B expect-loud rows). |
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| 5d596206c6 |
wcc/cgen: #94 def-array indexed &-base leg (both-stage)
`&D[i]` over a module-level DEF array SEGV'd on BOTH stages: the TK_AMP N_INDEX N_IDENT base classify checked only the local and let legs, so a def-array base fell to a wrong else — cstage zero-based the addend (XORQ BX,BX -> wild pointer, cgen.c) while wwstage value-loaded the symbol (MOVQ name(SB) = D[0], not its address, cgenexpr.ww complex-base fallback). Divergent asm, both wild. Add one def-array leg per stage, mirroring the working let leg: - cs: `def_isarraydef(base) -> LEAQ name(SB),BX` alongside let_islet. - ww: the `defvartnode` fallback the read-side cgindex already takes (cgenexpr.ww:1762) -> N_TARRAY classifies isglobalarr -> LEAQ name(SB). The def DATA symbol already exists (plain &D + D[i]-read work), so once the base is the address the existing i*esz scale + ADDQ round-trips. cs and ww now emit BYTE-IDENTICAL LEAQ-SB asm — the both-broken -> both-correct convergence is the point (#263 class). Rows (944_def_amp_idx_run, all 0/0 byte-id): amp_int [3]int, amp_u32 [3]u32 esz=4 (narrow scale), amp_arg &D[2] as a func-arg; controls ctrl_plain (&D), ctrl_read (D[i]), ctrl_2d (&M[1][1]) keep working. *p spelled `let v: T = *p` — `*p: T` parses as `*(p: T)`. OUT (filed #112): &D[..] slicing a def-array is a distinct parse reject needing a Hare-fidelity ruling — not this leg. |
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| 26ba1ad1b5 |
wcc_ww/cgen+peellint: #109 close #101 primsize-alias family by construction
Route the 16 routable bare-primsize GUARD sites (is-primitive / struct-vs-prim dispatch) through the #101 aliasprimsize SSoT helper. Byte-NEUTRAL by construction: an alias-narrow name is already neutralized downstream by the same arm, so routing emits no new asm (the empty-flip-set ken oracled). Shape-A exclude-prim-early (3): cgenutil sretretsize / structparamsize / structfloatclass — `primsize>0 return` then structlookup→nil returns the same value; route returns it early, same. Shape-B prim-guard-then-structlookup (13): cgenutil 4604/4650 + cgenexpr 4136/10244 + the 9-site CALL/assign cluster — primsize==0 →structlookup→nil→fall to normal; route skips the block→same normal. Install the peellint bare-primsize FINALE (B7 lint-fuse contract): tools/peellint now rejects any bare primsize() in the ww stage outside the annotated whitelist. Evasion-hardened per the B7 lesson — a character scan (comments + string/char literals stripped first) and a LEFT+RIGHT word-bounded match of the bare `primsize` TOKEN (not just `primsize(`), so the aliasprimsize() wrapper is never a hit and every compiling spelling reds: the call primsize(nm), the paren-wrap (primsize)(nm), the function-value bind `let p = primsize`, and any line-split. ww-only (the C stage dealiases via type_chase_named, no primsize symbol). Two independent exemption windows (peel-ok vs primsize-ok) so neither rule blinds the other. Runs as a make-test dep. Whitelist the 6 designed exemptions with primsize-ok WHY-annotations: machinery — aliasprimsize body (SSoT chase) | typenodeprimresolved + exprprimresolved (#11/#33 prim-resolver chasers) | cgcast leaf-loop + cgenexpr #11 deref-store (own ps==0 fallback; route would regress #11) | the primsize oracle/definition itself (nothing below to chase). structural — elemsizeof x2 + paramfieldsize (chase lives in the -c twin elemsizeofc; threading c is the dormant #110). Empty-flip-set proof: zero C bytes; cstage binaries bit-identical; bootstrap byte-id 990-997 + 950 all green (w6c == w6c_ww on the full selfhost, self-rebuild identical); combined.ww (w6c + wwdump) regen idempotent; sizelint 0; peellint 0 (raw-peel AND bare-primsize over the whole tree = the close-by-construction proof, zero unwhitelisted survivors). Tests: 944_peellint_gate +14 rows (bare / space-before-paren / name-at-EOL split / string-blind opener / paren-wrap / fn-value-bind RED; aliasprimsize wrapper + primsize-ok annotated GREEN; corrupt annotation RED; independent peel/primsize windows; C-file out-of-scope). Closes the #101 primsize-alias family by construction. #109. |
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| 4459a49d3a |
wcc/cgen: #87 plain tagged-union module-global DATA + match SB-resolution (both-stage)
A PLAIN (non-alias) module-level tagged-union global SEGV'd on BOTH
stages: no static DATA was emitted (let_emit_size/letemitsize returned 0
for TY_TAGGED) so the global was never registered, and the match
scrutinee resolved it as a frame-local at offset 0 — reading saved BP as
the tag. Two sub-sites, one route (neither half ships alone — DATA
without SB-resolution still SEGVs; SB-resolution without DATA reads
nothing):
(a) DATA-emitter — a non-nullable TY_TAGGED arm emits the box that
byte-MIRRORS a runtime LOCAL of the same type: tag word at +0 (the
const-selected variant index via cg_tag_for_variant / taggedvariant-
index), payload at +8, zero-padded to the union box size. int and
str/slice literal variants are wired (str carries a DATAR ptr patch
at +8); any other variant payload loud-stops (rule 7). emit_tagged_
data + emittaggeddata are the per-stage twins; let_pre_intern/
letpreintern gain the matching str-variant intern. Nullable stays 0
so the (*T|void) one-word fold keeps the 8B scalar arm.
(b) match-scrutinee global resolution — the PLAIN-tagged twin of #78:
a global tagged ident scrutinee LEAQs name(SB) and copies the box
into an @match_spill slot the dispatch indexes off BP.
DATA target (mirror of the local box, verified byte-for-byte): for
(i32|str)=42 the 32B box is tag0 | 42@8 | zero-pad; for ="x" it is
tag1 | ptr0@8(DATAR _S_n) | len@16 | cap@24. cs and ww emit byte-
identical asm.
Pins (rob §3, dual-stage 910 cstage + 997 wwstage, attest_pass.ww): the
tagged global-vs-local byte-identity pin (match over the GLOBAL gives the
same arm/value as over a LOCAL — was SEGV both stages) and the str-
variant tag-1 pin, plus the #86 tuple global-vs-local lock-pin guarding
the already-correct emitter path.
929 fail_global_src graduates: a >48B tagged GLOBAL by-value arg now
resolves through the cgplaceaddr MEMORY-class arm (LEAQ g(SB) + blit)
instead of the #38b loud-stop, and runs correctly (uninit zero box ->
first variant); the row becomes a positive run pin. The struct-variant
>48B init still loud-stops via the data emitter.
The first-class-VALUE copy of a tagged ident (`let q = g`) stays a
pre-existing silent #49/#46 sibling (local and global identically),
filed separately — out of this fold's two sub-sites.
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| 45f5415209 |
wcc_ww/cgen: #101 narrow-alias fill-stride via aliasprimsize SSoT
A struct-literal array fill sized a narrow-alias element off a bare
primsize(name): `type my32 = u32` gave primsize("my32")=0, so the
element width defaulted to 8 and a [3]my32 strode MOVQ -24/-16/-8 —
field n collided with arr[2] (kw1_101 run exit 1). cstage chases
my32->u32->4 (MOVL stride-4) at the twin sites and is runtime-correct;
this is a ww-only align-up, cs untouched.
Fix: a new aliasprimsize(c, nm) SSoT helper — primsize(nm), else an
aliaslookup-chase N_TNAME loop then primsize — and route the SIZE-use
primsize() family through it. The 7 c-bearing bare-no-chase size-use
sites are routed: cgen:993 (letemitsize), cgenstmt:1896 (cgarrlitfillbp),
cgenutil:1579 (elemsizeofc fallback)/1657+1665 (nodeprimwidth)/4791
(cgstructlitfill = the kw1_101 site), cgenexpr:6902 (cgcall vararg esz).
This is the rule-13 close-by-construction shape (one accessor for
"resolved primitive size"), not a per-site patch.
kw1_101 is the SOLE asm mover (byte-id NO->YES, run 1->0, MOVL
stride-4); every other routed site is latent/byte-neutral. Bootstrap:
all 5 combined units stay w6c==w6c_ww byte-identical. sizelint 0,
peellint 0, test-unit 296/296.
Scope fence (rob route-7-decline-6 ruling): three DESIGNED-exemption
sites carry inline primsize-ok annotations — elemsizeof :1475/:1499 and
paramfieldsize :3541 are structural (no-`c`, non-chasing) BY DESIGN;
their alias-chasing twin elemsizeofc is the routed :1579 leg. These are
the #109 peellint-whitelist seeds. Three further declines are already
correct chasing paths, not bare-no-chase bug shapes (typenodeprimresolved
:2026 / exprprimresolved :2063 are the chase machinery itself; cgassign
:7631 already chases via typenodeprimresolved, #11). The ~17 GUARD sites
(is-primitive dispatch) + the peellint finale are the committed #109
follow-on. Threading `c` into the structural sizers is dormant #110.
#101
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| fc50a27f3e |
cgen: #95 c3 reviewer-fold — is/as gate exact-only, no widening leak
c1/c2 widened flatvariantidxt (selfhost) with the chain + structural tag-synthesis arms and a >=2 ambiguity os.exit, scoped to the cgen WIDEN consumer. But flatvariantidxt is a choke-point: the wwstage is/as ACCEPTANCE gate (check.ww:4677, the #198 spread fallback) reuses it, so the widening leaked into checker acceptance — vs base |
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| 05f7af76d1 |
wcc_ww/cgen: W2 #102 indexed-elem field store + &-field gates chase the alias chain
The two ww-side gates from ken's B6-c3 STOP re-attribution
(.ai/ken-b6-oracle.md addendum): WWSTAGE was the alias-blind side at
exactly two cgenexpr.ww sites, both keyed on a bare name-keyed
structlookup that only holds struct-decl names, so an alias-NAMED
spelling missed and fell to the generic-but-runtime-correct route —
byte-divergent from the canonical dedicated shape cs pins post-B6-c3:
(1) `arr[i].f = v` indexed-elem struct-field STORE arm (the write
twin of the task-#8 READ arm, which already chases via tichase);
(2) `&p.f` ptr-field fallback in the TK_AMP N_DOT single-dot leg.
REVIEW AMENDMENT (reviewer-W2, rob's close-by-construction
obligation): the proof-sweep of the two arms found ONE same-class
survivor — (3) the value-struct `&x.f` leg, one leg below (2) in the
same single-DOT arm, same alias-blind bare structlookup. Probe
rW2_ampv reproduced the identical bit-proven mechanism (ww_alias !=
ww_plain; cs_alias == ww_plain) at both base and the frozen tip; the
other in-arm routes are clean (letvar* global helpers chase, str/len
pseudo-field alias legs are filed-loud #96, chained depth>=2 resolves
via tinfo). Same chase applied; arm survivor count is now zero by
the same grep+probe construction.
All three now resolve through structlookupchain (#22) — the name
layer's own alias-chain accessor (the cstage transitive-peel mirror),
already consumed by the sibling `p.f = v` assign arm and cgdot's
pointer-to-struct read. Plain rows short-circuit at its structlookup
head, so non-alias emission is byte-identical by construction; alias
rows land on the same structinfo as their plain twins, so the
dedicated emission converges bit-exactly. esz stays sound:
elemsizeofc reads the chased stamped tinfo (#8 leg).
Convergence proven with ken's pre-staged W2 instrument: ww_alias ==
ww_plain bit-IDENTICAL for kb6_idxf and kb6_ampf (cmp exit 0), which
also lands cs==ww byte-id on both rows; plain controls byte-id held
and their ww asm unchanged base->tip. Full ken-corpus matrix vs the
B6-tip baseline: movers are exactly {kb6_idxf, kb6_ampf} NO->YES;
detectors unmoved (kw1_101 cs0/ww1, fill2 both-loud, tuparg_c
cs0/ww1, fsarg2/fsarg0/try pinned texts verbatim, B5/B6 graduations
all byte-id). Zero behavioral change on any accepted program, zero
acceptance change in either direction.
ww-only: zero C-source bytes; cs binaries (w6c/ww/w6a/w6l) md5
bit-identical base->tip; w6c_ww + wwdump main.combined.ww regen'd via
make, idempotent. 989 lib ratchet: zero flips (31 byte-identical /
9 pinned-divergent #59 / 3 pinned-wwreject #59 across 43 units).
944_alias_cgen_b6_run: idxf_2lvl + ampf_2lvl graduate K_RUN_NOID ->
K_RUN (the two restored byte-id cells) — B6-c3's mutation teeth
restored (reviewer-B6 N-a closes); + amendment rows ampv_2lvl /
ampv_plain_ctl pin the third gate (checks 61 -> 69). All 9 944-family
suites green; sizelint 0; make test-unit "all 292 tests passed".
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| d5cb1bd69e |
wcc_ww/cgen: #82 cgun &base[i] classify off the chased stamped base type
The TK_AMP N_INDEX arm keyed arrayness off the SYNTACTIC tnode (local leg isarr at the baselocal read; global leg isglobalarr/isglobalptr at the letvartnode read) — an alias-typed base (tnode N_TNAME) missed the N_TARRAY gate, so the base materialized as MOVQ (element-0 VALUE) instead of LEAQ (storage address): wild pointer, SEGV/corruption on the deref. SILENT class (metric-1). The global leg graduated from latent to live when g-fold #77/#78 landed alias-global DATA emit. Fix re-keys both legs off tichase(base.type_) gated on TY_NAMED — the landed cgindex #60 idiom (cgenexpr.ww:1800-1820). cstage already classifies off the chased type (type_chase_named, cmd/w6c/cgen.c: 4172-4188) and is the runtime-correct reference: align ww UP. esz does NOT move — elemsizeofc chases internally since batch-2 (PREMISE-2 probe-confirmed via amp_narrow: stride right, base wrong pre-fix). Non-alias rows byte-id-neutral by construction (TY_NAMED gate). Pin: 944_alias_amp_idx_run, 8 rows through the taken pointer (plain local/global+str controls hold 0/0; 1/2-level alias local + global, fwd-ref decl order, narrow [4]u32 graduate cs0/wwSEGV-byte-id-NO -> 0/0 byte-id). Probed OUT, filed not fixed (spec §1 NOTE-2): &D[i] def-array base breaks at a DIFFERENT site both stages (cs XORQ BX,BX zero-base cgen.c:4209-4212, ww complex-base fallback; both SEGV 139). Light gates: test-unit 289 green; sizelint 0; 989 ratchet zero flips (31 ID / 9 DIVERGE / 3 WWREJECT pins hold); five-mains NEUTRAL vs master-74195ac scratch build on identical inputs + cs==ww on all five. combined.ww regens ride along (#110). |
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| ef93b1637e |
wcc_ww/cgen: collapse cgenexpr.ww's plain TY_NAMED chase loops into tichase — byte-id neutral
Mechanical sweep, F2a batch 1 commit 2 (alias arc #5, rob F2 ruling: one chased accessor is the only spelled way to dealias; this enumeration seeds the future peellint whitelist). Every loop matching the exact plain shape for (X != nil && X.kind == tykind.TY_NAMED) { X = X.under; }; (modulo variable name and one-line vs three-line layout, body exactly the peel, guard exactly nil+NAMED) becomes `X = tichase(X);`. Census of cgenexpr.ww at commit 1: 71 `.under` lines — 49 one-line peels + 21 multi-line-spelled peels, all eyes-classified as the plain shape, all 70 converted (count-asserted). Survivor enumeration (raw `.under` occurrences left in cgenexpr.ww): - cgenexpr.ww:2886 — comment text only ("follows the resolved NAMED.under pointer"), no code read. Classification: not a read. Zero code-level raw `.under` reads remain in this file. Byte-id evidence: pre-sweep w6c_ww (commit-1 build) vs post-sweep w6c_ww compared over a 31-input corpus — all selfhost/cmd/*/ main.combined.ww (the compiler's own full source) plus the #60/#79 probe set — identical exit codes and byte-identical .s for every input. make test-unit green (287). combined.ww regens ride along (cgenexpr.ww is an embedded source). |
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| da81a4c86e |
wcc_ww/cgen: #60+#79 alias-NAMED array/slice ELEMENT paths read the chased tinfo — tichase lands, SEGV families graduate byte-id
One class: alias-blind base+esz at the array/slice ELEMENT paths — index read/write, slice-expr, for-range, and literal-init store. The wwstage cgen derived element size and base addressing from the type-AST tnode; an alias-typed base (`type arr = [4]int; let a: arr`) shows only the N_TNAME leaf, so esz fell to a sentinel (1 on the read side, 8 on the init-store side) and the base classified as a POINTER (MOVQ of array words, no IMULQ): m8b_idx1/range1 SEGV 139, m8b_slice1 silent-wrong past little-endian prefix-luck (m8c_slice1big exit 2), m7c global [2]row read SEGV via the alias-blind element-is-array classify, and (#79, ken F2a1 oracle) `type A=[4]u32; let a:A=[...]` stored MOVQ stride-8 over a stride-4 slot — elements 2/3 landed at 0(BP)/+8(BP), a saved-BP/RIP smash masked whenever esz==8. cstage reads everything off the chased stamped type (type_chase_named/ idx_eff, correct post-F1), so every fixed shape graduates ww-SEGV/silent-wrong -> 0/0 byte-id. New tichase() in cgenutil.ww: nil-passthrough transitive TY_NAMED peel, exact twin of cmd/wcc/type.c:160-162. Routed sites, all gated on the stamped type being TY_NAMED (non-alias paths byte-identical): - cgindex (cgenexpr.ww): elem facts (esz/signed/float/f32) off tichase(n.type_); etn falls back to n for the tagged/str/slice classify; LEAQ-vs-MOVQ base off the chased kind; elem-is-array supplemented by tinfoisarray(n.type_) for alias ELEMENTS (m7c). - cgassign N_INDEX store + compound arms (cgenexpr.ww): esz + elemtn=lhs (the stamped-element idiom of the N_DOT/N_INDEX arms); chased-kind base classify at all four LEAQ/MOVQ sites. - cgslice + cgbasecap (cgenexpr.ww): esz, base classify, default-hi (TY_ARRAY -> $alen / TY_SLICE|TY_STR -> +8 len), cap word at +16; global-str cap keeps the #73 carve-out. - cgforrange (cgenstmt.ww, cross-file leg: the range pin cannot green without it): esz, element-node synthesis off .sub (FC0 precedent), isarr/isslicestr classify, alen off the chased tinfo. - cgarrlitfillbp (cgenstmt.ww, #79): an alias [count]T arrtn is the N_TNAME leaf (elemn nil) — synthesise the element node off the chased sub so the existing prim/agg/slice/tagged/narrow dispatch works unchanged; `...` repeat bound off the chased alen (cstage cg_arrlit_fill_bp receives the pre-chased bu and reads bu->alen). #8-PAIR COVERAGE: this is the STORE half of #8's two size-sources. The elemsizeofc READ half chases the ELEMENT internally (idxeffti + esub peel, the #8 fix) but NOT an alias-typed INDEXABLE node — that leg is covered at its #60-family call sites by the gates above (cgindex/cgslice/store/compound/cgforrange/pusharg). Remaining alias-blind elemsizeofc callers are enumerated as residuals below. - bare-let classify (cgenstmt.ww, #79 rider): `let a: arrk;` with an alias-to-array type took the composite zero-fill cstage doesn't emit (cstage keys the no-init shape on the chased lu->kind: arrays keep the per-index-write contract; an 8B alias-array still falls to the single MOVQ $0 arm). Required for the loopfill_1024 pin's byte-id; closes the array kind of the uninit-alias divergence. - pusharg N_SLICE (cgenutil.ww, pulled in by the same pin rule: the 944 slice_of_alias_arg row is a distinct lowering from cgslice): esz, base classify, default-hi. Tests: new 944_alias_idx_family_run (19 rows: idx/slice/range/init controls + 1-level + 2-level + decl-order permutations + index store + compound (+=, *=) + #79 [4]u32 literal-init + alias `[v...]` repeat + uninit [1024] loop-fill + slice1big (1000 elems, values >255, LAST-element readback, default-hi, .cap, range count) + re-slice of an alias slice + range over an alias slice + m7c global 2D + GLOBAL alias-slice indexed read + slice-as-call-arg; dual-stage run + per-row byte-id; LAST elements asserted throughout). The six 944_alias_accept_run rows citing "#60 (F2 batch 1)" flip K_RUN_CS -> K_RUN (incl. slicefield_wholeread_2lvl: its 738d7f4-era receive-spine divergence no longer reproduces at the F1-merged base, verified byte-id + 0/0). 989_lib_byteid checked: no DIVERGE entry graduates (the test fails loudly on graduation; lib has no alias-base consumers — the shape SEGVed before this fix). NOT pinned (g-fold territory, #77/#78): direct alias-typed global ARRAY rows. Expected state probe-verified UNCHANGED by this diff: `let g: arr = [...]` -> ww link-ERR (no DATA emitted), cs 1-level runs 0, cs 2-level runs WRONG (silent). The alias-GLOBAL base legs added here (isglobalarr reclassify, global default-hi/cap) are cs-aligned but runtime-unreachable until the DATA emit lands. Residuals filed with the team: alias-blind elemsizeofc callers not in the #60 pin family — cgun &a[i] addr-of (cgenexpr.ww:4638 region, task #82), append() on an alias-typed slice local (:5287), `alloc([], n)` into an alias-slice let (cgenstmt.ww:2159), arr[i].field= float store (:8536); tagged-element READ under an alias base keeps the ident-arm nullable semantics; checker asserttyped on `untyped_lit * rangevar` over an alias slice (pre-existing, check.ww is batch 4, task #80); uninit alias-to-STRUCT zero-fill unchanged (correct: cstage fills composites); range-destructure over alias-to-tuple-slice. selfhost/cmd/{w6c,wwdump}/main.combined.ww regenerated (cgen*.ww are embedded sources). |
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| d14a23b85e |
cgen: #57 in-cap tuple cursor fill keys on the DECLARED element type — tagged elems from concrete rvalues widen, both stages
The N_TUPLE literal's stamped type is CONSTRUCTED from its elements
(check.c N_TUPLE keeps untyped/concrete element types; assignability
is consumer-side), so the in-cap cursor fill — count
(tuple_lit_gpwords/tuplitgpwords) + push (tuple_lit_push_elem/
tuplitpushelem) — never saw the DECLARED tuple type. A declared-TAGGED
element whose expr is a concrete rvalue (`return (5: size, 9)` into
(un16, size)) counted ONE word and skipped the widen entirely: 2 words
sent against the receiver's declared 3-word walk, every later element
read garbage. Both stages, byte-identical, gate-blind (ken /tmp/ken57
p8/p9: t.1 read entry-junk). The let-literal twin
(`let t: (un16, size) = (5: size, 9)`) and the tagged-SECOND-elem
shift broke identically (probes q1/q2). The over-cap (sret) arm
already walks declared params (#240/#22b) — only the in-cap path was
declared-blind.
Fix threads the declared tuple type into the ONE shared helper pair
and its two loop sites:
- tuple_lit_gpwords/tuplitpushelem take the declared elem type;
declared-TAGGED + concrete rvalue widens into the shared tagged
scratch (cg_tagscr_slot/tagscradd + cg_widen_tagged_store/
cgwidentaggedstore, the cgreturn tagged-@retscr shape) and pushes
the box words; declared-TAGGED gates the SSE row off (a (void|f64)
box rides INTEGER eightbytes). Tagged->tagged subset (eslot
mismatch) louds — the #23/#40 widening-remap family.
- cg_tuple_lit_to_cursor/cgtuplelittocursor grow a decl param;
cgreturn's in-cap N_TUPLE loops thread cg_ret_type/c.fnret.list
(the same pp/pt walk its over-cap arm does); the N_LET in-cap
tuple arm passes the declared type for an N_TUPLE rhs; the bare
cgexpr route passes NULL/nil (emission unchanged).
Ident-elem sources keep the existing slot-load push byte-identically
(t57_ident_no_regress); the CALL-elem tripwire stays loud (#41,
t57_loud_call_elem). RESIDUAL FILED, not folded (rule 11): the
N_MASSIGN destructure-reassign literal rhs routes through the bare
cgexpr path (decl=NULL) and stays silent-wrong — probe q5_massign,
task #64, cited at the massign arm both stages. The annotated
multi-let spelling (`let (a, b): (un, size) = lit`) does not parse
(both stages), so N_MLET has no declared-literal route.
941 rows t57_*: return (named + inline union), let-literal, tagged
second elem, float payload, bare-untyped payload (rides the #33
chooser through the new wire), ident anchor, loud CALL tripwire;
ken's adversarial shapes (tagged-MID elem, two tagged rvalue elems
incl. void, plain-f64 SSE coexisting with a declared-tagged box), the
in-cap/over-cap boundary loud (k57d), and the NEW #57 tag-remap loud
pinned. Pre-fix at
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| 80e7096f25 |
cgen: #50 append/insert tagged-dst VALUE boxes PRE-grow, both stages
The #34 value-store dispatch's tagged arm ran the widen choke-point (cg_widen_tagged_store / cgwidentaggedstore — which cgexprs the value internally) AFTER cg_append_grow, so a value expression reading the destination (xs.len) saw post-grow state. Hare evaluates arguments before the call's effects; the scalar/str/slice arms already ordered value-first. insert() inherited the bug through its desugar-to-append ( |
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| e8977a413d |
cgen: #38a chained-dot TAGGED leaf — cursor read + widen store, value-chain + ptr-chain, both stages
A tagged leaf at the end of a dot chain (depth >= 2) fell to the
one-word scalar tail in FOUR walkers — the value-chain read spine,
the value-chain assign walker, the chained-*struct read branch, and
the chained-*struct assign branch — in BOTH stages, byte-identical,
gate-blind:
READ: one MOVQ pulled the TAG word only; is-tests passed by
tag-luck while as/match/let consumers read stale DX/CX/R8
as payload (ken x5c: o.r.min as size added entry-zero DX —
want 28 got 20; ken b8 same through a mid-chain *rep).
ASSIGN: one sized store landed the rhs ON the tag slot, payload
kept its old bytes (ken x5d: `o.r.min = 8: size` made the
following is-test false).
The single-dot arms were already correct — each fix is that arm
verbatim at the chained site:
read: the tagged cursor (AX=tag, DX=val0, R8=val2 before
CX=val1 — the base may live in CX/AX; >32B box leaves its
ADDRESS in AX, the #37 mem-read convention). wwstage rides
the existing cgloadtaggedfield helper; the *struct-base
branches stage AX into BX first (cursor targets AX).
assign: full slot rewrite via the shared widener
(cg_widen_tagged_store / cgwidentaggedstore, base BX/BP),
plain `=` only — compound on tagged stays loud (#133).
The nested-LITERAL half of the old #38 filing dissolved: the
canonical fill's tagged-field widen delegation (#23,
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| 322667b820 |
cgen: #35/#46 Family C — tagged transport from deref/cast/unwrap sources goes mem-based, both stages
A tagged value reaching a transport consumer from a DEREF, CAST, or UNWRAP source materialized as ONE scalar word — the N_UN(STAR) arm's localloadop pulled word0 (the tag) and every cursor consumer then transported garbage payload (cs pushed stale DX, ww stored 0/garbage; divergent asm AND silent-wrong on both stages — ken f35 asm proof + ken37v D3a/D3b). Consumers × sources × sizes all wrong: arg push, let-init, assign, return, match scrutinee, as, widen — from *p at 16/24/32B, from identity/widening tagged casts, and from `?`/`!` whose success variant is itself tagged (nested box: payload words dropped). `is` and ww-match-16B passed only by stale-register luck. Fix extends the #37 mem-based machinery ( |
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| 4c46d3afde |
cgen: #49 aggregate-ASSIGN word0-only family — one mem-to-mem funnel (cg_aggcopy), both stages
Whole-aggregate reassignment `b = a` fell to the N_ASSIGN scalar tail
and copied ONE MOVQ — word 0 of any struct/array/tuple — in BOTH
stages, byte-identical, gate-blind (ken f49_min asm proof; latent
because lib style is let-init, whose #265/#268 copy is full-width).
Same class at three more positions: struct-lit FIELD init from an
ident source (`outer{.., r = r}`, the #38 non-tagged half), the deref
place `*p = s` (#31-A), and the module-let global `g = a` / `g = pt{..}`.
Fix: extract the C1.25 assign-resolver word-copy tail verbatim into
cg_aggcopy/aggcopy — the ONE place-resolved (SI)->(BX) aggregate copy
— and wire it at the N_ASSIGN ident-aggregate arm (local + global),
the deref-place divert into the existing resolver aggregate arm, and
the structlit-fill aggregate-field arm, all fed by aggarg_srcaddr
(the closed #265/#268 dispatch). The new arms key on the FULL alias
chase (type_chase_named / chased stamped tinfo, the #22 precedent) in
BOTH stages — the region's single-peel `lu`/`fu` would miss
`type b = a; type a = struct` on cstage while the wwstage twin fired
(ken R1, gA3b: master cs ran the word0 corruption, exit 2; now 0).
Non-addressable aggregate rhs (tuple-lit, unhandled call shapes) dies
LOUD (rule 7) instead of silently truncating: #31-E `*p = (3,4)` and
#31-G's deref flavor `*p = mk()` are now loud both stages (the INDEX
flavor `a[i] = mk()` stays in the legacy INDEX arm — receive
machinery, not this funnel; still filed under #31). #31-B rides: the
cstage-only <=24B gate before cg_structlit_fill_bp is lifted (the
wwstage twin never gated — a >24B literal reassign was
cs-zero/ww-filled, rule-10 break). Global structlit reassign rides
the existing DST_GLOBAL fill machinery.
Unsplit (rule 11): the assign arm, fill arm and deref divert all
route through the one new funnel (cg_aggcopy + aggarg_srcaddr) in
both stages; splitting by site or by stage would ship a transient
cs!=ww (gate-red) or a funnel with no consumer.
941 t2_reject_chain_arg: the row's tuple-LITERAL field fill now louds
at the #49 fill arm before reaching the pinned ARG-site reject; the
fill switches to an ident source (newly working via the fill arm) so
the original arg-site pin still fires.
test/wcc/812_agg_assign_width.c: 17 runtime-readback rows (the only
oracle for a gate-blind class) + per-row asm byte-id; every row fails
at
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| 26d375410e |
w6c+w6c_ww: >32B tagged INDEX/DOT reads go mem-based — box address in AX (#37)
A tagged box wider than the AX/DX/CX/R8 cursor (size > TUPLE_GPCAP*8)
read via N_INDEX or N_DOT now leaves its ADDRESS in AX — joining the
sret-call mem-based class the #38b gates already speak — and every
cursor consumer branches on one shared predicate (cg_tagged_memread /
taggedmemread) before reading AX as the tag. <=32B keeps the cursor
byte-for-byte (32B-at-cap asm proven identical to base on both the
t.N and INDEX routes).
Emitters: N_INDEX ident+fallback arms, N_DOT tuple-element (flips the
#22b loud bound), N_DOT struct-field + ptr-chained-field (were silent
clamps at 32B); wwstage twins gate cgloadtaggedfield at the helper
choke-point. Consumers: match spill x2 and the widen-store subset +
nested arms (the let/assign/return-widen/arg-widen/vararg choke-point)
copy the box from memory, then share the existing zero-pad + tag-remap
tail; `is` loads the tag through the address; `as` spills mem-based.
Rule-7 loud bounds replace silent cursor garbage for the non-mem-based
>32B kinds, `?`/`!`, and the 33-48B in-reg tagged arg push (mem-based
push stays the #35 family); the exact-type >32B return passthrough
from INDEX/DOT flips from its #38b loud into the widener route. The
pre-existing >48B memarg stack blit (cgplaceaddr) never used the
cursor and is pinned unchanged.
Reviewer-37 amendment: the non-mem-based >32B loud was ONE-SIDED on
two wwstage routes — cgwidentaggedstorebp had no fall-through guard
at all (`let w = *p` on a 56B box: cstage loud, wwstage silent word0
truncation), and cgmatch's guard keyed on matchscrutt-resolved
spillsz, which defaults under cap for kinds matchscrutt can't resolve
(N_UN deref et al), so `match (*p)` slipped it the same way. Both now
loud off the stamped src/scrut type_ (the kind-blind key cstage
already uses), restoring the rule-10 symmetry the body claims.
Emitters and consumers ship as ONE commit: they share the memread
contract, and splitting would open a transient window where a wired
emitter hands an address to an unwired consumer (silent garbage) —
the #61-precedent route-sharing fuse. The CX-global-tuple-base LEAQ
arm is TRIPWIRE wiring: a >32B tagged global-tuple element is
unreachable today (module-level tuple inits are int/str-literal-only;
tagged elements loud at the DATA emit), and the LEAQ keeps the same
base_reg generality as the cursor walk it replaces (ken note, task
record).
This was the last 5b compiler gate: `match insts[pc]` on the regex
inst union (inst_lit|inst_repeat, 56B) was silent-wrong gate-blind
byte-id on both stages (payload words 3+ dropped past the R8 clamp).
test 941 grows 165->200 checks: the #22b BUILDERR pin flips to a
runtime row, plus the 56B driver match, str+nested-tagged payload,
let/is/assign, indexed return, widening (identity and reversed-order
remap), 56B memarg, ken's X1 composition row, 32B-at-cap INDEX
boundary, the ptr-chained p.f match (BX-arm) and (*p)[i] fallback-arm
rows, and the two deref loud-symmetry BUILDERR pins. At base
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| a72e8158c7 |
w6c+w6c_ww: over-cap (sret) tuple returns carry tagged elements — MEMORY-class box copy (#22b)
The over-cap SEND gains a per-element tagged arm: a declared-TAGGED element copies its whole box mem-to-mem through the sret pointer (@sretarg reloaded into DX, eslot/8 AX-bounced word pairs) from its ident-local slot — cgexpr can't source it (tagged ident load is word0-only; the AX/DX/CX/R8 box cursor would collide with the DX dest-base reload). Non-ident/widening sources stay loud (call-source is task #41 per rob's loud+filed ruling, widening #23/#40). The receive legs were already eslot-generic from #22a except the wwstage MASSIGN sret copy-out, whose wide=(str||slice) key dropped a tagged element to the scalar 8B branch — re-keyed to the accessor's eslot>8. The over-cap DECISION now rides cg_sret_retsize/sretretsize on the DECLARED return type — the same SSoT the prologue @sretarg wiring and the caller use. The old expr-shape count disagreed with the classifier for declared-tagged elements with unwidened-payload exprs: the emit took the register path against an sret-reading caller — built clean, ran garbage, BOTH stages, byte-id, gate-blind (941 b22_reject_widen_ skew). A rule-7 net behind the branch catches any future inverse skew. The same classify/emit class on the LET side: wwstage's cgexpr cursor materialiser counts a void literal elem as 0 words, so a void-bearing over-cap literal init slipped its loud and fell past every store arm to NOTHING (cs louded via the ken-R1 net; ww ran silent-wrong) — wwstage gains the same net. foff advances ride tuple_eslot/tupeslotn (THE accessor): ken's K4 proved the old wide?esz:8 void-elem 8-advance was a LIVE silent miscompile at base (declared-void-elem over-cap return, send wrote +8 where every receive walks the 0-slot). The unwiring also made >32B boxes transportable, exposing the t.N tagged read's unbounded k<eslot/8 cursor walk: cstage OOB-indexed tuple_rseq[4] (invalid asm), wwstage tupreg-clamped k>=3 to R8 (silent payload-word-3 drop). Bounded loud both stages; the mem-based box read is #37's fold (transport itself is size-generic and correct — 941 b22_big_box_mlet). One commit by the #61 route-sharing precedent: unwiring the send is the only thing that makes the ww massign arm, both skew nets, and the >32B read reachable — the one split order that avoids a transient silent-wrong build (send last) lands those arms DEAD, unexercisable by any test until the unwiring commit, so a defect in them would bisect to the wrong commit; fused, every arm lands with the 941 rows that pin it, preserving the #22a exit invariant (zero silent tagged-tuple paths: correct-via-accessor or LOUD with a task cite; proof-greps in-tree — tuple_ebytes/tupebytes 0 hits, all remaining tuple_rseq/tupreg walks cap-validated upstream). Driver: regex fold-5b parse_repetition ((void|size),(void|size),size) = 5 GP eightbytes > TUPLE_GPCAP — pinned end-to-end (construct, send, let/MLET/MASSIGN receive, t.N is/as, destructure) plus head/mid/tail, str+tagged and SSE-over-cap mixes, `_` skip, and the reject pins: 941 165/165 (15 new rows), test-unit 281/281. ken runtime-oracle PASS x2 (independent hand-math layout audit, K1-K5 probes); reviewer-22b amendments (test-only): ken-K5 32B-exact box-at-cap row, both-tagged 2-elem row, chained-sret row, #37-family cite pinned in the big-box experr. Residuals filed: #39 return-forward divergence, #41 call-source tripwire, #37 mem-based box read. |
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| 66991585d6 |
wcc+w6c+w6c_ww: tagged tuple elements take their full slot — tuple_eslot accessor (#22a)
slot = roundup8(size(elem)) — 8B is a FLOOR, not a ceiling (user- ratified 2026-06-04; the #237 fieldslotsize precedent; (str,str)=48B predates this — tagged was the one truncated >8B kind). Pre-fix the checkers truncated a tagged element to one 8B slot and every cgen transport walk strode wide=(STR||SLICE)-else-8: cstage read the NEIGHBOR slot, wwstage read ZEROS — both-wrong-differently, so the byte-id gates were blind (prober-9 PG1, /tmp/p9). One stride accessor per stage — tuple_eslot (cgen.c) / tupeslot (cgenstmt.ww) — now feeds every tuple walk; the per-site predicates are deleted as absorbed. Sizer: check.c N_TTUPLE + check.ww tupleelemslot gain the TY_TAGGED arm (astsize already rides the type table since commit 0). Routes flipped to the accessor, both stages symmetric: cursor producers (lit/slot-to-cursor; tagged ident elements load their box from the slot — cgexpr's tagged ident load is word0-only), let-receive (tuple_store/tupstore generalized to eslot/8 words), N_RETURN send, by-value param receive, arg restage/drain (tagged stays loud per C-t2), destructure (MLET/MASSIGN, ident + sret + in-cap), t.N read + len(t.N) + global-g.N offset walks (t.N gains the tagged box load: AX=tag, DX/CX/R8=payload — the is/as spill cursor), sret classifier, DATA emit. wwstage cgtagvariantidx gains the #67 stamped-carrier arm (flatvariantidxt on .type_) — its AST-only key silently clamped 't.0 is size' to tag 0; fused here because the tuple-element read this commit wires is its only exercisable consumer. Exit invariant: zero silent tagged-tuple paths — in-cap shapes (<=4 GP eightbytes) are correct end-to-end; everything else is LOUD: over-cap sret return (#22b, task #28), call-arg (C-t2 #32), non-local literal element sources (#22b/#23), tuple-in-union payload (#242/#22b), global static-init, element write (pre-existing). Closure proof-grep at HEAD: 'tuple_ebytes|tupebytes' -> 0 hits; 'wide.*=.*(TY_SLICE|TY_STR)' tuple-walk survivors are all behind tagged loud-guards (cgen.c:2535/2568/12013 widen-store + over-cap send; cgenutil.ww:3527 twin). Latent cross-checks closed by the accessor: wwstage MLET-sret strode esz (4 for i32) vs cstage 8; wwstage param-receive strode slotsize (composite slotsize) vs cstage 8; both now the accessor's floor-8. Tagged inits in pins use the CAST form (5: size) — the bare untyped-int widen-store mis-tag is pre-existing at master and filed (task #33). 941 gains 13 rows: t22_* size/align folds (+ void-elem 0-slot pin), the full runtime round-trip (read, is/as, both element orders, void variant, destructure, literal-let), two-tagged-elem in-cap and float+tagged in BOTH orders (ken k1/k2 regression-pinned as rows), t.N-as-call-arg, 5 loud pins (arg, over-cap return, call-source element, global init, element write), and the sret_narrow_mix_* triple below. Runtime rows exit-checked under both drivers + byte-id. 129/129; unit tests green; sizelint clean. ken R1 (re-validation fix): an OVER-CAP tuple init whose rhs is not a CALL fell past every cstage N_LET store arm to NOTHING — silent uninitialized-frame reads — while wwstage loud-rejected the same shape. Pre-existing for (str,str) literals; the #22a tagged slots routed >16B-box tagged shapes into it (k5b/k5c/k5d, base-correct because base truncated them in-cap). cstage now routes the rhs through cgexpr (the cursor materialisers carry the exact wwstage loud texts) with a trailing fatal as the net; 941 pins both the tagged and the (str,str) spellings of the hole. reviewer-22 (review fixes, folded): the MLET-receive slot flip above landed ALONE on the wwstage over-cap sret family — the ww RETURN-send and MASSIGN-receive still strode packed esz (4 for u32), so `let (a,b,c) = f()` over (str,u32,str) read c at slot offset 32 while ww's send wrote it packed at 28: a ww runtime REGRESSION vs base (base was packed-consistent on both sides — ran right, byte-diff). Both walks now stride the slot (send mirrors cstage's `wide ? esz : 8`; MASSIGN strides tupeslotn) — closing, in the same stroke, the pre-existing base skews: ww `let t = f()` over-cap narrow-mix read (reader slot-laid vs send packed, runtime-wrong at base) and the cs≠ww asm on all three routings. Second find: t.N tagged element as a CALL ARG — cstage rides its generic node_istaggedarg cursor push, but wwstage's kind-gated aistagged missed N_DOT and mis-routed the box into the widening branch (taggedvariantindex -1 clamped to 0: callee read variant 0, silent, ww-only). cgenutil.ww gains the N_DOT arm (aistagged + pushargsrev), the #67 stamped-carrier twin of the N_INDEX (#12) arm. The N_DOT arm was a LIVE wwstage stdlib miscompile: hextest's import graph carried two t.N tagged-arg sites (base .s diff = exactly the clamped-tag PUSHQ pair) — the 989 lib-byteid ratchet caught the convergence and #59.4 graduates to M_ID (runtime-correct per 979_hex_run). Probes: /tmp/r22. Residual filed: tagged arg from deref/cast/unwrap sources is a word0-only read on BOTH stages (pre-existing, base-confirmed) — generalizing wwstage's kind gate to cstage's type-keyed check rides that task. |
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| 06b0fea98b |
w6c+w6c_ww: struct-lit store into indexed/deref/field place fills via resolver (#20)
A struct-LITERAL rhs aimed at an N_INDEX element (a[i] = pt{...},
(*ts)[i].caps[k] = capture{...}), an N_UN deref place (*p = pt{...}),
or an indexed-base FIELD place (a[i].f = pt{...}, reviewer-20 sibling)
fell to a scalar store tail in BOTH stages: cgexpr on a struct
literal emits nothing (AX=0) and one MOVQ zeroed the place's first
word — every field silently dropped, a str-leading element's
content.ptr nulled (downstream SEGFAULT). Byte-identically wrong, so
every byte-id gate was blind; runtime pins added.
Fix: divert struct-lit-rhs INDEX/UN-STAR/DOT-over-INDEX places past
the legacy arms and widen the F6 assign-resolver gate
(N_DOT -> N_DOT|N_INDEX|N_UN); the existing C1.25 aggregate arm
materialises the literal into a fresh per-use @placescr slot and
word-copies to the cgplaceaddr-resolved address. No new path;
@placescr alloc site stays single per stage. Rider (task #32): an
array-LITERAL rhs at assignment — unwired for EVERY place kind, same
silent zero-word tail — now dies loud at one choke-point until the
fill lands; build-fail rows pin it.
Gates regex fold-5a (run_thread groupstart capture store,
regex.ha:643-651). Residual adjacent gaps (deref ident-rhs truncation,
>24B ident reassign cs!=ww, struct compound acceptance, value-global
DATAW, tuple-lit deref truncation, CALL-rhs RAX-only store) probed
pre-existing and filed as tasks #31 A-G / #32.
|
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| 0ce98cc5dc |
wcc+w6c_ww: append() spread place-chain sources via cgplaceaddr (#35)
#35 (fold-5 blocker, PG6): the append() spread arm dispatched on SOURCE node kind — ident-local only; both fold-5 dup shapes loud-rejected on BOTH stages: deref-spine `append(dup, (*tsp)[0].caps...)` (add_thread regex.ha:569/572) and indexed `append(res, ts[0].caps...)` (search ha:820). Route every non-ident-local source through cgplaceaddr (the established place choke-point: C1 stores, C1.25 aggregate fields, FA1 append targets, #49 element sources): the source header ADDRESS resolves ONCE, pre-grow, into a fresh per-site @appsprscr spill, and every loop iteration re-reads .ptr/.len THROUGH the spilled header after the grow. This adapts the #49 split ruling to the spread's full-range copy: the chain's rvalues (deref-root pointer expr, index exprs) evaluate exactly once PRE-grow — an index reading the dst's len sees the pre-append value — while the source data base and len re-derive live each iteration, so a source header aliasing the dst header re-roots post-realloc. A header reached through a buffer the grow reallocs reads the STALE copy — bit-identical under the non-reclaiming rt/malloc, the same documented #49 stale-base hole (pinned by the spread_selfalias_chain row). Ident-local sources keep the legacy BP-disp emission byte-identical. New loudness with the same fix: the spread source's stamped type must chase to TY_SLICE/TY_STR — a [N]T array ident source previously read its first 16 DATA bytes as a {ptr,len} header, silently. Array wiring plus the remaining rvalue sources (CALL, slicing exprs) stay loud, filed task #27. Global-ident sources now resolve on cstage but are blocked by a pre-existing wwstage checker reject ("let: not assignable", task #29) — no dual-stage row until that closes. 806_append_place: reject_spread_src GRADUATES to a runtime row (spread_place_deref, the old reject source verbatim + readback); new rows spread_dup_copy (PG6 verbatim: both fold-5 shapes, 56B capture elements, copy-semantics mutation pin, want 139), spread_place_kinds (str 24B headers / narrow i32 / empty deref source), spread_growth_place (40-elem spread crossing cap doublings), spread_selfalias_chain (source header inside the dst's grown buffer), and the two new loud-tail rejects (CALL rvalue, [N]T array) pinning the "#35:" diagnostic on both stages. 87 fixtures green (was 70), per-row cs/ww asm byte-cmp included. Unblocks regex fold-5a: add_thread regex.ha:569/572 + search ha:820 spreads go from loud-bound to real spread. |
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| 1bcf2726cf |
wcc+w6c+w6c_ww: delete() range form delete(xs[lo:hi]) (fold-5a P2)
Hare's delete also takes a slicing place (harec check.c:1981-2027 EXPR_SLICE; Hare spells it delete(xs[i..j])): remove [lo, hi) — shift [hi..len) down count = hi-lo strides, len -= count, cap unchanged; lo defaults 0, hi defaults len, so delete(xs[:]) clears the slice with storage retained. Checker accepts N_SLICE next to N_INDEX (object must chase to a slice, harec :2024); the old range-unimplemented reject and its #35 cite drop. Lowering (both stages, converged byte-identical by construction) is the single-element arm's same-slice whole-stride word-copy loop with a DYNAMIC src offset (count*esz via a src register) instead of the constant one-stride. Base shapes: local slice ident, deref-of-local, plus NEW indexed local-slice base xs[g][lo:hi] — the fold-5a consumer shape (regex.ha:333 delete(jump_idxs[group_level][..]); outer stride off the type table). Bounds stay implicit, inheriting the documented single-element posture (no index checks anywhere in cgen). Operands evaluate left-to-right, exactly once, before the shift (harec order); only the header ADDRESS is taken before operand eval, so a bound expression's writes through the slice land before the copy. test/809: 64 fixtures — full/explicit/re-clear/head/mid/tail/empty a:a/end-boundary len:len/explicit 0:0 on a never-appended (nil-ptr) slice, single-vs-range equivalence, cap preservation, esz 1/2/4/8/16/24 copy tails against the dynamic src, operand order-of-eval (lo/hi CALLs fire once each, in order) + aliasing-visibility pins, the EXACT [][]size regex consumer shape, deref base, 2 reject rows w/ diagnostic text; every accept row cs==ww asm byte-id. test/804: reject_range row retired (form now accepted), reject_nonindex text follows the widened message. |
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| e091dfbdbe |
wcc-ww: assert/abort builtins — checker tag + cgen rt_abort lowering (#58)
wwstage had no EXPR_ASSERT-family intercept: the checker left bare assert/abort calls untyped (asserttyped gate 4 skipped them by design) and cgcall fell through to the regular call path, emitting CALL assert(SB) for a symbol that exists nowhere — link-fail. cstage was already correct (tag ty_err at check.c:1536-1572, lower inline via rt_abort at cgen.c:6618-6663). Mirror the same tag-then-lower pair: exprtype N_CALL stamps the call void and the callee TY_ERR behind the scopelookupprefer no-shadow gate (the isassertfam predicate), with the cstage arg diagnostics (cond must be bool, msg must be str, arity caps); cgcall keys on the TY_ERR tag and emits the identical CMPQ/JNE/rt_abort sequence. A user-shadowed assert/abort (same-module or cross-module, the #45 shape, task #14) stays untagged on the regular call path — byte-id for all existing lib code preserved. The cond check does NOT alias-peel: cstage compares ty_bool by identity (check.c:1560), so `type myb = bool` is rejected there; wwstage aligns down per rule 10 (a resolvealias here was accepting it — cs/ww accept-reject divergence). Widening both stages together belongs to the alias-peel choke-point arc (task #5, #47/#68). The resolvewalk N_IDENT resolution counter learns the builtin shape: an unshadowed abort/assert ident binds no sym BY DESIGN, so wwdump -r's zero-unresolved gate (990 probe 4) counts it resolved instead of failing builtin-using units. test 957: 13 rows — pass/fail/msg/bare abort (run exit + rt_abort stderr content; no-msg rows pin EMPTY stderr = the (NULL,0) shape), assert in an imported module, same-module + cross-module shadow controls, 5 checker rejects pinned on diagnostic CONTENT (shared substring; cstage prefixes pos, wwstage cerr is bare) incl. the alias-of-bool cond row pinning the rule-10 down-alignment; each positive row pins cstage run exit + cs==ww byte-id. On pre-fix master 11/13 rows trip (survivors = the two shadow controls). Residual (separate root, deferred diagnostic class): zero-arg assert() is not intercepted by either stage; cstage rejects via the generic undefined-ident path, wwstage's undefined-callee diagnostic is the class deferred behind wiring checkfile into w6c_ww. |
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| 33ec0fb1ac |
w6c+w6c_ww: (*p)[i] deref base materializes the array ADDRESS (#61 C)
Both stages SEGV'd identically (byte-id-blind): cgun's TK_STAR emitted a scalar MOVQ (AX),AX for an array pointee, so the index consumed a[0]'s VALUE as its base — a wild deref. An array value IS its address everywhere in this cgen (#270-1a), so the ARRAY pointee now takes the same skip as the #185 *fn deref in both stages: `*p` leaves AX = p's value, and every consumer that materializes a complex index base via cgexpr(base) — N_INDEX read fallback, cgassign store/compound, TK_AMP, N_SLICE — gets the array address from the one deref choke-point. wwstage additionally joins the N_UN-TK_STAR base to the stamped-tinfo esz arms (cgindex / cgassign store + compound / TK_AMP &(*p)[i]) where cstage reads base->type uniformly: without it, esz fell to the 8B default and a narrow element would mis-stride the moment the base started materializing (cs!=ww only reachable post-choke-point-fix, which is why it rides this commit). 949_ptrarr_index_run grows the deref_* rows: read (8B/4B/param-base), write (8B / 1B+neighbor-guards), compound — runtime + byte-id, the only nets that can see a both-stages-identical miscompile. |
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| eea3e197c2 |
w6c+w6c_ww: *[N]T indexing strides by element, not whole array (#61 A+B)
Indexing through a pointer-to-array auto-derefs, so esz and the element classification must come from the pointee array's ELEMENT (cstage idx_eff semantics, cgen.c:1163). Two halves of one root class: A (wwstage-only, cs!=ww, cstage runtime-correct): elemsizeofc's #270-2 nested-array block treated an N_TPTR pointee-array like a [N][M]T outer index and returned the whole-array size — every p[i] read/write/ compound scaled by N*size(T), and the same wrong element belief reached the store-width chooser (var-idx write emitted an N*8B aggregate copy sourced at the 8B rhs slot: caller-frame smash, the siphash round() corruption). Fixed via two wwstage choke-points mirroring idx_eff: idxeffti (tinfo: NAMED peel + TY_PTR->TY_ARRAY drill; feeds elemsizeofc and elemissignedc/elemisfloatc/elemisf32c) and idxelemtn (node: element tnode with the same drill; feeds every cgindex/cgassign/nodeisstr/ match-scrutinee elemtn resolution). B (BOTH stages identically wrong, byte-id-BLIND): the TK_AMP &base[i] arm read bu->sub->size without the ptr peel (&p[3]-&a[0] = 96, not 24). cstage now routes esz through idx_eff. A and B are FUSED by the pre-existing routing topology, not by choice (rule 11): wwstage's TK_AMP arm already reads its esz via elemsizeofc (selfhost/cmd/wcc/cgenexpr.ww:4095, the #11 addr-of twin of the #10 cgindex fix), so fixing A's choke-point flips wwstage's half of B in the same stroke. A standalone A leaves &p[i] transiently cs!=ww; B-first is the mirror transient; carving the TK_AMP caller out of the fixed choke-point to preserve the wrong stride for one commit would be a deliberate known-wrong intermediate (rule-7, vetoed by rob). One choke-point, two enrolled routes — un-fusable without a red intermediate. Close-by-construction proof-grep (both stages): every remaining raw sub->size index-stride read is TY_ARRAY-gated, a slice-only builtin (delete/insert), a checker-stamped element tinfo (indexresult already decays *[N]T, check.ww:2277-2284), or a non-index context (tuple slots, let-init elements). Two true residuals filed with site+symptom instead of silently absorbed: N_SLICE through *[N]T does not decay (LOUD type error, Hare divergence; team task #18) and non-ident cast-expression index bases keep wwstage's 8B-default esz (pre-existing #74-style cluster; team task #19). cstage's N_INDEX read-side str/slice header gates also move from u->sub to esub (identical for every non-ptr-to-array base; honest for *[N]str — pre-fix BOTH stages were runtime-wrong there, differently). 949_ptrarr_index_run pins the class at runtime + byte-id: {1,2,4,8}B elems, const+var idx, param/local/cast bases, read/write/compound, neighbor guards, &p[i] pointer-difference, siphash-round mix shape. 989_lib_byteid: siphash_test graduates #59.7 DIVERGE -> ID (ratchet tripped loud pre-update; no other #59.x pin flipped in the same run). (*p)[i] (sub-bug C) follows separately. |
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| 8578ad0533 |
wcc+w6c+w6c_ww: global tuple lets — DATA emit + element reads + len(g.N) (C-t3, #48)
Global tuple lets were WHOLLY unwired, silently: let_emit_size returned 0 so emit_lets SKIPPED the definition (no DATA, no diagnostic), then cstage's t.N read and #235 len arm read BP-frame garbage (localfind→0) while wwstage — with the tuple never in collectlets — mis-emitted the field index as a symbol (`MOVQ 0(SB), AX`). ken's #48 was the len() facet of this. Now: let_emit_size/letemitsize admit TY_TUPLE (slot-sum size, rides C-t0); emit_tuple_data/emittupledata lay the slot-format DATAW row — a scalar element one 8B LE word, a str element its 24B header slot with a DATAR ptr patch at the element's slot offset (the #18 [N]str per-element pattern; strlits pre-interned in element order) — and any element that doesn't reduce to an int/str literal dies LOUD instead of skipped. The t.N read and len arms gain the global base (LEAQ sym(SB) into CX, the struct-field-global pattern; wwstage's C5 len loud-stop graduates to the working path). A GLOBAL tuple as a first-class VALUE (`let q = g;`) loud-stops on both stages — pre-fix it byte-identically loaded word0 only and read a stale cursor for words 1+ (element reads are the supported surface). 941 grows the t3 rows: global element reads (str+i64 and packed u32,u32 incl. len(g.0)) + rejects (float-element init, whole-value use, pre-existing element-write anchor). 7/82 checks fail at the C-t2 parent (cs silent-garbage runtime, ww C5 build-fail, both rejects vacuous-or-absent). |
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| 6426fac6f2 |
w6c+w6c_ww: tuple by-value ARG send — every cursor-filling producer rides #163 (C-t2, #32)
node_tuplearg was N_CALL-scoped and its comment claimed non-call forms "loud-stop" — they did NOT: a tuple ident/literal/unwrap arg fell to the scalar single-PUSHQ default, skewing every later arg register so the callee read garbage word 2 (byte-id both stages, the gate-blind both-wrong class; packed shapes SIGSEGV'd pre-C-t0). The receive side (cgfn #163 walk) was already correct. cgexpr already fills the return-ABI cursor for every supported producer (#241: ident via slot-to-cursor, literal via lit-to-cursor, unwrap via payload shift; call via the return ABI) — the send now admits exactly those into the existing @tupargscr restage + per-class drain (node_tuplearg widened; wwstage gains nodetuplearg, mirroring it over the local tnode / inferletcalltype; rettupleof stays N_CALL-scoped for the destructure receives). Any OTHER tuple-typed source shape loud-stops at the push site — the false comment's claim, now true (rule 7). Literal tuple elements are stamped expr types, so the restage/drain wide test goes type_isstr/type_isslice (TY_UNTYPED_STR- aware) with the ty_str->size header stride; the wwstage twin walks a literal's VALUE exprs the way cgtuplelittocursor classifies them. Ken review demands folded in: (1) a NESTED composite element (tuple/struct/array/tagged inside the tuple) occupies more than the one GP word the restage walk counts — the checker accepted it and it ran WRONG (inner words skewed, wwstage SIGSEGV); both stages' restage walks now loud-stop the element kind (wiring is the filed follow-up, task #65). (2) the variadic interaction probed: a tuple arg ahead of a variadic tail rides the restage correctly (positive row); variadic-of-tuples stays bounded-loud via the tuple-in-slice read surface. 941 grows the t2 matrix: packed/16B params with branched callees, mixed arg orders both ways, literal arg, (f64,i64) param, unwrap arg, ken's >6-GP-pressure stress (4 leading scalars + tuple + a 7th stack-class word), variadic-after-tuple, plus rule-7 reject rows (chain-source arg, nested-element arg, variadic-of-tuples, over-cap ident arg) and the fold-4 charset substrate pin ([](u32,u32) append stays LOUD). At the C-t1 parent 18/73 checks fail: every runtime arg row except the (f64,i64) anchor on BOTH stages (byte-identically — the gate-blind both-wrong class) and the chain/nested args silently accepted. |
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| fdfc2ce318 |
wcc+w6c+w6c_ww: tuple slot layout SSoT — checker size = cgen slot stride (C-t0)
The checker computed TY_TUPLE size as the packed element-size sum ((u32,u32) = 8B) while every cgen cursor-transport site strode 8B slots (16B). 16B tuples were blind to the split (slot == packed); packed tuples hit it everywhere: cstage let-receive keyed on sz 16/32 missed sz 8 and dropped word 1, the cgfn param receive spilled 8B/element into a packed-sized local (saved-BP clobber, SIGSEGV), and mixed (u32,f64)/(u32,str) shapes missed the receive arms entirely. Slot layout is now the SSoT (user-ratified): the flip lives in the two checkers' N_TTUPLE size computation only (check.c, check.ww tupleelemslot + stamp); cgen's packed-keyed walks (t.N read, #235 len arm, over-cap sret send/receive pair) align onto the slot stride, and the wwstage t.N read gains the natural-width load (tnodeloadop) to byte-id with cstage's fldloadop. ttupleelem.offset re-stamped slot-cumulative (no consumers yet). The #242/#243 eightbyte-share loud-stop dissolves by construction (no two narrows ever share an eightbyte) — 940's eightbyte_share row graduates to a runtime round-trip. Hare-layout divergence documented at both checker sites; re-alignment is task #60. #32 send skew and #33 wwstage literal-let receive are separate commits on this base. 941_tuple_slot_layout_run pins the matrix: 4 packed rows fail at the parent (8/21 checks), 3 neutral anchors prove 16B/32B emission untouched. |
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| 9861f73bbb |
wcc+w6c+w6c_ww: insert() builtin — single-element slice insertion (part of #35)
Hare's insert(xs[idx], v) (ref/harec/src/check.c:745 check_expr_append_insert — append/insert share the checker arm, "insert" at :786): checker accepts an INDEX place over a slice plus one value, stamps void; idx == len is a legal end-insert (the ref/hare os/exec/platform_cmd.ha:86 idiom). Loud-rejects with exact texts: spread form insert(xs[i], vs...) (filed, #35 — also covers harec's with-length form via the arity check), range place (not Hare; harec only parses ACCESS_INDEX, :784), non-index operands, array bases, wrong arity. delete()-parity throughout. Lowering (both stages, converged byte-identical by construction) is a DESUGAR: append(xs, v) — reusing append's grow (rt_ensure) and the entire #34 value-store dispatch (scalar / str-slice header / tagged widen / struct fill) verbatim, one boxing choke-point — lands v at slot len-1; then a rotate-right of [idx, len) moves it home through a fresh per-site esz frame scratch (@insscr). The rotate is delete's shift loop in reverse (descending j, the safe memmove-up direction) and is a same-slice whole-stride raw byte move — no boxing exists for any element kind. idx evaluates BEFORE the grow (Hare's left-to-right operand order — pinned by the pregrow_len_idx row, insert(xs[len(xs)-1], v): pre-grow [7,13,11] vs post-grow [7,11,13]; an idx==len(xs) end-insert cannot discriminate, the rotate degenerates either way). Base shapes: local slice ident (LEAQ) and deref-of-local ptr-to-slice (MOVQ); others rule-7 loud-stop, like delete. test/807: 57 fixtures — front/middle/end + idx==len via len(xs) + the pre-grow eval-order pin, esz 1/2/4/8/16/24/56 (MOVB/MOVW/MOVL tails, struct body, str header, 7-qword tagged from a typed local [the regex fold-3 ha:347 newinst shape] and from a cast rvalue [ha:419/441]), empty-slice grow, (*p)[i] deref base, front-insert loop, 6 checker reject rows with diagnostic-text checks; every accept row cs==ww asm byte-id. |
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| c34a48a81f |
wcc+w6c_ww: append() struct-element sources via split place-resolve (#49)
#49 (#35's single-element sibling, tranche-C pre-check PC2): the
struct-element append arm dispatched on SOURCE node kind — N_STRUCTLIT
(literal fill) and N_IDENT (local word-copy) only; every
place-resolvable chain died on the rule-7 fatal in BOTH stages,
including search()'s result-build line
`append(res, threads[best_idx].root_capture)` (regex.ha:819).
Wire those shapes with a SPLIT resolve around the grow (the #49
ruling): the chain's rvalues — deref-root pointer expr, index expr —
evaluate exactly once PRE-grow into @appendsroot/@appendsoff (an index
reading the slice header sees the pre-append len, Hare's argument
order), then only the BASE re-derives POST-grow from the live storage
and the stashed offsets land back on top, so a self-append source
re-roots in the post-realloc buffer. harec resolves an aggregate
source address wholly PRE-grow (gen.c: gen_load returns the address
for STORAGE_STRUCT, gen_store copies after rt.ensure) — a
use-after-free under a reclaiming allocator; per #263 we align to the
runtime-correct side, not the reference. A pointer ALIASING the grown
buffer keeps Hare's own stale-base hole (sound today only because
rt/malloc.ww never reclaims). Supported shapes are bounded: root
(local/global ident | deref) + at most one index + trailing direct
fields; all else stays on the #34 fatal, including CALL rvalues (the
#42-style bound, new reject row pins the text in both stages). The
N_STRUCTLIT/N_IDENT fast-paths keep their emission byte-identical.
806_append_place grows eight rows: indexed-field 56B capture (the
ha:819 shape, header readback), computed-index whole element,
deref-spine param pair, deref source, self-append ×33 crossing three
cap-doubling reallocs, the split-order semantics pin (a CALLED index
helper reading len must run once and see the PRE-grow len — the
pre-split emission failed exactly there), an element-kind ×
place-source matrix row (scalar/narrow/str/slice/tagged route via the
pre-existing arms — regression net), and the CALL-source reject. The
six fix rows verified FAILING against a pristine
|
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| 796d41bb9f |
wcc+w6c_ww: len() over place-resolved operands (F2/FA2)
C5 (tasks #10 + #41): the len() builtin's operand handling was an arm enumeration that leaked FOUR siblings over time (#235 tuple-elem → #19 indexed-elem → F2 len(xs[i].field) → FA2/FB1 len(*p)) — every unhandled slice/str operand shape fell to a bare cgexpr fallback that returned the slice DATA POINTER as the length. Silent ptr-garbage, byte-id both stages, gate-blind. Probing at |
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| d642017643 |
wcc+w6c_ww: aggregate let/range element copies via cgplaceaddr (F5)
F5 (task #7): the N_LET aggregate-copy arm's source-addr enumeration
(cgen.c #265/#268) had TY_ARRAY-ident/N_DOT/N_INDEX bases but no
TY_SLICE base and no deref-spine shapes, so `let e: th = xs[0]` fell
out with havesrc=0 — cstage emitted NOTHING (slot uninitialised),
wwstage fell to its scalar default (8B truncation): gate-blind cs≠ww
(p6min13). Every remaining ADDRESSABLE rhs now resolves through
cgplaceaddr (the C1 resolver; enumerated arms dispatch first, their
asm untouched), and the arm closes by construction with a loud tail —
nothing below it can initialise a >8B struct/array slot, so any
unhandled rhs shape dies loud instead of silently. A pre-tail #38b
guard keeps the established `?`/`!`-on-sret loud-stop marker in
wwstage (mirror of cstage's pre-arm fatal; pre-fix that shape reached
the cgtryunw/cgtryprop gates which the tail now pre-empts in let
position).
Reviewer-C2 inheritance: `let c: capture = (*ts)[i].cap` (aggregate
leaf behind a deref spine) — wwstage's documented cgdot aggregate-leaf
loud is retired for let position (cglet routes the copy through the
resolver before cgexpr sees the leaf; the loud stays as the guard for
non-let expr positions), and cstage's silent no-copy on the same shape
is fixed by the same resolver fallback.
By-value RANGE payloads ride the same class: N_FORRANGE's single-bind
load truncated every aggregate element to one fldloadop word. Both
stages now word-copy the full element extent (MOVQ run + sized
MOVL/MOVW/MOVB tail, the #270-1b idiom) for esz > 8. wwstage esz is
re-keyed elemsizeof→elemsizeofc (the 8-sentinel hid struct elements
from the copy gate — the #8 named-narrow precedent), with a
stamped-slc.type_ fallback + element-tnode synthesis for non-ident
scrutinees (tinfo SSoT, #209/#211). The wwstage checker now binds the
ELEMENT type on single-bind ranges via a synthetic N_LET binder node
(mirror of cstage check.c N_FORRANGE scope_define(..., elem, ...));
pre-fix the binding's decl was the N_FORRANGE node itself, so any
field read off a by-value binding asserttyped-bailed. The checker
half folds in under rule 11 because the split is unsound in either
order: cgen-first is untestable (every field read off the binding
still bails), checker-first converts that loud bail into the 8B
SILENT truncation — only the pair closes the class.
FC0 graduates: regex.finish's by-value range over 24B charset elems
(non-ident scrutinee re.charsets) was the lib/regex byte-cmp's ONLY
hunk since fold-1 — cstage 8-of-24-byte copy + IMULQ $24 vs wwstage
1-byte MOVZBQ, runtime-masked by the no-op loop body. The byte-cmp is
now ZERO hunks (regex_test.combined.ww, w6c vs w6c_ww).
#36 disposition: NOT folded. p6min9/p6min10's remaining failure is the
struct-ident field rhs inside a struct LITERAL (cg_structlit_fill
under-copy) — a different choke-point from the let-copy source-addr
machinery; they still exit 4 here and stay blocked on #36 (read half
landed in C2).
Residual filed as task #43: an UNANNOTATED aggregate let
(`let e = xs[0]`) still skips the wwstage arm (aggn/letslotsize are
annotation-keyed; cstage keys the stamped n->type and now full-copies)
— cs≠ww on that shape remains, #38-family. A landmine comment in
test 805 marks the gap.
test 805: +6 rows — let-from-slice-elem 16B (p6min13 verbatim) /
24B/40B/12B(MOVQ+MOVL tail) matrix / deref-spine leaf / by-value range
([]struct both-fields sum, []capture 40B, []str 24B header) / range
edges (empty slice, by-VALUE binder-mutation pin, 12B elem MOVL tail)
/ reject row pinning the loud-tail text on both stages. All six fail
at the pristine parent
|
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| 074e68f05d |
w6c_ww: tinfo re-key of the cgdot N_INDEX-base arm (F7/F10)
The wwstage `arr[i].field` read arm was syntactic where cstage is type-table-driven: element typing keyed on tnode KINDs (N_TSLICE/ N_TARRAY/N_TPTR) with an N_TNAME element resolved by structlookup NAME — any base typed via an alias (`type result = []capture`, p11b/F10) missed every gate and died at the interim C2 loud guard (pre-C2: fell silently to the SB fallback). Re-key the arm onto the checker-stamped tinfo (lhs.type_ element / idxbase.type_ base, NAMED peeled), mirroring cstage cgen.c case N_DOT's N_INDEX-lhs arm 1:1 — the #209/#211 name-keyed->tinfo-SSoT cluster. Emission sequence is unchanged; the C2 "C3/task #8" guard retires with the arm wired (task #37's ptr-chain guard is untouched). Global classification mirrors cstage let_islet || def_isarraydef via isletvar / defvartnode-N_TARRAY (the cgplaceaddr C2 pattern). F7/FA5/FA3-ww/FA6 (non-ident idxbase shapes, task #17's ww halves) were already closed by C2's read-resolver recursion; p7_composed, pA5, pA9 run exit-0 byte-id and are pinned as rows here. Task #29's asserttyped bail (strings.frombytes over a slice-expr in the composed context) no longer reproduces at HEAD — dissolved during the C1.25->C2 arc; p7_composed builds clean on w6c_ww, runs 0, byte-id. Behind the retired guard three alias-blind NON-cgdot sites surface (`let l: wlist = []` checker reject / alias-array global emits no DATA / alias-array arrlit-init under-copies 8B per element, cs!=ww runtime): filed as task #38, same name-keyed class, separate sites. test/805: +5 rows — alias-slice field-kind matrix, alias-array + viaptr-element bases, p11b-essence let-bound alias reads (the task-#14 `?` factored out), the composed p7 match/compound hot shape, and the pA9 free()-operand acceptance row (FA6). Task #8; the last cgen gate before regex tranche B. |
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| 76994a8279 |
wcc+w6c_ww: typed dot-read resolver — kill both silent N_DOT fallbacks (F4)
A typed depth-2+ field chain behind an index/deref spine (threads[0].cap.end, (*p)[i].f.g) aborted the cgdot chain walker (N_IDENT roots only) and fell into the module-qualified-leaf fallback — a silent `MOVQ <leaf>(SB)` global read of a colliding symbol (p6min10 exit 66) or a link error. Single-dot reads behind a deref- index ((*ts)[i].pc, (*p)[i].slicefield) fell into the bottom catch-all instead, which is offset- and header-blind: offset-0 scalars read correctly by COINCIDENCE, nonzero offsets and slice headers were silently wrong in BOTH stages (FA3, pA5). `&threads[0].cap` dropped the address-of silently and SEGFAULTed at the deref (task #6, reviewer-A route). cgplaceaddr (C1) grows an N_IDENT root (local / let / DATA-backed def) and the N_INDEX base gate relaxes to recursion, so indexed-ident and deref-rooted spines resolve; enumerated arms still dispatch first, keeping every pre-C1 shape's asm. case N_DOT routes any TYPED read no arm matched through the resolver (scalar fldloadop, float X0, str/ slice 3-word header, [N]T address); the module-leaf fallback is gated to UNTYPED chains, the catch-all to untyped-str pseudo-fields, and the TK_AMP tail is resolver-or-loud. Leaf kinds without a register convention (tagged, aggregate) and unaddressable shapes die LOUD (rule 7). wwstage mirrors symmetrically; two of its arm gaps must not take the resolver (its sequence differs from cstage's arms — cs!=ww): ident-indexed alias reads loud-cite C3 (task #8) and non-local-rooted ptr-chains loud-cite task #37. A third verdict divergence is comment- documented at the wwstage aggregate gate: cstage's let-init consumes `let c = (*ts)[i].cap` BEFORE its N_DOT tail (emitting NO copy — the F5 bug), so that shape cs-builds/ww-louds until the F5 let-copy lands (task #7); absent from the gate corpus. 806 identroot_dot graduates from BUILD_FAIL: the C2 ident root makes append(h.xs, v) through *holder resolve via C1.5's place consumer (run-verified, byte-id). p6min9/p6min10 read-halves are fixed but the probes stay blocked on the #36 literal under-copy this commit unmasked (struct-ident field rhs copies 8B; repro filed with the task). test/805: +7 rows (typed depth-2 behind ident-index incl the 777 global-collision pin, deref-index, width/float/[N]u8 matrix, FA3 slice-field + .cap-behind-spine, &-route with compound-through- pointer, C1's reject_tail graduated to stores, neutrality pins) and +4 reject rows pinning the new loud texts; the C1.25 raw-byte readbacks graduate to typed depth-2 reads. |
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| b630a7cf20 |
wcc+w6c_ww: append through pointer-to-slice place via cgplaceaddr (FA1)
Re-key the append() lowering from BP-displacement assumptions onto a resolver-provided header PLACE (task #15, the add_thread hard-blocker; cgplaceaddr's third consumer after C1/C1.25). One mirrored choke-point, two failure modes: cstage 0-defaulted sn_off for any non-ident target, so 0(BP)/8(BP) became the "slice header" and rt_ensure corrupted the CALLER frame (SIGSEGV); wwstage cgappend silently emitted nothing (gate-blind cs!=ww). cg_append_grow/cg_append_slot (mirror cgappendgrow/cgappendslot) factor the 5 grow + 5 slot header-access sites. Ident-local targets keep the legacy BP-disp emission byte-identical (probed across all 9 existing source shapes, before/after .s). Non-ident targets resolve once through cgplaceaddr and spill the header address to an @apphdrscr slot: rt_ensure may realloc .ptr but never moves the header, so the slot stays valid; every access reloads from it. The slot is allocated fresh per append SITE, not cached per fn: a nested append-through-pointer inside a value expression (match-yield arm) spills its own resolve, and a shared slot would hand the outer grow/slot reloads the inner target's header — silent cross-slice corruption (pinned by the reentrant_value row). Indirect mode keys esz/element-kind/load-op off the checker-stamped target tinfo (no declared tnode behind `*p`; the #209/#211 discipline). Unwired target places die LOUD "#15: append() target place unsupported (rule-7)" on BOTH stages — the silent-corruption class is closed by construction. The FA4/#35 boundary is unchanged: non-ident spread SOURCES stay loud (pinned by a reject row). Surfaced pre-existing checker divergence filed as task #34 (wwstage rejects global slice-lit let). test/wcc/806: 14 runtime rows (element kinds x target shapes, spread, narrow-signed spread load, cap-crossing realloc loop with branched callee + caller-frame sentinels, deref-spine target, nested-append reentrancy, direct-arm neutrality pin) + 2 exact-text reject rows, both drivers + per-row cs==ww asm byte-id. |
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| cfc2985c61 |
wcc+w6c_ww: aggregate-field stores via cgplaceaddr (C1.25)
Wire struct/array/tuple field STORE through the C1 assign-resolver (task #23): structlit rhs materialises into a FRESH-per-use @placescr slot (the @slicescr discipline — a cached slot is the #31 multi-live trap) then word-copies to the resolved address; addressable rhs (ident/global/dot/deref) sources via aggarg_srcaddr with the dest spilled around the dispatch (#270-1b order). Kept loud: compound on aggregate, sret call rhs (#234-tail), <=24B call rhs (task #24), unaddressable literal rhs, ww-only anonymous-struct structinfo miss. test/wcc/805: +6 rows (40B structlit incl ... autofill, ident+deref source, nested literal, [3]u8 MOVW/MOVB and [3]u32 MOVL tails, two same-size stores in one fn pinning fresh-per-use) +3 exact-text reject rows. Tuple-field row blocked by the pre-existing tuple param/let-init word-2 drops (tasks #32/#33, documented in-row). p7b_capstore_only graduates byte-id and runs; p7_composed builds and runs on cstage, wwstage stays behind the pre-existing #29 asserttyped bail (verified identical at master with w6c_ww). |
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| 32063d0da0 |
wcc+w6c_ww: >48B tagged by-value args — MEMORY-class two-phase push (#38b)
Task #19 (the #38b residual surfaced by FC2 evidence): a tagged arg whose slot exceeds the 6-reg convention (>48B) is MEMORY-class per ref/qbe/amd64/sysv.c:80-85 (inmem) / :411-426 (stack blit). Caller stages the whole slot below every register-class word (two-phase push, rightmost-first, leftmost mem arg at 16(BP)); callee registers the param in place at positive BP offsets with zero prologue bytes; the merged slot count feeds the existing caller-cleanup ADDQ. Argument-side mirror of the #38 tagged-sret fix, same classify machinery (tagged_memarg_size / taggedmemargsize beside their register-class siblings). Pre-fix, the exact-typed arg loud-stopped on both stages, but WIDENING a concrete variant into a >48B param slipped the old guard silently — cstage pushed one scalar word while wwstage emitted an uncapped greedy stitch (wrong on both AND cs≠ww, gate-blind). Widen sources now route through the @tagscr scratch for mem slots. Loud boundaries kept (rule 7), each with its own diagnostic: sret-class tagged CALL result as mem-arg source (#40-family follow-up), global tagged let (task #25, broken at any size pre-existing), >48B variadic element, and mem-arg + register- overflow mixing (caller check + callee prologue mirror). Single commit: caller staging, callee receive, and both stages are one inseparable ABI class — landing any half alone breaks byte-id or runtime correctness (the #38 flip precedent); test/929 (15 table-driven rows: 56B/64B slots, widen-slip pin, source shapes, mixed orders both ways, two-mem call, 200k-call loop, 48B-boundary absence pin byte-id'd vs master, 5 reject rows pinning the exact per-guard diagnostic on both stages) rides with it. |
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| e3e6b5a820 |
wcc+w6c_ww: cgplaceaddr resolver — deref-base assign stores (F6)
(*ts)[i].field = v / OP= v (the regex run_thread hot shape, task #4) compiled to NOTHING in both stages, byte-identically: the N_DOT lhs roots at N_UN(STAR), so the arr[i].field arm (idxbase must be IDENT) and the chained-ptr-field arm (base must be *struct) both miss and the N_ASSIGN dispatch fell off the switch silently, rhs unevaluated. cgplaceaddr (one per stage) is ADDRESS COMPUTATION ONLY — N_UN(STAR) root, N_INDEX hop over a slice/array place (.ptr hop for slice), N_DOT struct-field hop with one deref for a *struct base. Call-sites keep their own emission: scalar fldstoreop store, str/slice 3-word header store staged through DX, 10-op compound template with the chained-ptr-field register roles. Ident-rooted spines stay with the enumerated arms — verified asm-neutral over the 84 fold2b probe sources against fresh master-HEAD binaries (7 diffs = the F6 family now emitting stores; 2 verdict flips = aggregate-field stores, now loud). Silent dispatch tails go LOUD for N_DOT lvalues the resolver can't address and for unresolved-identifier targets (cstage float-ident arm aligned to wwstage's resolve-first order). Aggregate-field stores loud-reject pending the follow-up resolver commit (task #23, ≤24B N_CALL rhs split to #24). The non-DOT tail stays silent deliberately: going loud there would asymmetrically surface the pre-existing str-base element-store divergence — task #22, cited at both sites. test/805: 17 rows x 2 drivers + 12 cs==ww byte-id fixtures — widths (incl narrow-compound fldloadop sign/zero-extension), all 10 compound ops (DIVQ/IDIVQ/SHLQ/SARQ/SHRQ), str + slice 3-word stores, *[N]T base, runtime call index, ident-base neutrality pins, and 5 reject rows asserting exact diagnostic text. |
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| 37febab9d5 |
wcc+w6c+w6c_ww: delete() builtin — single-element slice removal (part of #35)
Hare's delete(xs[i]) (ref/harec/src/check.c:1981-2027): checker accepts an N_INDEX over a slice-typed base, stamps void; loud-rejects the range form delete(xs[i..j]) (stays filed on #35 — regex fold-2b's consumers are all single-element), non-index operands, array bases, wrong arity. Lowering (both stages, converged byte-identical by construction): ascending word-copy loop shifts [i+1..len) down one esz stride, then hdr.len -= 1; cap unchanged. The move is a same-type whole-stride byte copy — src and dst are elements of the SAME slice, so no boxing exists for any element kind; one loop serves scalar/narrow/str/struct/tagged. esz off the STAMPED base type (#34/#48 discipline). Base shapes: local slice ident (LEAQ) and deref-of-local ptr-to-slice (MOVQ — the fold-2b delete_thread shape); others rule-7 loud-stop. test/804: 38 fixtures — first/middle/last/to-empty, esz 1/4/8/24/56 (MOVB/MOVL tails + 7-qword tagged), cap-unchanged, (*threads)[i], 4 checker reject rows; every accept row cs==ww asm byte-id. |