//! Agent's own Linux computer (Grok Bot box), Docker-backed. //! User-facing name is always "my computer". Viewer is noVNC on 127.0.0.1:6080. use crate::computer::{ settle_before, steps_for, validate_bounds, ComputerAction, ComputerStep, ScreenSize, }; use anyhow::{anyhow, Context, Result}; use serde_json::{json, Value}; use std::path::{Path, PathBuf}; use std::process::Stdio; use std::sync::Arc; use std::time::Duration; use tokio::process::Command; use tokio::sync::Mutex; const IMAGE: &str = "grokboy-box:local"; const CONTAINER: &str = "grokboy-box"; const VIEWER_PORT: u16 = 6080; const BOX_REVISION: &str = "computer-use-2"; const BROWSER_PROFILE: &str = "/home/box/chrome-profile"; /// Per-stream cap on shell output returned to the model; the middle is elided. const JOB_OUTPUT_HEAD_CHARS: usize = 16_000; const JOB_OUTPUT_TAIL_CHARS: usize = 32_000; pub struct BoxHub { inner: Mutex, } struct BoxState { ready: bool, } impl BoxHub { pub fn new() -> Arc { Arc::new(Self { inner: Mutex::new(BoxState { ready: false }), }) } pub fn viewer_url() -> String { format!("http://127.0.0.1:{VIEWER_PORT}/vnc.html?autoconnect=true&resize=scale") } pub async fn ensure_ready(&self) -> Result { let mut state = self.inner.lock().await; if state.ready && docker_running(CONTAINER).await? { // One cheap probe on the hot path; only a restarted container pays // for the full readiness wait. if !desktop_up().await { wait_desktop().await?; } return Ok(json!({ "ready": true, "viewer_url": Self::viewer_url(), "browser_surface": "docker", "workspace": "/workspace", "browser_profile": BROWSER_PROFILE, })); } docker_info().await?; // Several processes (CLI, browser helper spawn, tests) each own a // BoxHub. Without a host-wide lock they build the image twice and // race each other removing the stale container. let _provision = ProvisionLock::acquire().await?; ensure_image().await?; ensure_container().await?; wait_desktop().await?; state.ready = true; Ok(json!({ "ready": true, "viewer_url": Self::viewer_url(), "browser_surface": "docker", "workspace": "/workspace", "browser_profile": BROWSER_PROFILE, "instruction": "This is my computer. Paths here are /workspace and /home/box, not the user's machine.", })) } pub async fn ensure_browser_ready(&self) -> Result<()> { self.ensure_ready().await?; let probe = ["python3", "-c", "import urllib.request; urllib.request.urlopen('http://127.0.0.1:9222/json/version', timeout=1).close()"]; if docker_exec(&probe).await?.status == 0 { return Ok(()); } // The desktop autostart may already be launching Chromium; a second // launcher would race it for the profile. box-chrome serialises // launches, but skipping the launch entirely is cheaper. let already_launching = docker_exec(&[ "pgrep", "-f", "--", &format!("--user-data-dir={BROWSER_PROFILE}"), ]).await?.status == 0; if !already_launching { docker_exec(&["bash", "-lc", "nohup box-chrome /tmp/grokboy-browser.log 2>&1 &"]).await?; } for _ in 0..80 { if docker_exec(&probe).await?.status == 0 { return Ok(()); } tokio::time::sleep(Duration::from_millis(250)).await; } Err(anyhow!("Box Chromium did not start. Inspect /tmp/grokboy-browser.log on the box; no local browser was opened.")) } pub async fn shell(&self, cmd: &str, block_until_ms: u64) -> Result { self.ensure_ready().await?; let id = uuid::Uuid::new_v4().to_string(); // All commands run detached in the box. A foreground wait expiring must // never kill an install or silently move it onto the user's computer. // The exit file is renamed into place so a poller never sees it empty. docker_exec(&["bash", "-lc", &format!( "mkdir -p /tmp/gb-jobs/{id} && {{ nohup bash -lc {q} /tmp/gb-jobs/{id}/stdout 2>/tmp/gb-jobs/{id}/stderr & }}", q = shell_quote(&format!( "cd /workspace && bash -lc {}; code=$?; printf '%s\\n' \"$code\" >/tmp/gb-jobs/{id}/exit.tmp && mv -f /tmp/gb-jobs/{id}/exit.tmp /tmp/gb-jobs/{id}/exit", shell_quote(cmd) )) )]).await?; self.wait_job(&id, block_until_ms).await } async fn wait_job(&self, id: &str, block_until_ms: u64) -> Result { let deadline = tokio::time::Instant::now() + Duration::from_millis(block_until_ms.min(30_000)); loop { let mut status = self.read_job_status(id).await?; status["session_id"] = json!(id); status["surface"] = json!("box"); if status["running"] != true || tokio::time::Instant::now() >= deadline { if status["running"] == true { status["instruction"] = json!("Still running on my computer. Use await_shell with this session_id when the result is needed. Do not rerun the command locally."); } return Ok(status); } tokio::time::sleep(Duration::from_millis(200)).await; } } pub async fn await_job(&self, session_id: &str) -> Result { self.ensure_ready().await?; validate_job_id(session_id)?; self.wait_job(session_id, 30_000).await } async fn read_job_status(&self, session_id: &str) -> Result { validate_job_id(session_id)?; let py = r#" import json, pathlib, sys root = pathlib.Path('/tmp/gb-jobs') / sys.argv[1] head, tail = int(sys.argv[2]), int(sys.argv[3]) def stream(name): p = root / name if not p.exists(): return '', False text = p.read_text(errors='replace') if len(text) <= head + tail: return text, False dropped = len(text) - head - tail return text[:head] + f'\n... [{dropped} chars elided] ...\n' + text[-tail:], True if not root.exists(): print(json.dumps({'error': 'unknown session'})) else: exitp = root / 'exit' raw = exitp.read_text(errors='replace').strip() if exitp.exists() else '' code = int(raw) if raw.lstrip('-').isdigit() else None out, out_cut = stream('stdout') err, err_cut = stream('stderr') status = {'running': code is None, 'exit_code': code, 'stdout': out, 'stderr': err} if out_cut or err_cut: status['truncated'] = True status['full_output'] = {'stdout': str(root / 'stdout'), 'stderr': str(root / 'stderr')} print(json.dumps(status)) "#; let out = docker_exec(&[ "python3", "-c", py, session_id, &JOB_OUTPUT_HEAD_CHARS.to_string(), &JOB_OUTPUT_TAIL_CHARS.to_string(), ]) .await?; if out.status != 0 { return Err(anyhow!("box job status failed: {}", out.stderr.trim())); } serde_json::from_str(out.stdout.trim()).context("parse box_await json") } pub async fn read(&self, path: &str, offset: Option, limit: Option) -> Result { self.ensure_ready().await?; let path = resolve_box_path(path)?; let offset = offset.unwrap_or(1); let limit = limit.unwrap_or(400); let py = format!( r#" import json, pathlib, sys p = pathlib.Path(sys.argv[1]) lines = p.read_text(errors='replace').splitlines() start = max({offset}-1, 0) chunk = lines[start:start+{limit}] print(json.dumps({{'path': str(p), 'offset': start+1, 'lines': len(lines), 'content': chr(10).join(chunk)}})) "# ); let out = docker_exec(&["python3", "-c", &py, &path]).await?; if out.status != 0 { return Err(anyhow!(out.stderr.trim().to_string())); } serde_json::from_str(out.stdout.trim()).context("parse box_read") } pub async fn copy_to_box(&self, host_path: &Path, box_path: Option<&str>) -> Result { self.ensure_ready().await?; if !host_path.is_file() { return Err(anyhow!("source is not a file: {}", host_path.display())); } let dest = match box_path { Some(p) => resolve_box_path(p)?, None => format!( "/workspace/uploads/{}", host_path .file_name() .and_then(|s| s.to_str()) .unwrap_or("file") ), }; docker(["exec", CONTAINER, "mkdir", "-p", parent_dir(&dest)]).await?; docker([ "cp", &host_path.to_string_lossy(), &format!("{CONTAINER}:{dest}"), ]) .await?; Ok(json!({"box_path": dest, "bytes": std::fs::metadata(host_path)?.len()})) } pub async fn copy_from_box(&self, box_path: &str, host_path: &Path) -> Result { self.ensure_ready().await?; let src = resolve_box_path(box_path)?; if let Some(parent) = host_path.parent() { std::fs::create_dir_all(parent)?; } docker([ "cp", &format!("{CONTAINER}:{src}"), &host_path.to_string_lossy(), ]) .await?; let is_dir = host_path.is_dir(); Ok(json!({ "computer_path": host_path, "is_dir": is_dir, "bytes": if is_dir { dir_size(host_path) } else { std::fs::metadata(host_path).map(|m| m.len()).unwrap_or(0) }, })) } pub async fn screenshot(&self, dest: &Path) -> Result { self.ensure_ready().await?; let shot = ShotFile::new(); self.capture_root_png(&shot).await?; shot.fetch(dest).await?; Ok(json!({ "path": dest, "viewer_url": Self::viewer_url(), })) } pub async fn computer(&self, actions: &[ComputerAction], dest: &Path) -> Result { self.ensure_ready().await?; let screen = self.display_geometry().await?; validate_bounds(actions, screen)?; let names: Vec<&str> = actions.iter().map(ComputerAction::name).collect(); let shot = ShotFile::new(); for (index, action) in actions.iter().enumerate() { let settle = settle_before(actions, index); if settle > 0 { tokio::time::sleep(Duration::from_millis(u64::from(settle))).await; } self.run_computer_action(action, &shot).await?; } if !actions.iter().any(ComputerAction::is_screenshot) { self.capture_root_png(&shot).await?; } shot.fetch(dest).await?; let cursor = self.cursor_position().await.ok(); Ok(json!({ "ok": true, "actions": names, "path": dest, "viewer_url": Self::viewer_url(), "cursor_position": cursor, "screen": {"width": screen.width, "height": screen.height}, "instruction": "Computer action ran on my computer. Read this screenshot before the next action. A batched then sequence returns only this final screen." })) } async fn run_computer_action(&self, action: &ComputerAction, shot: &ShotFile) -> Result<()> { for step in steps_for(action)? { match step { ComputerStep::Screenshot => self.capture_root_png(shot).await?, ComputerStep::SleepMs(0) => {} ComputerStep::SleepMs(ms) => { let secs = format!("{:.3}", f64::from(ms) / 1000.0); let out = docker_exec(&[ "python3", "-c", "import sys,time; time.sleep(float(sys.argv[1]))", &secs, ]) .await?; if out.status != 0 { return Err(anyhow!("computer wait failed: {}", out.stderr.trim())); } } ComputerStep::Xdotool(args) => { let mut argv: Vec<&str> = vec!["xdotool"]; argv.extend(args.iter().map(String::as_str)); let out = docker_exec_env(&[("DISPLAY", ":1")], &argv).await?; if out.status != 0 { let detail = out.stderr.trim(); if detail.contains("xdotool") && detail.contains("not found") { return Err(anyhow!( "My computer image is missing xdotool. Rebuild the box image and retry." )); } return Err(anyhow!( "computer {} failed: {}", action.name(), if detail.is_empty() { out.stdout.trim() } else { detail } )); } } } } Ok(()) } async fn display_geometry(&self) -> Result { let out = docker_exec_env(&[("DISPLAY", ":1")], &["xdotool", "getdisplaygeometry"]).await?; if out.status == 0 { if let Ok(size) = ScreenSize::parse(&out.stdout) { return Ok(size); } } let info = docker_exec(&["bash", "-lc", "xdpyinfo -display :1 | awk '/dimensions:/{print $2}'"]).await?; let raw = info.stdout.trim().replace('x', " "); ScreenSize::parse(&raw).map_err(|e| { anyhow!("could not read my computer's display size ({e}). Is the desktop up?") }) } async fn cursor_position(&self) -> Result { let out = docker_exec_env(&[("DISPLAY", ":1")], &["xdotool", "getmouselocation", "--shell"]).await?; if out.status != 0 { return Err(anyhow!(out.stderr.trim().to_string())); } let mut x = 0i32; let mut y = 0i32; for line in out.stdout.lines() { if let Some(v) = line.strip_prefix("X=") { x = v.trim().parse().unwrap_or(0); } if let Some(v) = line.strip_prefix("Y=") { y = v.trim().parse().unwrap_or(0); } } Ok(json!({"x": x, "y": y})) } async fn capture_root_png(&self, shot: &ShotFile) -> Result<()> { let out = docker_exec(&[ "import", "-display", ":1", "-window", "root", &shot.box_path, ]) .await?; if out.status != 0 { return Err(anyhow!( "Could not capture my computer's screen (desktop not up yet). {}", out.stderr.trim() )); } Ok(()) } } /// A per-call screenshot file on the box. Concurrent callers (a parent /// checking in on a computerUse child) must never read each other's frame. struct ShotFile { box_path: String, } impl ShotFile { fn new() -> Self { Self { box_path: format!("/tmp/grokboy-shot-{}.png", uuid::Uuid::new_v4()), } } async fn fetch(&self, dest: &Path) -> Result<()> { if let Some(parent) = dest.parent() { std::fs::create_dir_all(parent)?; } let copied = docker([ "cp", &format!("{CONTAINER}:{}", self.box_path), &dest.to_string_lossy(), ]) .await; let _ = docker_exec(&["rm", "-f", &self.box_path]).await; copied.map(|_| ()) } } /// Host-wide advisory lock held while the image/container are provisioned. /// Released when dropped (the fd closes). struct ProvisionLock { _file: std::fs::File, } impl ProvisionLock { async fn acquire() -> Result { let path = std::env::temp_dir().join("grokboy-box-provision.lock"); let file = tokio::task::spawn_blocking(move || -> Result { let file = std::fs::OpenOptions::new() .create(true) .truncate(false) .write(true) .open(&path) .with_context(|| format!("open {}", path.display()))?; #[cfg(unix)] { use std::os::fd::AsRawFd; if unsafe { libc::flock(file.as_raw_fd(), libc::LOCK_EX) } != 0 { return Err(std::io::Error::last_os_error()) .context("lock box provisioning"); } } Ok(file) }) .await .context("box provisioning lock task")??; Ok(Self { _file: file }) } } fn dir_size(path: &Path) -> u64 { let Ok(entries) = std::fs::read_dir(path) else { return 0; }; entries .flatten() .map(|entry| { let path = entry.path(); if path.is_dir() { dir_size(&path) } else { std::fs::metadata(&path).map(|m| m.len()).unwrap_or(0) } }) .sum() } pub fn resolve_box_path(path: &str) -> Result { let path = path.trim(); if path.is_empty() { return Err(anyhow!("box path is empty")); } let abs = if path.starts_with('/') { path.to_string() } else { format!("/workspace/{path}") }; // Normalise by component so `a//b` and `./x` are accepted while only a // real `..` segment (not a name like `report..final.txt`) is rejected. let mut parts: Vec<&str> = Vec::new(); for part in abs.split('/') { match part { "" | "." => {} ".." => return Err(anyhow!("box path must not contain ..")), other => parts.push(other), } } let clean = format!("/{}", parts.join("/")); let allowed = ["/workspace", "/home/box", "/tmp/gb-jobs"]; if !allowed .iter() .any(|root| clean == *root || clean.starts_with(&format!("{root}/"))) { return Err(anyhow!( "box paths must be under /workspace or /home/box (got {clean}). This is my computer, not the user's." )); } Ok(clean) } fn parent_dir(path: &str) -> &str { path.rsplit_once('/') .map(|(p, _)| if p.is_empty() { "/" } else { p }) .unwrap_or("/workspace") } fn shell_quote(s: &str) -> String { format!("'{}'", s.replace('\'', r#"'"'"'"#)) } fn validate_job_id(id: &str) -> Result<()> { if id.chars().all(|c| c.is_ascii_hexdigit() || c == '-') && (8..80).contains(&id.len()) { Ok(()) } else { Err(anyhow!("invalid session_id")) } } fn box_context_dir() -> PathBuf { if let Some(dir) = std::env::var_os("GROKBOY_BOX_DIR").filter(|s| !s.is_empty()) { return PathBuf::from(dir); } PathBuf::from(env!("CARGO_MANIFEST_DIR")) .join("../..") .join("box") } async fn docker_info() -> Result<()> { if docker(["info"]).await.is_err() { return Err(anyhow!( "My computer needs Docker. Start Docker Desktop (or the docker daemon) and try again. I will not run this on your computer." )); } Ok(()) } async fn image_revision() -> Option { docker([ "inspect", "-f", "{{index .Config.Labels \"grokboy.box.revision\"}}", IMAGE, ]) .await .ok() .map(|out| out.stdout.trim().to_string()) .filter(|s| !s.is_empty() && s != "") } async fn ensure_image() -> Result<()> { if image_revision().await.as_deref() == Some(BOX_REVISION) { return Ok(()); } let ctx = box_context_dir(); if !ctx.join("Dockerfile").is_file() { return Err(anyhow!( "Box image {IMAGE} is missing and Dockerfile was not found at {}", ctx.display() )); } // Stage the helper in the build context; never mount the user's workspace. let helper_dir = ctx.join("playwright"); tokio::fs::create_dir_all(&helper_dir).await?; for file in ["package.json", "browser_helper.mjs"] { let src = ctx.join("../tools/playwright").join(file); tokio::fs::copy(&src, helper_dir.join(file)) .await .with_context(|| format!("stage browser helper {}", src.display()))?; } eprintln!( "box: building image {IMAGE} (revision {BOX_REVISION}) from {}; this can take several minutes on first run", ctx.display() ); let started = std::time::Instant::now(); docker(["build", "-t", IMAGE, &ctx.to_string_lossy()]).await?; eprintln!("box: image {IMAGE} ready in {:?}", started.elapsed()); Ok(()) } async fn container_image_id() -> Option { docker(["inspect", "-f", "{{.Image}}", CONTAINER]) .await .ok() .map(|out| out.stdout.trim().to_string()) .filter(|s| !s.is_empty()) } async fn local_image_id() -> Option { docker(["inspect", "-f", "{{.Id}}", IMAGE]) .await .ok() .map(|out| out.stdout.trim().to_string()) .filter(|s| !s.is_empty()) } async fn ensure_container() -> Result<()> { if docker_running(CONTAINER).await? && container_image_id().await == local_image_id().await { return Ok(()); } if docker(["container", "inspect", CONTAINER]).await.is_ok() && container_image_id().await != local_image_id().await { remove_stale_container().await?; } if docker_running(CONTAINER).await? { return Ok(()); } // The container name is Docker's cross-process creation lock. Losing a // create race must reuse the winner, never remove its container. let created = docker([ "create", "--name", CONTAINER, "--shm-size=2g", "-p", &format!("127.0.0.1:{VIEWER_PORT}:6080"), "--stop-timeout=20", "-v", "grokboy-box-workspace:/workspace", "-v", "grokboy-box-home:/home/box", IMAGE, ]) .await; if let Err(error) = created { // Docker reserves the name before inspect can see the new container. let mut visible = false; for _ in 0..50 { if docker(["container", "inspect", CONTAINER]).await.is_ok() { visible = true; break; } tokio::time::sleep(Duration::from_millis(100)).await; } if !visible { return Err(error); } } // Starting an existing container also preserves its writable layer. docker(["start", CONTAINER]).await?; Ok(()) } /// X server, window manager, VNC and noVNC all answering. The WM check /// matters: xdotool against a bare Xvfb has no focus or window stacking. const DESKTOP_PROBE: &str = "xdpyinfo -display :1 >/dev/null 2>&1 \ && xprop -display :1 -root _NET_SUPPORTING_WM_CHECK 2>/dev/null | grep -q 'window id' \ && python3 -c 'import urllib.request, socket; urllib.request.urlopen(\"http://127.0.0.1:6080/vnc.html\", timeout=1).close(); socket.create_connection((\"127.0.0.1\", 5900), timeout=1).close()'"; async fn desktop_up() -> bool { docker_exec(&["bash", "-c", DESKTOP_PROBE]) .await .map(|o| o.status == 0) .unwrap_or(false) } /// Stop and remove the container built from an older image. Another process /// (outside our provisioning lock, e.g. an older binary) may be doing the /// same; "already in progress" or "no such container" both mean it is gone. async fn remove_stale_container() -> Result<()> { if docker_running(CONTAINER).await? { if let Err(error) = docker(["stop", "-t", "20", CONTAINER]).await { if !is_concurrent_removal(&error) { return Err(error); } } } if let Err(error) = docker(["rm", CONTAINER]).await { if !is_concurrent_removal(&error) { return Err(error); } } for _ in 0..100 { // Gone, or already replaced by a container on the current image. if docker(["container", "inspect", CONTAINER]).await.is_err() || container_image_id().await == local_image_id().await { return Ok(()); } tokio::time::sleep(Duration::from_millis(200)).await; } Err(anyhow!( "stale container {CONTAINER} is still being removed; retry in a moment" )) } fn is_concurrent_removal(error: &anyhow::Error) -> bool { let text = error.to_string(); text.contains("already in progress") || text.contains("No such container") || text.contains("is already stopped") } async fn wait_desktop() -> Result<()> { for _ in 0..120 { if desktop_up().await { return Ok(()); } tokio::time::sleep(Duration::from_millis(250)).await; } Err(anyhow!("My computer did not become ready: desktop or viewer startup timed out. Check the container desktop logs and try again.")) } async fn docker_running(name: &str) -> Result { let out = docker(["inspect", "-f", "{{.State.Running}}", name]).await; Ok(matches!(out, Ok(s) if s.stdout.trim() == "true")) } struct CmdOut { status: i32, stdout: String, stderr: String, } async fn docker(args: I) -> Result where I: IntoIterator, S: AsRef, { let mut cmd = Command::new("docker"); cmd.args(args) .stdout(Stdio::piped()) .stderr(Stdio::piped()) .kill_on_drop(true); let out = cmd.output().await.context("run docker")?; let result = CmdOut { status: out.status.code().unwrap_or(-1), stdout: String::from_utf8_lossy(&out.stdout).into_owned(), stderr: String::from_utf8_lossy(&out.stderr).into_owned(), }; if result.status != 0 { return Err(anyhow!( "docker failed ({}): {}", result.status, result.stderr.trim() )); } Ok(result) } async fn docker_exec(args: &[&str]) -> Result { docker_exec_env(&[], args).await } async fn docker_exec_env(env: &[(&str, &str)], args: &[&str]) -> Result { let mut all = vec!["exec".to_string()]; for (key, value) in env { all.push("-e".into()); all.push(format!("{key}={value}")); } all.push(CONTAINER.to_string()); all.extend(args.iter().map(|s| (*s).to_string())); let mut cmd = Command::new("docker"); cmd.args(&all) .stdout(Stdio::piped()) .stderr(Stdio::piped()) .kill_on_drop(true); let out = cmd.output().await.context("docker exec")?; Ok(CmdOut { status: out.status.code().unwrap_or(-1), stdout: String::from_utf8_lossy(&out.stdout).into_owned(), stderr: String::from_utf8_lossy(&out.stderr).into_owned(), }) } #[cfg(test)] mod tests { use super::*; #[test] fn box_paths_stay_on_my_computer() { assert_eq!( resolve_box_path("notes.txt").unwrap(), "/workspace/notes.txt" ); assert_eq!(resolve_box_path("/workspace/a").unwrap(), "/workspace/a"); assert!(resolve_box_path("/etc/passwd").is_err()); assert!(resolve_box_path("../secret").is_err()); assert!(resolve_box_path("/workspace/../home").is_err()); assert!(resolve_box_path("/workspace/../../etc/passwd").is_err()); assert!(resolve_box_path("/workspaceX/a").is_err()); assert!(resolve_box_path("/tmp/other").is_err()); } #[test] fn box_paths_normalise_without_false_positives() { assert_eq!( resolve_box_path("/workspace///a/./b").unwrap(), "/workspace/a/b" ); assert_eq!( resolve_box_path("report..final.txt").unwrap(), "/workspace/report..final.txt" ); assert_eq!(resolve_box_path("/home/box/").unwrap(), "/home/box"); assert_eq!( resolve_box_path("/tmp/gb-jobs/abc/stdout").unwrap(), "/tmp/gb-jobs/abc/stdout" ); } #[test] fn dir_size_sums_nested_files() { let dir = std::env::temp_dir().join(format!("gb-dirsize-{}", uuid::Uuid::new_v4())); std::fs::create_dir_all(dir.join("inner")).unwrap(); std::fs::write(dir.join("a.bin"), [0u8; 10]).unwrap(); std::fs::write(dir.join("inner/b.bin"), [0u8; 5]).unwrap(); assert_eq!(dir_size(&dir), 15); std::fs::remove_dir_all(&dir).unwrap(); } #[tokio::test] async fn missing_docker_is_explicit() { if docker(["info"]).await.is_ok() { return; } let hub = BoxHub::new(); let err = hub.ensure_ready().await.unwrap_err().to_string(); assert!(err.contains("Docker"), "{err}"); assert!( err.contains("your computer") || err.contains("My computer"), "{err}" ); } }