The first step of the Zig self-hosting roadmap (docs/zig-self-hosting.md): give danos programs a danos-native file API and remove the premature POSIX compatibility shim. This also resolves the earlier misplacement of a full-write helper into the compat layer — that behaviour now lives natively in runtime.fs.File.writeAll. - library/runtime/fs.zig: the danos-native file client over the VFS (open/read/ write/writeAll/seekTo/attributes/close, directory listing, mount). Handles are *values* — a File/Directory owns its VFS node id and byte offset — so there is no per-process fd table or descriptor limit, unlike the POSIX fd model the shim emulated. This is where the operations that later become std.os.danos are staged. - Retire library/posix/ (unistd, stdio): only five call sites used it, all file operations, all migrated to runtime.fs — fat (mount), the vfs-test and fat-test clients, and init/log-flush (the boot-log flush). stdio was already dead. - build.zig: drop the posix module, its addUserBinary parameter, the per-binary import, and the ~26 call-site arguments. - Docs: the VFS protocol's client is now runtime.fs; the docs index and coding-standards note posix is retired and the foreign-ABI naming exception now applies to the future std.os.danos seam; the process-lifecycle note points the future musl layer at that same seam rather than the deleted directory. Deferred by design (see the roadmap): the C-ABI runtime.os errno seam is built at fork time (its shape must match std/os/danos.zig); truncate/mkdir/rename are Phase 2; stdio-byte fds and cwd are later slices. Verified: zig build, zig build test, zig build check-fat-image, and a sequential QEMU sweep — vfs, vfs-client-death (the park/hold-handle path), fat-mount, log-flush, orderly-shutdown, initial-ramdisk (log-flush silent in the bare sweep), smoke, init, usb-storage, device-manager — all green.
68 lines
2.3 KiB
Zig
68 lines
2.3 KiB
Zig
//! /system/services/vfs/vfs-test — a client that proves the VFS round trip end to end: open a
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//! file through the `runtime.fs` file API, write to it, seek back, read it, and compare.
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//! On success it heartbeats "vfstest: ok" so the kernel test can observe it;
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//! on failure it reports what went wrong. Shipped in the initial_ramdisk alongside vfs.
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const std = @import("std");
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const runtime = @import("runtime");
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const fs = runtime.fs;
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pub fn main(init: runtime.process.Init) void {
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const payload = "hello-vfs";
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// The "park" role (the vfs-client-death test): open a file, then hold the
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// handle forever without closing — the kill and the VFS's release-on-death
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// are the point.
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if (init.arguments.count > 1) {
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var parked: ?fs.File = null;
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var tries: u32 = 0;
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while (parked == null and tries < 200) : (tries += 1) {
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parked = fs.open("parked", .{ .create = true });
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if (parked == null) runtime.system.sleep(20);
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}
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if (parked == null) {
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_ = runtime.system.write("vfstest: park open failed\n");
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return;
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}
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while (true) {
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_ = runtime.system.write("vfstest: parked\n");
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runtime.system.sleep(500);
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}
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}
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// The VFS server may not have registered yet — retry open until it's up.
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var opened: ?fs.File = null;
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var tries: u32 = 0;
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while (opened == null and tries < 200) : (tries += 1) {
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opened = fs.open("greeting", .{ .create = true });
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if (opened == null) runtime.system.sleep(20);
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}
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var greeting = opened orelse {
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_ = runtime.system.write("vfstest: open failed\n");
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return;
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};
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if ((greeting.write(payload) orelse 0) != payload.len) {
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_ = runtime.system.write("vfstest: write failed\n");
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return;
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}
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greeting.seekTo(0);
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var buffer: [32]u8 = undefined;
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const n = greeting.read(&buffer) orelse 0;
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greeting.close();
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if (n == payload.len and std.mem.eql(u8, buffer[0..n], payload)) {
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while (true) {
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_ = runtime.system.write("vfstest: ok\n");
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runtime.system.sleep(1000);
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}
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}
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_ = runtime.system.write("vfstest: mismatch\n");
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}
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pub const panic = runtime.panic;
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comptime {
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_ = &runtime.start._start;
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}
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