lib: port errors.errno + os errno/strerror sys-layer (#6)
Hare-faithful port of errors::errno (ref/hare/errors/{rt,common,opaque}.ha): the 13 named common error conditions, opaque_data/opaque_ (the type-erased tail whose strerror fn-ptr defers to os.strerror), and errno(os.errno) error mapping the ~12 mapped errnos to named conditions and wrapping the unmapped tail in opaque_. The raw errno type (!i32, kernel-int width, distinct from oserror's !i64 negative raw return), the E* constants, and the strerror message table live in lib/os: ww folds Hare's sys role into os, so os is the import floor that lib/io and lib/errors build on -- documented in lib/CLAUDE.md (os never imports io or errors). errors.error is explicitly enumerated, matching Hare; the ...errors::error spread is only io.error's (blocked by #199b). Prereq for post-eFinal #5's faithful io error mapping; retires the nomem-collapse interim. Adds errnotest (mapping / opaque-tail / strerror) + test/wcc/902_errno_run. Landing required two wwstage cgen fixes (#9 struct-variant-large-union return, #11 deref-store alias narrow). Divergences cited at-site: bare-type-name return -> let+return; switch fall-through vs Hare's exhaustiveness-only default; opaque_ const dropped.
This commit is contained in:
123
lib/errors/errnotest.ww
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123
lib/errors/errnotest.ww
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@@ -0,0 +1,123 @@
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// errnotest — exercises [[errors.errno]] and the [[errors.opaque_]]
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// tail. Run with `out/bin/ww run lib/errors/errnotest.ww`.
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//
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// Parallel `[N]T` arrays of (errno, expected-tag) rather than a
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// `[N]struct{...}` table — the cstage cgen's chained `arr[i].field`
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// store gap (task #6). [[errtag]] collapses each named-void variant to
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// a small int so the row body is a single integer compare.
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package errors;
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import errors;
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import os;
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@symbol("rt_syscall") fn syscall1ww(num: i64, a: i64) i64;
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fn doexit(code: i32) void = {
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syscall1ww(60i64, code: i64);
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};
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// signalled — bumped by main before each test so a failing exit code
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// pinpoints the offending case.
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let signalled: i32 = 0;
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fn fail() void = { doexit(signalled + 10); };
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fn streq(a: str, b: str) bool = {
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if (a.len != b.len) { return false; };
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let i: i32 = 0;
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for (i < a.len) {
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if (a[i] != b[i]) { return false; };
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i += 1;
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};
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return true;
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};
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// errtag — the union discriminant as a stable int. opaque_ is 99 so a
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// misrouted named condition can't masquerade as the unmapped tail.
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fn errtag(e: errors.error) int = {
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match (e) {
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case errors.busy => return 1;
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case errors.exists => return 2;
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case errors.invalid => return 3;
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case errors.noaccess => return 4;
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case errors.noentry => return 5;
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case errors.overflow => return 6;
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case errors.unsupported => return 7;
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case errors.timeout => return 8;
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case errors.cancelled => return 9;
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case errors.refused => return 10;
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case errors.interrupted => return 11;
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case errors.again => return 12;
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case errors.netunreachable => return 13;
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case let o: errors.opaque_ => return 99;
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};
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};
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// ---- errno → named condition --------------------------------------
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@test fn mapping() void = {
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let ins: [12]os.errno;
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ins[0] = os.ECONNREFUSED;
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ins[1] = os.ECANCELED;
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ins[2] = os.EOVERFLOW;
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ins[3] = os.EACCES;
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ins[4] = os.EINVAL;
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ins[5] = os.EEXIST;
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ins[6] = os.ENOENT;
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ins[7] = os.ETIMEDOUT;
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ins[8] = os.EBUSY;
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ins[9] = os.EINTR;
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ins[10] = os.EAGAIN;
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ins[11] = os.ENETUNREACH;
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let exp: [12]int;
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exp[0] = 10; // refused
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exp[1] = 9; // cancelled
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exp[2] = 6; // overflow
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exp[3] = 4; // noaccess
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exp[4] = 3; // invalid
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exp[5] = 2; // exists
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exp[6] = 5; // noentry
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exp[7] = 8; // timeout
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exp[8] = 1; // busy
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exp[9] = 11; // interrupted
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exp[10] = 12; // again
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exp[11] = 13; // netunreachable
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let i: i32 = 0;
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for (i < 12) {
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// store-to-local, not inline errtag(errors.errno(ins[i])): the
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// inline form hits #222 (large >4-eightbyte union sret-arg
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// clobber, cs==ww). store-then-consume is the idiomatic shape
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// regardless — it is how errno is actually used (cf
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// lib/io/stream.ww:53, and Hare's errors/rt.ha callers).
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let er: errors.error = errors.errno(ins[i]);
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if (errtag(er) != exp[i]) { fail(); };
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i += 1;
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};
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};
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// ---- unmapped errno → opaque_ tail --------------------------------
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@test fn opaquetail() void = {
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// EIO (5) is outside the mapped set, so it wraps opaque_.
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let e: errors.error = errors.errno(5);
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if (errtag(e) != 99) { fail(); };
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match (e) {
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case let o: errors.opaque_ =>
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if (!streq((*o.strerror)(&o.data), "Unknown error")) { fail(); };
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case =>
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fail();
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};
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};
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// ---- os.strerror mapped path --------------------------------------
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@test fn strerrortext() void = {
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if (!streq(os.strerror(os.ENOENT), "No such file or directory")) { fail(); };
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if (!streq(os.strerror(os.EINVAL), "Invalid argument")) { fail(); };
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if (!streq(os.strerror(5), "Unknown error")) { fail(); };
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};
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export fn main() i32 = {
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signalled = 1; mapping();
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signalled = 2; opaquetail();
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signalled = 3; strerrortext();
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return 0;
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};
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@@ -3,15 +3,23 @@
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// Named-void tagged-union variants, so `(T | errors.invalid | ...)`
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// composes with every other module's error surface at the tag level.
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// Per-domain errors (io.eof, io.closed, io.underread, strconv.overflow,
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// ...) live in their own modules; this module ships only the generic
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// conditions Hare's errors:: exports.
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//
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// Subset shipped today; add more from Hare's errors/common.ha as callers
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// need them.
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// ...) live in their own modules; this module ships the generic
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// conditions Hare's errors:: exports plus the [[errno]] bridge that
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// wraps a raw [[os.errno]] into a portable [[error]].
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// A function was called with an invalid combination of arguments.
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package errors;
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import os;
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// The named conditions, ordered per ref/hare/errors/common.ha.
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// The requested resource is not available.
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export type busy = !void;
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// An attempt was made to create a resource which already exists.
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export type exists = !void;
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// A function was called with an invalid combination of arguments.
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export type invalid = !void;
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// The user does not have permission to use this resource.
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@@ -20,8 +28,108 @@ export type noaccess = !void;
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// An entry was requested which does not exist.
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export type noentry = !void;
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// An attempt was made to create a resource which already exists.
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export type exists = !void;
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// The requested operation caused a numeric overflow condition.
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export type overflow = !void;
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// The requested operation is not supported.
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export type unsupported = !void;
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// The requested operation timed out.
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export type timeout = !void;
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// The requested operation was cancelled.
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export type cancelled = !void;
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// A connection attempt was refused.
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export type refused = !void;
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// An operation was interrupted.
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export type interrupted = !void;
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// The user should attempt an operation again.
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export type again = !void;
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// Network unreachable
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export type netunreachable = !void;
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// Up to 24 bytes of arbitrary, 8-byte-aligned storage for the opaque
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// error type's domain-specific data. ref/hare/errors/opaque.ha:41.
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export type opaque_data = [3]u64;
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// An "opaque" error wraps an implementation-specific underlying error
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// behind a function that stringifies it plus a small storage area.
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// ref/hare/errors/opaque.ha:32. The `strerror` field keeps Hare's `*fn`
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// pointer (filled via `(&fn): *fn(...)`, mirroring io's `*reader` slot,
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// lib/io/types.ww:53); only Hare's `const` is dropped (ww has none, cf
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// lib/io/types.ww:57).
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export type opaque_ = !struct {
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strerror: *fn(op: *opaque_data) str,
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data: opaque_data,
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};
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// A tagged union of all error types. ref/hare/errors/common.ha:43.
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// Enumerated explicitly rather than spread via Hare's `...error` —
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// ww's spread-flatten layout is the deferred #199b / #204 fix.
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export type error = !(
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busy |
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exists |
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invalid |
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noaccess |
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noentry |
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overflow |
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unsupported |
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timeout |
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cancelled |
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refused |
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interrupted |
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again |
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netunreachable |
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opaque_
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);
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// Wraps an [[os.errno]] to produce an [[error]], which may be
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// [[opaque_]]. ref/hare/errors/rt.ha:9. The mapped errnos become named
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// conditions; the unmapped tail is carried in an [[opaque_]] whose
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// stringifier defers to [[os.strerror]].
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export fn errno(e: os.errno) error = {
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// A `!void` condition is returned by instance, not by name: a bare
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// `return refused;` would emit an undefined symbol reference (the
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// type, not a value). cf lib/io/stream.ww:53-56. The instance
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// auto-widens to the [[error]] union on return.
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switch (e) {
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case os.ECONNREFUSED: { let r: refused; return r; };
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case os.ECANCELED: { let r: cancelled; return r; };
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case os.EOVERFLOW: { let r: overflow; return r; };
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case os.EACCES: { let r: noaccess; return r; };
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case os.EINVAL: { let r: invalid; return r; };
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case os.EEXIST: { let r: exists; return r; };
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case os.ENOENT: { let r: noentry; return r; };
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case os.ETIMEDOUT: { let r: timeout; return r; };
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case os.EBUSY: { let r: busy; return r; };
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case os.EINTR: { let r: interrupted; return r; };
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case os.EAGAIN: { let r: again; return r; };
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case os.ENETUNREACH: { let r: netunreachable; return r; };
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};
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// An unmapped errno falls through the switch into the opaque_ wrap
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// below. ww switches aren't required exhaustive, so Hare's terminal
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// `case => void;` (rt.ha:24, present only to satisfy exhaustiveness)
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// is dropped rather than written as an explicit no-op default —
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// matching the sibling [[os.strerror]] fall-through.
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//
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// ww has no `static assert`; Hare guards size(errno) <=
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// size(opaque_data) there. The invariant holds structurally:
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// opaque_data is [3]u64 (24B), errno is one machine int.
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let err: opaque_;
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err.strerror = (&rt_strerror): *fn(op: *opaque_data) str;
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let ptr = (&err.data): *os.errno;
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*ptr = e;
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return err;
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};
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// rt_strerror — the [[opaque_]] stringifier for an errno wrapped by
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// [[errno]]. ref/hare/errors/rt.ha:31.
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fn rt_strerror(op: *opaque_data) str = {
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let e = (op): *os.errno;
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return os.strerror(*e);
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};
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