dev_prune/setup.rs
1// Copyright 2026 VKrishna04
2// SPDX-License-Identifier: Apache-2.0
3
4// Idempotent installation of dev-prune's integrations.
5//
6// dev-prune is only really installed once the parts that let it work without being
7// thought about are in place: the `devp` alias, the managed pair on the user's PATH,
8// the exported `SKILL.md` that AI assistants read (installed into the agent's own
9// skills directory where one exists), the Git hooks that keep the registry current,
10// and the OS scheduler that runs the passes. Each one here is created **only when it
11// is missing**, which is
12// what makes it safe to run on every install, reinstall and upgrade — and it does run
13// on each of those, through the version stamp written at the end of a completed pass.
14//
15// Nothing in here is fatal. A machine without `git`, a `core.hooksPath` that belongs to
16// husky, a locked-down scheduler: each is reported and stepped over, because none of
17// them should stop `devp init` from registering repositories.
18
19use std::fs;
20use std::path::PathBuf;
21
22use anyhow::Result;
23
24use crate::commands::hook::{self, HookState};
25use crate::commands::skill::EMBEDDED_SKILL_MD;
26use crate::config::Registry;
27use crate::constants;
28use crate::daemon;
29use crate::output;
30
31/// File in the config directory recording the version whose last integration pass
32/// completed. A missing or older stamp is what triggers the automatic pass, so a fresh
33/// install and an upgrade both self-heal exactly once.
34const STAMP_FILE: &str = "setup-stamp";
35
36/// Environment variable that suppresses the automatic pass entirely.
37///
38/// For images, CI and anyone who wants the binary and nothing else. `devp setup` still
39/// works when it is set — this only governs the unattended pass.
40pub const ENV_NO_AUTO_SETUP: &str = "DEV_PRUNE_NO_AUTO_SETUP";
41
42/// Whether the suppression variable is set — by presence, so `=1`, `=true` and even an
43/// empty value all count.
44///
45/// The one predicate every consumer must share. The doctor note used to answer only for
46/// the literal `=1`, so a machine with `=true` had setup switched off with nothing
47/// anywhere saying so.
48pub fn no_auto_setup_requested() -> bool {
49 std::env::var_os(ENV_NO_AUTO_SETUP).is_some()
50}
51
52/// What one integration did during a pass.
53#[derive(Debug, Clone, PartialEq, Eq)]
54pub enum Outcome {
55 /// It was missing and is now in place.
56 Installed,
57 /// It was already in place and was left alone.
58 AlreadyPresent,
59 /// It could not be installed for a reason that is the user's call, not an error.
60 Skipped(String),
61 /// It failed. The pass continues; the reason is reported.
62 Failed(String),
63}
64
65/// The result of one integration pass.
66#[derive(Debug, Default)]
67pub struct SetupReport {
68 items: Vec<(&'static str, Outcome)>,
69}
70
71impl SetupReport {
72 fn push(&mut self, name: &'static str, outcome: Outcome) {
73 self.items.push((name, outcome));
74 }
75
76 /// Whether anything at all was created by this pass.
77 pub fn changed_anything(&self) -> bool {
78 self.items
79 .iter()
80 .any(|(_, o)| matches!(o, Outcome::Installed))
81 }
82
83 /// Whether anything needs the user's attention.
84 pub fn needs_attention(&self) -> bool {
85 self.items
86 .iter()
87 .any(|(_, o)| matches!(o, Outcome::Skipped(_) | Outcome::Failed(_)))
88 }
89
90 /// Print the report.
91 ///
92 /// `verbose` is for the explicit `devp setup`, where "already installed" is the
93 /// answer the user asked for. The automatic pass passes `false` and stays silent
94 /// about everything that was already fine.
95 pub fn print(&self, verbose: bool) {
96 for (name, outcome) in &self.items {
97 match outcome {
98 Outcome::Installed => output::print_success(&format!("{name}: installed.")),
99 Outcome::AlreadyPresent if verbose => {
100 output::print_info(&format!("{name}: already installed."));
101 }
102 Outcome::AlreadyPresent => {}
103 Outcome::Skipped(why) => {
104 output::print_warning(&format!("{name}: skipped — {why}"));
105 }
106 Outcome::Failed(why) => {
107 output::print_error(&format!("{name}: failed — {why}"));
108 }
109 }
110 }
111 }
112}
113
114/// Where the installers put the binary, and the one directory nothing else owns.
115///
116/// Public because it is also what the PATH step registers and what `uninstall` must
117/// take back out again.
118pub fn managed_bin_dir() -> Result<PathBuf> {
119 Ok(Registry::config_dir()?.join("bin"))
120}
121
122fn managed_exe_path() -> Result<PathBuf> {
123 let name = if cfg!(windows) {
124 "dev-prune.exe"
125 } else {
126 "dev-prune"
127 };
128 Ok(managed_bin_dir()?.join(name))
129}
130
131/// Absolute path to a copy of this binary that will still be there next week.
132///
133/// Anything that writes a path down for later — the OS scheduler, the git hooks — has to
134/// use this instead of [`std::env::current_exe`]. dev-prune ships through npm and PyPI as
135/// well as the installers, so the running executable is often somewhere a package manager
136/// owns and will delete: npm's `_npx` cache, uv's ephemeral tool environment, or
137/// `target/debug` during development. An entry recorded there breaks the moment that
138/// directory goes, and neither of these has anywhere to complain — the scheduled task
139/// fails silently every interval, and the hook discards its own output by design. The
140/// only symptom is that nothing ever happens again.
141///
142/// `<config>/bin` is where `install.sh` and `install.ps1` put the binary and nothing else
143/// deletes, so prefer the copy there. When there is none, put one there: the binary that
144/// is running right now is precisely the one that is going to be missing later.
145pub fn stable_exe_path() -> PathBuf {
146 let current = std::env::current_exe().unwrap_or_else(|_| PathBuf::from("dev-prune"));
147 let Ok(managed) = managed_exe_path() else {
148 return current;
149 };
150 if managed == current {
151 return managed;
152 }
153 if managed.is_file() {
154 refresh_managed_copy_if_stale(¤t, &managed);
155 return managed;
156 }
157
158 // Only ever clone something that is actually this CLI. `current_exe()` under `cargo
159 // test` is the test harness, and copying that into the config directory would be both
160 // wrong and slow.
161 if !is_this_cli(¤t) {
162 return current;
163 }
164
165 let Some(parent) = managed.parent() else {
166 return current;
167 };
168 if fs::create_dir_all(parent).is_err() {
169 return current;
170 }
171 // Hard link where the filesystem allows it — that also keeps the bytes alive when the
172 // package manager deletes the directory the original came from.
173 if fs::hard_link(¤t, &managed).is_ok() {
174 return managed;
175 }
176
177 // The same hazard `ensure_alias` documents, through a narrower window: the check at the
178 // top of this function saw no managed copy, but another process created one — as a hard
179 // link to `current` — before the link above ran. `fs::copy` opens its destination with
180 // O_TRUNC, and truncating a hard link empties the shared inode, so the copy would
181 // destroy the very binary it is copying.
182 if managed.is_file() {
183 return managed;
184 }
185
186 // Stage beside and rename into place. A copy straight onto the final name has a
187 // window where the file exists but is incomplete — and this path is what the
188 // scheduler and hooks get registered against, so a process killed mid-copy would
189 // leave a torn binary that every later pass happily points at.
190 let staging = managed.with_extension("new");
191 if fs::copy(¤t, &staging).is_ok() && fs::rename(&staging, &managed).is_ok() {
192 return managed;
193 }
194 let _ = fs::remove_file(&staging);
195 // The rename loses only to a concurrent invocation that installed its own copy,
196 // which serves exactly as well.
197 if managed.is_file() { managed } else { current }
198}
199
200/// Whether this path names one of the CLI's own binaries, by file stem.
201fn is_this_cli(path: &std::path::Path) -> bool {
202 path.file_stem()
203 .and_then(|s| s.to_str())
204 .is_some_and(|stem| stem == "dev-prune" || stem == "devp")
205}
206
207/// Replace the managed copy when it is an older release than the binary running now.
208///
209/// The scheduler and the hooks point at the managed copy precisely because it outlives
210/// package-manager caches — which also means an upgrade through cargo, npm or uv changes
211/// the running binary but not the one the integrations run, and the machine quietly
212/// keeps pruning with the previous version forever.
213///
214/// Staleness is decided by asking the copy its version, not by mtime or content: an
215/// *older* binary running out of a stale npx cache must not overwrite a newer managed
216/// copy, and content inequality cannot say which of the two is the upgrade. A copy that
217/// cannot state a version at all is replaced too — whatever it is, it is not a working
218/// build of this CLI.
219fn refresh_managed_copy_if_stale(current: &std::path::Path, managed: &std::path::Path) {
220 if !is_this_cli(current) || same_contents(managed, current) {
221 return;
222 }
223 match (binary_version(managed), parse_version(constants::VERSION)) {
224 (Some(theirs), Some(ours)) if theirs >= ours => return,
225 _ => {}
226 }
227 // Write beside and rename into place, so a scheduler firing mid-copy never runs a
228 // torn binary. A managed copy that is itself running cannot be renamed over on
229 // Windows; the refresh simply waits for a pass when it is not.
230 let staging = managed.with_extension("new");
231 if fs::copy(current, &staging).is_ok() && fs::rename(&staging, managed).is_err() {
232 let _ = fs::remove_file(&staging);
233 }
234}
235
236/// The `major.minor.patch` a binary reports for itself, if it can.
237fn binary_version(exe: &std::path::Path) -> Option<(u64, u64, u64)> {
238 let output = std::process::Command::new(exe)
239 .arg("--version")
240 .output()
241 .ok()?;
242 if !output.status.success() {
243 return None;
244 }
245 String::from_utf8_lossy(&output.stdout)
246 .split_whitespace()
247 .find_map(parse_version)
248}
249
250/// Parse `x.y.z` into an orderable triple. Anything else — including the pre-release
251/// and build suffixes this project never publishes — answers `None`.
252fn parse_version(text: &str) -> Option<(u64, u64, u64)> {
253 let mut parts = text.split('.');
254 let triple = (
255 parts.next()?.parse().ok()?,
256 parts.next()?.parse().ok()?,
257 parts.next()?.parse().ok()?,
258 );
259 parts.next().is_none().then_some(triple)
260}
261
262/// Keep `dev-prune` and `devp` beside each other, whichever of the two is running.
263///
264/// The pair is one binary under two names, and either one can be the survivor. An upgrade
265/// that could not replace a running `devp` leaves a stale alias; an antivirus quarantine,
266/// a half-finished uninstall or a `Remove-Item` aimed at the wrong name leaves only
267/// `devp`. So this restores *the other* name in whichever direction is missing, rather
268/// than only ever creating `devp` — running either one puts the pair back.
269pub fn ensure_alias() -> Outcome {
270 let Ok(current_exe) = std::env::current_exe() else {
271 return Outcome::Failed("could not locate the running executable".to_string());
272 };
273 let Some(parent_dir) = current_exe.parent() else {
274 return Outcome::Failed("the running executable has no parent directory".to_string());
275 };
276
277 ensure_twin_of(¤t_exe, parent_dir)
278}
279
280/// The half of [`ensure_alias`] that takes its paths as arguments, so tests can drive both
281/// directions without being the binary they are testing.
282fn ensure_twin_of(current_exe: &std::path::Path, parent_dir: &std::path::Path) -> Outcome {
283 let running_as_alias = current_exe
284 .file_stem()
285 .and_then(|s| s.to_str())
286 .is_some_and(|stem| stem == "devp");
287
288 // `dev-prune` is the canonical name, and only it may overwrite its twin.
289 //
290 // Installers write `dev-prune` first and upgrades replace it first, so it is never the
291 // older of the two — a stale `devp` is worth replacing, because otherwise it silently
292 // runs the previous version. The reverse is not safe: an upgrade that replaced
293 // `dev-prune` and then failed on a running `devp` leaves exactly the state where the
294 // alias is the *older* binary, and refreshing from there would quietly reinstall the
295 // version the user just upgraded away from. So `devp` may only create a `dev-prune`
296 // that is missing outright.
297 let (twin_name, may_refresh) = if running_as_alias {
298 (
299 if cfg!(windows) {
300 "dev-prune.exe"
301 } else {
302 "dev-prune"
303 },
304 false,
305 )
306 } else {
307 (if cfg!(windows) { "devp.exe" } else { "devp" }, true)
308 };
309 let twin_exe = parent_dir.join(twin_name);
310
311 if twin_exe.exists() {
312 if !may_refresh || same_contents(&twin_exe, current_exe) {
313 return Outcome::AlreadyPresent;
314 }
315 // Replacing a running executable fails on Windows; that is fine, the alias is
316 // simply refreshed by the next invocation that is not itself `devp`.
317 if fs::remove_file(&twin_exe).is_err() {
318 return Outcome::Skipped(format!(
319 "`{twin_name}` is in use and could not be refreshed — re-run `devp setup` \
320 from a terminal that is not running it"
321 ));
322 }
323 }
324
325 if fs::hard_link(current_exe, &twin_exe).is_ok() {
326 return Outcome::Installed;
327 }
328
329 // The copy is the fallback for filesystems without hard links — but it must never
330 // run when the alias already exists, because the reason `hard_link` usually fails is
331 // that another process created it a moment ago, as a hard link to this very
332 // executable. `fs::copy` opens its destination with O_TRUNC, and truncating a hard
333 // link truncates the shared inode: the copy would empty the running binary and then
334 // copy zero bytes from it.
335 //
336 // That is not hypothetical. It is what turned every macOS CI run red. The 28
337 // integration tests launch at once, one wins the link, the losers fall through to
338 // here, and `target/debug/dev-prune` becomes a zero-byte file. macOS `posix_spawn`
339 // answers ENOEXEC by handing the file to `/bin/sh`, so every later invocation
340 // "succeeded" with exit 0 and printed nothing — for two hours the tests looked like
341 // 27 unrelated assertion failures.
342 if twin_exe.exists() {
343 return Outcome::AlreadyPresent;
344 }
345
346 // Stage beside and rename into place: copied straight onto the final name, the
347 // alias would exist-but-be-incomplete for the length of the copy, and a `devp`
348 // typed in that window executes a torn binary.
349 let staging = twin_exe.with_extension("new");
350 if fs::copy(current_exe, &staging).is_ok() && fs::rename(&staging, &twin_exe).is_ok() {
351 return Outcome::Installed;
352 }
353 let _ = fs::remove_file(&staging);
354 if twin_exe.exists() {
355 // A concurrent invocation won the rename; its alias serves exactly as well.
356 return Outcome::AlreadyPresent;
357 }
358 Outcome::Failed(format!(
359 "could not create `{}`",
360 output::clean_path(&twin_exe)
361 ))
362}
363
364/// Sameness test for two executables, cheap in the common case.
365///
366/// A hard link makes size and mtime equal by construction, so the usual layout answers
367/// without reading either file. When only the mtime differs — the alias came from the
368/// copy fallback, which does not preserve timestamps — the bytes themselves decide,
369/// because calling that pair "different" made every single invocation delete and
370/// recreate an alias whose content never changed.
371fn same_contents(a: &std::path::Path, b: &std::path::Path) -> bool {
372 let (Ok(ma), Ok(mb)) = (fs::metadata(a), fs::metadata(b)) else {
373 return false;
374 };
375 if ma.len() != mb.len() {
376 return false;
377 }
378 if ma.modified().ok() == mb.modified().ok() {
379 return true;
380 }
381 match (fs::read(a), fs::read(b)) {
382 (Ok(ca), Ok(cb)) => ca == cb,
383 _ => false,
384 }
385}
386
387/// Path that `devp skill` and this module export `SKILL.md` to.
388pub fn skill_path() -> Result<PathBuf> {
389 Ok(Registry::config_dir()?.join("SKILL.md"))
390}
391
392/// Export the bundled `SKILL.md` so AI assistants have something to read.
393///
394/// Rewritten whenever it differs from the embedded copy, since an upgrade that changes
395/// the skill must not leave the previous version's instructions on disk.
396pub fn ensure_skill_file() -> Outcome {
397 match Registry::config_dir() {
398 Ok(dir) => ensure_skill_file_in(&dir),
399 Err(_) => Outcome::Failed("could not determine the config directory".to_string()),
400 }
401}
402
403fn ensure_skill_file_in(config_dir: &std::path::Path) -> Outcome {
404 let target = config_dir.join("SKILL.md");
405
406 if fs::read_to_string(&target).is_ok_and(|current| current == EMBEDDED_SKILL_MD) {
407 return Outcome::AlreadyPresent;
408 }
409
410 let _ = fs::create_dir_all(config_dir);
411 match fs::write(&target, EMBEDDED_SKILL_MD) {
412 Ok(()) => Outcome::Installed,
413 Err(e) => Outcome::Failed(format!(
414 "could not write {}: {e}",
415 output::clean_path(&target)
416 )),
417 }
418}
419
420/// The per-skill directories of AI coding agents that are installed under `home`.
421///
422/// Detection only — an agent's home directory is created by the agent, never by this
423/// pass. Today that is Claude Code, whose Agent Skills live at
424/// `~/.claude/skills/<name>/SKILL.md`. Assistants without an on-disk skill format get
425/// the onboarding prompt from `devp skill` instead.
426fn agent_skill_roots_under(home: &std::path::Path) -> Vec<PathBuf> {
427 let mut roots = Vec::new();
428 let claude = home.join(constants::CLAUDE_HOME_DIR);
429 if claude.is_dir() {
430 roots.push(
431 claude
432 .join(constants::AGENT_SKILLS_SUBDIR)
433 .join(constants::APP_NAME),
434 );
435 }
436 roots
437}
438
439/// The agent skill directories on this machine. Empty when no agent is installed.
440pub fn agent_skill_roots() -> Vec<PathBuf> {
441 dirs::home_dir()
442 .map(|home| agent_skill_roots_under(&home))
443 .unwrap_or_default()
444}
445
446/// Install the skill into every detected agent's skills directory.
447pub fn ensure_agent_skills() -> Outcome {
448 ensure_agent_skills_at(&agent_skill_roots())
449}
450
451fn ensure_agent_skills_at(roots: &[PathBuf]) -> Outcome {
452 if roots.is_empty() {
453 return Outcome::Skipped(
454 "no AI agent skills directory was found — `devp skill` prints import prompts instead"
455 .to_string(),
456 );
457 }
458 let mut installed = false;
459 for root in roots {
460 match ensure_skill_file_in(root) {
461 Outcome::Installed => installed = true,
462 Outcome::AlreadyPresent => {}
463 other => return other,
464 }
465 }
466 if installed {
467 Outcome::Installed
468 } else {
469 Outcome::AlreadyPresent
470 }
471}
472
473/// Make the managed pair reachable from a fresh shell.
474///
475/// This is the step that lets `pip install dev-prune` in a virtualenv survive the
476/// virtualenv: the binaries pip placed vanish with the environment, but the managed
477/// copy under `<config>/bin` does not, and after this step it is the one a new
478/// terminal finds. See [`crate::pathenv`] for what "reachable" means per platform.
479pub fn ensure_command_on_path() -> Outcome {
480 let managed = stable_exe_path();
481 let is_managed_copy =
482 managed_exe_path().is_ok_and(|expected| expected == managed) && managed.is_file();
483 if !is_managed_copy {
484 // No managed copy exists and none could be created — under `cargo test` the
485 // running executable is the harness, and cloning that would be wrong. There is
486 // nothing durable to put on PATH.
487 return Outcome::Skipped("no managed copy of the binary exists to put on PATH".to_string());
488 }
489 let Some(bin_dir) = managed.parent() else {
490 return Outcome::Failed("the managed binary has no parent directory".to_string());
491 };
492 // `devp` has to sit beside it, or the PATH entry only ever finds `dev-prune`.
493 if let Outcome::Failed(why) = ensure_twin_of(&managed, bin_dir) {
494 return Outcome::Failed(why);
495 }
496 crate::pathenv::ensure_reachable(bin_dir)
497}
498
499/// Write the icon assets and register `*.devprune.json` with the OS file manager.
500///
501/// Part of the automatic pass rather than a separate errand, because "the config file has
502/// an icon" is not a thing anybody thinks to go and ask for. Everything it writes lives
503/// under the config directory and the user's own XDG data directory, `devp uninstall`
504/// removes all of it, and it touches no editor settings, no PATH and no shell profile —
505/// so there is nothing here that needs to be asked about first.
506///
507/// Unlike the hooks and the scheduler, this has no opt-out switch of its own. Files
508/// dropped into the user's data directory are not a background process and not a change
509/// in behaviour; `auto_setup` already covers "install nothing at all".
510fn ensure_icons() -> Outcome {
511 if crate::commands::icon::is_registered() {
512 return Outcome::AlreadyPresent;
513 }
514 match crate::commands::icon::sync_app_directory() {
515 Ok(()) => Outcome::Installed,
516 Err(e) => Outcome::Failed(format!("{e:#}")),
517 }
518}
519
520/// Install the global Git hooks, unless git is absent or the slot belongs to someone else.
521///
522/// `chain` is `auto_hooks_chain`: with it on, a slot that belongs to husky is not a
523/// reason to skip, because dev-prune can install in front and forward every hook back.
524pub fn ensure_hooks(chain: bool) -> Outcome {
525 if !hook::git_available() {
526 return Outcome::Skipped(format!(
527 "\n {}",
528 hook::GIT_MISSING_HELP.replace('\n', "\n ")
529 ));
530 }
531
532 match hook::state() {
533 // "Installed" is not the question — "installed and pointing at a binary that
534 // still exists" is. A hook backgrounds itself and discards its own output, so
535 // one left pointing at a deleted npm cache dies silently on every commit and
536 // nothing ever registers again; this pass is the only thing that ever looks.
537 Ok(HookState::Active) if hook_target_is_dead() => match hook::install() {
538 Ok(()) => Outcome::Installed,
539 Err(e) => Outcome::Failed(format!("{e:#}")),
540 },
541 Ok(HookState::Active) => Outcome::AlreadyPresent,
542 // Drift is repaired here rather than reported: the setup pass already runs on
543 // install, on update and on a schedule, and a chain the user opted into is a
544 // chain they want kept current.
545 Ok(HookState::Chained { drifted, .. }) if !drifted.is_empty() => {
546 match hook::install_with(true) {
547 Ok(()) => Outcome::Installed,
548 Err(e) => Outcome::Failed(format!("{e:#}")),
549 }
550 }
551 Ok(HookState::Chained { .. }) if hook_target_is_dead() => match hook::install_with(true) {
552 Ok(()) => Outcome::Installed,
553 Err(e) => Outcome::Failed(format!("{e:#}")),
554 },
555 Ok(HookState::Chained { .. }) => Outcome::AlreadyPresent,
556 Ok(HookState::Foreign(_)) if chain => match hook::install_with(true) {
557 Ok(()) => Outcome::Installed,
558 Err(e) => Outcome::Failed(format!("{e:#}")),
559 },
560 Ok(HookState::Foreign(existing)) => Outcome::Skipped(format!(
561 "`core.hooksPath` is already set to `{existing}`, which belongs to another tool.\n \
562 Git allows only one hooks directory, so dev-prune will not take the slot.\n \
563 `devp hook install --chain` installs in front of it instead — dev-prune registers \
564 the repo, then hands every hook on to `{existing}`, and `devp hook uninstall` puts \
565 the original setting back (`devp config set auto_hooks_chain true` makes that \
566 the standing answer). Or skip it: `devp link .` does the same job by hand."
567 )),
568 Ok(HookState::Absent) => match hook::install() {
569 Ok(()) => Outcome::Installed,
570 Err(e) => Outcome::Failed(format!("{e:#}")),
571 },
572 Err(e) => Outcome::Failed(format!("{e:#}")),
573 }
574}
575
576/// Whether the installed hooks name a binary that no longer exists.
577fn hook_target_is_dead() -> bool {
578 hook::registered_exe_path().is_some_and(|exe| !exe.exists())
579}
580
581/// Install the OS scheduler if it is not already registered.
582pub fn ensure_daemon(interval_days: u64) -> Outcome {
583 match daemon::daemon_status() {
584 // A task whose binary has been deleted keeps reporting itself `Ready` and dies
585 // the instant it fires, every interval, with nowhere to complain. Re-register
586 // it against the stable path instead of counting the corpse as present.
587 Ok(daemon::DaemonStatus::Installed)
588 if daemon::registered_exe_path().is_some_and(|exe| !exe.exists()) =>
589 {
590 match daemon::install_daemon(interval_days) {
591 Ok(()) => Outcome::Installed,
592 Err(e) => Outcome::Failed(format!("{e:#}")),
593 }
594 }
595 Ok(daemon::DaemonStatus::Installed) => Outcome::AlreadyPresent,
596 Ok(daemon::DaemonStatus::NotInstalled) => match daemon::install_daemon(interval_days) {
597 Ok(()) => Outcome::Installed,
598 Err(e) => Outcome::Failed(format!("{e:#}")),
599 },
600 // `Unknown` means the query itself could not be answered — the scheduler may
601 // well be there. Installing over it would fail on every command from now on, so
602 // this reports and steps over instead of guessing. The platform backends are
603 // written to keep this case narrow: anything they can answer definitely, they do.
604 Ok(daemon::DaemonStatus::Unknown(why)) => {
605 Outcome::Skipped(format!("scheduler state could not be read — {why}"))
606 }
607 Err(e) => Outcome::Failed(format!("{e:#}")),
608 }
609}
610
611/// Whether unattended installation is permitted at all.
612///
613/// Both switches exist because these integrations write outside dev-prune's own config
614/// directory — a scheduled task, a global git setting — and there are places that must
615/// never happen unasked: container images, CI, and this project's own test suite.
616pub fn auto_setup_enabled(registry: &Registry) -> bool {
617 !no_auto_setup_requested() && registry.settings.auto_setup && unattended_environment().is_none()
618}
619
620/// The reason this looks like a machine nobody is sitting at, if it does.
621///
622/// `DEV_PRUNE_NO_AUTO_SETUP` and `auto_setup` are both switches you have to set *before*
623/// the first run — which is exactly the run that installs things, so in a container or a
624/// CI job the damage is done by the time there is anywhere to set them. Detecting the
625/// environment is the only opt-out that works on the first run, which is the only run
626/// that matters here.
627///
628/// Deliberately conservative: every signal below is one that CI providers and container
629/// runtimes set themselves, so a developer's own shell will not trip it. Someone who
630/// genuinely wants the integrations in CI can still ask in so many words with
631/// `devp setup`, which never consults this.
632pub fn unattended_environment() -> Option<&'static str> {
633 // Set by GitHub Actions, GitLab CI, CircleCI, Travis, Jenkins (via pipeline), Woodpecker
634 // and most others. `CI=true` is the closest thing this space has to a standard.
635 for var in [
636 "CI",
637 "CONTINUOUS_INTEGRATION",
638 "BUILD_NUMBER",
639 "GITHUB_ACTIONS",
640 ] {
641 if let Some(value) = std::env::var_os(var) {
642 // `CI=false` is set explicitly by some tools to mean "not CI", and honouring
643 // the word rather than the presence is what the user plainly meant.
644 let value = value.to_string_lossy();
645 if !value.is_empty() && !value.eq_ignore_ascii_case("false") {
646 return Some("this looks like a CI runner");
647 }
648 }
649 }
650
651 // Docker writes this marker into every container it builds from a Dockerfile;
652 // Podman and other OCI runtimes write the `container` variable instead.
653 #[cfg(unix)]
654 if std::path::Path::new("/.dockerenv").exists() {
655 return Some("this looks like a container");
656 }
657 if std::env::var_os("container").is_some() {
658 return Some("this looks like a container");
659 }
660
661 None
662}
663
664/// Run an integration pass unless unattended installation is switched off.
665///
666/// Every caller that the user did not name explicitly goes through this. `devp setup`
667/// calls [`ensure_integrations`] directly: asking for it in so many words is consent.
668pub fn ensure_integrations_if_enabled(registry: &Registry) -> Option<SetupReport> {
669 auto_setup_enabled(registry).then(|| ensure_integrations(registry))
670}
671
672/// Run one integration pass, installing whatever is missing.
673///
674/// The two per-integration settings (`auto_daemon`, `auto_hooks`) are honoured here, so
675/// turning one off turns it off for every future pass as well as this one.
676pub fn ensure_integrations(registry: &Registry) -> SetupReport {
677 let mut report = SetupReport::default();
678
679 report.push("dev-prune/devp pair", ensure_alias());
680 report.push("Command on PATH", ensure_command_on_path());
681 report.push("SKILL.md", ensure_skill_file());
682 // Only reported when an agent is actually installed: a machine without one would
683 // otherwise see a "skipped" warning about software it never had, on every install.
684 if !agent_skill_roots().is_empty() {
685 report.push("AI agent skills", ensure_agent_skills());
686 }
687 report.push("File icons", ensure_icons());
688
689 if registry.settings.auto_hooks {
690 report.push(
691 "Git hooks",
692 ensure_hooks(registry.settings.auto_hooks_chain),
693 );
694 } else {
695 report.push(
696 "Git hooks",
697 Outcome::Skipped("`auto_hooks` is false — enable with `devp hook install`".to_string()),
698 );
699 }
700
701 if registry.settings.auto_daemon {
702 report.push(
703 "Background scheduler",
704 ensure_daemon(registry.settings.check_interval_days),
705 );
706 } else {
707 report.push(
708 "Background scheduler",
709 Outcome::Skipped(
710 "`auto_daemon` is false — enable with `devp daemon install`".to_string(),
711 ),
712 );
713 }
714
715 report
716}
717
718// ── VS Code extension ────────────────────────────────────────────────────────
719
720/// Marker recording that the extension question was asked (or found already answered by
721/// an existing install). One file, no content: the offer is made once ever, whatever
722/// the answer was — a declined install must not be re-litigated on every upgrade.
723const VSCODE_OFFER_STAMP: &str = "vscode-ext-offered";
724
725/// A VS Code-compatible editor found on PATH.
726struct EditorCli {
727 /// The command to invoke — on Windows the `.cmd` launcher, because the entry on
728 /// PATH is a batch file, not an `.exe`, and `Command::new("code")` would miss it.
729 cli: String,
730 /// The editor's name as a person knows it, for the prompt and per-editor results.
731 label: &'static str,
732}
733
734/// Every VS Code-compatible editor on PATH, in the order listed here.
735///
736/// All of these forks keep the upstream CLI protocol (`--version`, `--list-extensions`,
737/// `--install-extension`), so one code path drives them all. What differs is the
738/// registry each one resolves an extension ID against: VS Code uses the Microsoft
739/// Marketplace, VSCodium/Windsurf/Positron/Kiro use OpenVSX, Cursor runs its own
740/// mirror. An ID install can therefore fail on a fork whose registry does not carry
741/// the extension yet — which is why the installer falls back to the `.vsix` from the
742/// GitHub release, the artifact every registry copy is built from.
743fn detect_vscode_editors() -> Vec<EditorCli> {
744 const CANDIDATES: &[(&str, &str)] = &[
745 ("code", "VS Code"),
746 ("code-insiders", "VS Code Insiders"),
747 ("codium", "VSCodium"),
748 ("codium-insiders", "VSCodium Insiders"),
749 ("cursor", "Cursor"),
750 ("windsurf", "Windsurf"),
751 ("positron", "Positron"),
752 ("kiro", "Kiro"),
753 ];
754 CANDIDATES
755 .iter()
756 .filter_map(|(name, label)| {
757 let cli = if cfg!(windows) {
758 format!("{name}.cmd")
759 } else {
760 (*name).to_string()
761 };
762 let responds = std::process::Command::new(&cli)
763 .arg("--version")
764 .stdin(std::process::Stdio::null())
765 .stdout(std::process::Stdio::null())
766 .stderr(std::process::Stdio::null())
767 .status()
768 .map(|s| s.success())
769 .unwrap_or(false);
770 responds.then_some(EditorCli { cli, label })
771 })
772 .collect()
773}
774
775fn vscode_extension_installed(cli: &str) -> bool {
776 std::process::Command::new(cli)
777 .arg("--list-extensions")
778 .stdin(std::process::Stdio::null())
779 .output()
780 .map(|out| {
781 String::from_utf8_lossy(&out.stdout).lines().any(|line| {
782 line.trim()
783 .eq_ignore_ascii_case(constants::VSCODE_EXTENSION_ID)
784 })
785 })
786 .unwrap_or(false)
787}
788
789/// Download the `.vsix` attached to the latest GitHub release into the temp directory.
790///
791/// The release asset is the source of truth for the extension — the Marketplace and
792/// OpenVSX listings are built from it — so when an editor's registry cannot resolve the
793/// ID (a fork whose registry does not carry the extension), installing the release file
794/// directly gets the same bits through a channel every fork supports. Editors update a
795/// `.vsix`-installed extension from their registry once a newer listed version appears,
796/// so this install self-heals into the normal update flow.
797fn download_release_vsix() -> Option<std::path::PathBuf> {
798 use std::time::Duration;
799
800 let fetch = |url: &str| {
801 ureq::get(url)
802 .header("User-Agent", &format!("dev-prune/{}", constants::VERSION))
803 .header("Accept", "application/vnd.github+json")
804 .config()
805 .timeout_global(Some(Duration::from_secs(30)))
806 .build()
807 .call()
808 };
809
810 let body = fetch(constants::LATEST_RELEASE_API_URL)
811 .ok()?
812 .body_mut()
813 .read_to_string()
814 .ok()?;
815 let json: serde_json::Value = serde_json::from_str(&body).ok()?;
816 let asset = json.get("assets")?.as_array()?.iter().find_map(|asset| {
817 let name = asset.get("name")?.as_str()?;
818 if !name.ends_with(".vsix") {
819 return None;
820 }
821 let url = asset.get("browser_download_url")?.as_str()?;
822 Some((name.to_string(), url.to_string()))
823 })?;
824
825 let bytes = fetch(&asset.1).ok()?.body_mut().read_to_vec().ok()?;
826 let path = std::env::temp_dir().join(&asset.0);
827 fs::write(&path, bytes).ok()?;
828 Some(path)
829}
830
831/// `<cli> --install-extension <arg>`, surfacing the editor's own output.
832fn run_install(cli: &str, arg: &str) -> bool {
833 std::process::Command::new(cli)
834 .args(["--install-extension", arg])
835 .stdin(std::process::Stdio::null())
836 .status()
837 .map(|s| s.success())
838 .unwrap_or(false)
839}
840
841/// Offer to install the editor extension, once ever, when a VS Code-family editor is
842/// present.
843///
844/// This asks rather than installs because the editor is not dev-prune's territory the
845/// way its own config directory is. Every gate below is a way of making sure a person
846/// is actually there to answer: no marker yet, not a CI runner or container, both ends
847/// of the terminal attached. When no editor is found nothing is written, so installing
848/// one later and re-running `devp setup` still gets the one offer.
849pub fn offer_vscode_extension() {
850 use std::io::{IsTerminal, Write};
851
852 let Ok(config_dir) = Registry::config_dir() else {
853 return;
854 };
855 if config_dir.join(VSCODE_OFFER_STAMP).exists() {
856 return;
857 }
858 if no_auto_setup_requested()
859 || unattended_environment().is_some()
860 || !std::io::stdin().is_terminal()
861 || !std::io::stdout().is_terminal()
862 {
863 return;
864 }
865 let editors = detect_vscode_editors();
866 if editors.is_empty() {
867 return;
868 }
869
870 let write_marker = || {
871 let _ = fs::create_dir_all(&config_dir);
872 let _ = fs::write(config_dir.join(VSCODE_OFFER_STAMP), "");
873 };
874
875 let missing: Vec<&EditorCli> = editors
876 .iter()
877 .filter(|e| !vscode_extension_installed(&e.cli))
878 .collect();
879 if missing.is_empty() {
880 write_marker();
881 return;
882 }
883
884 let names = missing
885 .iter()
886 .map(|e| e.label)
887 .collect::<Vec<_>>()
888 .join(", ");
889 println!();
890 print!(
891 "{names} detected — install the dev-prune extension? It validates .devprune.json and shows reclaimable space in the status bar. [Y/n] "
892 );
893 let _ = std::io::stdout().flush();
894 let mut answer = String::new();
895 if std::io::stdin().read_line(&mut answer).is_err() {
896 return;
897 }
898 write_marker();
899
900 if matches!(answer.trim().to_lowercase().as_str(), "n" | "no") {
901 output::print_info(&format!(
902 "Skipped. Install it any time with `{} --install-extension {}`.",
903 missing[0].cli,
904 constants::VSCODE_EXTENSION_ID
905 ));
906 return;
907 }
908
909 // Fetched at most once, shared by every editor whose registry install fails.
910 let mut release_vsix: Option<Option<std::path::PathBuf>> = None;
911 for editor in &missing {
912 // The editor's own registry first: that install is the one the editor keeps
913 // up to date by itself.
914 if run_install(&editor.cli, constants::VSCODE_EXTENSION_ID) {
915 output::print_success(&format!("{}: extension installed.", editor.label));
916 continue;
917 }
918 // A fork whose registry does not carry the extension — install the `.vsix`
919 // from the GitHub release instead.
920 let vsix = release_vsix.get_or_insert_with(download_release_vsix);
921 match vsix {
922 Some(path) if run_install(&editor.cli, &path.to_string_lossy()) => {
923 output::print_success(&format!(
924 "{}: extension installed from the GitHub release .vsix.",
925 editor.label
926 ));
927 }
928 _ => {
929 output::print_warning(&format!(
930 "{}: could not install it from here. Search the Extensions view for \"dev-prune\", or run `{} --install-extension {}` yourself.",
931 editor.label,
932 editor.cli,
933 constants::VSCODE_EXTENSION_ID
934 ));
935 }
936 }
937 }
938}
939
940/// Record that a pass completed for this version.
941fn write_stamp_in(config_dir: &std::path::Path) {
942 let _ = fs::create_dir_all(config_dir);
943 let _ = fs::write(config_dir.join(STAMP_FILE), constants::VERSION);
944}
945
946fn write_stamp() {
947 if let Ok(dir) = Registry::config_dir() {
948 write_stamp_in(&dir);
949 }
950}
951
952fn setup_is_due_in(config_dir: &std::path::Path) -> bool {
953 !fs::read_to_string(config_dir.join(STAMP_FILE))
954 .is_ok_and(|stamp| stamp.trim() == constants::VERSION)
955}
956
957/// Whether the unattended pass is due: a fresh install, or the first run after an upgrade.
958pub fn setup_is_due() -> bool {
959 Registry::config_dir()
960 .map(|dir| setup_is_due_in(&dir))
961 .unwrap_or(false)
962}
963
964/// The unattended pass, run at most once per installed version.
965///
966/// Called at the top of every command that a human typed. It is deliberately not called
967/// for the Git hook's `link --quiet` or the scheduler's `run --daemon`: those run without
968/// a terminal, and an integration pass that nobody can see is one nobody can refuse.
969pub fn auto_setup_if_due() {
970 if !setup_is_due() {
971 first_run_config_review();
972 return;
973 }
974
975 let Ok(registry) = Registry::load() else {
976 return;
977 };
978 let Some(report) = ensure_integrations_if_enabled(®istry) else {
979 // Suppressed. Stamp anyway, so a machine that opted out does not re-decide
980 // this on every single command.
981 write_stamp();
982 crate::commands::config::skip_config_review();
983 return;
984 };
985 if report.changed_anything() || report.needs_attention() {
986 output::print_header("dev-prune setup");
987 report.print(false);
988 if report.changed_anything() {
989 output::print_info(
990 "Run `devp setup --status` to review these, or `devp uninstall` to remove them.",
991 );
992 }
993 println!();
994 }
995 write_stamp();
996 first_run_config_review();
997}
998
999/// Put the defaults in front of the user, once, on a fresh install.
1000///
1001/// Separate from the integration stamp on purpose. The integrations are re-checked after
1002/// every upgrade; the settings are not — being asked to reconfirm `idle_days` on each new
1003/// version would be a nuisance, and the marker only disappears when the config directory
1004/// does.
1005///
1006/// Every condition here is a way of asking "is there a person reading this?", because the
1007/// alternative to asking is a prompt written into a log nobody will read, on a run that
1008/// then blocks forever waiting for an answer.
1009fn first_run_config_review() {
1010 if !crate::commands::config::config_review_is_due() {
1011 return;
1012 }
1013
1014 use std::io::IsTerminal;
1015 if unattended_environment().is_some()
1016 || !std::io::stdin().is_terminal()
1017 || !std::io::stdout().is_terminal()
1018 {
1019 crate::commands::config::skip_config_review();
1020 return;
1021 }
1022
1023 // Any error here is the wizard's own reporting; the command the user actually typed
1024 // still runs. A failed walkthrough must not become a failed `devp status`.
1025 if let Err(e) = crate::commands::config::run_wizard() {
1026 output::print_warning(&format!("Could not run the first-run setup ({e:#})."));
1027 crate::commands::config::skip_config_review();
1028 }
1029 // Same first run, same person already answering questions — the one moment the
1030 // extension offer is a courtesy rather than an interruption.
1031 offer_vscode_extension();
1032 println!();
1033}
1034
1035/// Invalidate the stamp so the next human-run command performs a pass.
1036///
1037/// `uninstall` calls this in reverse — it writes the current stamp — so that removing the
1038/// integrations is not immediately undone by the next command.
1039pub fn suppress_next_auto_setup() {
1040 write_stamp();
1041}
1042
1043#[cfg(test)]
1044mod tests {
1045 use super::*;
1046
1047 #[test]
1048 fn a_report_with_only_present_items_is_silent() {
1049 let mut report = SetupReport::default();
1050 report.push("a", Outcome::AlreadyPresent);
1051 assert!(!report.changed_anything());
1052 assert!(!report.needs_attention());
1053 }
1054
1055 #[test]
1056 fn skipped_and_failed_both_ask_for_attention() {
1057 let mut skipped = SetupReport::default();
1058 skipped.push("a", Outcome::Skipped("no git".into()));
1059 assert!(skipped.needs_attention());
1060 assert!(!skipped.changed_anything());
1061
1062 let mut failed = SetupReport::default();
1063 failed.push("a", Outcome::Failed("boom".into()));
1064 assert!(failed.needs_attention());
1065 }
1066
1067 #[test]
1068 fn an_install_counts_as_a_change() {
1069 let mut report = SetupReport::default();
1070 report.push("a", Outcome::Installed);
1071 assert!(report.changed_anything());
1072 }
1073
1074 #[test]
1075 fn the_skill_export_lands_in_the_config_directory() {
1076 let dir = tempfile::TempDir::new().unwrap();
1077 assert_eq!(ensure_skill_file_in(dir.path()), Outcome::Installed);
1078 // A second pass finds byte-identical content and leaves it alone.
1079 assert_eq!(ensure_skill_file_in(dir.path()), Outcome::AlreadyPresent);
1080 let written = fs::read_to_string(dir.path().join("SKILL.md")).unwrap();
1081 assert_eq!(written, EMBEDDED_SKILL_MD);
1082 }
1083
1084 #[test]
1085 fn a_stale_skill_export_is_rewritten() {
1086 // An upgrade must not leave the previous version's instructions on disk.
1087 let dir = tempfile::TempDir::new().unwrap();
1088 fs::write(dir.path().join("SKILL.md"), "# an older version").unwrap();
1089 assert_eq!(ensure_skill_file_in(dir.path()), Outcome::Installed);
1090 let written = fs::read_to_string(dir.path().join("SKILL.md")).unwrap();
1091 assert_eq!(written, EMBEDDED_SKILL_MD);
1092 }
1093
1094 #[test]
1095 fn agent_skills_install_only_into_agent_homes_that_exist() {
1096 let home = tempfile::TempDir::new().unwrap();
1097 assert!(
1098 agent_skill_roots_under(home.path()).is_empty(),
1099 "a machine without an agent must detect nothing"
1100 );
1101
1102 fs::create_dir_all(home.path().join(constants::CLAUDE_HOME_DIR)).unwrap();
1103 let roots = agent_skill_roots_under(home.path());
1104 assert_eq!(roots.len(), 1);
1105
1106 assert_eq!(ensure_agent_skills_at(&roots), Outcome::Installed);
1107 let installed = home
1108 .path()
1109 .join(constants::CLAUDE_HOME_DIR)
1110 .join(constants::AGENT_SKILLS_SUBDIR)
1111 .join(constants::APP_NAME)
1112 .join("SKILL.md");
1113 assert_eq!(fs::read_to_string(&installed).unwrap(), EMBEDDED_SKILL_MD);
1114
1115 // A second pass finds it current and leaves it alone.
1116 assert_eq!(ensure_agent_skills_at(&roots), Outcome::AlreadyPresent);
1117 }
1118
1119 #[test]
1120 fn no_detected_agent_is_a_skip_not_a_failure() {
1121 assert!(matches!(ensure_agent_skills_at(&[]), Outcome::Skipped(_)));
1122 }
1123
1124 #[test]
1125 fn the_stamp_gates_the_unattended_pass() {
1126 let dir = tempfile::TempDir::new().unwrap();
1127 assert!(setup_is_due_in(dir.path()), "a fresh install is due");
1128 write_stamp_in(dir.path());
1129 assert!(
1130 !setup_is_due_in(dir.path()),
1131 "the same version is not due twice"
1132 );
1133 fs::write(dir.path().join(STAMP_FILE), "0.0.1").unwrap();
1134 assert!(setup_is_due_in(dir.path()), "an upgrade is due again");
1135 }
1136
1137 /// The alias must never be written with a copy while it already exists.
1138 ///
1139 /// A hard link and its target share one inode, so `fs::copy` onto the alias empties
1140 /// the binary it was copied from. This reproduces the exact shape of that bug — link
1141 /// first, then ask for the alias again — and asserts the original still has its
1142 /// bytes. The real failure was silent: a zero-byte executable that macOS runs
1143 /// through `/bin/sh`, which exits 0 and prints nothing.
1144 #[test]
1145 fn refreshing_an_alias_that_is_a_hard_link_does_not_empty_the_binary() {
1146 let dir = tempfile::TempDir::new().unwrap();
1147 let binary = dir.path().join("dev-prune");
1148 let alias = dir.path().join("devp");
1149 fs::write(&binary, vec![b'M'; 4096]).unwrap();
1150
1151 if fs::hard_link(&binary, &alias).is_err() {
1152 return; // Filesystem without hard links; the hazard cannot arise.
1153 }
1154
1155 // What `ensure_alias` does when its `hard_link` loses the race: the alias is
1156 // already there, so it must stop rather than fall through to the copy.
1157 assert!(fs::hard_link(&binary, &alias).is_err(), "EEXIST expected");
1158 assert!(alias.exists(), "the guard's condition");
1159
1160 assert_eq!(
1161 fs::metadata(&binary).unwrap().len(),
1162 4096,
1163 "the running binary was truncated by refreshing its own alias"
1164 );
1165 }
1166
1167 /// The on-disk file name for one of the pair, on this platform.
1168 fn exe_name(stem: &str) -> String {
1169 if cfg!(windows) {
1170 format!("{stem}.exe")
1171 } else {
1172 stem.to_string()
1173 }
1174 }
1175
1176 #[test]
1177 fn dev_prune_creates_devp_beside_it() {
1178 let dir = tempfile::TempDir::new().unwrap();
1179 let canonical = dir.path().join(exe_name("dev-prune"));
1180 fs::write(&canonical, "the binary").unwrap();
1181
1182 assert_eq!(ensure_twin_of(&canonical, dir.path()), Outcome::Installed);
1183 let alias = dir.path().join(exe_name("devp"));
1184 assert!(alias.is_file(), "`devp` was not created");
1185 assert_eq!(fs::read_to_string(&alias).unwrap(), "the binary");
1186 }
1187
1188 /// The pair has to be recoverable from either side.
1189 ///
1190 /// Deleting `dev-prune` and leaving `devp` is not hypothetical: an antivirus
1191 /// quarantine, a half-finished uninstall, or a `Remove-Item` aimed at one name all
1192 /// produce it. Before this, `devp setup` reported the alias already present and did
1193 /// nothing, because the only direction it knew how to repair was the other one.
1194 #[test]
1195 fn devp_restores_a_missing_dev_prune() {
1196 let dir = tempfile::TempDir::new().unwrap();
1197 let alias = dir.path().join(exe_name("devp"));
1198 fs::write(&alias, "the binary").unwrap();
1199
1200 assert_eq!(ensure_twin_of(&alias, dir.path()), Outcome::Installed);
1201 let canonical = dir.path().join(exe_name("dev-prune"));
1202 assert!(canonical.is_file(), "`dev-prune` was not put back");
1203 assert_eq!(fs::read_to_string(&canonical).unwrap(), "the binary");
1204 }
1205
1206 /// `devp` may create `dev-prune`, never overwrite it.
1207 ///
1208 /// Repairing in both directions opens a downgrade: an upgrade replaces `dev-prune`
1209 /// first and can then fail on a `devp` that is running, which leaves the alias holding
1210 /// the *older* binary. If the alias were allowed to refresh its twin from there, the
1211 /// next `devp setup` would quietly reinstall the version the user just upgraded away
1212 /// from — and report it as a repair.
1213 #[test]
1214 fn devp_does_not_overwrite_an_existing_dev_prune() {
1215 let dir = tempfile::TempDir::new().unwrap();
1216 let alias = dir.path().join(exe_name("devp"));
1217 let canonical = dir.path().join(exe_name("dev-prune"));
1218 fs::write(&alias, "the previous version").unwrap();
1219 fs::write(&canonical, "the version just upgraded to").unwrap();
1220
1221 assert_eq!(
1222 ensure_twin_of(&alias, dir.path()),
1223 Outcome::AlreadyPresent,
1224 "`devp` must leave an existing `dev-prune` alone"
1225 );
1226 assert_eq!(
1227 fs::read_to_string(&canonical).unwrap(),
1228 "the version just upgraded to",
1229 "`devp` downgraded the binary it was supposed to leave alone"
1230 );
1231 }
1232
1233 #[test]
1234 fn versions_parse_strictly_or_not_at_all() {
1235 assert_eq!(parse_version("1.2.3"), Some((1, 2, 3)));
1236 assert_eq!(parse_version("10.0.0"), Some((10, 0, 0)));
1237 // Anything this project does not publish must answer None, because a None
1238 // means "replace the copy" and a mis-parse would order versions wrongly.
1239 assert_eq!(parse_version("1.2"), None);
1240 assert_eq!(parse_version("1.2.3.4"), None);
1241 assert_eq!(parse_version("1.2.3-rc1"), None);
1242 assert_eq!(parse_version("dev-prune"), None);
1243 // The version this binary was built with has to be parseable, or the refresh
1244 // logic can never decide anything.
1245 assert!(parse_version(constants::VERSION).is_some());
1246 }
1247
1248 #[test]
1249 fn ordering_of_version_triples_matches_semver() {
1250 assert!(parse_version("1.1.0") > parse_version("1.0.9"));
1251 assert!(parse_version("2.0.0") > parse_version("1.99.99"));
1252 assert!(parse_version("1.0.10") > parse_version("1.0.9"));
1253 }
1254
1255 #[test]
1256 fn the_exported_skill_is_the_one_the_binary_was_built_with() {
1257 // `SKILL.md` is embedded, so a doc edit ships only if the binary is rebuilt.
1258 // Guard the two properties every consumer of it depends on.
1259 assert!(EMBEDDED_SKILL_MD.starts_with("---"), "needs frontmatter");
1260 assert!(
1261 !EMBEDDED_SKILL_MD.contains("file:///"),
1262 "SKILL.md is written to every user's machine — it must not contain \
1263 absolute paths from the author's checkout"
1264 );
1265 }
1266}