1mod args;
2mod fs_ops;
3mod handlers;
4mod io;
5mod pipe;
6mod state;
7mod steps;
8#[cfg(test)]
9mod tests;
10
11pub(crate) use self::handlers::{
12 dispatch_append, dispatch_assert_absent, dispatch_assert_dir, dispatch_assert_file,
13 dispatch_assert_stdout, dispatch_assign, dispatch_assign_async_step, dispatch_async_block,
14 dispatch_await_step, dispatch_cancel_step, dispatch_copy, dispatch_copy_git, dispatch_cwd,
15 dispatch_echo, dispatch_env, dispatch_exit, dispatch_expand, dispatch_for_loop,
16 dispatch_hash_sha256, dispatch_if_then, dispatch_inherit_env, dispatch_ls, dispatch_mkdir,
17 dispatch_read, dispatch_read_line, dispatch_run, dispatch_sleep_step, dispatch_symlink,
18 dispatch_timeout_step, dispatch_with_io, dispatch_with_io_block, dispatch_workdir,
19 dispatch_workspace, dispatch_write,
20};
21pub use self::io::ExecIo;
22pub(crate) use self::steps::StepCtx;
23
24use anyhow::Result;
25use oxdock_fs::{GuardedPath, PathResolver, WorkspaceFs};
26use oxdock_parser::Step;
27use oxdock_process::{
28 BuiltinEnv, ProcessManager, SharedInput, SharedOutput, default_process_manager,
29};
30
31use std::sync::Arc;
32
33use self::fs_ops::describe_dir;
34use self::io::{StreamHandle, assemble_default_io, teed_stdout};
35use self::state::ExecState;
36use self::steps::execute_steps;
37
38pub fn run_steps(fs_root: &GuardedPath, steps: &[Step]) -> Result<()> {
39 run_steps_with_context(fs_root, fs_root, steps)
40}
41
42pub fn run_steps_with_context(
43 fs_root: &GuardedPath,
44 build_context: &GuardedPath,
45 steps: &[Step],
46) -> Result<()> {
47 run_steps_with_context_result(fs_root, build_context, steps, None, None).map(|_| ())
48}
49
50pub fn run_steps_with_context_result(
52 fs_root: &GuardedPath,
53 build_context: &GuardedPath,
54 steps: &[Step],
55 stdin: Option<SharedInput>,
56 stdout: Option<SharedOutput>,
57) -> Result<GuardedPath> {
58 let io = assemble_default_io(stdin, stdout);
59 run_steps_with_context_result_with_io(fs_root, build_context, steps, io)
60}
61
62pub fn run_steps_with_context_result_with_io(
63 fs_root: &GuardedPath,
64 build_context: &GuardedPath,
65 steps: &[Step],
66 io: ExecIo,
67) -> Result<GuardedPath> {
68 match run_steps_inner(fs_root, build_context, steps, io) {
69 Ok(final_cwd) => Ok(final_cwd),
70 Err(err) => {
71 let chain = err.chain().map(|e| e.to_string()).collect::<Vec<_>>();
73 let mut primary = chain
74 .first()
75 .cloned()
76 .unwrap_or_else(|| "unknown error".into());
77 let rest = if chain.len() > 1 {
78 let first_cause = chain[1].clone();
79 primary = format!("{primary} ({first_cause})");
80 if chain.len() > 2 {
81 let causes = chain
82 .iter()
83 .skip(2)
84 .map(|s| s.as_str())
85 .collect::<Vec<_>>()
86 .join("\n ");
87 format!("\ncauses:\n {}", causes)
88 } else {
89 String::new()
90 }
91 } else {
92 String::new()
93 };
94 let fs = PathResolver::new(fs_root.as_path(), build_context.as_path())?;
95 let tree = describe_dir(&fs, fs_root, 2, 24);
96 let snapshot = format!(
97 "filesystem snapshot (root {}):\n{}",
98 fs_root.display(),
99 tree
100 );
101 let msg = format!("{}{}\n{}", primary, rest, snapshot);
102 Err(anyhow::anyhow!(msg))
103 }
104 }
105}
106
107fn run_steps_inner(
108 fs_root: &GuardedPath,
109 build_context: &GuardedPath,
110 steps: &[Step],
111 io: ExecIo,
112) -> Result<GuardedPath> {
113 let mut resolver = PathResolver::new_guarded(fs_root.clone(), build_context.clone())?;
114 resolver.set_workspace_root(build_context.clone());
115 run_steps_with_fs_with_io(Box::new(resolver), steps, io)
116}
117
118pub fn run_steps_with_fs(
119 fs: Box<dyn WorkspaceFs>,
120 steps: &[Step],
121 stdin: Option<SharedInput>,
122 stdout: Option<SharedOutput>,
123) -> Result<GuardedPath> {
124 let io = assemble_default_io(stdin, stdout);
125 run_steps_with_fs_with_io(fs, steps, io)
126}
127
128pub fn run_steps_with_fs_with_io(
129 fs: Box<dyn WorkspaceFs>,
130 steps: &[Step],
131 io: ExecIo,
132) -> Result<GuardedPath> {
133 run_steps_with_manager(fs, steps, default_process_manager(), io)
134}
135
136fn run_steps_with_manager<P: ProcessManager>(
137 fs: Box<dyn WorkspaceFs>,
138 steps: &[Step],
139 process: P,
140 io: ExecIo,
141) -> Result<GuardedPath> {
142 let fs_root = fs.root().clone();
143 let cwd = fs.root().clone();
144 let build_context = fs.build_context().clone();
145 let mut envs = BuiltinEnv::collect(&build_context).into_envs();
146 for (key, value) in io.inherit_env_overrides() {
147 envs.insert(key.clone(), value.clone());
148 }
149 let envs = Arc::new(envs);
150 let assert_windows = Arc::new(std::sync::Mutex::new(std::collections::HashMap::new()));
151 let mut state = ExecState {
152 fs,
153 cargo_target_dir: fs_root.join(".cargo-target")?,
154 cwd,
155 envs,
156 bg_children: Vec::new(),
157 scope_stack: Vec::new(),
158 io,
159 assert_windows: assert_windows.clone(),
160 var_scopes: Vec::new(),
161 cancel_token: std::sync::Arc::new(std::sync::atomic::AtomicBool::new(false)),
162 active_process: std::sync::Arc::new(std::sync::Mutex::new(None)),
163 named_tasks: std::sync::Arc::new(std::sync::Mutex::new(std::collections::HashMap::new())),
164 next_task_id: std::sync::Arc::new(std::sync::atomic::AtomicU64::new(0)),
165 inside_async: false,
166 cancellable: false,
167 _marker: std::marker::PhantomData,
168 };
169
170 state.push_var_scope();
172
173 let _default_stdout = std::io::stdout();
174 let stdin = state.io.stdin();
175 let stdout = Some(StreamHandle::Stream(teed_stdout(
179 state.io.stdout(),
180 assert_windows,
181 )));
182 let stderr = state.io.stderr().map(StreamHandle::Stream);
183 let mut proc_mgr = process;
184 execute_steps(
185 &mut state,
186 &mut proc_mgr,
187 steps,
188 stdin,
189 false,
190 stdout,
191 stderr,
192 true,
193 )?;
194
195 Ok(state.cwd)
196}