Paste a secret, get a link, send it. The first person to open it and press
Reveal sees the secret; the link dies at that moment. The recipient needs a
browser and nothing else — no account, no client, no installed tooling.
The server cannot read what it stores. AES-256-GCM happens in the browser and
the key lives in the URL fragment, which browsers never transmit, so hushd
holds ciphertext and no key material. That is a property of where the key sits
rather than a promise about our conduct, which is why there is deliberately no
endpoint accepting a plaintext secret and no server-side-encryption fallback:
two guarantees behind one URL would be worse than one honest guarantee.
Three decisions carry the design:
* GET /s/{id} touches NO storage, not even to check existence. Slack, Teams,
WhatsApp, iMessage and Outlook Safe Links all fetch a URL before a human
sees it, so destroying on GET would destroy most secrets in transit and the
recipient's "already used" would be indistinguishable from interception.
Only POST /reveal consumes. Bot user-agent detection is an arms race;
removing the side effect from GET is not. Pinned by
TestGettingTheRevealPageNeverConsumesTheSecret.
* Destruction is one Redis GETDEL, which is atomic. GET-then-DEL has a window
where two simultaneous readers both win, and for a one-time secret that
window is the product. The store contract demands atomicity and the same
concurrency test runs against both implementations.
* Missing, already-revealed, expired and evicted are ONE indistinguishable
410. Separating them would confirm to a prober that a given link was real.
The secret id IS the capability, so secret.ID is a struct whose every
accidental path — %v, %s, String(), slog, json.Marshal — emits a redacted
handle or refuses, and the raw value needs an explicit Value(). The first
version tried to prevent leaks by implementing no String() at all; its own test
caught that Go's fmt prints unexported fields anyway, so forbidding the method
had removed the control rather than the leak.
Operationally: structured JSON on stdout in the fleet's wire format, which
Vector already collects with no annotation; six hush_* metrics on the chassis
registry with no id, IP or path in any label; five alert rules wired into
vmalert. The public Ingress enumerates /, /s/ and /api/ so /metrics, /healthz
and /readyz share the port but are unreachable from the internet — no
basic-auth middleware to maintain and get wrong.
Dependencies are vendored because go-chassis is private: the Woodpecker test
step and the in-cluster Kaniko build both run -mod=vendor with GOPROXY=off and
hold no git credential.
cmd/hush-mcp is a stdio MCP server doing the same client-side crypto locally,
so using hush from an agent preserves the same guarantee as using it from a
browser.
260 lines
7.7 KiB
Go
260 lines
7.7 KiB
Go
// Copyright The Prometheus Authors
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// Licensed under the Apache License, Version 2.0 (the "License");
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// you may not use this file except in compliance with the License.
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// You may obtain a copy of the License at
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//
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// http://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing, software
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// distributed under the License is distributed on an "AS IS" BASIS,
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// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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// See the License for the specific language governing permissions and
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// limitations under the License.
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package procfs
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import (
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"bufio"
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"bytes"
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"errors"
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"fmt"
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"io"
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"strconv"
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"strings"
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"github.com/prometheus/procfs/internal/fs"
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"github.com/prometheus/procfs/internal/util"
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)
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// CPUStat shows how much time the cpu spend in various stages.
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type CPUStat struct {
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User float64
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Nice float64
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System float64
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Idle float64
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Iowait float64
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IRQ float64
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SoftIRQ float64
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Steal float64
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Guest float64
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GuestNice float64
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}
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// SoftIRQStat represent the softirq statistics as exported in the procfs stat file.
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// A nice introduction can be found at https://0xax.gitbooks.io/linux-insides/content/interrupts/interrupts-9.html
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// It is possible to get per-cpu stats by reading `/proc/softirqs`.
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type SoftIRQStat struct {
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Hi uint64
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Timer uint64
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NetTx uint64
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NetRx uint64
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Block uint64
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BlockIoPoll uint64
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Tasklet uint64
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Sched uint64
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Hrtimer uint64
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Rcu uint64
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}
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// Stat represents kernel/system statistics.
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type Stat struct {
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// Boot time in seconds since the Epoch.
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BootTime uint64
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// Summed up cpu statistics.
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CPUTotal CPUStat
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// Per-CPU statistics.
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CPU map[int64]CPUStat
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// Number of times interrupts were handled, which contains numbered and unnumbered IRQs.
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IRQTotal uint64
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// Number of times a numbered IRQ was triggered.
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IRQ []uint64
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// Number of times a context switch happened.
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ContextSwitches uint64
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// Number of times a process was created.
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ProcessCreated uint64
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// Number of processes currently running.
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ProcessesRunning uint64
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// Number of processes currently blocked (waiting for IO).
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ProcessesBlocked uint64
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// Number of times a softirq was scheduled.
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SoftIRQTotal uint64
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// Detailed softirq statistics.
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SoftIRQ SoftIRQStat
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}
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// Parse a cpu statistics line and returns the CPUStat struct plus the cpu id (or -1 for the overall sum).
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func parseCPUStat(line string) (CPUStat, int64, error) {
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cpuStat := CPUStat{}
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var cpu string
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count, err := fmt.Sscanf(line, "%s %f %f %f %f %f %f %f %f %f %f",
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&cpu,
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&cpuStat.User, &cpuStat.Nice, &cpuStat.System, &cpuStat.Idle,
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&cpuStat.Iowait, &cpuStat.IRQ, &cpuStat.SoftIRQ, &cpuStat.Steal,
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&cpuStat.Guest, &cpuStat.GuestNice)
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if err != nil && !errors.Is(err, io.EOF) {
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return CPUStat{}, -1, fmt.Errorf("%w: couldn't parse %q (cpu): %w", ErrFileParse, line, err)
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}
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if count == 0 {
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return CPUStat{}, -1, fmt.Errorf("%w: couldn't parse %q (cpu): 0 elements parsed", ErrFileParse, line)
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}
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cpuStat.User /= userHZ
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cpuStat.Nice /= userHZ
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cpuStat.System /= userHZ
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cpuStat.Idle /= userHZ
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cpuStat.Iowait /= userHZ
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cpuStat.IRQ /= userHZ
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cpuStat.SoftIRQ /= userHZ
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cpuStat.Steal /= userHZ
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cpuStat.Guest /= userHZ
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cpuStat.GuestNice /= userHZ
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if cpu == "cpu" {
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return cpuStat, -1, nil
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}
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cpuID, err := strconv.ParseInt(cpu[3:], 10, 64)
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if err != nil {
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return CPUStat{}, -1, fmt.Errorf("%w: couldn't parse %q (cpu/cpuid): %w", ErrFileParse, line, err)
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}
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return cpuStat, cpuID, nil
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}
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// Parse a softirq line.
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func parseSoftIRQStat(line string) (SoftIRQStat, uint64, error) {
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softIRQStat := SoftIRQStat{}
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var total uint64
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var prefix string
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_, err := fmt.Sscanf(line, "%s %d %d %d %d %d %d %d %d %d %d %d",
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&prefix, &total,
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&softIRQStat.Hi, &softIRQStat.Timer, &softIRQStat.NetTx, &softIRQStat.NetRx,
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&softIRQStat.Block, &softIRQStat.BlockIoPoll,
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&softIRQStat.Tasklet, &softIRQStat.Sched,
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&softIRQStat.Hrtimer, &softIRQStat.Rcu)
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if err != nil {
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return SoftIRQStat{}, 0, fmt.Errorf("%w: couldn't parse %q (softirq): %w", ErrFileParse, line, err)
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}
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return softIRQStat, total, nil
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}
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// NewStat returns information about current cpu/process statistics.
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// See https://www.kernel.org/doc/Documentation/filesystems/proc.txt
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//
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// Deprecated: Use fs.Stat() instead.
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func NewStat() (Stat, error) {
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fs, err := NewFS(fs.DefaultProcMountPoint)
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if err != nil {
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return Stat{}, err
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}
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return fs.Stat()
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}
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// NewStat returns information about current cpu/process statistics.
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// See: https://www.kernel.org/doc/Documentation/filesystems/proc.txt
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//
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// Deprecated: Use fs.Stat() instead.
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func (fs FS) NewStat() (Stat, error) {
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return fs.Stat()
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}
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// Stat returns information about current cpu/process statistics.
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// See: https://www.kernel.org/doc/Documentation/filesystems/proc.txt
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func (fs FS) Stat() (Stat, error) {
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fileName := fs.proc.Path("stat")
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data, err := util.ReadFileNoStat(fileName)
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if err != nil {
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return Stat{}, err
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}
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procStat, err := parseStat(bytes.NewReader(data), fileName)
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if err != nil {
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return Stat{}, err
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}
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return procStat, nil
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}
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// parseStat parses the metrics from /proc/[pid]/stat.
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func parseStat(r io.Reader, fileName string) (Stat, error) {
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var (
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scanner = bufio.NewScanner(r)
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stat = Stat{
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CPU: make(map[int64]CPUStat),
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}
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err error
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)
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// Increase default scanner buffer to handle very long `intr` lines.
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buf := make([]byte, 0, 8*1024)
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scanner.Buffer(buf, 1024*1024)
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for scanner.Scan() {
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line := scanner.Text()
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parts := strings.Fields(scanner.Text())
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// require at least <key> <value>
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if len(parts) < 2 {
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continue
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}
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switch {
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case parts[0] == "btime":
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if stat.BootTime, err = strconv.ParseUint(parts[1], 10, 64); err != nil {
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return Stat{}, fmt.Errorf("%w: couldn't parse %q (btime): %w", ErrFileParse, parts[1], err)
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}
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case parts[0] == "intr":
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if stat.IRQTotal, err = strconv.ParseUint(parts[1], 10, 64); err != nil {
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return Stat{}, fmt.Errorf("%w: couldn't parse %q (intr): %w", ErrFileParse, parts[1], err)
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}
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numberedIRQs := parts[2:]
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stat.IRQ = make([]uint64, len(numberedIRQs))
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for i, count := range numberedIRQs {
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if stat.IRQ[i], err = strconv.ParseUint(count, 10, 64); err != nil {
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return Stat{}, fmt.Errorf("%w: couldn't parse %q (intr%d): %w", ErrFileParse, count, i, err)
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}
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}
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case parts[0] == "ctxt":
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if stat.ContextSwitches, err = strconv.ParseUint(parts[1], 10, 64); err != nil {
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return Stat{}, fmt.Errorf("%w: couldn't parse %q (ctxt): %w", ErrFileParse, parts[1], err)
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}
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case parts[0] == "processes":
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if stat.ProcessCreated, err = strconv.ParseUint(parts[1], 10, 64); err != nil {
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return Stat{}, fmt.Errorf("%w: couldn't parse %q (processes): %w", ErrFileParse, parts[1], err)
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}
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case parts[0] == "procs_running":
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if stat.ProcessesRunning, err = strconv.ParseUint(parts[1], 10, 64); err != nil {
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return Stat{}, fmt.Errorf("%w: couldn't parse %q (procs_running): %w", ErrFileParse, parts[1], err)
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}
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case parts[0] == "procs_blocked":
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if stat.ProcessesBlocked, err = strconv.ParseUint(parts[1], 10, 64); err != nil {
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return Stat{}, fmt.Errorf("%w: couldn't parse %q (procs_blocked): %w", ErrFileParse, parts[1], err)
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}
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case parts[0] == "softirq":
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softIRQStats, total, err := parseSoftIRQStat(line)
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if err != nil {
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return Stat{}, err
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}
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stat.SoftIRQTotal = total
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stat.SoftIRQ = softIRQStats
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case strings.HasPrefix(parts[0], "cpu"):
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cpuStat, cpuID, err := parseCPUStat(line)
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if err != nil {
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return Stat{}, err
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}
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if cpuID == -1 {
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stat.CPUTotal = cpuStat
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} else {
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stat.CPU[cpuID] = cpuStat
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}
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}
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}
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if err := scanner.Err(); err != nil {
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return Stat{}, fmt.Errorf("%w: couldn't parse %q: %w", ErrFileParse, fileName, err)
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}
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return stat, nil
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}
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