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wasmsh_testkit/
runner.rs

1//! TOML test runner engine.
2//!
3//! Reads declarative test case files, sets up VFS, executes scripts
4//! through `WorkerRuntime`, and compares results against expectations.
5
6use std::path::Path;
7
8use wasmsh_protocol::{HostCommand, WorkerEvent};
9use wasmsh_runtime::WorkerRuntime;
10
11use crate::features;
12use crate::toml_case::TomlTestFile;
13
14/// Outcome of running a single test case.
15#[derive(Debug)]
16pub enum TestOutcome {
17    Passed,
18    Failed { reason: String },
19    Skipped { reason: String },
20}
21
22/// Run a TOML test case from a file path.
23pub fn run_toml_file(path: &Path) -> TestOutcome {
24    let content = match std::fs::read_to_string(path) {
25        Ok(c) => c,
26        Err(e) => {
27            return TestOutcome::Failed {
28                reason: format!("cannot read {}: {e}", path.display()),
29            };
30        }
31    };
32    let case: TomlTestFile = match toml::from_str(&content) {
33        Ok(c) => c,
34        Err(e) => {
35            return TestOutcome::Failed {
36                reason: format!("cannot parse {}: {e}", path.display()),
37            };
38        }
39    };
40    run_toml_case(&case)
41}
42
43/// Run a parsed TOML test case.
44pub fn run_toml_case(case: &TomlTestFile) -> TestOutcome {
45    let missing = features::missing_features(&case.test.requires);
46    if !missing.is_empty() {
47        return TestOutcome::Skipped {
48            reason: format!("missing features: {}", missing.join(", ")),
49        };
50    }
51
52    let Some(script) = case.input.script.clone() else {
53        return TestOutcome::Failed {
54            reason: "no script provided".into(),
55        };
56    };
57
58    let mut rt = new_runtime();
59    seed_files(&mut rt, case);
60    seed_env(&mut rt, case);
61    let events = rt.handle_command(HostCommand::Run { input: script });
62    let status = extract_exit_status(&events);
63    let stdout = collect_event_data(&events, |e| matches!(e, WorkerEvent::Stdout(_)));
64    let stderr = collect_event_data(&events, |e| matches!(e, WorkerEvent::Stderr(_)));
65
66    let mut failures = Vec::new();
67    compare_status(case, status, &mut failures);
68    compare_stream(
69        "stdout",
70        &stdout,
71        case.expect.stdout.as_ref(),
72        &mut failures,
73    );
74    compare_contains(
75        "stdout",
76        &stdout,
77        case.expect.stdout_contains.as_ref(),
78        &mut failures,
79    );
80    compare_stream(
81        "stderr",
82        &stderr,
83        case.expect.stderr.as_ref(),
84        &mut failures,
85    );
86    compare_contains(
87        "stderr",
88        &stderr,
89        case.expect.stderr_contains.as_ref(),
90        &mut failures,
91    );
92    compare_files(case, &mut rt, &mut failures);
93    compare_env(case, &mut rt, &mut failures);
94
95    if failures.is_empty() {
96        TestOutcome::Passed
97    } else {
98        TestOutcome::Failed {
99            reason: failures.join("\n"),
100        }
101    }
102}
103
104fn new_runtime() -> WorkerRuntime {
105    let mut rt = WorkerRuntime::new();
106    rt.handle_command(HostCommand::Init {
107        step_budget: 100_000,
108    });
109    rt
110}
111
112fn seed_files(rt: &mut WorkerRuntime, case: &TomlTestFile) {
113    for (path, content) in &case.setup.files {
114        rt.handle_command(HostCommand::WriteFile {
115            path: path.clone(),
116            data: content.as_bytes().to_vec(),
117        });
118    }
119}
120
121fn seed_env(rt: &mut WorkerRuntime, case: &TomlTestFile) {
122    if case.setup.env.is_empty() {
123        return;
124    }
125    let env_script = case
126        .setup
127        .env
128        .iter()
129        .map(|(k, v)| format!("{k}={v}"))
130        .collect::<Vec<_>>()
131        .join("; ");
132    rt.handle_command(HostCommand::Run { input: env_script });
133}
134
135fn extract_exit_status(events: &[WorkerEvent]) -> i32 {
136    events
137        .iter()
138        .find_map(|event| match event {
139            WorkerEvent::Exit(status) => Some(*status),
140            _ => None,
141        })
142        .unwrap_or(-1)
143}
144
145fn compare_status(case: &TomlTestFile, status: i32, failures: &mut Vec<String>) {
146    if let Some(expected_status) = case.expect.status {
147        if status != expected_status {
148            failures.push(format!("status: expected {expected_status}, got {status}"));
149        }
150    }
151}
152
153fn compare_stream(
154    label: &str,
155    actual: &str,
156    expected: Option<&String>,
157    failures: &mut Vec<String>,
158) {
159    let Some(expected) = expected else {
160        return;
161    };
162    if actual != expected {
163        failures.push(format!(
164            "{label} mismatch:\n  expected: {expected:?}\n  got:      {actual:?}"
165        ));
166    }
167}
168
169fn compare_contains(
170    label: &str,
171    actual: &str,
172    expected: Option<&Vec<String>>,
173    failures: &mut Vec<String>,
174) {
175    let Some(expected) = expected else {
176        return;
177    };
178    for needle in expected {
179        if !actual.contains(needle.as_str()) {
180            failures.push(format!("{label} missing: {needle:?}"));
181        }
182    }
183}
184
185fn compare_files(case: &TomlTestFile, rt: &mut WorkerRuntime, failures: &mut Vec<String>) {
186    for (path, expected_content) in &case.expect.files {
187        let read_events = rt.handle_command(HostCommand::ReadFile { path: path.clone() });
188        let file_data = collect_event_data(&read_events, |e| matches!(e, WorkerEvent::Stdout(_)));
189        if file_data != *expected_content {
190            failures.push(format!(
191                "file {path} mismatch:\n  expected: {expected_content:?}\n  got:      {file_data:?}"
192            ));
193        }
194    }
195}
196
197fn compare_env(case: &TomlTestFile, rt: &mut WorkerRuntime, failures: &mut Vec<String>) {
198    for (name, expected_val) in &case.expect.env {
199        let check_events = rt.handle_command(HostCommand::Run {
200            input: format!("echo ${name}"),
201        });
202        let actual = collect_event_data(&check_events, |e| matches!(e, WorkerEvent::Stdout(_)));
203        let actual_trimmed = actual.trim_end_matches('\n');
204        if actual_trimmed != expected_val.as_str() {
205            failures.push(format!(
206                "env ${name} mismatch: expected {expected_val:?}, got {actual_trimmed:?}"
207            ));
208        }
209    }
210}
211
212fn collect_event_data<F>(events: &[WorkerEvent], pred: F) -> String
213where
214    F: Fn(&WorkerEvent) -> bool,
215{
216    let mut buf = Vec::new();
217    for e in events {
218        if pred(e) {
219            match e {
220                WorkerEvent::Stdout(data) | WorkerEvent::Stderr(data) => {
221                    buf.extend_from_slice(data);
222                }
223                _ => {}
224            }
225        }
226    }
227    String::from_utf8(buf).unwrap_or_default()
228}
229
230/// Discover all `.toml` test case files under a directory.
231pub fn discover_cases(dir: &Path) -> Vec<std::path::PathBuf> {
232    fn walk(dir: &Path, out: &mut Vec<std::path::PathBuf>) {
233        if let Ok(entries) = std::fs::read_dir(dir) {
234            for entry in entries.flatten() {
235                let path = entry.path();
236                if path.is_dir() {
237                    walk(&path, out);
238                } else if path.extension().is_some_and(|e| e == "toml") {
239                    out.push(path);
240                }
241            }
242        }
243    }
244
245    let mut cases = Vec::new();
246    if !dir.exists() {
247        return cases;
248    }
249    walk(dir, &mut cases);
250    cases.sort();
251    cases
252}