mirror of
https://github.com/MHSanaei/3x-ui.git
synced 2026-09-07 18:57:14 +00:00
814369da38
internal/config/version was never bumped past 3.5.0 when v3.5.0-awg.1 was tagged, so a freshly-updated panel kept reporting its own version as the plain upstream base. On top of that, parseVersionParts (Go and its TypeScript mirror) required exactly 3 dot-separated numeric parts, so it rejected the -awg.N suffix entirely and fell back to a raw string inequality that reports "update available" any time the strings merely differ -- which they always do here, even when already on the latest tag. Bump the embedded version to 3.5.0-awg.1 and extend both parsers to treat "-awg.N" as an optional 4th, lower-priority component (defaulting to 0 for a plain tag), so e.g. 3.5.0-awg.2 > 3.5.0-awg.1 > 3.5.0 and a matching tag compares equal instead of always looking outdated. Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
346 lines
11 KiB
Go
346 lines
11 KiB
Go
package panel
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import (
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"fmt"
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"os"
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"runtime"
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"sync"
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"sync/atomic"
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"testing"
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"time"
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"github.com/mhsanaei/3x-ui/v3/internal/config"
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"github.com/mhsanaei/3x-ui/v3/internal/web/service"
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)
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func TestIsNewerVersion(t *testing.T) {
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cases := []struct {
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latest string
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current string
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want bool
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}{
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{"v2.9.4", "2.9.3", true},
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{"v2.10.0", "2.9.9", true},
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{"v2.9.3", "2.9.3", false},
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{"v2.9.2", "2.9.3", false},
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{"v3.0.0", "2.9.3", true},
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}
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for _, tc := range cases {
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if got := isNewerVersion(tc.latest, tc.current); got != tc.want {
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t.Fatalf("isNewerVersion(%q, %q) = %v, want %v", tc.latest, tc.current, got, tc.want)
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}
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}
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}
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func TestCompareVersionStringsRejectsUnexpectedFormats(t *testing.T) {
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if _, ok := compareVersionStrings("latest", "2.9.3"); ok {
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t.Fatal("expected non-semver latest tag to be rejected")
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}
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if _, ok := compareVersionStrings("v2.9", "2.9.3"); ok {
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t.Fatal("expected short version to be rejected")
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}
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}
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// TestIsNewerVersionAwgSuffix covers this fork's own "-awg.N" release tags
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// (see internal/config/version), which must compare correctly against both
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// plain upstream-style tags and other awg builds of the same base version.
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func TestIsNewerVersionAwgSuffix(t *testing.T) {
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cases := []struct {
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latest string
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current string
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want bool
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}{
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{"v3.5.0-awg.1", "3.5.0-awg.1", false},
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{"v3.5.0-awg.2", "3.5.0-awg.1", true},
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{"v3.5.0-awg.1", "3.5.0-awg.2", false},
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{"v3.5.0-awg.1", "3.5.0", true},
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{"v3.5.0", "3.5.0-awg.1", false},
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{"v3.6.0", "3.5.0-awg.1", true},
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{"v3.5.0-awg.1", "3.6.0", false},
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}
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for _, tc := range cases {
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if got := isNewerVersion(tc.latest, tc.current); got != tc.want {
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t.Fatalf("isNewerVersion(%q, %q) = %v, want %v", tc.latest, tc.current, got, tc.want)
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}
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}
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}
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func TestShellQuote(t *testing.T) {
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if got := shellQuote("/usr/bin/curl"); got != "'/usr/bin/curl'" {
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t.Fatalf("unexpected quote result: %s", got)
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}
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if got := shellQuote("/tmp/a'b"); got != "'/tmp/a'\\''b'" {
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t.Fatalf("unexpected quote result with single quote: %s", got)
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}
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}
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func TestExtractReleaseCommit(t *testing.T) {
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full := "1a2b3c4d5e6f7a8b9c0d1e2f3a4b5c6d7e8f9a0b"
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cases := []struct {
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name string
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release service.Release
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want string
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}{
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{
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name: "from body marker",
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release: service.Release{Body: "Rolling build\n\ncommit=" + full + "\nbuilt=2026-06-24T00:00:00Z"},
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want: full,
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},
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{
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name: "body marker is case-insensitive and wins over target",
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release: service.Release{Body: "COMMIT=" + full, TargetCommitish: "deadbeef"},
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want: full,
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},
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{
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name: "fallback to target commit sha",
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release: service.Release{Body: "no marker here", TargetCommitish: full},
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want: full,
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},
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{
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name: "branch target is not a commit",
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release: service.Release{Body: "no marker", TargetCommitish: "main"},
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want: "",
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},
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}
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for _, tc := range cases {
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if got := extractReleaseCommit(&tc.release); got != tc.want {
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t.Fatalf("%s: extractReleaseCommit = %q, want %q", tc.name, got, tc.want)
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}
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}
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}
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func TestCommitsEqual(t *testing.T) {
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full := "1a2b3c4d5e6f7a8b9c0d1e2f3a4b5c6d7e8f9a0b"
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cases := []struct {
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a, b string
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want bool
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}{
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{"1a2b3c4d", full, true}, // injected 8-char prefix matches full release sha
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{full, "1a2b3c4d", true}, // order independent
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{"1A2B3C4D", full, true}, // case insensitive
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{"deadbeef", full, false}, // different commit
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{"", full, false}, // empty current never matches
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{"1a2b3c4d", "", false}, // empty latest never matches
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}
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for _, tc := range cases {
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if got := commitsEqual(tc.a, tc.b); got != tc.want {
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t.Fatalf("commitsEqual(%q, %q) = %v, want %v", tc.a, tc.b, got, tc.want)
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}
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}
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}
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func TestShortCommit(t *testing.T) {
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if got := shortCommit("1a2b3c4d5e6f7a8b"); got != "1a2b3c4d" {
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t.Fatalf("shortCommit truncation = %q, want %q", got, "1a2b3c4d")
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}
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if got := shortCommit("abc"); got != "abc" {
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t.Fatalf("shortCommit short input = %q, want %q", got, "abc")
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}
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}
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func resetUpdateSlot(t *testing.T) {
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t.Helper()
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t.Cleanup(func() {
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updateMu.Lock()
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updateRunning = false
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updateRunID = 0
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updatePID = 0
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updateMu.Unlock()
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})
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}
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// writeStatusFile hand-writes the status file in the exact wire format
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// update.sh itself produces (a bare printf, not Go's json.Marshal), since
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// that's the real cross-language contract this package reads in production.
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func writeStatusFile(t *testing.T, path string, runID int64, state string) {
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t.Helper()
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body := fmt.Sprintf(`{"runId":"%d","state":"%s","exitCode":0,"finishedAt":%d}`, runID, state, time.Now().Unix())
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if err := os.WriteFile(path, []byte(body), 0o644); err != nil {
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t.Fatal(err)
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}
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}
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func TestAcquireUpdateSlot(t *testing.T) {
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resetUpdateSlot(t)
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if !acquireUpdateSlot(1) {
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t.Fatal("first acquire: got false, want true")
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}
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if acquireUpdateSlot(2) {
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t.Fatal("second acquire while first is held: got true, want false")
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}
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releaseUpdateSlot()
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if !acquireUpdateSlot(3) {
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t.Fatal("acquire after release: got false, want true")
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}
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releaseUpdateSlot()
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}
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func TestAcquireUpdateSlotExpiresAfterStaleWindow(t *testing.T) {
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resetUpdateSlot(t)
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if !acquireUpdateSlot(1) {
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t.Fatal("first acquire: got false, want true")
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}
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updateMu.Lock()
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updateStarted = time.Now().Add(-(updateStaleAfter + time.Second))
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updateMu.Unlock()
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if !acquireUpdateSlot(2) {
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t.Fatal("acquire after stale window elapsed: got false, want true")
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}
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releaseUpdateSlot()
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}
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// TestAcquireUpdateSlotWaitsForAliveProcessPastStaleWindow is the regression
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// test for the concurrency bug an upstream review found: past
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// updateStaleAfter, the old logic freed the slot purely on elapsed time, even
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// if the process it launched was still genuinely running (not crashed) --
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// update.sh's own package-manager step plus several downloads can plausibly
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// run long on a slow host with nothing actually wrong. Now a confirmed-alive
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// PID keeps the slot held past the stale window.
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func TestAcquireUpdateSlotWaitsForAliveProcessPastStaleWindow(t *testing.T) {
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if runtime.GOOS != "linux" {
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t.Skip("processAlive is a no-op stub on non-Linux; this test only exercises real liveness checking on Linux")
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}
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resetUpdateSlot(t)
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if !acquireUpdateSlot(1) {
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t.Fatal("first acquire: got false, want true")
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}
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recordUpdatePID(os.Getpid()) // the test process itself: guaranteed alive
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updateMu.Lock()
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updateStarted = time.Now().Add(-(updateStaleAfter + time.Second))
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updateMu.Unlock()
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if acquireUpdateSlot(2) {
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t.Fatal("acquire past the stale window while the recorded PID is still alive: got true, want false")
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}
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releaseUpdateSlot()
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}
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// TestAcquireUpdateSlotHardCeilingOverridesLiveness confirms the absolute
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// backstop: even a confirmed-alive process can't hold the slot forever, so a
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// genuinely wedged run can't lock out retries permanently.
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func TestAcquireUpdateSlotHardCeilingOverridesLiveness(t *testing.T) {
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if runtime.GOOS != "linux" {
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t.Skip("processAlive is a no-op stub on non-Linux; this test only exercises real liveness checking on Linux")
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}
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resetUpdateSlot(t)
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if !acquireUpdateSlot(1) {
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t.Fatal("first acquire: got false, want true")
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}
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recordUpdatePID(os.Getpid())
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updateMu.Lock()
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updateStarted = time.Now().Add(-(updateHardCeiling + time.Second))
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updateMu.Unlock()
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if !acquireUpdateSlot(2) {
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t.Fatal("acquire past the hard ceiling despite a live PID: got false, want true")
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}
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releaseUpdateSlot()
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}
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// TestAcquireUpdateSlotReleasesOnTerminalStatus is the regression test for the
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// bug adversarial review found: a fast failure used to still lock out retries
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// for the full updateStaleAfter window, because acquireUpdateSlot only looked
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// at the in-memory started-at timestamp, never at the status file's own
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// terminal state.
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func TestAcquireUpdateSlotReleasesOnTerminalStatus(t *testing.T) {
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t.Setenv("XUI_DB_FOLDER", t.TempDir())
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resetUpdateSlot(t)
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path := config.GetUpdateStatusFilePath()
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if !acquireUpdateSlot(111) {
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t.Fatal("first acquire: got false, want true")
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}
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writeStatusFile(t, path, 111, updateStateFailed)
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if !acquireUpdateSlot(222) {
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t.Fatal("acquire after the in-flight run reported failed: got false, want true (should not wait out updateStaleAfter)")
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}
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releaseUpdateSlot()
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}
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// TestAcquireUpdateSlotIgnoresStaleUnrelatedStatus confirms the terminal-state
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// check is scoped to the run it actually launched: a status file left behind
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// by some earlier, unrelated run (different runID) must not be mistaken for
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// this run finishing.
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func TestAcquireUpdateSlotIgnoresStaleUnrelatedStatus(t *testing.T) {
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t.Setenv("XUI_DB_FOLDER", t.TempDir())
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resetUpdateSlot(t)
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path := config.GetUpdateStatusFilePath()
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writeStatusFile(t, path, 999, updateStateSuccess)
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if !acquireUpdateSlot(111) {
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t.Fatal("first acquire: got false, want true")
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}
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if acquireUpdateSlot(222) {
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t.Fatal("acquire while status file only reflects an unrelated older runID: got true, want false")
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}
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releaseUpdateSlot()
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}
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// TestAcquireUpdateSlotConcurrency proves the check-then-set is actually
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// atomic under real concurrent access, not just correct when called
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// sequentially. A prior version of this test suite only ever called
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// acquireUpdateSlot from a single goroutine, so it gave no signal if the
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// mutex's core promise (only one concurrent launch wins) were broken.
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func TestAcquireUpdateSlotConcurrency(t *testing.T) {
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resetUpdateSlot(t)
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const attempts = 200
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var wins atomic.Int32
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var wg sync.WaitGroup
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wg.Add(attempts)
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for i := range attempts {
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go func(runID int64) {
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defer wg.Done()
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if acquireUpdateSlot(runID) {
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wins.Add(1)
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}
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}(int64(i))
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}
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wg.Wait()
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if got := wins.Load(); got != 1 {
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t.Fatalf("concurrent acquireUpdateSlot: %d of %d attempts won, want exactly 1", got, attempts)
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}
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releaseUpdateSlot()
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}
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func TestGetUpdateStatus(t *testing.T) {
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t.Setenv("XUI_DB_FOLDER", t.TempDir())
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path := config.GetUpdateStatusFilePath()
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svc := &PanelService{}
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if got := svc.GetUpdateStatus(); got.State != updateStatePending {
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t.Fatalf("missing status file: State = %q, want %q", got.State, updateStatePending)
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}
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writeStatusFile(t, path, 1735689600123456789, updateStateSuccess)
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got := svc.GetUpdateStatus()
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if got.RunID != "1735689600123456789" {
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t.Fatalf("RunID = %q, want %q (must round-trip as a decimal string, not a JSON number, or it loses precision past 2^53 in JS)", got.RunID, "1735689600123456789")
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}
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if got.State != updateStateSuccess {
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t.Fatalf("State = %q, want %q", got.State, updateStateSuccess)
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}
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if err := os.WriteFile(path, []byte("not json"), 0o644); err != nil {
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t.Fatal(err)
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}
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if got := svc.GetUpdateStatus(); got.State != updateStatePending {
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t.Fatalf("corrupt status file: State = %q, want %q", got.State, updateStatePending)
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}
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writeStatusFile(t, path, 1, "some-unrecognized-state")
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if got := svc.GetUpdateStatus(); got.State != updateStatePending {
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t.Fatalf("unrecognized state normalizes to pending: State = %q, want %q", got.State, updateStatePending)
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}
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}
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