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StepCtx

Struct StepCtx 

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pub struct StepCtx<'a, P>
where P: ProcessManager,
{ /* private fields */ }
Expand description

Per-step execution context handed to every command handler.

Host-registered functions receive this context: read script state through the public accessors (get_var, get_env, cwd) and return a Value. The fields stay crate-private so execution invariants hold for hosts.

Output contract (load-bearing for LET-capture, pipes, and stream assertions): handlers must emit stdout/stderr ONLY through out/err — via write_stdout or StreamHandle::to_stdout/to_stderr — and never write to host stdout directly. The step runner swaps these handles per context: LET $x: STRING = <command> installs a spillable capture sink, WITH_IO installs named-pipe endpoints, and the root installs the assertion tee. A handler that bypasses its context handles silently breaks all three.

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impl<'a, P> StepCtx<'a, P>
where P: ProcessManager,

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pub fn get_var(&self, key: &str) -> Option<Value>

Look up a script variable by name (innermost scope first).

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pub fn get_env(&self, key: &str) -> Option<String>

Look up an environment variable visible to the script.

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pub fn env_snapshot(&self) -> HashMap<String, String>

Snapshot of the script-visible environment: ENV assignments layered over inherited entries, as currently scoped. Hosts staging child processes layer this over the host environment (the same contract RUN honors through CommandContext), so block-scoped ENV reaches the child and reverts at scope exit with no extra machinery.

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pub fn cwd(&self) -> &GuardedPath

Current working directory (guarded; stays inside the workspace).

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pub fn new_pipe(&self) -> Value

Mint a fresh unbound pipe handle, like bare LET $p: PIPE. The backend materializes lazily on first binding; return it from a host function to hand the DSL a pipe it can bind. Tagged with the current task so promotion checks see the declaration origin.

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pub fn pipe_reader( &self, value: &Value, ) -> Result<Arc<Mutex<dyn Read + Send>>, Error>

Borrow the read half of a PIPE value for byte streaming (see PipeStream). Unbound handles materialize as script pipes — hosts cannot spawn RUN, so script is the only sensible kind, and a later RUN binding adapts through the shared path. DSL, bridge, and host bindings on an OS-materialized handle resolve through the single-take bridge: the first call takes, repeats bail loudly (same contract as DSL consumers; use script-backed pipes for repeat or multi access).

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pub fn pipe_writer( &self, value: &Value, ) -> Result<Arc<Mutex<dyn Write + Send>>, Error>

Borrow the write half of a PIPE value for byte streaming (see PipeStream). Same materialization and take-once contract as StepCtx::pipe_reader.

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pub fn close_pipe(&self, value: &Value) -> Result<(), Error>

Explicitly close a script pipe: readers drain buffered bytes, then observe EOF regardless of live writers or keeper pins. Unbound handles bail (closing a never-bound pipe is a caller bug), and OS-materialized handles bail (kernel pairs close by dropping their taken halves — drop the value instead).

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pub fn is_cancelled(&self) -> bool

Whether the current task was cancelled (CANCEL/TIMEOUT). For external host modules running blocking pumps: poll each tick so silent-but-open pipes cannot strand the task thread.

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pub fn is_async_task(&self) -> bool

Whether this step runs on an ASYNC task thread. Blocking pumps must refuse the main sequential flow.

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pub fn pipe_backend(&self, value: &Value) -> Option<Arc<PipeInner>>

Resolve an explicitly passed PIPE value to its script backend for timeout-bounded reads (read_into_timeout). This is value-based on purpose: the ambient out_pipe/stdin_pipe fields only populate via engine-level WITH_IO resolution, which never runs for host function calls. Returns None for unbound and OS-materialized handles, which fall back to blocking reads.

Auto Trait Implementations§

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impl<'a, P> !RefUnwindSafe for StepCtx<'a, P>

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impl<'a, P> !Sync for StepCtx<'a, P>

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impl<'a, P> !UnwindSafe for StepCtx<'a, P>

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impl<'a, P> Freeze for StepCtx<'a, P>
where &'a mut ExecState<P>: Freeze, &'a mut P: Freeze,

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impl<'a, P> Send for StepCtx<'a, P>
where &'a mut ExecState<P>: Send, &'a mut P: Send,

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impl<'a, P> Unpin for StepCtx<'a, P>
where &'a mut ExecState<P>: Unpin, &'a mut P: Unpin,

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impl<'a, P> UnsafeUnpin for StepCtx<'a, P>

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