Plan 9-style w-prefix on the per-arch tools, disambiguating from the
real Plan 9 6c/6a/6l in ref/plan9front/:
cmd/wwc/ → cmd/wcc/ libwwc.a → libwcc.a
cmd/6{c,a,l} → cmd/w6{c,a,l} binary names too
test/wwc/ → test/wcc/ 6 test files w/ w6 prefix
selfhost/cmd mirror in lockstep
bootstrap/amd64/{w6c,w6a,w6l} snapshot binaries (gitignored)
WW_6{C,A,L} → WW_W6{C,A,L} env-var overrides
Plan 9 source-tree refs ("Plan 9 6c shape", ref/plan9front/, etc.)
preserved. Hare-style driver, both C and ww sides:
ww test [path] discover *_test.ww in a directory module, run
each; single-file mode for `ww test foo.ww`
Module-by-name `ww build foo` resolves to foo.ww or foo/foo.ww
via search path (cwd : -I dirs : $WW_LIB)
Default-to-cwd `ww build` / `ww test` build the cwd module
Run pass-through `ww run path arg1 arg2` reaches the program
lib/os: getcwd (79) and getdents64 (217) syscalls power `.` resolution
and directory enumeration on the ww side.
Makefile: wwstage tool deps now include lib/os/os.ww (+ lib/strconv
for wwdump_ww) so lib/* edits force their rebuild instead of leaving
stale binaries — surfaced when test 995 first failed against a stale
w6c_ww built before the lib/os additions.
Test 993 byte-identical parity gate (C-side ww vs ww-side ww_ww on a
build corpus) stays green; all 19 tests pass.
164 lines
4.7 KiB
Plaintext
164 lines
4.7 KiB
Plaintext
// selfhost/test/smoke.ww — end-to-end smoke for the selfhost path.
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//
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// Exercises the patterns the real ww-side compiler port will use:
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// - bump arena allocator (mem.ww shape)
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// - error idiom (T | str)
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// - struct of fn pointers + ctx pointer (the io.stream-style
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// polymorphism we use instead of interfaces)
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// - byte-level scanning that mirrors the hot path inside lex.ww
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// - strconv round-trip via the real stdlib
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//
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// `main` returns 42 when every check passes, 1..N on failure
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// indicating which probe broke. The 990_selfhost test asserts 42.
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//
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// Note: only stack-local mutable state. Top-level `let` mutation
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// requires a writable .data segment in w6l, which is a separate
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// task; until then we exercise polymorphism via ctx pointers, which
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// is what the real port wants anyway.
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use os;
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use strconv;
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use ascii;
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// --- bump arena ---------------------------------------------------------
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type arena = struct {
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buf: *u8,
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off: u64,
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cap: u64,
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};
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// In-place init. Returning a 24-byte struct by value isn't yet
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// supported in w6c (SysV requires a hidden return-slot pointer for
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// structs >16 bytes), so we initialize through a pointer like the
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// real compiler does today.
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fn arena_init(a: *arena, buf: *u8, cap: u64) void = {
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a.buf = buf;
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a.off = 0u64;
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a.cap = cap;
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};
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fn arena_alloc(a: *arena, n: u64) *u8 = {
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if (n > a.cap - a.off) { return nil; };
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let p: *u8 = a.buf + a.off;
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a.off += n;
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return p;
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};
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// --- (i32 | str) error idiom -------------------------------------------
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fn checked_div(num: i32, den: i32) (i32 | str) = {
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if (den == 0) { return "div by zero"; };
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return num / den;
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};
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// --- struct-of-fn-pointer polymorphism ---------------------------------
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//
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// A trivial "writer" abstraction: a function pointer plus a context.
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// This mirrors how io.stream / Plan 9 Bio work. The ctx pointer lets
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// the implementation own its own state without a global.
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type counter = struct {
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n: i32,
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};
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type writer = struct {
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ctx: *void,
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emit: fn(ctx: *void, b: u8) void,
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};
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fn count_emit(ctx: *void, b: u8) void = {
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let c: *counter = ctx: *counter;
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c.n += 1;
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};
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// --- byte scanner like lex.ww's hot path -------------------------------
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fn count_digits(s: str) i32 = {
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let i: i32 = 0;
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let n: i32 = 0;
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for (i < s.len) {
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let c: u8 = s[i];
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if (c >= 48u8) {
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if (c <= 57u8) { n += 1; };
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};
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i += 1;
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};
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return n;
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};
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// --- entry --------------------------------------------------------------
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export fn main() i32 = {
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// Probe 1 — arena hands out distinct pointers, refuses oversize.
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let buf: [256]u8;
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let a: arena;
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arena_init(&a, buf.ptr, 256u64);
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let p1: *u8 = arena_alloc(&a, 32u64);
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let p2: *u8 = arena_alloc(&a, 32u64);
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if (p1 == nil) { return 1; };
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if (p2 == nil) { return 2; };
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if (p1 == p2) { return 3; };
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let p3: *u8 = arena_alloc(&a, 1024u64);
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if (p3 != nil) { return 4; };
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// Probe 2 — error union both ways.
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let r_ok: (i32 | str) = checked_div(84, 2);
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let r_bad: (i32 | str) = checked_div(1, 0);
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let acc: i32 = 0;
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match (r_ok) {
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case let v: i32 => acc = v;
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case let e: str => return 5;
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};
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if (acc != 42) { return 6; };
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match (r_bad) {
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case let v: i32 => return 7;
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case let e: str => acc = e.len: i32;
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};
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if (acc != 11) { return 8; }; // len("div by zero") == 11
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// Probe 3 — struct-of-fn-pointer dispatch via ctx pointer.
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let c: counter = counter { n = 0 };
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let w: writer = writer { ctx = (&c): *void, emit = count_emit };
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w.emit(w.ctx, 65u8);
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w.emit(w.ctx, 66u8);
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w.emit(w.ctx, 67u8);
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if (c.n != 3) { return 9; };
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// Probe 4 — byte scan over a literal.
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let dn: i32 = count_digits("ww123abc");
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if (dn != 3) { return 10; };
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// Probe 5 — strconv round-trip via the real stdlib.
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let outbuf: [32]u8;
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let nb: i32 = strconv.i64toa(outbuf[0:32], 4242i64);
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if (nb != 4) { return 11; };
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if (outbuf[0] != 52u8) { return 12; }; // '4'
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if (outbuf[3] != 50u8) { return 13; }; // '2'
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// Probe 6 — ascii classifications.
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if (!ascii.isdigit(53u8)) { return 14; }; // '5'
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if (ascii.isdigit(65u8)) { return 15; }; // 'A' is not a digit
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if (!ascii.isalpha(122u8)) { return 16; }; // 'z'
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if (!ascii.isidstart(95u8)) { return 17; }; // '_'
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if (!ascii.isidpart(48u8)) { return 18; }; // '0' is part
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if (ascii.digitval(70u8) != 15) { return 19; }; // 'F' = 15
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if (ascii.tolower(65u8) != 97u8) { return 20; }; // 'A' -> 'a'
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// Probe 7 — file open/read via the new os APIs. /proc/self/cmdline
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// always exists on Linux, no write side, and is non-empty.
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let path: str = "/proc/self/cmdline";
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let fd_or_err: (i32 | str) = os.tryopen(path.ptr, os.O_RDONLY, 0i32);
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let fd: i32 = 0;
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match (fd_or_err) {
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case let v: i32 => fd = v;
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case let e: str => return 21;
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};
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let rbuf: [128]u8;
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let n: i64 = os.readfull(fd, rbuf.ptr, 128u64);
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os.close(fd);
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if (n <= 0i64) { return 22; };
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return 42;
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};
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