Hare puts runtime allocation in rt::, not os:: (ref/hare/rt/malloc.ha:27,
README). ww's `@symbol("rt_alloc") fn alloc(n: u64) *void;` lived at
lib/os/os.ww as a historical bootstrap shortcut; this commit relocates
it to a new lib/rt/malloc.ww and sweeps every site that depended on
`import os` for the alloc decl over to `import rt`.
This is commit 1 of 3 in the lib/rt extraction (#35):
1. (this) move decl, sweep imports — preserves shape
2. rename rt_alloc → rt_malloc (#38)
3. nullable return type + OOM-propagating builtin lowering (#39)
No rename here. Symbol stays rt_alloc, function stays `alloc`, return
stays *void. Behavior identical — same ffi resolution outcome, just
sourced from a different module file. The rt::ensure runtime helper at
selfhost/rt/ensure.ww is its own compilation unit with a local decl and
is untouched.
Side effect: every wcc cgen file used `rt` as a local *node variable
name for "return type." `import rt;` shadows the module, so each
selfhost/cmd/wcc/{check,cgenstmt,cgenexpr,cgenutil}.ww site renamed
to `rtyp`. Mechanical follow-through; only the wcc module-import was
forced to do this rename.
Verified 132/132 + 995_self_rebuild byte-identity (5 wwstage tools
round-trip byte-identical).
169 lines
4.2 KiB
Plaintext
169 lines
4.2 KiB
Plaintext
// selfhost/cmd/w6c/main.ww — port of cmd/w6c/main.c.
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//
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// w6c = amd64 compiler. Read .ww, parse, codegen, emit Plan 9 amd64
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// asm to stdout (or the file given by -o).
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//
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// w6c_ww -o file.s file.ww
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//
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// The cgen routines in selfhost/cmd/wcc/cgen.ww write directly to
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// fd 1 via os.write(1, ...). For -o, we open the output file and
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// dup2 it onto fd 1 before invoking cgfile. This is the same trick
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// the bootstrap uses with shell redirection, just in-process.
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package main;
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import os;
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import rt;
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import mem;
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import tok;
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import lex;
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import ast;
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import parse;
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import typ;
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import sym;
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import check;
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import cgen;
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fn cstreq(a: *u8, lit: str) bool = {
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let n: u64 = lit.len: u64;
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let i: u64 = 0u64;
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for (i < n) {
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let li: i32 = i: i32;
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if (a[i] != lit[li]) { return false; };
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i += 1u64;
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};
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if (a[i] != 0u8) { return false; };
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return true;
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};
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fn cstrlen(p: *u8) u64 = {
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let n: u64 = 0u64;
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for (p[n] != 0u8) { n += 1u64; };
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return n;
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};
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// pathstr — view a NUL-terminated *u8 as a str. lib/os entrypoints
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// take str post-task-#23; this bridges call sites that still hold
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// C-string paths (argv entries, arena-allocated buffers).
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fn pathstr(p: *u8) str = {
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let r: str;
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r.ptr = p;
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r.len = cstrlen(p): i32;
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return r;
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};
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fn slurp(path: *u8) (*u8, u64) = {
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let fd: i32 = os.open(pathstr(path), os.flag.RDONLY, 0i32);
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if (fd < 0) { return nil, 0u64; };
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let szr: (i64 | os.oserror) = os.filesize(fd);
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let n: i64 = 0i64;
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match (szr) {
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case let v: i64 => n = v;
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case let e: os.oserror => { os.close(fd); return nil, 0u64; };
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};
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let nz: u64 = n: u64;
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let buf: *u8 = rt.alloc(nz + 1u64): *u8;
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let rr: (i64 | os.oserror) = os.readall(fd, buf, nz);
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os.close(fd);
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let got: i64 = 0i64;
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match (rr) {
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case let v: i64 => got = v;
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case let e: os.oserror => return nil, 0u64;
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};
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if (got != n) { return nil, 0u64; };
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buf[nz] = 0u8;
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return buf, nz;
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};
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export fn main(argc: i32, argv: **u8) i32 = {
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let src: *u8 = nil;
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let out: *u8 = nil;
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let i: i32 = 1;
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for (i < argc) {
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let a: *u8 = argv[i];
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if (cstreq(a, "-o")) {
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i += 1;
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if (i >= argc) {
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os.write(2, "w6c: -o requires arg\n".ptr, 20u64);
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return 2;
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};
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out = argv[i];
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} else { if (a[0u64] == 45u8) {
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os.write(2, "w6c: unknown flag\n".ptr, 17u64);
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return 2;
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} else {
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if (src != nil) {
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os.write(2, "w6c: only one input\n".ptr, 19u64);
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return 2;
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};
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src = a;
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}; };
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i += 1;
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};
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if (src == nil) {
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os.write(2, "usage: w6c_ww [-o out.s] file.ww\n".ptr, 32u64);
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return 2;
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};
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let buf: *u8;
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let blen: u64;
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buf, blen = slurp(src);
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if (buf == nil) {
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os.write(2, "w6c: cannot read input\n".ptr, 22u64);
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return 1;
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};
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// Redirect fd 1 to the output file before any cgen emit runs.
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// cgen.ww writes directly to fd 1; dup2 lets us reuse it without
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// threading a file descriptor through the emit helpers.
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if (out != nil) {
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let ofd: i32 = os.open(pathstr(out),
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os.flag.WRONLY | os.flag.CREATE | os.flag.TRUNC, 420i32); // 0o644
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if (ofd < 0) {
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os.write(2, "w6c: cannot open output\n".ptr, 23u64);
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return 1;
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};
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if (os.dup2(ofd, 1i32) < 0) {
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os.write(2, "w6c: dup2 failed\n".ptr, 16u64);
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os.close(ofd);
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return 1;
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};
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os.close(ofd);
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};
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let ar: *arena = newarena();
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let nlen: u64 = cstrlen(src);
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let fname: str = astrndup(ar, src, nlen);
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let l: lex;
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lexinit(&l, ar, fname, buf, blen);
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let ps: parser;
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parserinit(&ps, ar, &l);
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let f: *node = parsefile(&ps);
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// Gate cgen on parse-stage errors. Mirrors cmd/w6c/main.c's
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// `if (l.errs || p.errs) return 1;` — broken AST otherwise reaches
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// cgen and emits junk asm with a zero exit (silent miscompile).
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if (l.errs > 0 || ps.errs > 0) { return 1; };
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// #50: run check before cgen so AST mutations from #42 (size/align/
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// offset fold) and the audit §1.8 node.type_ population land before
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// cgen walks the file. Mirrors cmd/w6c/main.c:73-75. Five precondition
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// fixes for fixture cleanliness: #51 cross-module type refs, #52
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// enum↔int reinterpret, #53 N_BLOCK scoping, #55 nominal-first variant
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// compare, #56 bare-leaf same-module preference.
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let tc: tctx;
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typesinit(&tc, ar);
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let ck: checker;
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checkinit(&ck, ar, &tc);
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checkfile(&ck, f);
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if (ck.errs > 0) { return 1; };
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let cg: cgen;
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cgeninit(&cg, ar);
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cgfile(&cg, f);
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return 0;
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};
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