Give Windows a free-space gate, and stop two tests timing the scheduler
Three release-profile failures on macOS and Windows, all found by the qa gate on its first run. Release-profile tests on those platforms had never run before it existed, so none of these were regressions — they had simply never been visible. available_space returned None on every non-unix target. That did not merely skip a test, it skipped the GATE: a Windows user extracting a disc to a full volume got a confusing failure part-way through instead of a clear refusal up front, and Windows is where the GUI ships. GetDiskFreeSpaceExW is declared directly against kernel32, matching how scsi::windows already reaches Win32 rather than pulling in a binding crate for one call. It asks for FreeBytesAvailableToCaller, which accounts for per-user quotas — the same question f_bavail answers on unix. The other two asserted on wall-clock timing with no margin: - sleep_until_halted_wakes_mid_sleep bounded the wait at 350 ms and measured 377 ms on a loaded runner. That bound measures the scheduler, not the wake. What the test is for is distinguishing "woke because the flag flipped" from "woke because the 10 s timeout expired", and 2 s does that just as well. - abandon_loses_to_a_close_already_committed released at 600 ms against two 300 ms grace windows plus a 250 ms poll cadence, so the windows could expire first and the caller abandoned — a race, not a defect. The intervals are scaled up so jitter is small relative to them; the ordering under test is unchanged, only the margin.
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+47
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@@ -684,7 +684,53 @@ fn available_space(dir: &Path) -> Option<u64> {
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Some(avail)
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}
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#[cfg(not(unix))]
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/// Windows has no `statvfs`. This returned `None` unconditionally, which does
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/// not merely skip a test — it skipped the free-space GATE, so a Windows user
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/// extracting a disc to a full volume got a confusing failure part-way through
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/// instead of a clear refusal up front. libfreemkv ships a Windows GUI, so that
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/// is the platform where the friendly error matters most.
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///
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/// `GetDiskFreeSpaceExW` is declared directly against kernel32, matching how
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/// `scsi::windows` already reaches the Win32 API rather than pulling in a
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/// binding crate for one call.
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#[cfg(windows)]
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fn available_space(dir: &Path) -> Option<u64> {
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use std::os::windows::ffi::OsStrExt;
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unsafe extern "system" {
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fn GetDiskFreeSpaceExW(
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lpDirectoryName: *const u16,
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lpFreeBytesAvailableToCaller: *mut u64,
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lpTotalNumberOfBytes: *mut u64,
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lpTotalNumberOfFreeBytes: *mut u64,
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) -> i32;
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}
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// Wide, NUL-terminated. An interior NUL cannot reach the API, so reject it
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// rather than silently truncating the path and measuring the wrong volume.
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let mut wide: Vec<u16> = dir.as_os_str().encode_wide().collect();
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if wide.contains(&0) {
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return None;
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}
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wide.push(0);
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let mut avail: u64 = 0;
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// FreeBytesAvailableToCaller, not TotalNumberOfFreeBytes: it accounts for
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// per-user quotas, which is what "can I actually write this much" means and
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// what `statvfs`'s `f_bavail` gives on the unix side.
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let ok = unsafe {
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GetDiskFreeSpaceExW(
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wide.as_ptr(),
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&mut avail,
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std::ptr::null_mut(),
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std::ptr::null_mut(),
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)
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};
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if ok == 0 { None } else { Some(avail) }
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}
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/// Neither unix nor Windows: no way to ask, so the gate is skipped.
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#[cfg(not(any(unix, windows)))]
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fn available_space(_dir: &Path) -> Option<u64> {
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None
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}
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