clock diagnostics for issue #3: probe, VM sanity scenario, fix plan
The qemu/ device sim answered the first question off-board: the same kernel family under -M virt gives musl vDSO rate ratio 0.99963 — the generic 6.18 armv7 vDSO is correct, so the board symptom is RV1106 register state (CNTFRQ/CNTVOFF, firmware-owned, secure-world boot chain). - qemu/tests/clockprobe: interval-based musl probe separating RATE error (CNTFRQ) from boot OFFSET (CNTVOFF) — the original single absolute sample cannot distinguish them. - qemu/tests/clock-sanity.sh: VM regression guard asserting the vDSO rate within 1% (PASSES: 1.00026); cross-builds the probe and stages it as payload itself. - kernel/rv1106-enablement/timer/PLAN.md: the DT fix (arm,cpu-registers-not-fw-configured + measured clock-frequency on the board dts) gated on the two bench measurements; c8a3 is currently physically dark, needs hands at the bench. - clockprobe joins the CI test loop. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_018HUayid7W5w7jBdb9Rrj1K
This commit is contained in:
co-authored by
Claude Fable 5
parent
ff62991e8d
commit
1d7dec167e
Executable
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#!/usr/bin/env bash
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# Clock-sanity scenario (issue #3 regression guard): boot the VM, run the
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# musl-static clockprobe in the guest, and assert the vDSO monotonic RATE
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# matches the kernel's /proc/uptime within 1%. Under QEMU -M virt this passes
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# on the current kernel (measured 0.99963) — a regression here means the
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# generic vDSO path broke. The RV1106 *board* leg of issue #3 is a separate,
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# bench-only measurement; this scenario cannot see board-specific CNTFRQ or
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# CNTVOFF misprogramming.
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#
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# FAILS CLOSED on missing prerequisites.
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#
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# Usage: clock-sanity.sh <zImage>
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set -euo pipefail
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HERE="$(cd "$(dirname "${BASH_SOURCE[0]}")" && pwd)" # qemu/tests/
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QDIR="$(cd "$HERE/.." && pwd)" # qemu/
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ZIMAGE="${1:-}"
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if [ -z "$ZIMAGE" ] || [ ! -f "$ZIMAGE" ]; then
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echo "FATAL: usage: $0 <zImage>" >&2
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exit 1
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fi
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command -v qemu-system-arm >/dev/null || {
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echo "FATAL: qemu-system-arm not on PATH — see qemu/README.md" >&2
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exit 1
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}
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command -v arm-linux-gnueabihf-gcc >/dev/null || {
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echo "FATAL: arm-linux-gnueabihf-gcc needed to cross-build the probe" >&2
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exit 1
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}
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# Build the probe for the guest (static musl armv7) and stage it as payload.
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( cd "$HERE/clockprobe" && \
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CARGO_TARGET_ARMV7_UNKNOWN_LINUX_MUSLEABIHF_LINKER=arm-linux-gnueabihf-gcc \
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cargo build -q --release --target armv7-unknown-linux-musleabihf )
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install -m 0755 "$HERE/clockprobe/target/armv7-unknown-linux-musleabihf/release/clockprobe" \
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"$QDIR/payload/clockprobe"
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WORK="$(mktemp -d /tmp/wqc.XXXXXX)"
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QEMU_PID=""
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cleanup() {
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if [ -n "$QEMU_PID" ]; then kill "$QEMU_PID" 2>/dev/null || true; fi
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rm -rf "$WORK"
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}
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trap cleanup EXIT
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bash "$QDIR/mkinitramfs.sh"
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bash "$QDIR/mkimage.sh"
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for _attempt in 1 2 3; do
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PORT=$((22000 + RANDOM % 20000))
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: > "$WORK/console.log"
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{ sleep 40; printf '/usr/bin/clockprobe\n'; sleep 16; printf 'poweroff -f\n'; sleep 8; } | \
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bash "$QDIR/run.sh" --kernel "$ZIMAGE" --shell \
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--ssh-port "$PORT" --http-port $((PORT + 1)) --api-port $((PORT + 2)) \
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> "$WORK/console.log" 2>&1 &
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QEMU_PID=$!
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sleep 3
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kill -0 "$QEMU_PID" 2>/dev/null && break
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if grep -aq 'Could not set up host forwarding' "$WORK/console.log"; then
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echo "== hostfwd port collision on base $PORT — retrying"
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QEMU_PID=""
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continue
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fi
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echo "FATAL: VM died at launch:" >&2
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tail -20 "$WORK/console.log" >&2
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exit 1
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done
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if [ -z "$QEMU_PID" ] || ! kill -0 "$QEMU_PID" 2>/dev/null; then
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echo "FATAL: could not launch the VM after 3 port attempts" >&2
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exit 1
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fi
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wait "$QEMU_PID" || true
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grep -a 'CLOCKPROBE' "$WORK/console.log" || {
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echo "FATAL: probe never ran; console tail:" >&2
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tail -25 "$WORK/console.log" >&2
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exit 1
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}
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python3 - "$WORK/console.log" <<'EOF'
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import re, sys
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text = open(sys.argv[1], errors="replace").read()
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m = re.search(r"ratio_mono=([0-9.]+) ratio_raw=([0-9.]+)", text)
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if not m:
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sys.exit("FATAL: no ratio line in console output")
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mono, raw = float(m.group(1)), float(m.group(2))
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ok = abs(mono - 1.0) < 0.01 and abs(raw - 1.0) < 0.01
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print(f"clock-sanity: ratio_mono={mono} ratio_raw={raw} -> {'PASS' if ok else 'FAIL'}")
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sys.exit(0 if ok else 1)
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EOF
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echo "CLOCK-SANITY-PASS"
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Generated
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# This file is automatically @generated by Cargo.
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# It is not intended for manual editing.
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version = 4
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[[package]]
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name = "clockprobe"
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version = "0.1.0"
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dependencies = [
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"libc",
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]
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[[package]]
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name = "libc"
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version = "0.2.189"
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source = "registry+https://github.com/rust-lang/crates.io-index"
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checksum = "3eaf3ede3fee6db1a4c2ee091bf8a8b4dccdc6d17f656fb07896ee72867612f2"
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[package]
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name = "clockprobe"
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version = "0.1.0"
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edition = "2021"
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description = "Interval-based monotonic-clock rate probe: compares musl/vDSO CLOCK_MONOTONIC(+_RAW) against /proc/uptime so rate errors and boot-time offsets (CNTVOFF) separate cleanly. Diagnostic for issue #3."
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license = "GPL-2.0-only"
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[dependencies]
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libc = "0.2"
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[profile.release]
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strip = true
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@@ -0,0 +1,25 @@
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// Differential clock probe for warden-sdk issue #3: compares the musl/vDSO
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// CLOCK_MONOTONIC rate against the kernel's own /proc/uptime over a fixed
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// interval, so boot-time offsets cancel and only the RATE ratio remains.
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use std::{fs, thread, time::Duration};
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fn mono(clock: libc::clockid_t) -> f64 {
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let mut ts = libc::timespec { tv_sec: 0, tv_nsec: 0 };
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unsafe { libc::clock_gettime(clock, &mut ts) };
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ts.tv_sec as f64 + ts.tv_nsec as f64 / 1e9
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}
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fn uptime() -> f64 {
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fs::read_to_string("/proc/uptime").unwrap()
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.split_whitespace().next().unwrap().parse().unwrap()
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}
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fn main() {
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let interval = 10.0;
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let (m0, r0, u0) = (mono(libc::CLOCK_MONOTONIC), mono(libc::CLOCK_MONOTONIC_RAW), uptime());
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thread::sleep(Duration::from_secs_f64(interval));
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let (m1, r1, u1) = (mono(libc::CLOCK_MONOTONIC), mono(libc::CLOCK_MONOTONIC_RAW), uptime());
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let (dm, dr, du) = (m1 - m0, r1 - r0, u1 - u0);
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println!("CLOCKPROBE monotonic={dm:.4} raw={dr:.4} uptime={du:.4} ratio_mono={:.5} ratio_raw={:.5}", dm / du, dr / du);
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println!("CLOCKPROBE abs monotonic={m1:.2} uptime={u1:.2} abs_ratio={:.5}", m1 / u1);
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}
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