739/740/741 -> test/asm/chain_test.ww. Narrow load/store mnemonics, the u8 write anti-needle, the greedy MOVQ-$N/IMULQ scale-pair exact counts and per-row byte-id preserved; 741's never-armed anti-needle machinery dropped as machinery, not assertion.
274 lines
9.4 KiB
Plaintext
274 lines
9.4 KiB
Plaintext
package chain_test;
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// Direct-w6c asm-window gate over chained-index element dispatch.
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// Port of the retired native carriers test/wcc/739_chained_index.c,
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// 740_chained_write.c and 741_dotbase_chained.c; every assertion
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// preserved. test/lang/chainidx_test.ww owns ARRAY chains only — the
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// **T pointer-chain narrow width, the exact stride-scale pair counts
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// and the N_DOT-base recursion have no other owner; 740/741 are the
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// sole exercisers of their shapes.
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//
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// 739 (#24, read) / 740 (#27, write): inside [TEXT main.probe ..
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// first RET line) the element access must use the narrow MOV
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// mnemonic (MOVZBQ/MOVSXD load, MOVB/MOVL store), the u8 write row
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// anti-checks the pre-fix 8-byte `MOVQ AX, (BX)`, and the
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// `MOVQ $N, CX` .. `IMULQ CX, AX` scale pairs must count EXACTLY
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// inner=1 for **u8 (a stray outer scale was the pre-fix wwstage
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// emit) and inner=1 outer=1 for **i32. The pair scan is the
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// carriers' greedy two-strstr walk, ported positionally.
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//
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// 741 (#28 + #30): the N_DOT-base chained read must land MOVZBQ
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// (esz recursion through dotfieldtnode) and the tagged-array write
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// must scale by the 32B element stride; the write row's
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// scalar-overwrite divergence net is the byte-id leg, exactly the
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// carrier's design (its anti-needle machinery was never armed).
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//
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// Byte-id legs ride every row as in the C. Dropped C machinery, not
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// assertions: w6c_ww-absent skip gates, getpid()-keyed /tmp names,
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// slurp caps. The `package main;` prefix reproduces wwtest_fputs.
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import os;
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import os.exec;
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import strings;
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import testenv;
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import time;
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fn fail(label: str, why: str) void = {
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let m: str = strings.concat("chain FAIL: ", label, " -- ", why,
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"\n");
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os.write(2, m.ptr, m.len: u64);
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assert(false);
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};
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fn tmo() time.duration = {
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return (180i64 * (time.second: i64)): time.duration;
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};
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fn emitstage(td: str, label: str, stage: str, drv: str,
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outname: str) void = {
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let av: []str = [];
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append(av, drv);
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append(av, "-o");
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append(av, outname);
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append(av, "src.ww");
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let co: testenv.commandout;
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testenv.runcommand(td, td, stage, av, tmo(), &co);
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let ok: bool = co.termination == exec.termination.EXIT && co.code == 0;
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if (!ok) { fail(label, strings.concat(stage, " compile failed")); };
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};
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fn posafter(s: str, start: i32, needle: str) i32 = {
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let p: i32 = testenv.pos(strings.sub(s, start, s.len), needle);
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if (p < 0) { return -1; };
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return start + p;
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};
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// [TEXT main.probe .. first `\tRET\n`), widened to EOF when the RET
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// needle is missing — the carriers' probe window.
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fn probewindow(label: str, stage: str, s: str) str = {
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let fp: i32 = testenv.pos(s, "TEXT main.probe");
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if (fp < 0) {
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fail(label, strings.concat(stage, ": no TEXT probe in .s"));
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};
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let tail: str = strings.sub(s, fp, s.len);
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let rp: i32 = testenv.pos(tail, "\tRET\n");
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if (rp < 0) { return tail; };
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return strings.sub(tail, 0, rp);
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};
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// Greedy `movq` .. `IMULQ CX, AX` pair count (the carriers'
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// two-strstr walk: an unpaired movq re-scans from movq+1, a paired
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// one advances past its IMULQ).
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fn paircount(w: str, movq: str) i32 = {
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let n: i32 = 0;
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let p: i32 = 0;
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for (p < w.len) {
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let ip: i32 = posafter(w, p, movq);
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if (ip < 0) { break; };
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let nx: i32 = posafter(w, ip, "\tIMULQ\tCX, AX\n");
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if (nx < 0) { p = ip + 1; continue; };
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n += 1;
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p = nx + 1;
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};
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return n;
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};
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// outerscale 1 -> exactly 1 inner $8 pair and NO outer scale;
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// outerscale 4 -> 1 inner $8 pair AND 1 outer $4 pair.
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fn scalecheck(label: str, stage: str, w: str, outerscale: i32) void = {
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let inner: i32 = paircount(w, "\tMOVQ\t$8, CX\n");
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if (outerscale == 1) {
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if (inner != 1) {
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fail(label, strings.concat(stage,
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": expected exactly 1 inner `MOVQ $8, CX; IMULQ` ",
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"pair (no outer scaling for u8)"));
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};
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} else {
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let outer: i32 = paircount(w, "\tMOVQ\t$4, CX\n");
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if (inner != 1 || outer != 1) {
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fail(label, strings.concat(stage,
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": expected 1 inner `MOVQ $8` + 1 outer `MOVQ $4` ",
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"IMULQ pair"));
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};
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};
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};
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// One 739 row: narrow load mnemonic + scale-pair counts + byte-id.
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fn chainreadrow(label: str, src: str, loadmov: str,
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outerscale: i32) void = {
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let td: str = testenv.fresh();
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testenv.writefile(strings.concat(td, "/src.ww"), src);
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emitstage(td, label, "cstage", testenv.driver("w6c"), "cs.s");
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emitstage(td, label, "wwstage", testenv.driver("w6c_ww"), "ws.s");
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let cs: str = testenv.readfile(strings.concat(td, "/cs.s"));
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let ws: str = testenv.readfile(strings.concat(td, "/ws.s"));
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let needle: str = strings.concat("\t", loadmov, "\t(AX), AX\n");
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let cw: str = probewindow(label, "cstage", cs);
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let ww: str = probewindow(label, "wwstage", ws);
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if (!testenv.has(cw, needle)) {
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fail(label, strings.concat("cstage: expected `", loadmov,
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" (AX), AX` in probe body"));
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};
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if (!testenv.has(ww, needle)) {
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fail(label, strings.concat("wwstage: expected `", loadmov,
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" (AX), AX` in probe body"));
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};
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scalecheck(label, "cstage", cw, outerscale);
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scalecheck(label, "wwstage", ww, outerscale);
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if (!testenv.same(cs, ws)) {
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fail(label, "cstage vs wwstage asm differs");
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};
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testenv.clean(td);
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};
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// 739: **T chained read. esz of the outer index must come from the
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// inner index's value type, not the default 8.
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@test fn chainedindex() void = {
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chainreadrow("chained_u8", strings.concat(
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"package main;\n",
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"fn probe(names: **u8) u8 = {\n",
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" let i: i32 = 0;\n",
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" let k: u64 = 0u64;\n",
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" return names[i][k];\n",
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"};\n",
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"export fn main() i32 = { return 0; };\n"),
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"MOVZBQ", 1);
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chainreadrow("chained_i32", strings.concat(
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"package main;\n",
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"fn probe(mat: **i32) i32 = {\n",
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" let i: i32 = 0;\n",
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" let k: u64 = 0u64;\n",
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" return mat[i][k];\n",
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"};\n",
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"export fn main() i32 = { return 0; };\n"),
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"MOVSXD", 4);
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};
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// One 740 row: narrow store mnemonic, the u8 row's wrong-width-store
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// anti-needle, scale-pair counts, byte-id.
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fn chainwriterow(label: str, src: str, storemov: str,
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outerscale: i32) void = {
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let td: str = testenv.fresh();
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testenv.writefile(strings.concat(td, "/src.ww"), src);
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emitstage(td, label, "cstage", testenv.driver("w6c"), "cs.s");
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emitstage(td, label, "wwstage", testenv.driver("w6c_ww"), "ws.s");
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let cs: str = testenv.readfile(strings.concat(td, "/cs.s"));
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let ws: str = testenv.readfile(strings.concat(td, "/ws.s"));
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let needle: str = strings.concat("\t", storemov, "\tAX, (BX)\n");
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let cw: str = probewindow(label, "cstage", cs);
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let ww: str = probewindow(label, "wwstage", ws);
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if (!testenv.has(cw, needle)) {
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fail(label, strings.concat("cstage: expected `", storemov,
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" AX, (BX)` in probe body"));
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};
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if (!testenv.has(ww, needle)) {
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fail(label, strings.concat("wwstage: expected `", storemov,
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" AX, (BX)` in probe body"));
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};
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if (outerscale == 1) {
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if (testenv.has(cw, "\tMOVQ\tAX, (BX)\n")
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|| testenv.has(ww, "\tMOVQ\tAX, (BX)\n")) {
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fail(label, strings.concat(
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"stray 8-byte `MOVQ AX, (BX)` in probe body -- ",
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"pre-#27 wrong-width-store regression"));
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};
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};
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scalecheck(label, "cstage", cw, outerscale);
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scalecheck(label, "wwstage", ww, outerscale);
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if (!testenv.same(cs, ws)) {
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fail(label, "cstage vs wwstage asm differs");
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};
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testenv.clean(td);
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};
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// 740: **T chained write, sister of 739 on the cgassign side — the
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// wrong-width store corrupts memory adjacent to the u8 slot.
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@test fn chainedwrite() void = {
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chainwriterow("chained_u8", strings.concat(
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"package main;\n",
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"fn probe(names: **u8) void = {\n",
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" let i: i32 = 0;\n",
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" let k: u64 = 0u64;\n",
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" names[i][k] = 65u8;\n",
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"};\n",
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"export fn main() i32 = { return 0; };\n"),
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"MOVB", 1);
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chainwriterow("chained_i32", strings.concat(
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"package main;\n",
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"fn probe(mat: **i32) void = {\n",
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" let i: i32 = 0;\n",
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" let k: u64 = 0u64;\n",
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" mat[i][k] = 42i32;\n",
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"};\n",
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"export fn main() i32 = { return 0; };\n"),
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"MOVL", 4);
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};
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// One 741 row: dispatch-defining needle in the probe window plus
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// byte-id.
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fn dotbaserow(label: str, src: str, needle: str) void = {
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let td: str = testenv.fresh();
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testenv.writefile(strings.concat(td, "/src.ww"), src);
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emitstage(td, label, "cstage", testenv.driver("w6c"), "cs.s");
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emitstage(td, label, "wwstage", testenv.driver("w6c_ww"), "ws.s");
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let cs: str = testenv.readfile(strings.concat(td, "/cs.s"));
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let ws: str = testenv.readfile(strings.concat(td, "/ws.s"));
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if (!testenv.has(probewindow(label, "cstage", cs), needle)) {
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fail(label, strings.concat("cstage: expected `", needle,
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"` in probe body"));
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};
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if (!testenv.has(probewindow(label, "wwstage", ws), needle)) {
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fail(label, strings.concat("wwstage: expected `", needle,
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"` in probe body"));
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};
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if (!testenv.same(cs, ws)) {
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fail(label, "cstage vs wwstage asm differs");
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};
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testenv.clean(td);
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};
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// 741: N_DOT-base chains. The (i64|str) element is 8(tag)+24(str
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// payload)=32B, so the write row's stride needle is $32.
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@test fn dotbasechained() void = {
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dotbaserow("dotbase_chained_read", strings.concat(
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"package main;\n",
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"type S = struct{ pad: i64, mat: **u8 };\n",
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"fn probe(s: *S) u8 = {\n",
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" let i: i32 = 0;\n",
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" let k: u64 = 0u64;\n",
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" return s.mat[i][k];\n",
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"};\n",
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"export fn main() i32 = { return 0; };\n"),
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"\tMOVZBQ\t(AX), AX\n");
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dotbaserow("dotbase_array_tagged_write", strings.concat(
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"package main;\n",
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"type T = (i64 | str);\n",
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"type S = struct{ pad: i64, arr: [4]T };\n",
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"fn probe(s: *S) void = {\n",
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" let i: i32 = 0;\n",
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" s.arr[i] = 42i64;\n",
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"};\n",
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"export fn main() i32 = { return 0; };\n"),
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"\tMOVQ\t$32, CX\n");
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};
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