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2 Commits
v0.76.2
...
debug-ui-m
| Author | SHA1 | Date | |
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baac630f43 | ||
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16c119309d |
@@ -95,6 +95,10 @@ func main() {
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}
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})
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// Debug patch, not for release: dumps heap/goroutine profiles and the
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// process tree to /tmp/nbgui for the memory consumption investigation.
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startMemProfiler(app)
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profiles := services.NewProfiles(conn)
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// updater.Holder owns the typed update State; DaemonFeed feeds it and the
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// Update service is a thin Wails-bound facade over it plus the install RPCs.
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319
client/ui/memprof.go
Normal file
319
client/ui/memprof.go
Normal file
@@ -0,0 +1,319 @@
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//go:build !android && !ios && !freebsd && !js
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package main
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import (
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"bufio"
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"fmt"
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"os"
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"path/filepath"
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"runtime"
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"runtime/pprof"
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"strconv"
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"strings"
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"time"
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"github.com/shirou/gopsutil/v4/process"
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log "github.com/sirupsen/logrus"
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"github.com/wailsapp/wails/v3/pkg/application"
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"github.com/wailsapp/wails/v3/pkg/events"
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)
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// memProfOffsets are the snapshot times measured from application startup.
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var memProfOffsets = []time.Duration{0, 2 * time.Minute, 5 * time.Minute}
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// memProfMaxDepth bounds the child walk so a cycle in the reported parent links
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// cannot spin forever.
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const memProfMaxDepth = 4
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type memProfileSpec struct {
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profile string
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file string
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debug int
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}
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var memProfileSpecs = []memProfileSpec{
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{profile: "heap", file: "heap.pprof", debug: 0},
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{profile: "heap", file: "heap.txt", debug: 1},
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{profile: "goroutine", file: "goroutine.txt", debug: 1},
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{profile: "threadcreate", file: "threadcreate.txt", debug: 1},
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}
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var memProfStart = time.Now()
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// startMemProfiler dumps a profile snapshot at every memProfOffsets mark, each
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// into its own timestamped directory under memProfBaseDir. The first runs once
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// the application is up so the window inventory sees the eagerly created
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// windows. Every failure is logged and never stops the GUI.
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func startMemProfiler(app *application.App) {
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log.Infof("memory profiler enabled, writing to %s (snapshots at %v after startup)", memProfBaseDir(), memProfOffsets)
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app.Event.OnApplicationEvent(events.Common.ApplicationStarted, func(*application.ApplicationEvent) {
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go func() {
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started := time.Now()
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for _, offset := range memProfOffsets {
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if wait := time.Until(started.Add(offset)); wait > 0 {
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time.Sleep(wait)
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}
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writeMemProfile(app)
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}
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}()
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})
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}
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// memProfBaseDir returns the directory holding the snapshot directories.
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func memProfBaseDir() string {
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if runtime.GOOS == "windows" {
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return filepath.Join(os.TempDir(), "nbgui")
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}
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return "/tmp/nbgui"
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}
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// writeMemProfile creates a <timestamp>-<pid> directory and fills it with the
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// runtime profiles, the memory statistics summary and the process tree.
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func writeMemProfile(app *application.App) {
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name := fmt.Sprintf("%s-%d", time.Now().Format("20060102-150405"), os.Getpid())
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dir := filepath.Join(memProfBaseDir(), name)
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if err := os.MkdirAll(dir, 0o755); err != nil {
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log.Warnf("create memory profile dir %s: %v", dir, err)
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return
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}
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// The heap profile reports live objects as of the last collection, so force
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// one to keep inuse_space from counting garbage that is already unreachable.
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runtime.GC()
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if err := writeMemStats(filepath.Join(dir, "memstats.txt"), app); err != nil {
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log.Warnf("write memory statistics: %v", err)
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}
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if err := writeProcTree(filepath.Join(dir, "proctree.txt")); err != nil {
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log.Warnf("write process tree: %v", err)
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}
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for _, spec := range memProfileSpecs {
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if err := writeMemProfileFile(spec, filepath.Join(dir, spec.file)); err != nil {
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log.Warnf("write %s profile: %v", spec.profile, err)
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}
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}
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log.Infof("memory profile written to %s", dir)
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}
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// writeMemProfileFile writes a single runtime profile to path.
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func writeMemProfileFile(spec memProfileSpec, path string) error {
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p := pprof.Lookup(spec.profile)
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if p == nil {
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return fmt.Errorf("unknown profile %q", spec.profile)
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}
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f, err := os.Create(path)
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if err != nil {
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return fmt.Errorf("create %s: %w", path, err)
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}
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defer func() {
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if err := f.Close(); err != nil {
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log.Debugf("close %s: %v", path, err)
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}
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}()
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if err := p.WriteTo(f, spec.debug); err != nil {
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return fmt.Errorf("write %s: %w", path, err)
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}
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return nil
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}
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// writeMemStats dumps the runtime memory statistics next to the process
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// resident set size. A resident set much larger than Sys means the memory sits
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// outside the Go heap (webview, GTK, other cgo allocations), where the pprof
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// profiles cannot see it.
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func writeMemStats(path string, app *application.App) error {
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var m runtime.MemStats
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runtime.ReadMemStats(&m)
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var b strings.Builder
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fmt.Fprintf(&b, "time: %s\n", time.Now().Format(time.RFC3339))
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fmt.Fprintf(&b, "uptime: %s\n", time.Since(memProfStart).Round(time.Second))
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fmt.Fprintf(&b, "pid: %d\n", os.Getpid())
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fmt.Fprintf(&b, "\n")
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rss, vms := processMemory()
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fmt.Fprintf(&b, "process_rss: %s\n", rss)
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fmt.Fprintf(&b, "process_vms: %s\n", vms)
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fmt.Fprintf(&b, "\n")
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fmt.Fprintf(&b, "sys: %s\n", formatMemBytes(m.Sys))
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fmt.Fprintf(&b, "heap_alloc: %s\n", formatMemBytes(m.HeapAlloc))
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fmt.Fprintf(&b, "heap_sys: %s\n", formatMemBytes(m.HeapSys))
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fmt.Fprintf(&b, "heap_inuse: %s\n", formatMemBytes(m.HeapInuse))
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fmt.Fprintf(&b, "heap_idle: %s\n", formatMemBytes(m.HeapIdle))
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fmt.Fprintf(&b, "heap_released: %s\n", formatMemBytes(m.HeapReleased))
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fmt.Fprintf(&b, "heap_objects: %d\n", m.HeapObjects)
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fmt.Fprintf(&b, "stack_inuse: %s\n", formatMemBytes(m.StackInuse))
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fmt.Fprintf(&b, "stack_sys: %s\n", formatMemBytes(m.StackSys))
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fmt.Fprintf(&b, "mspan_sys: %s\n", formatMemBytes(m.MSpanSys))
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fmt.Fprintf(&b, "mcache_sys: %s\n", formatMemBytes(m.MCacheSys))
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fmt.Fprintf(&b, "gc_sys: %s\n", formatMemBytes(m.GCSys))
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fmt.Fprintf(&b, "other_sys: %s\n", formatMemBytes(m.OtherSys))
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fmt.Fprintf(&b, "next_gc: %s\n", formatMemBytes(m.NextGC))
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fmt.Fprintf(&b, "num_gc: %d\n", m.NumGC)
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fmt.Fprintf(&b, "\n")
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fmt.Fprintf(&b, "goroutines: %d\n", runtime.NumGoroutine())
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fmt.Fprintf(&b, "cgo_calls: %d\n", runtime.NumCgoCall())
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fmt.Fprintf(&b, "gomaxprocs: %d\n", runtime.GOMAXPROCS(0))
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fmt.Fprintf(&b, "\n")
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writeWindowInventory(&b, app)
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if err := os.WriteFile(path, []byte(b.String()), 0o644); err != nil {
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return fmt.Errorf("write %s: %w", path, err)
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}
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return nil
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}
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// writeWindowInventory lists the live Wails windows. A window that exists holds
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// a webview process even while hidden, so this tells apart a leaked window (the
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// count grows) from windows whose content grew (the count stays put).
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func writeWindowInventory(b *strings.Builder, app *application.App) {
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windows := app.Window.GetAll()
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fmt.Fprintf(b, "windows: %d\n", len(windows))
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for _, w := range windows {
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visible := "unknown"
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if ww, ok := w.(*application.WebviewWindow); ok {
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visible = strconv.FormatBool(ww.IsVisible())
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}
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fmt.Fprintf(b, " id=%-3d name=%-20q visible=%-7s minimised=%-5t focused=%t\n",
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w.ID(), w.Name(), visible, w.IsMinimised(), w.IsFocused())
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}
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}
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// writeProcTree dumps this process and its descendants with their memory
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// footprint. The webview runs in child processes whose memory the Go runtime
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// profiles cannot see, so this is what attributes a footprint to a component.
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func writeProcTree(path string) error {
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self, err := process.NewProcess(int32(os.Getpid()))
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if err != nil {
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return fmt.Errorf("open own process: %w", err)
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}
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var b strings.Builder
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fmt.Fprintf(&b, "time: %s\n", time.Now().Format(time.RFC3339))
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fmt.Fprintf(&b, "uptime: %s\n\n", time.Since(memProfStart).Round(time.Second))
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fmt.Fprintf(&b, "%-8s %-8s %-28s %12s %12s %12s %12s\n", "PID", "PPID", "NAME", "RSS", "VMS", "PSS", "PRIV_DIRTY")
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var totalRSS, totalPSS, totalPrivate uint64
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walkProcTree(&b, self, 0, &totalRSS, &totalPSS, &totalPrivate)
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fmt.Fprintf(&b, "\n%-8s %-8s %-28s %12s %12s %12s %12s\n", "", "", "TOTAL",
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formatKB(totalRSS), "", formatKB(totalPSS), formatKB(totalPrivate))
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fmt.Fprintf(&b, "\nPSS and PRIV_DIRTY come from /proc/<pid>/smaps_rollup and are Linux only.\n")
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if err := os.WriteFile(path, []byte(b.String()), 0o644); err != nil {
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return fmt.Errorf("write %s: %w", path, err)
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}
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return nil
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}
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// walkProcTree appends one line per process, depth-first, accumulating totals.
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func walkProcTree(b *strings.Builder, p *process.Process, depth int, totalRSS, totalPSS, totalPrivate *uint64) {
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name, err := p.Name()
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if err != nil {
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name = "unknown"
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}
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var rss, vms uint64
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if info, err := p.MemoryInfo(); err == nil {
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rss, vms = info.RSS, info.VMS
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}
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pss, private := smapsRollup(p.Pid)
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*totalRSS += rss
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*totalPSS += pss
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*totalPrivate += private
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ppid, err := p.Ppid()
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if err != nil {
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ppid = -1
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}
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fmt.Fprintf(b, "%-8d %-8d %-28s %12s %12s %12s %12s\n", p.Pid, ppid,
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strings.Repeat(" ", depth)+name, formatKB(rss), formatKB(vms), formatKB(pss), formatKB(private))
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if depth >= memProfMaxDepth {
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return
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}
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children, err := p.Children()
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if err != nil {
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return
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}
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for _, child := range children {
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walkProcTree(b, child, depth+1, totalRSS, totalPSS, totalPrivate)
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}
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}
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// smapsRollup returns the proportional set size and private dirty bytes of pid,
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// both zero on platforms without /proc.
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func smapsRollup(pid int32) (uint64, uint64) {
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f, err := os.Open(fmt.Sprintf("/proc/%d/smaps_rollup", pid))
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if err != nil {
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return 0, 0
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}
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defer func() {
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if err := f.Close(); err != nil {
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log.Debugf("close smaps_rollup for %d: %v", pid, err)
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}
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}()
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var pss, private uint64
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scanner := bufio.NewScanner(f)
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for scanner.Scan() {
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fields := strings.Fields(scanner.Text())
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if len(fields) < 2 {
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continue
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}
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kb, err := strconv.ParseUint(fields[1], 10, 64)
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if err != nil {
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continue
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}
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switch fields[0] {
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case "Pss:":
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pss = kb * 1024
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case "Private_Dirty:":
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private = kb * 1024
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}
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}
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return pss, private
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}
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// processMemory returns the formatted resident and virtual size of this process.
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func processMemory() (string, string) {
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p, err := process.NewProcess(int32(os.Getpid()))
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if err != nil {
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unavailable := fmt.Sprintf("unavailable (%v)", err)
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return unavailable, unavailable
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}
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info, err := p.MemoryInfo()
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if err != nil {
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unavailable := fmt.Sprintf("unavailable (%v)", err)
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return unavailable, unavailable
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}
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return formatMemBytes(info.RSS), formatMemBytes(info.VMS)
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}
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// formatMemBytes renders a byte count as megabytes with the raw value kept.
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func formatMemBytes(n uint64) string {
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return fmt.Sprintf("%8.1f MB (%d bytes)", float64(n)/(1024*1024), n)
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}
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// formatKB renders a byte count as megabytes for the process tree columns, and
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// a dash when the platform did not report the value.
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func formatKB(n uint64) string {
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if n == 0 {
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return "-"
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}
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return fmt.Sprintf("%.1f MB", float64(n)/(1024*1024))
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}
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