Files
Felis/internal/fileedit/exec.go
T

397 lines
18 KiB
Go

package fileedit
import (
"bytes"
"encoding/json"
"errors"
"fmt"
"io"
"io/fs"
"os"
"path"
"time"
"felis.lolicon.best/internal/naming"
)
// The three operations the editor supports. The set is deliberately closed and
// tiny: list a directory, read a file, write a file. There is no rename, delete,
// or chmod — each would need its own containment and audit story, and none is
// required to fix a broken server.properties, which is what this subsystem exists
// for.
//
// A write DOES accept arbitrary bytes at any path inside the mount, and that is a
// real capability rather than an oversight: the root is the server's whole working
// directory (see Config.WorldsRoot), so an owner can write plugins/<x>.jar and
// Paper will load it on the next boot. It is the same power a hosting panel's file
// manager gives, scoped to a server the caller already owns and already controls
// through /command. Note what it is NOT scoped by: admin image curation. Images
// are admin-only (POST /images, POST /images/build) and modpack submissions need
// an admin verdict, so this is the one owner-tier route that lands executable code
// in a backend pod. That trade was made deliberately; if it is ever revisited, the
// guard belongs in write() below, which is the single choke point all three
// callers route through.
const (
OpList = "list"
OpRead = "read"
OpWrite = "write"
)
// Result codes. A failure that is the CALLER's fault travels back as a Result
// with a Code rather than as a non-zero exit, so felis-api can map it onto a
// precise 4xx (handlers_files.go) instead of collapsing every failure into "the
// Job died" 500. Only an infrastructure failure — the world mount unreadable, the
// result unprintable — exits non-zero.
const (
CodeBadPath = "bad_path" // escapes the world root, is absolute, or is otherwise unopenable
CodeNotFound = "not_found" // resolves inside the root but nothing is there
CodeTooLarge = "too_large" // the file exceeds MaxReadBytes
)
// ResultPrefix marks the single stdout line carrying the JSON Result. The Job's
// output is read back through the pods/log subresource, which returns the
// container's stdout and stderr MERGED — so a Go runtime warning, a libc message,
// or anything else the container writes to stderr lands in the same stream. The
// marker is what makes the payload findable in that mixed stream: felis-api scans
// for the last line carrying this prefix rather than assuming the log is pure
// JSON. Without it any stray stderr byte would corrupt every response.
const ResultPrefix = "FELIS-FILES-RESULT: "
// ContentEnv is the environment variable the write path carries new file content
// in (base64). It travels on the Job spec felis-api creates, because felis-api
// holds `jobs: create` but NOT `secrets: create` in the minecraft namespace
// (internal/platform.APIMinecraftRole) — a Secret is not available to it, so the
// Job spec is the only channel into the Pod. The consequence is that written
// content is readable by anyone holding jobs:get in the minecraft namespace,
// which is a cluster-admin-level power; it is NOT readable by felis-operator,
// felis-reaper, or any weak Job SA, none of which hold that verb.
const ContentEnv = "FELIS_FILE_CONTENT"
// Size and count ceilings. Every one of them exists because the result travels
// through a Kubernetes object or a pod log, neither of which is an unbounded pipe:
//
// - MaxWriteBytes bounds the env var on the Job spec. etcd refuses an object
// over ~1.5MiB, and the base64 of the content is ~4/3 of it, so 256KiB leaves
// an order of magnitude of headroom for the rest of the spec. Any real
// server.properties / ops.json / bukkit.yml is a few KiB.
// - MaxReadBytes bounds what a read pulls back through the pod log INTO
// felis-api's memory. Without it a caller could name a 500MiB region file and
// make the API buffer it — a trivial memory DoS from an ordinary owner-tier
// request. 1MiB comfortably covers every config file and refuses world data.
// - MaxEntries bounds a listing. A world's region/ directory legitimately holds
// thousands of .mca files, so this truncates rather than errors (Truncated
// says so), keeping the log line bounded while still being useful.
const (
MaxWriteBytes = 256 << 10 // 256 KiB
MaxReadBytes = 1 << 20 // 1 MiB
MaxEntries = 2000
)
// Entry is one directory entry in a listing. It carries only what a file browser
// needs to render a row and decide whether the entry is descendable; mode bits,
// ownership, and inode data are deliberately absent — they are not actionable
// through this editor (there is no chmod/chown op) and would only widen what a
// listing discloses about the node.
type Entry struct {
Name string `json:"name"`
Size int64 `json:"size"`
IsDir bool `json:"is_dir"`
ModTime time.Time `json:"mod_time"`
}
// Result is the single JSON object the Job prints and felis-api parses back. One
// shape covers all three ops so the transport has exactly one thing to find and
// unmarshal; the op decides which fields are populated.
//
// Content is []byte, so encoding/json base64-encodes it on the way out and
// decodes it on the way back with no hand-rolled codec. That is what makes the
// read path binary-safe: a config file with a stray non-UTF-8 byte round-trips
// intact instead of being mangled into U+FFFD by a string round-trip.
type Result struct {
// Code and Error are set together on a caller-fault failure; both empty means
// the op succeeded.
Code string `json:"code,omitempty"`
Error string `json:"error,omitempty"`
Entries []Entry `json:"entries,omitempty"`
Content []byte `json:"content,omitempty"`
// Truncated reports that the listing hit MaxEntries and is incomplete, so a
// client renders "showing first N" rather than silently implying the directory
// is smaller than it is.
Truncated bool `json:"truncated,omitempty"`
}
// Execute performs op on the file named by path, resolved inside root, and returns
// the Result to print. root is the in-Pod mount path of the server's world PVC;
// path is the caller-supplied relative path underneath it.
//
// CONTAINMENT INVARIANT: every filesystem access goes through *os.Root, never
// through a path string this function assembled. os.Root is the stdlib's
// escape-proof directory handle — it resolves each component against the open root
// descriptor and refuses any traversal that would leave it, whether by "..", by an
// absolute path, or by a SYMLINK pointing outside. That last case is why the
// string-prefix check in internal/backup/tarlocal.go is not reused here: a prefix
// test validates the path as text, then opens it as a path, and between those two
// steps a symlink can be swapped in (TOCTOU). A world directory holds
// attacker-influenced content — players create files through ordinary gameplay,
// and plugins create more — so a symlink escaping to /etc or to another server's
// mount is a live threat, not a theoretical one. os.Root closes it structurally:
// there is no window between the check and the open because they are the same
// operation.
//
// The path is passed to os.Root verbatim apart from mapping "" to ".". In
// particular an ABSOLUTE path is NOT rewritten into a relative one — it is handed
// to os.Root as-is and refused. Silently reinterpreting "/etc/passwd" as
// "<root>/etc/passwd" would turn an unambiguous escape attempt into a successful
// read of a file the caller did not name, which is exactly the confusion this
// editor must not have.
func Execute(root, op, path string, content []byte) (Result, error) {
r, err := os.OpenRoot(root)
if err != nil {
// The world mount itself is unopenable: infrastructure, not caller fault.
return Result{}, fmt.Errorf("open world root %q: %w", root, err)
}
defer r.Close()
if path == "" {
path = "."
}
switch op {
case OpList:
return list(r, path), nil
case OpRead:
return read(r, path), nil
case OpWrite:
return write(r, path, content), nil
default:
return Result{}, fmt.Errorf("unknown op %q", op)
}
}
// list reads one directory. It does not recurse: a browser asks for one level at
// a time, and recursion would make both the result size and the traversal cost
// unbounded in a world directory.
func list(r *os.Root, path string) Result {
f, err := r.Open(path)
if err != nil {
return failure(err, path)
}
defer f.Close()
// ReadDir(MaxEntries+1) reads one MORE than the ceiling so the overflow is
// detectable without walking the whole directory: if the extra entry came back,
// the listing is truncated. io.EOF means the directory ended within the limit.
dirents, err := f.ReadDir(MaxEntries + 1)
if err != nil && !errors.Is(err, io.EOF) {
return failure(err, path)
}
truncated := len(dirents) > MaxEntries
if truncated {
dirents = dirents[:MaxEntries]
}
entries := make([]Entry, 0, len(dirents))
for _, de := range dirents {
e := Entry{Name: de.Name(), IsDir: de.IsDir()}
// Info() can fail on an entry deleted between the ReadDir and the stat (a
// running plugin rotating a log, say). That is not a reason to fail the whole
// listing, so the entry is reported with a zero size/mtime rather than dropped
// — a name that exists is still useful to the caller.
if info, err := de.Info(); err == nil {
e.Size, e.ModTime = info.Size(), info.ModTime()
}
entries = append(entries, e)
}
return Result{Entries: entries, Truncated: truncated}
}
// secretConfigPath is the one file in a world mount holding PLATFORM secret
// material rather than the owner's own configuration. felis-lobby's entrypoint
// writes FELIS_FORWARDING_SECRET into it on every boot, and that value is
// identical on every backend in the cluster — operator.buildEnv injects one Secret
// everywhere. Reading it out of a server you own would therefore hand you the
// Velocity modern-forwarding handshake key for EVERYONE's servers: cross-tenant
// material that merely happens to sit in your volume. Every other path here is the
// caller's own data, which is why this is the only denial.
//
// Refusing it costs no legitimate repair. The entrypoint rewrites the file whole
// on every boot and its own header says "Do not hand-edit", so an edit made
// through this editor could never survive a restart anyway. Only the READ is
// denied; a write is left alone because writing the file leaks nothing and is
// equally futile.
//
// An exact match on one cleaned path, not a pattern. This is the whole
// known exposure — grep FELIS_FORWARDING_SECRET across deploy/ — and if another
// image ever persists a platform secret into the mount, add its path here rather
// than inventing a matcher.
const secretConfigPath = "config/paper-global.yml"
// read returns a file's bytes. It stats first so an oversized file is refused
// BEFORE any of it is buffered — checking after the read would mean the memory
// blow-up this ceiling exists to prevent has already happened.
func read(r *os.Root, name string) Result {
// path.Clean, not a raw compare: "./config/paper-global.yml",
// "config//paper-global.yml" and "config/../config/paper-global.yml" all name
// the same file, and a string equality test would wave every one of them
// through. Cleaning collapses them to the single canonical form this matches.
// Slash-based path (not filepath) is correct because the Job container is always
// Linux, whatever the developer machine rendering the spec runs.
if path.Clean(name) == secretConfigPath {
return Result{Code: CodeBadPath, Error: fmt.Sprintf(
"%s holds the proxy forwarding secret, which is shared cluster-wide, and is not readable through the editor", name)}
}
f, err := r.Open(name)
if err != nil {
return failure(err, name)
}
defer f.Close()
info, err := f.Stat()
if err != nil {
return failure(err, name)
}
if info.IsDir() {
return Result{Code: CodeBadPath, Error: fmt.Sprintf("%s is a directory, not a file", name)}
}
if info.Size() > MaxReadBytes {
return Result{Code: CodeTooLarge, Error: fmt.Sprintf(
"%s is %d bytes; the editor reads at most %d", name, info.Size(), MaxReadBytes)}
}
// LimitReader is belt-and-braces against the file growing between the Stat and
// the read: the ceiling then holds on the bytes actually buffered, not merely on
// the size observed a moment earlier.
b, err := io.ReadAll(io.LimitReader(f, MaxReadBytes))
if err != nil {
return failure(err, name)
}
return Result{Content: redactSecretProps(name, b)}
}
// propsPath is the server's main config file, and rconPasswordKey the one line in
// it the editor must not hand back (spec §286: RCON 密码绝不下发前端).
const (
propsPath = "server.properties"
rconPasswordKey = "rcon.password"
// redactedValue is deliberately not empty: a blank value would read as "RCON has
// no password", which is a very different and much more alarming claim than "you
// are not being shown it".
redactedValue = "<redacted by felis>"
)
// redactSecretProps blanks the RCON password when server.properties is read.
//
// Unlike secretConfigPath this is a value redaction rather than a whole-file
// denial, because the file is not platform material that merely happens to sit in
// the volume — it is the single most-edited config a server owner has (MOTD,
// view-distance, difficulty, gamemode), and refusing it outright would cost real
// repair to hide one line. The password is also per-server and garbage-collected
// with it, so unlike the cluster-wide forwarding secret it leaks nothing about
// anyone else's server; it is withheld because §286 draws the line at the frontend
// regardless of blast radius, and because the console already gives an owner every
// capability the password would.
//
// The write path is left alone on purpose, mirroring the reasoning at
// secretConfigPath: felis-lobby's entrypoint rewrites all three rcon keys from the
// injected Secret on every boot, so saving the placeholder back cannot lock the
// control plane out — the next restart restores the real value. That is what makes
// redaction safe here; without the boot-time rewrite this would be a footgun.
func redactSecretProps(name string, content []byte) []byte {
if path.Clean(name) != propsPath {
return content
}
lines := bytes.Split(content, []byte("\n"))
for i, line := range lines {
// TrimSpace before matching: a properties key may be indented, and the
// trailing \r of a CRLF file would otherwise ride along into the value.
if bytes.HasPrefix(bytes.TrimSpace(line), []byte(rconPasswordKey+"=")) {
lines[i] = []byte(rconPasswordKey + "=" + redactedValue)
}
}
return bytes.Join(lines, []byte("\n"))
}
// write replaces a file's contents. It truncates rather than appends, and it does
// NOT create parent directories: every path this editor writes is an existing
// config file being corrected, so an unexpected mkdir would more likely be a typo
// materialising a stray directory in the world mount than an intent.
//
// O_CREATE is still allowed so a config file the server has not yet generated can
// be authored. os.Root applies the same containment to the create as to an open,
// so a symlink at the target pointing outside the root is refused rather than
// followed — the classic "write through a planted symlink" escape.
func write(r *os.Root, path string, content []byte) Result {
if len(content) > MaxWriteBytes {
// Defence in depth: felis-api already refuses an oversized write with a 413
// before rendering the Job. Re-checking here keeps the ceiling true even if
// this entrypoint is ever driven directly.
return Result{Code: CodeTooLarge, Error: fmt.Sprintf(
"content is %d bytes; the editor writes at most %d", len(content), MaxWriteBytes)}
}
f, err := r.OpenFile(path, os.O_WRONLY|os.O_CREATE|os.O_TRUNC, 0o644)
if err != nil {
return failure(err, path)
}
if _, err := f.Write(content); err != nil {
f.Close()
return failure(err, path)
}
// Close is where a buffered-write error surfaces, so its error is honoured
// rather than deferred-and-dropped: reporting success on a write that did not
// land would leave the caller believing a broken config was fixed.
if err := f.Close(); err != nil {
return failure(err, path)
}
// The Job runs as root, so a file it just created is root's. The server runs as
// the game uid and could read it (0644) but never rewrite it — a config the
// panel authored that Paper then fails to save. Best effort: the content has
// landed and reporting failure would lie, and the server's prepare-data
// initContainer re-owns anything left behind on its next start anyway.
_ = ownWritten(r, path)
return Result{}
}
// ownWritten hands a written file to the game uid. os.Root.Chown follows a symlink
// only within the root, so this can never re-own a file outside the mount. A var so
// tests, which cannot chown, can observe the call.
var ownWritten = func(r *os.Root, name string) error {
return r.Chown(name, int(naming.GameUID), int(naming.GameGID))
}
// failure maps a filesystem error onto a caller-facing Result code. Anything that
// is genuinely "nothing is there" becomes not_found; EVERYTHING else — including
// every os.Root containment refusal — becomes bad_path.
//
// That default is deliberate. os.Root reports an escape as a *fs.PathError with no
// exported sentinel to match on, so the mapping cannot test for "escaped"
// positively; it tests for the one benign case it can name and refuses the rest.
// Failing closed this way means a future os.Root error kind is reported as a bad
// path rather than leaking through as a success.
//
// The error text is included because it is generated by the stdlib from the
// caller's OWN path inside their OWN world mount, so it discloses nothing they
// could not learn by listing — and it is the difference between a usable "no such
// file" and an opaque 400.
func failure(err error, path string) Result {
if errors.Is(err, fs.ErrNotExist) {
return Result{Code: CodeNotFound, Error: fmt.Sprintf("%s does not exist", path)}
}
return Result{Code: CodeBadPath, Error: err.Error()}
}
// Print writes r as the single marked stdout line the Job's reader looks for. The
// JSON is written with no indentation on purpose: the payload must occupy exactly
// ONE log line, because the reader identifies it by a line prefix. An indented
// encoding would split it across lines and make it unfindable.
func Print(w io.Writer, res Result) error {
b, err := json.Marshal(res)
if err != nil {
return fmt.Errorf("marshal result: %w", err)
}
_, err = fmt.Fprintf(w, "%s%s\n", ResultPrefix, b)
return err
}