1use std::sync::Arc;
9
10use std::collections::HashMap;
11
12use crate::arithmetic;
13use crate::ast::{Arg, Command, Expr, Redirect, RedirectKind, Value};
14use crate::dispatch::{CommandDispatcher, PipelinePosition};
15use crate::interpreter::ExecResult;
16use crate::tools::{ExecContext, ToolArgs, ToolRegistry, ToolSchema};
17use tokio::io::AsyncWriteExt;
18
19use super::pipe_stream::pipe_stream_default;
20use super::scatter::{
21 parse_gather_options, parse_scatter_options, ScatterGatherRunner,
22};
23
24async fn apply_redirects(
30 mut result: ExecResult,
31 redirects: &[Redirect],
32 ctx: &ExecContext,
33) -> ExecResult {
34 for redir in redirects {
39 match redir.kind {
40 RedirectKind::MergeStderr => {
41 result.materialize();
44 if !result.err.is_empty() {
45 let err = std::mem::take(&mut result.err);
46 result.push_out(&err);
47 }
48 }
49 RedirectKind::MergeStdout => {
50 result.materialize();
52 if !result.text_out().is_empty() {
53 let out = result.text_out().into_owned();
54 result.err.push_str(&out);
55 result.clear_out();
56 }
57 }
58 RedirectKind::StdoutOverwrite => {
59 let path = match eval_redirect_target(&redir.target, ctx).await {
60 Ok(p) => p,
61 Err(e) => return ExecResult::failure(1, format!("redirect: {e}")),
62 };
63 if let Some(output) = result.take_output_for_stream() {
65 let mut buf = Vec::new();
66 if let Err(e) = output.write_canonical(&mut buf, None) {
67 return ExecResult::failure(1, format!("redirect: {e}"));
68 }
69 if let Err(e) = redirect_write(ctx, &path, &buf).await {
70 return ExecResult::failure(1, format!("redirect: {e}"));
71 }
72 } else {
73 if let Err(e) = redirect_write(ctx, &path, result.text_out().as_bytes()).await {
74 return ExecResult::failure(1, format!("redirect: {e}"));
75 }
76 }
77 result.clear_out();
78 result.set_output(None);
79 }
80 RedirectKind::StdoutAppend => {
81 let path = match eval_redirect_target(&redir.target, ctx).await {
82 Ok(p) => p,
83 Err(e) => return ExecResult::failure(1, format!("redirect: {e}")),
84 };
85 if let Some(output) = result.take_output_for_stream() {
87 let mut buf = Vec::new();
88 if let Err(e) = output.write_canonical(&mut buf, None) {
89 return ExecResult::failure(1, format!("redirect: {e}"));
90 }
91 if let Err(e) = redirect_append(ctx, &path, &buf).await {
92 return ExecResult::failure(1, format!("redirect: {e}"));
93 }
94 } else {
95 if let Err(e) = redirect_append(ctx, &path, result.text_out().as_bytes()).await {
96 return ExecResult::failure(1, format!("redirect: {e}"));
97 }
98 }
99 result.clear_out();
100 result.set_output(None);
101 }
102 RedirectKind::Stderr => {
103 let path = match eval_redirect_target(&redir.target, ctx).await {
104 Ok(p) => p,
105 Err(e) => return ExecResult::failure(1, format!("redirect: {e}")),
106 };
107 if let Err(e) = redirect_write(ctx, &path, result.err.as_bytes()).await {
108 return ExecResult::failure(1, format!("redirect: {e}"));
109 }
110 result.err.clear();
111 }
112 RedirectKind::Both => {
113 let path = match eval_redirect_target(&redir.target, ctx).await {
114 Ok(p) => p,
115 Err(e) => return ExecResult::failure(1, format!("redirect: {e}")),
116 };
117 let combined = format!("{}{}", result.text_out(), result.err);
118 if let Err(e) = redirect_write(ctx, &path, combined.as_bytes()).await {
119 return ExecResult::failure(1, format!("redirect: {e}"));
120 }
121 result.clear_out();
122 result.set_output(None);
123 result.err.clear();
124 }
125 RedirectKind::Stdin | RedirectKind::HereDoc | RedirectKind::HereString => {}
127 }
128 }
129 result.materialize();
134 result
135}
136
137async fn eval_redirect_target(expr: &Expr, ctx: &ExecContext) -> Result<String, String> {
144 if let Some(dispatcher) = &ctx.dispatcher {
145 dispatcher
146 .eval_expr(expr, ctx)
147 .await
148 .map(|v| value_to_string(&v))
149 .map_err(|e| e.to_string())
150 } else {
151 eval_simple_expr(expr, ctx)
152 .map(|v| value_to_string(&v))
153 .ok_or_else(|| "could not evaluate redirect target".to_string())
154 }
155}
156
157async fn redirect_write(ctx: &ExecContext, path: &str, data: &[u8]) -> Result<(), String> {
164 use crate::backend::WriteMode;
165 let resolved = ctx.resolve_path(path);
166 ctx.backend.write(&resolved, data, WriteMode::Overwrite).await.map_err(|e| e.to_string())
167}
168
169async fn redirect_append(ctx: &ExecContext, path: &str, data: &[u8]) -> Result<(), String> {
173 let resolved = ctx.resolve_path(path);
174 ctx.backend.append(&resolved, data).await.map_err(|e| e.to_string())
175}
176
177async fn setup_stdin_redirects(cmd: &Command, ctx: &mut ExecContext) -> Result<(), String> {
185 use std::path::Path;
186 for redir in &cmd.redirects {
187 match &redir.kind {
188 RedirectKind::Stdin => {
189 let path = eval_redirect_target(&redir.target, ctx).await?;
190 let resolved = ctx.resolve_path(&path);
191 let data = ctx
192 .backend
193 .read(Path::new(&resolved), None)
194 .await
195 .map_err(|e| format!("redirect: {path}: {e}"))?;
196 let content = String::from_utf8(data)
197 .map_err(|_| format!("redirect: {path}: invalid UTF-8"))?;
198 ctx.set_stdin(content);
199 }
200 RedirectKind::HereDoc => {
201 match &redir.target {
202 Expr::Literal(Value::String(content)) => {
203 ctx.set_stdin(content.clone());
204 }
205 expr => {
208 let body = eval_redirect_target(expr, ctx).await?;
209 ctx.set_stdin(body);
210 }
211 }
212 }
213 RedirectKind::HereString => {
214 let mut s = eval_redirect_target(&redir.target, ctx).await?;
217 s.push('\n');
218 ctx.set_stdin(s);
219 }
220 _ => {}
221 }
222 }
223 Ok(())
224}
225
226#[derive(Clone)]
228pub struct PipelineRunner {
229 tools: Arc<ToolRegistry>,
230}
231
232impl PipelineRunner {
233 pub fn new(tools: Arc<ToolRegistry>) -> Self {
235 Self { tools }
236 }
237
238 #[tracing::instrument(level = "debug", skip(self, commands, ctx, dispatcher), fields(command_count = commands.len()))]
248 pub async fn run(
249 &self,
250 commands: &[Command],
251 ctx: &mut ExecContext,
252 dispatcher: &dyn CommandDispatcher,
253 ) -> ExecResult {
254 if commands.is_empty() {
255 return ExecResult::success("");
256 }
257
258 if let Some((scatter_idx, gather_idx)) = find_scatter_gather(commands) {
260 return self.run_scatter_gather(commands, scatter_idx, gather_idx, ctx, dispatcher).await;
261 }
262
263 self.run_sequential(commands, ctx, dispatcher).await
264 }
265
266 #[tracing::instrument(level = "debug", skip(self, commands, ctx, dispatcher), fields(command_count = commands.len()))]
271 pub async fn run_sequential(
272 &self,
273 commands: &[Command],
274 ctx: &mut ExecContext,
275 dispatcher: &dyn CommandDispatcher,
276 ) -> ExecResult {
277 if commands.is_empty() {
278 return ExecResult::success("");
279 }
280
281 if commands.len() == 1 {
282 return self.run_single(&commands[0], ctx, None, dispatcher).await;
284 }
285
286 self.run_pipeline(commands, ctx, dispatcher).await
288 }
289
290 async fn run_scatter_gather(
292 &self,
293 commands: &[Command],
294 scatter_idx: usize,
295 gather_idx: usize,
296 ctx: &mut ExecContext,
297 dispatcher: &dyn CommandDispatcher,
298 ) -> ExecResult {
299 let pre_scatter = &commands[..scatter_idx];
301 let scatter_cmd = &commands[scatter_idx];
302 let parallel = &commands[scatter_idx + 1..gather_idx];
303 let gather_cmd = &commands[gather_idx];
304 let post_gather = &commands[gather_idx + 1..];
305
306 let scatter_schema = self.tools.get("scatter").map(|t| t.schema());
309 let gather_schema = self.tools.get("gather").map(|t| t.schema());
310 let scatter_opts = parse_scatter_options(&build_tool_args(&scatter_cmd.args, ctx, scatter_schema.as_ref()));
311 let gather_opts = parse_gather_options(&build_tool_args(&gather_cmd.args, ctx, gather_schema.as_ref()));
312
313 let sequential_dispatcher: Arc<dyn CommandDispatcher> = dispatcher.fork_attached().await;
318
319 let runner = ScatterGatherRunner::new(self.tools.clone(), sequential_dispatcher);
320 runner
321 .run(
322 pre_scatter,
323 scatter_opts,
324 parallel,
325 gather_opts,
326 post_gather,
327 ctx,
328 )
329 .await
330 }
331
332 #[tracing::instrument(level = "debug", skip(self, cmd, ctx, stdin, dispatcher), fields(command = %cmd.name))]
337 async fn run_single(
338 &self,
339 cmd: &Command,
340 ctx: &mut ExecContext,
341 stdin: Option<String>,
342 dispatcher: &dyn CommandDispatcher,
343 ) -> ExecResult {
344 if let Err(e) = setup_stdin_redirects(cmd, ctx).await {
346 return ExecResult::failure(1, e);
347 }
348
349 if let Some(input) = stdin {
351 ctx.set_stdin(input);
352 }
353
354 ctx.pipeline_position = PipelinePosition::Only;
356
357 let result = match dispatcher.dispatch(cmd, ctx).await {
359 Ok(result) => result,
360 Err(e) => ExecResult::failure(1, e.to_string()),
361 };
362
363 apply_redirects(result, &cmd.redirects, ctx).await
365 }
366
367 #[tracing::instrument(level = "debug", skip(self, commands, ctx, dispatcher), fields(stage_count = commands.len()))]
377 async fn run_pipeline(
378 &self,
379 commands: &[Command],
380 ctx: &mut ExecContext,
381 dispatcher: &dyn CommandDispatcher,
382 ) -> ExecResult {
383 let stage_count = commands.len();
384 let last_idx = stage_count - 1;
385
386 let mut pipe_writers: Vec<Option<super::pipe_stream::PipeWriter>> = Vec::new();
388 let mut pipe_readers: Vec<Option<super::pipe_stream::PipeReader>> = Vec::new();
389
390 for _ in 0..last_idx {
391 let (writer, reader) = pipe_stream_default();
392 pipe_writers.push(Some(writer));
393 pipe_readers.push(Some(reader));
394 }
395
396 let mut data_senders: Vec<Option<tokio::sync::oneshot::Sender<Option<Value>>>> = Vec::new();
398 let mut data_receivers: Vec<Option<tokio::sync::oneshot::Receiver<Option<Value>>>> = Vec::new();
399
400 for _ in 0..last_idx {
401 let (tx, rx) = tokio::sync::oneshot::channel();
402 data_senders.push(Some(tx));
403 data_receivers.push(Some(rx));
404 }
405
406 let mut handles: Vec<tokio::task::JoinHandle<(ExecResult, ExecContext)>> = Vec::with_capacity(stage_count);
407
408 for (i, cmd) in commands.iter().enumerate() {
409 let mut stage_ctx = ctx.child_for_pipeline();
410 let cmd = cmd.clone();
411
412 let task_dispatcher: Arc<dyn CommandDispatcher> = dispatcher.fork_attached().await;
417
418 let stdin_setup = setup_stdin_redirects(&cmd, &mut stage_ctx).await;
422
423 if i == 0 {
425 if stage_ctx.stdin.is_none() {
428 stage_ctx.stdin = ctx.stdin.take();
429 }
430 if stage_ctx.stdin_data.is_none() {
431 stage_ctx.stdin_data = ctx.stdin_data.take();
432 }
433 } else {
434 stage_ctx.pipe_stdin = pipe_readers[i - 1].take();
436 }
438
439 if i < last_idx {
441 stage_ctx.pipe_stdout = pipe_writers[i].take();
442 }
443
444 stage_ctx.pipeline_position = match i {
446 0 => PipelinePosition::First,
447 n if n == last_idx => PipelinePosition::Last,
448 _ => PipelinePosition::Middle,
449 };
450
451 let data_sender = if i < last_idx { data_senders[i].take() } else { None };
452 let data_receiver = if i > 0 { data_receivers[i - 1].take() } else { None };
453
454 let handle: tokio::task::JoinHandle<(ExecResult, ExecContext)> =
457 tokio::spawn(crate::telemetry::bind_current_context(async move {
458 if let Err(e) = stdin_setup {
460 return (ExecResult::failure(1, e), stage_ctx);
461 }
462
463 if let Some(mut rx) = data_receiver {
470 if let Ok(data) = rx.try_recv() {
471 stage_ctx.stdin_data = data;
472 }
473 }
475
476 let mut result = match task_dispatcher.dispatch(&cmd, &mut stage_ctx).await {
478 Ok(result) => result,
479 Err(e) => ExecResult::failure(1, e.to_string()),
480 };
481
482 result = apply_redirects(result, &cmd.redirects, &stage_ctx).await;
484
485 if !result.err.is_empty() {
491 if let Some(ref stderr) = stage_ctx.stderr {
492 stderr.write_str(&result.err);
493 result.err.clear();
494 }
495 }
496
497 if let Some(tx) = data_sender {
503 let _ = tx.send(result.data.clone());
504 }
505
506 if let Some(mut pipe_out) = stage_ctx.pipe_stdout.take() {
509 let text = result.text_out();
510 if !text.is_empty() {
511 let _ = pipe_out.write_all(text.as_bytes()).await;
513 let _ = pipe_out.shutdown().await;
514 }
515 }
517
518 (result, stage_ctx)
519 }));
520
521 handles.push(handle);
522 }
523
524 let mut last_result = ExecResult::success("");
529 let mut panics: Vec<String> = Vec::new();
530 for (i, handle) in handles.into_iter().enumerate() {
531 match handle.await {
532 Ok((result, stage_ctx)) => {
533 if i == last_idx {
534 last_result = result;
535 ctx.scope = stage_ctx.scope;
537 ctx.cwd = stage_ctx.cwd;
538 ctx.prev_cwd = stage_ctx.prev_cwd;
539 ctx.aliases = stage_ctx.aliases;
540 }
541 }
542 Err(e) => {
543 panics.push(format!("stage {}: {}", i, e));
544 }
545 }
546 }
547
548 if !panics.is_empty() {
549 last_result = ExecResult::failure(
550 1,
551 format!("pipeline stage(s) panicked: {}", panics.join("; ")),
552 );
553 }
554
555 last_result
556 }
557}
558
559pub fn select_leaf<'a>(schema: &'a ToolSchema, args: &[Arg]) -> anyhow::Result<&'a ToolSchema> {
599 let root_lookup = schema_param_lookup(schema);
602 let is_root_value_flag = |name: &str| -> bool {
603 root_lookup.get(name).is_some_and(|(_, typ, _)| !is_bool_type(typ))
604 };
605
606 let mut node = schema;
607 let mut skip_next_positional = false;
608 for arg in args {
609 match arg {
610 Arg::DoubleDash => break,
612 Arg::LongFlag(name) if is_root_value_flag(name) => skip_next_positional = true,
615 Arg::ShortFlag(name) if is_root_value_flag(name) => skip_next_positional = true,
616 Arg::Positional(expr) => {
617 if skip_next_positional {
618 skip_next_positional = false;
619 continue; }
621 if node.subcommands.is_empty() {
622 break; }
624 match classify_subcommand_positional(expr) {
625 SubcommandWord::Word(word) => {
626 match node.subcommands.iter().find(|c| c.matches_command(word)) {
627 Some(child) => node = child, None => break, }
630 }
631 SubcommandWord::OtherLiteral => break,
635 SubcommandWord::Computed(kind) => anyhow::bail!(
636 "{}: a subcommand name is required here, but got {kind}. \
637 Subcommands must be literal words — spell it out \
638 (e.g. `{} <subcommand> …`) or use the `--flag=value` form.",
639 node.name,
640 schema.name
641 ),
642 }
643 }
644 _ => {}
646 }
647 }
648 Ok(node)
649}
650
651enum SubcommandWord<'a> {
653 Word(&'a str),
655 OtherLiteral,
657 Computed(&'static str),
659}
660
661fn classify_subcommand_positional(expr: &Expr) -> SubcommandWord<'_> {
662 match expr {
663 Expr::Literal(Value::String(s)) => SubcommandWord::Word(s),
664 Expr::Literal(_) => SubcommandWord::OtherLiteral,
665 Expr::CommandSubst(_) | Expr::Command(_) => SubcommandWord::Computed("a command substitution `$(…)`"),
666 Expr::VarRef(_)
667 | Expr::VarWithDefault { .. }
668 | Expr::VarLength(_)
669 | Expr::Positional(_)
670 | Expr::AllArgs
671 | Expr::ArgCount
672 | Expr::CurrentPid
673 | Expr::LastExitCode => SubcommandWord::Computed("a variable reference"),
674 Expr::Interpolated(_) | Expr::HereDocBody { .. } => SubcommandWord::Computed("an interpolated string"),
675 Expr::GlobPattern(_) => SubcommandWord::Computed("a glob pattern"),
676 Expr::Arithmetic(_) => SubcommandWord::Computed("an arithmetic expansion"),
677 _ => SubcommandWord::Computed("a value computed at runtime"),
678 }
679}
680
681pub fn schema_param_lookup(schema: &ToolSchema) -> HashMap<String, (&str, &str, usize)> {
682 let mut map = HashMap::new();
683 for p in schema.params.iter().filter(|p| !p.positional) {
684 map.insert(p.name.clone(), (p.name.as_str(), p.param_type.as_str(), p.consumes));
685 for alias in &p.aliases {
686 let stripped = alias.trim_start_matches('-');
687 map.insert(stripped.to_string(), (p.name.as_str(), p.param_type.as_str(), p.consumes));
688 }
689 }
690 map
691}
692
693pub fn is_bool_type(param_type: &str) -> bool {
695 matches!(param_type.to_lowercase().as_str(), "bool" | "boolean")
696}
697
698pub fn build_tool_args(args: &[Arg], ctx: &ExecContext, schema: Option<&ToolSchema>) -> ToolArgs {
706 let mut tool_args = ToolArgs::new();
707 let param_lookup = schema.map(schema_param_lookup).unwrap_or_default();
708 let accepts_word_assign = schema
709 .map(|s| crate::tools::accepts_word_assign(s.name.as_str()))
710 .unwrap_or(false);
711
712 let mut consumed_positionals: std::collections::HashSet<usize> = std::collections::HashSet::new();
714 let mut past_double_dash = false;
715
716 let mut positional_indices: Vec<(usize, &Expr)> = Vec::new();
718 for (i, arg) in args.iter().enumerate() {
719 if let Arg::Positional(expr) = arg {
720 positional_indices.push((i, expr));
721 }
722 }
723
724 let mut i = 0;
726 while i < args.len() {
727 let arg = &args[i];
728
729 match arg {
730 Arg::DoubleDash => {
731 past_double_dash = true;
732 }
733 Arg::Positional(expr) => {
734 if !consumed_positionals.contains(&i)
736 && let Some(value) = eval_simple_expr(expr, ctx)
737 {
738 tool_args.positional.push(value);
739 }
740 }
741 Arg::Named { key, value } => {
742 if let Some(val) = eval_simple_expr(value, ctx) {
743 tool_args.named.insert(key.clone(), val);
744 }
745 }
746 Arg::WordAssign { key, value } => {
747 if let Some(val) = eval_simple_expr(value, ctx) {
748 if accepts_word_assign {
749 tool_args.named.insert(key.clone(), val);
750 } else {
751 let val_str = crate::interpreter::value_to_string(&val);
752 tool_args.positional.push(Value::String(format!("{key}={val_str}")));
753 }
754 }
755 }
756 Arg::ShortFlag(name) => {
757 if past_double_dash {
758 tool_args.positional.push(Value::String(format!("-{name}")));
759 } else if name.len() == 1 {
760 let flag_name = name.as_str();
763 let lookup = param_lookup.get(flag_name);
764 let is_bool = lookup
765 .map(|(_, typ, _)| is_bool_type(typ))
766 .unwrap_or(true);
767
768 if is_bool {
769 tool_args.flags.insert(flag_name.to_string());
770 } else {
771 let canonical = lookup.map(|(n, _, _)| *n).unwrap_or(flag_name);
773 let next_positional = positional_indices
774 .iter()
775 .find(|(idx, _)| *idx > i && !consumed_positionals.contains(idx));
776
777 if let Some((pos_idx, expr)) = next_positional {
778 if let Some(value) = eval_simple_expr(expr, ctx) {
779 tool_args.named.insert(canonical.to_string(), value);
780 consumed_positionals.insert(*pos_idx);
781 } else {
782 tool_args.flags.insert(flag_name.to_string());
783 }
784 } else {
785 tool_args.flags.insert(flag_name.to_string());
786 }
787 }
788 } else if let Some(&(canonical, typ, _)) = param_lookup.get(name.as_str()) {
789 if is_bool_type(typ) {
791 tool_args.flags.insert(canonical.to_string());
792 } else {
793 let next_positional = positional_indices
794 .iter()
795 .find(|(idx, _)| *idx > i && !consumed_positionals.contains(idx));
796 if let Some((pos_idx, expr)) = next_positional {
797 if let Some(value) = eval_simple_expr(expr, ctx) {
798 tool_args.named.insert(canonical.to_string(), value);
799 consumed_positionals.insert(*pos_idx);
800 } else {
801 tool_args.flags.insert(name.clone());
802 }
803 } else {
804 tool_args.flags.insert(name.clone());
805 }
806 }
807 } else {
808 for c in name.chars() {
810 tool_args.flags.insert(c.to_string());
811 }
812 }
813 }
814 Arg::LongFlag(name) => {
815 if past_double_dash {
816 tool_args.positional.push(Value::String(format!("--{name}")));
817 } else {
818 let lookup = param_lookup.get(name.as_str());
820 let is_bool = lookup
821 .map(|(_, typ, _)| is_bool_type(typ))
822 .unwrap_or(true); if is_bool {
825 tool_args.flags.insert(name.clone());
826 } else {
827 let canonical = lookup.map(|(n, _, _)| *n).unwrap_or(name.as_str());
833 let next_positional = positional_indices
834 .iter()
835 .find(|(idx, _)| *idx > i && !consumed_positionals.contains(idx));
836
837 if let Some((pos_idx, expr)) = next_positional {
838 if let Some(value) = eval_simple_expr(expr, ctx) {
839 tool_args.named.insert(canonical.to_string(), value);
840 consumed_positionals.insert(*pos_idx);
841 } else {
842 tool_args.flags.insert(name.clone());
843 }
844 } else {
845 tool_args.flags.insert(name.clone());
846 }
847 }
848 }
849 }
850 }
851 i += 1;
852 }
853
854 if let Some(schema) = schema.filter(|s| s.map_positionals) {
859 let pre_dash_count = if past_double_dash {
861 let dash_pos = args.iter().position(|a| matches!(a, Arg::DoubleDash)).unwrap_or(args.len());
863 positional_indices.iter()
865 .filter(|(idx, _)| *idx < dash_pos && !consumed_positionals.contains(idx))
866 .count()
867 } else {
868 tool_args.positional.len()
869 };
870
871 let mut remaining = Vec::new();
872 let mut positional_iter = tool_args.positional.drain(..).enumerate();
873
874 for param in &schema.params {
875 if tool_args.named.contains_key(¶m.name) || tool_args.flags.contains(¶m.name) {
876 continue; }
878 if is_bool_type(¶m.param_type) {
879 continue; }
881 loop {
883 match positional_iter.next() {
884 Some((idx, val)) if idx < pre_dash_count => {
885 tool_args.named.insert(param.name.clone(), val);
886 break;
887 }
888 Some((_, val)) => {
889 remaining.push(val); }
891 None => break,
892 }
893 }
894 }
895
896 remaining.extend(positional_iter.map(|(_, v)| v));
898 tool_args.positional = remaining;
899 }
900
901 tool_args
902}
903
904pub(crate) fn eval_simple_expr(expr: &Expr, ctx: &ExecContext) -> Option<Value> {
906 match expr {
907 Expr::Literal(value) => Some(eval_literal(value, ctx)),
908 Expr::VarRef(path) => ctx.scope.resolve_path(path),
909 Expr::Interpolated(parts) => {
910 let mut result = String::new();
911 for part in parts {
912 match part {
913 crate::ast::StringPart::Literal(s) => result.push_str(s),
914 crate::ast::StringPart::Var(path) => {
915 if let Some(value) = ctx.scope.resolve_path(path) {
916 result.push_str(&value_to_string(&value));
917 }
918 }
919 crate::ast::StringPart::VarWithDefault { name, default } => {
920 match ctx.scope.get(name) {
921 Some(value) => {
922 let s = value_to_string(value);
923 if s.is_empty() {
924 result.push_str(&eval_string_parts_sync(default, ctx));
925 } else {
926 result.push_str(&s);
927 }
928 }
929 None => result.push_str(&eval_string_parts_sync(default, ctx)),
930 }
931 }
932 crate::ast::StringPart::VarLength(name) => {
933 let len = match ctx.scope.get(name) {
934 Some(value) => value_to_string(value).len(),
935 None => 0,
936 };
937 result.push_str(&len.to_string());
938 }
939 crate::ast::StringPart::Positional(n) => {
940 if let Some(s) = ctx.scope.get_positional(*n) {
941 result.push_str(s);
942 }
943 }
944 crate::ast::StringPart::AllArgs => {
945 result.push_str(&ctx.scope.all_args().join(" "));
946 }
947 crate::ast::StringPart::ArgCount => {
948 result.push_str(&ctx.scope.arg_count().to_string());
949 }
950 crate::ast::StringPart::Arithmetic(expr) => {
951 if let Ok(value) = arithmetic::eval_arithmetic(expr, &ctx.scope) {
953 result.push_str(&value.to_string());
954 }
955 }
956 crate::ast::StringPart::CommandSubst(_) => {
957 }
959 crate::ast::StringPart::LastExitCode => {
960 result.push_str(&ctx.scope.last_result().code.to_string());
961 }
962 crate::ast::StringPart::CurrentPid => {
963 result.push_str(&ctx.scope.pid().to_string());
964 }
965 }
966 }
967 Some(Value::String(result))
968 }
969 Expr::GlobPattern(s) => Some(Value::String(s.clone())),
970 Expr::HereDocBody { parts, strip_tabs } => {
971 let unwrapped: Vec<crate::ast::StringPart> =
975 parts.iter().map(|sp| sp.part.clone()).collect();
976 let raw = eval_string_parts_sync(&unwrapped, ctx);
977 let body = if *strip_tabs {
978 crate::interpreter::strip_leading_tabs(&raw)
979 } else {
980 raw
981 };
982 Some(Value::String(body))
983 }
984 _ => None, }
986}
987
988fn eval_literal(value: &Value, _ctx: &ExecContext) -> Value {
990 value.clone()
991}
992
993fn value_to_string(value: &Value) -> String {
995 match value {
996 Value::Null => "".to_string(),
997 Value::Bool(b) => b.to_string(),
998 Value::Int(i) => i.to_string(),
999 Value::Float(f) => f.to_string(),
1000 Value::String(s) => s.clone(),
1001 Value::Json(json) => json.to_string(),
1002 Value::Blob(blob) => format!("[blob: {} {}]", blob.formatted_size(), blob.content_type),
1003 }
1004}
1005
1006fn eval_string_parts_sync(parts: &[crate::ast::StringPart], ctx: &ExecContext) -> String {
1009 let mut result = String::new();
1010 for part in parts {
1011 match part {
1012 crate::ast::StringPart::Literal(s) => result.push_str(s),
1013 crate::ast::StringPart::Var(path) => {
1014 if let Some(value) = ctx.scope.resolve_path(path) {
1015 result.push_str(&value_to_string(&value));
1016 }
1017 }
1018 crate::ast::StringPart::VarWithDefault { name, default } => {
1019 match ctx.scope.get(name) {
1020 Some(value) => {
1021 let s = value_to_string(value);
1022 if s.is_empty() {
1023 result.push_str(&eval_string_parts_sync(default, ctx));
1024 } else {
1025 result.push_str(&s);
1026 }
1027 }
1028 None => result.push_str(&eval_string_parts_sync(default, ctx)),
1029 }
1030 }
1031 crate::ast::StringPart::VarLength(name) => {
1032 let len = match ctx.scope.get(name) {
1033 Some(value) => value_to_string(value).len(),
1034 None => 0,
1035 };
1036 result.push_str(&len.to_string());
1037 }
1038 crate::ast::StringPart::Positional(n) => {
1039 if let Some(s) = ctx.scope.get_positional(*n) {
1040 result.push_str(s);
1041 }
1042 }
1043 crate::ast::StringPart::AllArgs => {
1044 result.push_str(&ctx.scope.all_args().join(" "));
1045 }
1046 crate::ast::StringPart::ArgCount => {
1047 result.push_str(&ctx.scope.arg_count().to_string());
1048 }
1049 crate::ast::StringPart::Arithmetic(expr) => {
1050 if let Ok(value) = arithmetic::eval_arithmetic(expr, &ctx.scope) {
1051 result.push_str(&value.to_string());
1052 }
1053 }
1054 crate::ast::StringPart::CommandSubst(_) => {
1055 }
1057 crate::ast::StringPart::LastExitCode => {
1058 result.push_str(&ctx.scope.last_result().code.to_string());
1059 }
1060 crate::ast::StringPart::CurrentPid => {
1061 result.push_str(&ctx.scope.pid().to_string());
1062 }
1063 }
1064 }
1065 result
1066}
1067
1068fn find_scatter_gather(commands: &[Command]) -> Option<(usize, usize)> {
1073 let scatter_idx = commands.iter().position(|c| c.name == "scatter")?;
1074 let gather_idx = commands.iter().position(|c| c.name == "gather")?;
1075
1076 if gather_idx > scatter_idx {
1078 Some((scatter_idx, gather_idx))
1079 } else {
1080 None
1081 }
1082}
1083
1084#[cfg(test)]
1085mod select_leaf_tests {
1086 use super::*;
1087 use crate::tools::ParamSchema;
1088
1089 fn kj_schema() -> ToolSchema {
1094 ToolSchema::new("kj", "kaijutsu")
1095 .param(ParamSchema::new("confirm", "string"))
1096 .param(ParamSchema::new("verbose", "bool"))
1097 .subcommand(
1098 ToolSchema::new("context", "context ops")
1099 .with_command_aliases(["ctx"])
1100 .subcommand(ToolSchema::new("list", "list").with_command_aliases(["ls"]))
1101 .subcommand(
1102 ToolSchema::new("create", "create").param(
1103 ParamSchema::new("type", "string").with_aliases(["t"]),
1104 ),
1105 ),
1106 )
1107 }
1108
1109 fn word(s: &str) -> Arg {
1110 Arg::Positional(Expr::Literal(Value::String(s.to_string())))
1111 }
1112
1113 #[test]
1114 fn flat_tool_returns_root() {
1115 let schema = ToolSchema::new("cat", "concat")
1116 .param(ParamSchema::required("path", "string", "f").positional());
1117 let leaf = select_leaf(&schema, &[word("foo.txt")]).expect("flat ok");
1118 assert_eq!(leaf.name, "cat");
1119 }
1120
1121 #[test]
1122 fn single_hop() {
1123 let schema = kj_schema();
1124 let leaf = select_leaf(&schema, &[word("context")]).expect("ok");
1125 assert_eq!(leaf.name, "context");
1126 }
1127
1128 #[test]
1129 fn two_hops() {
1130 let schema = kj_schema();
1131 let leaf = select_leaf(&schema, &[word("context"), word("create")]).expect("ok");
1132 assert_eq!(leaf.name, "create");
1133 assert!(leaf.params.iter().any(|p| p.name == "type"), "leaf has --type");
1134 }
1135
1136 #[test]
1137 fn alias_hops_route() {
1138 let schema = kj_schema();
1139 let leaf = select_leaf(&schema, &[word("ctx"), word("ls")]).expect("ok");
1141 assert_eq!(leaf.name, "list");
1142 }
1143
1144 #[test]
1145 fn unknown_subcommand_stops_at_current_node() {
1146 let schema = kj_schema();
1147 let leaf = select_leaf(&schema, &[word("context"), word("nonesuch")]).expect("ok");
1150 assert_eq!(leaf.name, "context");
1151 }
1152
1153 #[test]
1154 fn root_bool_flag_before_path_does_not_disrupt_routing() {
1155 let schema = kj_schema();
1156 let args = vec![Arg::LongFlag("verbose".into()), word("context"), word("create")];
1159 let leaf = select_leaf(&schema, &args).expect("ok");
1160 assert_eq!(leaf.name, "create");
1161 }
1162
1163 #[test]
1164 fn root_value_flag_space_form_before_path_skips_its_value() {
1165 let schema = kj_schema();
1166 let args = vec![
1169 Arg::LongFlag("confirm".into()),
1170 word("nonce"),
1171 word("context"),
1172 word("create"),
1173 ];
1174 let leaf = select_leaf(&schema, &args).expect("ok");
1175 assert_eq!(leaf.name, "create");
1176 }
1177
1178 #[test]
1179 fn leaf_value_flag_after_path_routes_to_leaf() {
1180 let schema = kj_schema();
1181 let args = vec![
1184 word("context"),
1185 word("create"),
1186 Arg::LongFlag("type".into()),
1187 word("x"),
1188 ];
1189 let leaf = select_leaf(&schema, &args).expect("ok");
1190 assert_eq!(leaf.name, "create");
1191 assert!(leaf.params.iter().any(|p| p.name == "type"));
1192 }
1193
1194 #[test]
1195 fn double_dash_stops_routing() {
1196 let schema = kj_schema();
1197 let leaf = select_leaf(&schema, &[Arg::DoubleDash, word("context")]).expect("ok");
1199 assert_eq!(leaf.name, "kj");
1200 }
1201
1202 #[test]
1203 fn computed_subcommand_selector_errors() {
1204 let schema = kj_schema();
1205 let args = vec![Arg::Positional(Expr::CommandSubst(Box::new(
1208 crate::ast::Pipeline { commands: vec![], background: false },
1209 )))];
1210 let err = select_leaf(&schema, &args).expect_err("must error");
1211 let msg = err.to_string();
1212 assert!(msg.contains("subcommand name is required"), "got: {msg}");
1213 assert!(msg.contains("command substitution"), "names the cause: {msg}");
1214 }
1215
1216 #[test]
1217 fn variable_subcommand_selector_errors() {
1218 let schema = kj_schema();
1219 let args = vec![Arg::Positional(Expr::VarRef(crate::ast::VarPath::simple("sub")))];
1220 let err = select_leaf(&schema, &args).expect_err("must error");
1221 assert!(err.to_string().contains("variable reference"), "got: {err}");
1222 }
1223
1224 #[test]
1225 fn computed_positional_after_leaf_is_fine() {
1226 let schema = kj_schema();
1227 let args = vec![
1230 word("context"),
1231 word("list"),
1232 Arg::Positional(Expr::CommandSubst(Box::new(
1233 crate::ast::Pipeline { commands: vec![], background: false },
1234 ))),
1235 ];
1236 let leaf = select_leaf(&schema, &args).expect("ok");
1237 assert_eq!(leaf.name, "list");
1238 }
1239}
1240
1241#[cfg(test)]
1242mod tests {
1243 use super::*;
1244 use crate::dispatch::BackendDispatcher;
1245 use crate::tools::register_builtins;
1246 use crate::vfs::{Filesystem, MemoryFs, VfsRouter};
1247 use std::path::Path;
1248
1249 async fn make_runner_and_ctx() -> (PipelineRunner, ExecContext, BackendDispatcher) {
1250 let mut tools = ToolRegistry::new();
1251 register_builtins(&mut tools);
1252 let tools = Arc::new(tools);
1253 let runner = PipelineRunner::new(tools.clone());
1254 let dispatcher = BackendDispatcher::new(tools.clone());
1255
1256 let mut vfs = VfsRouter::new();
1257 let mem = MemoryFs::new();
1258 mem.write(Path::new("test.txt"), b"hello\nworld\nfoo").await.unwrap();
1259 vfs.mount("/", mem);
1260 let ctx = ExecContext::with_vfs_and_tools(Arc::new(vfs), tools);
1261
1262 (runner, ctx, dispatcher)
1263 }
1264
1265 fn make_cmd(name: &str, args: Vec<&str>) -> Command {
1266 Command {
1267 name: name.to_string(),
1268 args: args.iter().map(|s| Arg::Positional(Expr::Literal(Value::String(s.to_string())))).collect(),
1269 redirects: vec![],
1270 }
1271 }
1272
1273 #[tokio::test]
1274 async fn test_single_command() {
1275 let (runner, mut ctx, dispatcher) = make_runner_and_ctx().await;
1276 let cmd = make_cmd("echo", vec!["hello"]);
1277
1278 let result = runner.run(&[cmd], &mut ctx, &dispatcher).await;
1279 assert!(result.ok());
1280 assert_eq!(result.text_out().trim(), "hello");
1281 }
1282
1283 #[tokio::test]
1284 async fn test_pipeline_echo_grep() {
1285 let (runner, mut ctx, dispatcher) = make_runner_and_ctx().await;
1286
1287 let echo_cmd = Command {
1289 name: "echo".to_string(),
1290 args: vec![Arg::Positional(Expr::Literal(Value::String("hello\nworld".to_string())))],
1291 redirects: vec![],
1292 };
1293 let grep_cmd = Command {
1294 name: "grep".to_string(),
1295 args: vec![Arg::Positional(Expr::Literal(Value::String("world".to_string())))],
1296 redirects: vec![],
1297 };
1298
1299 let result = runner.run(&[echo_cmd, grep_cmd], &mut ctx, &dispatcher).await;
1300 assert!(result.ok());
1301 assert_eq!(result.text_out().trim(), "world");
1302 }
1303
1304 #[tokio::test]
1305 async fn test_pipeline_cat_grep() {
1306 let (runner, mut ctx, dispatcher) = make_runner_and_ctx().await;
1307
1308 let cat_cmd = make_cmd("cat", vec!["/test.txt"]);
1310 let grep_cmd = Command {
1311 name: "grep".to_string(),
1312 args: vec![Arg::Positional(Expr::Literal(Value::String("hello".to_string())))],
1313 redirects: vec![],
1314 };
1315
1316 let result = runner.run(&[cat_cmd, grep_cmd], &mut ctx, &dispatcher).await;
1317 assert!(result.ok());
1318 assert!(result.text_out().contains("hello"));
1319 }
1320
1321 #[tokio::test]
1322 async fn test_command_not_found() {
1323 let (runner, mut ctx, dispatcher) = make_runner_and_ctx().await;
1324 let cmd = make_cmd("nonexistent", vec![]);
1325
1326 let result = runner.run(&[cmd], &mut ctx, &dispatcher).await;
1327 assert!(!result.ok());
1328 assert_eq!(result.code, 127);
1329 assert!(result.err.contains("not found"));
1330 }
1331
1332 #[tokio::test]
1333 async fn test_pipeline_continues_on_failure() {
1334 let (runner, mut ctx, dispatcher) = make_runner_and_ctx().await;
1337
1338 let cat_cmd = make_cmd("cat", vec!["/nonexistent"]);
1341 let grep_cmd = Command {
1342 name: "grep".to_string(),
1343 args: vec![Arg::Positional(Expr::Literal(Value::String("hello".to_string())))],
1344 redirects: vec![],
1345 };
1346
1347 let result = runner.run(&[cat_cmd, grep_cmd], &mut ctx, &dispatcher).await;
1348 assert!(!result.ok());
1350 }
1351
1352 #[tokio::test]
1353 async fn test_pipeline_last_command_exit_code() {
1354 let (runner, mut ctx, dispatcher) = make_runner_and_ctx().await;
1356
1357 let echo_cmd = make_cmd("echo", vec!["hello"]);
1358 let cat_cmd = make_cmd("cat", vec![]);
1359
1360 let result = runner.run(&[echo_cmd, cat_cmd], &mut ctx, &dispatcher).await;
1361 assert!(result.ok());
1362 assert!(result.text_out().contains("hello"));
1363 }
1364
1365 #[tokio::test]
1366 async fn test_empty_pipeline() {
1367 let (runner, mut ctx, dispatcher) = make_runner_and_ctx().await;
1368 let result = runner.run(&[], &mut ctx, &dispatcher).await;
1369 assert!(result.ok());
1370 }
1371
1372 #[test]
1375 fn test_find_scatter_gather_both_present() {
1376 let commands = vec![
1377 make_cmd("echo", vec!["a"]),
1378 make_cmd("scatter", vec![]),
1379 make_cmd("process", vec![]),
1380 make_cmd("gather", vec![]),
1381 ];
1382 let result = find_scatter_gather(&commands);
1383 assert_eq!(result, Some((1, 3)));
1384 }
1385
1386 #[test]
1387 fn test_find_scatter_gather_no_scatter() {
1388 let commands = vec![
1389 make_cmd("echo", vec!["a"]),
1390 make_cmd("gather", vec![]),
1391 ];
1392 let result = find_scatter_gather(&commands);
1393 assert!(result.is_none());
1394 }
1395
1396 #[test]
1397 fn test_find_scatter_gather_no_gather() {
1398 let commands = vec![
1399 make_cmd("echo", vec!["a"]),
1400 make_cmd("scatter", vec![]),
1401 ];
1402 let result = find_scatter_gather(&commands);
1403 assert!(result.is_none());
1404 }
1405
1406 #[test]
1407 fn test_find_scatter_gather_wrong_order() {
1408 let commands = vec![
1409 make_cmd("gather", vec![]),
1410 make_cmd("scatter", vec![]),
1411 ];
1412 let result = find_scatter_gather(&commands);
1413 assert!(result.is_none());
1414 }
1415
1416 #[tokio::test]
1417 async fn test_scatter_gather_simple() {
1418 let (runner, mut ctx, dispatcher) = make_runner_and_ctx().await;
1419
1420 let split_cmd = Command {
1422 name: "split".to_string(),
1423 args: vec![Arg::Positional(Expr::Literal(Value::String("a b c".to_string())))],
1424 redirects: vec![],
1425 };
1426 let scatter_cmd = make_cmd("scatter", vec![]);
1427 let process_cmd = Command {
1428 name: "echo".to_string(),
1429 args: vec![Arg::Positional(Expr::VarRef(crate::ast::VarPath::simple("ITEM")))],
1430 redirects: vec![],
1431 };
1432 let gather_cmd = make_cmd("gather", vec![]);
1433
1434 let result = runner.run(&[split_cmd, scatter_cmd, process_cmd, gather_cmd], &mut ctx, &dispatcher).await;
1435 assert!(result.ok(), "scatter with structured data should succeed: {}", result.err);
1436 assert!(result.text_out().contains("a"));
1438 assert!(result.text_out().contains("b"));
1439 assert!(result.text_out().contains("c"));
1440 }
1441
1442 #[tokio::test]
1443 async fn test_scatter_gather_empty_input() {
1444 let (runner, mut ctx, dispatcher) = make_runner_and_ctx().await;
1445
1446 let echo_cmd = Command {
1448 name: "echo".to_string(),
1449 args: vec![Arg::Positional(Expr::Literal(Value::String("".to_string())))],
1450 redirects: vec![],
1451 };
1452 let scatter_cmd = make_cmd("scatter", vec![]);
1453 let process_cmd = Command {
1454 name: "echo".to_string(),
1455 args: vec![Arg::Positional(Expr::VarRef(crate::ast::VarPath::simple("ITEM")))],
1456 redirects: vec![],
1457 };
1458 let gather_cmd = make_cmd("gather", vec![]);
1459
1460 let result = runner.run(&[echo_cmd, scatter_cmd, process_cmd, gather_cmd], &mut ctx, &dispatcher).await;
1461 assert!(result.ok());
1462 assert!(result.text_out().trim().is_empty());
1463 }
1464
1465 #[tokio::test]
1466 async fn test_scatter_gather_with_structured_stdin() {
1467 let (runner, mut ctx, dispatcher) = make_runner_and_ctx().await;
1468
1469 let data = Value::Json(serde_json::json!(["x", "y", "z"]));
1471 ctx.set_stdin_with_data("x\ny\nz".to_string(), Some(data));
1472
1473 let scatter_cmd = make_cmd("scatter", vec![]);
1474 let process_cmd = Command {
1475 name: "echo".to_string(),
1476 args: vec![Arg::Positional(Expr::VarRef(crate::ast::VarPath::simple("ITEM")))],
1477 redirects: vec![],
1478 };
1479 let gather_cmd = make_cmd("gather", vec![]);
1480
1481 let result = runner.run(&[scatter_cmd, process_cmd, gather_cmd], &mut ctx, &dispatcher).await;
1482 assert!(result.ok(), "scatter with structured stdin should succeed: {}", result.err);
1483 assert!(result.text_out().contains("x"));
1484 assert!(result.text_out().contains("y"));
1485 assert!(result.text_out().contains("z"));
1486 }
1487
1488 #[tokio::test]
1489 async fn test_scatter_gather_json_input() {
1490 let (runner, mut ctx, dispatcher) = make_runner_and_ctx().await;
1491
1492 let data = Value::Json(serde_json::json!(["one", "two", "three"]));
1494 ctx.set_stdin_with_data(r#"["one", "two", "three"]"#.to_string(), Some(data));
1495
1496 let scatter_cmd = make_cmd("scatter", vec![]);
1497 let process_cmd = Command {
1498 name: "echo".to_string(),
1499 args: vec![Arg::Positional(Expr::VarRef(crate::ast::VarPath::simple("ITEM")))],
1500 redirects: vec![],
1501 };
1502 let gather_cmd = make_cmd("gather", vec![]);
1503
1504 let result = runner.run(&[scatter_cmd, process_cmd, gather_cmd], &mut ctx, &dispatcher).await;
1505 assert!(result.ok(), "scatter with JSON data should succeed: {}", result.err);
1506 assert!(result.text_out().contains("one"));
1507 assert!(result.text_out().contains("two"));
1508 assert!(result.text_out().contains("three"));
1509 }
1510
1511 #[tokio::test]
1512 async fn test_scatter_gather_with_post_gather() {
1513 let (runner, mut ctx, dispatcher) = make_runner_and_ctx().await;
1514
1515 let split_cmd = Command {
1517 name: "split".to_string(),
1518 args: vec![Arg::Positional(Expr::Literal(Value::String("a b".to_string())))],
1519 redirects: vec![],
1520 };
1521 let scatter_cmd = make_cmd("scatter", vec![]);
1522 let process_cmd = Command {
1523 name: "echo".to_string(),
1524 args: vec![Arg::Positional(Expr::VarRef(crate::ast::VarPath::simple("ITEM")))],
1525 redirects: vec![],
1526 };
1527 let gather_cmd = make_cmd("gather", vec![]);
1528 let grep_cmd = Command {
1529 name: "grep".to_string(),
1530 args: vec![Arg::Positional(Expr::Literal(Value::String("a".to_string())))],
1531 redirects: vec![],
1532 };
1533
1534 let result = runner.run(&[split_cmd, scatter_cmd, process_cmd, gather_cmd, grep_cmd], &mut ctx, &dispatcher).await;
1535 assert!(result.ok(), "scatter with post_gather should succeed: {}", result.err);
1536 assert!(result.text_out().contains("a"));
1537 assert!(!result.text_out().contains("b"));
1538 }
1539
1540 #[tokio::test]
1541 async fn test_scatter_custom_var_name() {
1542 let (runner, mut ctx, dispatcher) = make_runner_and_ctx().await;
1543
1544 let data = Value::Json(serde_json::json!(["test1", "test2"]));
1546 ctx.set_stdin_with_data("test1\ntest2".to_string(), Some(data));
1547
1548 let scatter_cmd = Command {
1550 name: "scatter".to_string(),
1551 args: vec![Arg::Named {
1552 key: "as".to_string(),
1553 value: Expr::Literal(Value::String("URL".to_string())),
1554 }],
1555 redirects: vec![],
1556 };
1557 let process_cmd = Command {
1558 name: "echo".to_string(),
1559 args: vec![Arg::Positional(Expr::VarRef(crate::ast::VarPath::simple("URL")))],
1560 redirects: vec![],
1561 };
1562 let gather_cmd = make_cmd("gather", vec![]);
1563
1564 let result = runner.run(&[scatter_cmd, process_cmd, gather_cmd], &mut ctx, &dispatcher).await;
1565 assert!(result.ok(), "scatter with custom var should succeed: {}", result.err);
1566 assert!(result.text_out().contains("test1"));
1567 assert!(result.text_out().contains("test2"));
1568 }
1569
1570 #[tokio::test]
1573 async fn test_pipeline_routes_through_backend() {
1574 use crate::backend::testing::MockBackend;
1575 use std::sync::atomic::Ordering;
1576
1577 let (backend, call_count) = MockBackend::new();
1579 let backend: std::sync::Arc<dyn crate::backend::KernelBackend> = std::sync::Arc::new(backend);
1580
1581 let mut ctx = crate::tools::ExecContext::with_backend(backend);
1583
1584 let tools = std::sync::Arc::new(ToolRegistry::new());
1586 let runner = PipelineRunner::new(tools.clone());
1587 let dispatcher = BackendDispatcher::new(tools);
1588
1589 let cmd = make_cmd("test-tool", vec!["arg1"]);
1591 let result = runner.run(&[cmd], &mut ctx, &dispatcher).await;
1592
1593 assert!(result.ok(), "Mock backend should return success");
1594 assert_eq!(call_count.load(Ordering::SeqCst), 1, "call_tool should be invoked once");
1595 assert!(result.text_out().contains("mock executed"), "Output should be from mock backend");
1596 }
1597
1598 #[tokio::test]
1599 async fn test_multi_command_pipeline_routes_through_backend() {
1600 use crate::backend::testing::MockBackend;
1601 use std::sync::atomic::Ordering;
1602
1603 let (backend, call_count) = MockBackend::new();
1604 let backend: std::sync::Arc<dyn crate::backend::KernelBackend> = std::sync::Arc::new(backend);
1605 let mut ctx = crate::tools::ExecContext::with_backend(backend);
1606
1607 let tools = std::sync::Arc::new(ToolRegistry::new());
1608 let runner = PipelineRunner::new(tools.clone());
1609 let dispatcher = BackendDispatcher::new(tools);
1610
1611 let cmd1 = make_cmd("tool1", vec![]);
1613 let cmd2 = make_cmd("tool2", vec![]);
1614 let cmd3 = make_cmd("tool3", vec![]);
1615
1616 let result = runner.run(&[cmd1, cmd2, cmd3], &mut ctx, &dispatcher).await;
1617
1618 assert!(result.ok());
1619 assert_eq!(call_count.load(Ordering::SeqCst), 3, "call_tool should be invoked for each command");
1620 }
1621
1622 use crate::tools::{ParamSchema, ToolSchema};
1625
1626 fn make_test_schema() -> ToolSchema {
1627 ToolSchema::new("test-tool", "A test tool for schema-aware parsing")
1628 .param(ParamSchema::required("query", "string", "Search query"))
1629 .param(ParamSchema::optional("limit", "int", Value::Int(10), "Max results"))
1630 .param(ParamSchema::optional("verbose", "bool", Value::Bool(false), "Verbose output"))
1631 .param(ParamSchema::optional("output", "string", Value::String("stdout".into()), "Output destination"))
1632 .with_positional_mapping()
1633 }
1634
1635 fn make_minimal_ctx() -> ExecContext {
1636 let mut vfs = VfsRouter::new();
1637 vfs.mount("/", MemoryFs::new());
1638 ExecContext::new(Arc::new(vfs))
1639 }
1640
1641 #[test]
1642 fn test_schema_aware_string_arg() {
1643 let args = vec![
1645 Arg::LongFlag("query".to_string()),
1646 Arg::Positional(Expr::Literal(Value::String("test".to_string()))),
1647 ];
1648 let schema = make_test_schema();
1649 let ctx = make_minimal_ctx();
1650
1651 let tool_args = build_tool_args(&args, &ctx, Some(&schema));
1652
1653 assert!(tool_args.flags.is_empty(), "No flags should be set");
1654 assert!(tool_args.positional.is_empty(), "No positionals - consumed by --query");
1655 assert_eq!(
1656 tool_args.named.get("query"),
1657 Some(&Value::String("test".to_string())),
1658 "--query should consume 'test' as its value"
1659 );
1660 }
1661
1662 #[test]
1663 fn test_schema_aware_bool_flag() {
1664 let args = vec![
1666 Arg::LongFlag("verbose".to_string()),
1667 ];
1668 let schema = make_test_schema();
1669 let ctx = make_minimal_ctx();
1670
1671 let tool_args = build_tool_args(&args, &ctx, Some(&schema));
1672
1673 assert!(tool_args.flags.contains("verbose"), "--verbose should be a flag");
1674 assert!(tool_args.named.is_empty(), "No named args");
1675 assert!(tool_args.positional.is_empty(), "No positionals");
1676 }
1677
1678 #[test]
1679 fn test_schema_aware_mixed() {
1680 let args = vec![
1683 Arg::Positional(Expr::Literal(Value::String("file.txt".to_string()))),
1684 Arg::LongFlag("output".to_string()),
1685 Arg::Positional(Expr::Literal(Value::String("out.txt".to_string()))),
1686 Arg::LongFlag("verbose".to_string()),
1687 ];
1688 let schema = make_test_schema();
1689 let ctx = make_minimal_ctx();
1690
1691 let tool_args = build_tool_args(&args, &ctx, Some(&schema));
1692
1693 assert!(tool_args.positional.is_empty(), "file.txt consumed as query param");
1694 assert_eq!(
1695 tool_args.named.get("query"),
1696 Some(&Value::String("file.txt".to_string()))
1697 );
1698 assert_eq!(
1699 tool_args.named.get("output"),
1700 Some(&Value::String("out.txt".to_string()))
1701 );
1702 assert!(tool_args.flags.contains("verbose"));
1703 }
1704
1705 #[test]
1706 fn test_schema_aware_multiple_string_args() {
1707 let args = vec![
1709 Arg::LongFlag("query".to_string()),
1710 Arg::Positional(Expr::Literal(Value::String("test".to_string()))),
1711 Arg::LongFlag("output".to_string()),
1712 Arg::Positional(Expr::Literal(Value::String("result.json".to_string()))),
1713 Arg::LongFlag("verbose".to_string()),
1714 Arg::LongFlag("limit".to_string()),
1715 Arg::Positional(Expr::Literal(Value::Int(5))),
1716 ];
1717 let schema = make_test_schema();
1718 let ctx = make_minimal_ctx();
1719
1720 let tool_args = build_tool_args(&args, &ctx, Some(&schema));
1721
1722 assert!(tool_args.positional.is_empty(), "All positionals consumed");
1723 assert_eq!(
1724 tool_args.named.get("query"),
1725 Some(&Value::String("test".to_string()))
1726 );
1727 assert_eq!(
1728 tool_args.named.get("output"),
1729 Some(&Value::String("result.json".to_string()))
1730 );
1731 assert_eq!(
1732 tool_args.named.get("limit"),
1733 Some(&Value::Int(5))
1734 );
1735 assert!(tool_args.flags.contains("verbose"));
1736 }
1737
1738 #[test]
1739 fn test_schema_aware_double_dash() {
1740 let args = vec![
1743 Arg::LongFlag("output".to_string()),
1744 Arg::Positional(Expr::Literal(Value::String("out.txt".to_string()))),
1745 Arg::DoubleDash,
1746 Arg::Positional(Expr::Literal(Value::String("--this-is-data".to_string()))),
1747 ];
1748 let schema = make_test_schema();
1749 let ctx = make_minimal_ctx();
1750
1751 let tool_args = build_tool_args(&args, &ctx, Some(&schema));
1752
1753 assert_eq!(
1754 tool_args.named.get("output"),
1755 Some(&Value::String("out.txt".to_string()))
1756 );
1757 assert_eq!(
1759 tool_args.positional,
1760 vec![Value::String("--this-is-data".to_string())]
1761 );
1762 }
1763
1764 #[test]
1765 fn test_no_schema_fallback() {
1766 let args = vec![
1768 Arg::LongFlag("query".to_string()),
1769 Arg::Positional(Expr::Literal(Value::String("test".to_string()))),
1770 ];
1771 let ctx = make_minimal_ctx();
1772
1773 let tool_args = build_tool_args(&args, &ctx, None);
1774
1775 assert!(tool_args.flags.contains("query"), "--query should be a flag");
1777 assert_eq!(
1778 tool_args.positional,
1779 vec![Value::String("test".to_string())],
1780 "'test' should be a positional"
1781 );
1782 }
1783
1784 #[test]
1785 fn test_unknown_flag_in_schema() {
1786 let args = vec![
1788 Arg::LongFlag("unknown".to_string()),
1789 Arg::Positional(Expr::Literal(Value::String("value".to_string()))),
1790 ];
1791 let schema = make_test_schema();
1792 let ctx = make_minimal_ctx();
1793
1794 let tool_args = build_tool_args(&args, &ctx, Some(&schema));
1795
1796 assert!(tool_args.flags.contains("unknown"));
1797 assert!(tool_args.positional.is_empty(), "value consumed as query param");
1798 assert_eq!(
1799 tool_args.named.get("query"),
1800 Some(&Value::String("value".to_string()))
1801 );
1802 }
1803
1804 #[test]
1805 fn test_named_args_unchanged() {
1806 let args = vec![
1808 Arg::Named {
1809 key: "query".to_string(),
1810 value: Expr::Literal(Value::String("test".to_string())),
1811 },
1812 Arg::LongFlag("verbose".to_string()),
1813 ];
1814 let schema = make_test_schema();
1815 let ctx = make_minimal_ctx();
1816
1817 let tool_args = build_tool_args(&args, &ctx, Some(&schema));
1818
1819 assert_eq!(
1820 tool_args.named.get("query"),
1821 Some(&Value::String("test".to_string()))
1822 );
1823 assert!(tool_args.flags.contains("verbose"));
1824 }
1825
1826 #[test]
1827 fn test_short_flags_unchanged() {
1828 let args = vec![
1830 Arg::ShortFlag("la".to_string()),
1831 Arg::Positional(Expr::Literal(Value::String("file.txt".to_string()))),
1832 ];
1833 let schema = make_test_schema();
1834 let ctx = make_minimal_ctx();
1835
1836 let tool_args = build_tool_args(&args, &ctx, Some(&schema));
1837
1838 assert!(tool_args.flags.contains("l"));
1839 assert!(tool_args.flags.contains("a"));
1840 assert!(tool_args.positional.is_empty(), "file.txt consumed as query param");
1841 assert_eq!(
1842 tool_args.named.get("query"),
1843 Some(&Value::String("file.txt".to_string()))
1844 );
1845 }
1846
1847 #[test]
1848 fn test_flag_at_end_no_value() {
1849 let args = vec![
1852 Arg::Positional(Expr::Literal(Value::String("file.txt".to_string()))),
1853 Arg::LongFlag("output".to_string()),
1854 ];
1855 let schema = make_test_schema();
1856 let ctx = make_minimal_ctx();
1857
1858 let tool_args = build_tool_args(&args, &ctx, Some(&schema));
1859
1860 assert!(tool_args.flags.contains("output"));
1862 assert!(tool_args.positional.is_empty(), "file.txt consumed as query param");
1863 assert_eq!(
1864 tool_args.named.get("query"),
1865 Some(&Value::String("file.txt".to_string()))
1866 );
1867 }
1868
1869 #[test]
1870 fn test_positional_skips_bool_params() {
1871 let schema = ToolSchema::new("test", "")
1875 .param(ParamSchema::required("query", "string", ""))
1876 .param(ParamSchema::optional(
1877 "verbose",
1878 "bool",
1879 Value::Bool(false),
1880 "",
1881 ))
1882 .param(ParamSchema::optional(
1883 "output",
1884 "string",
1885 Value::Null,
1886 "",
1887 ))
1888 .with_positional_mapping();
1889 let args = vec![
1890 Arg::Positional(Expr::Literal(Value::String("val1".to_string()))),
1891 Arg::Positional(Expr::Literal(Value::String("val2".to_string()))),
1892 ];
1893 let ctx = make_minimal_ctx();
1894
1895 let tool_args = build_tool_args(&args, &ctx, Some(&schema));
1896
1897 assert_eq!(
1898 tool_args.named.get("query"),
1899 Some(&Value::String("val1".to_string()))
1900 );
1901 assert_eq!(
1902 tool_args.named.get("output"),
1903 Some(&Value::String("val2".to_string()))
1904 );
1905 assert!(!tool_args.flags.contains("verbose"));
1906 assert!(tool_args.positional.is_empty());
1907 }
1908
1909 #[test]
1910 fn test_positionals_fill_available_slots() {
1911 let args = vec![
1914 Arg::Positional(Expr::Literal(Value::String("val1".to_string()))),
1915 Arg::Positional(Expr::Literal(Value::String("val2".to_string()))),
1916 Arg::Positional(Expr::Literal(Value::String("val3".to_string()))),
1917 ];
1918 let schema = make_test_schema(); let ctx = make_minimal_ctx();
1920
1921 let tool_args = build_tool_args(&args, &ctx, Some(&schema));
1922
1923 assert_eq!(
1926 tool_args.named.get("query"),
1927 Some(&Value::String("val1".to_string()))
1928 );
1929 assert_eq!(
1930 tool_args.named.get("limit"),
1931 Some(&Value::String("val2".to_string()))
1932 );
1933 assert_eq!(
1934 tool_args.named.get("output"),
1935 Some(&Value::String("val3".to_string()))
1936 );
1937 assert!(tool_args.positional.is_empty());
1938 }
1939
1940 #[test]
1941 fn test_truly_excess_positionals() {
1942 let schema = ToolSchema::new("test", "")
1944 .param(ParamSchema::required("name", "string", ""))
1945 .with_positional_mapping();
1946 let args = vec![
1947 Arg::Positional(Expr::Literal(Value::String("first".to_string()))),
1948 Arg::Positional(Expr::Literal(Value::String("second".to_string()))),
1949 Arg::Positional(Expr::Literal(Value::String("third".to_string()))),
1950 ];
1951 let ctx = make_minimal_ctx();
1952
1953 let tool_args = build_tool_args(&args, &ctx, Some(&schema));
1954
1955 assert_eq!(
1956 tool_args.named.get("name"),
1957 Some(&Value::String("first".to_string()))
1958 );
1959 assert_eq!(
1960 tool_args.positional,
1961 vec![
1962 Value::String("second".to_string()),
1963 Value::String("third".to_string()),
1964 ]
1965 );
1966 }
1967
1968 #[test]
1969 fn test_double_dash_positional_not_mapped() {
1970 let args = vec![
1972 Arg::Positional(Expr::Literal(Value::String("val1".to_string()))),
1973 Arg::DoubleDash,
1974 Arg::Positional(Expr::Literal(Value::String("val2".to_string()))),
1975 ];
1976 let schema = make_test_schema();
1977 let ctx = make_minimal_ctx();
1978
1979 let tool_args = build_tool_args(&args, &ctx, Some(&schema));
1980
1981 assert_eq!(
1982 tool_args.named.get("query"),
1983 Some(&Value::String("val1".to_string()))
1984 );
1985 assert_eq!(
1987 tool_args.positional,
1988 vec![Value::String("val2".to_string())]
1989 );
1990 }
1991
1992 #[test]
1993 fn test_all_params_filled_by_flags() {
1994 let args = vec![
1996 Arg::LongFlag("query".to_string()),
1997 Arg::Positional(Expr::Literal(Value::String("search".to_string()))),
1998 Arg::LongFlag("output".to_string()),
1999 Arg::Positional(Expr::Literal(Value::String("out.txt".to_string()))),
2000 Arg::LongFlag("verbose".to_string()),
2001 ];
2002 let schema = make_test_schema();
2003 let ctx = make_minimal_ctx();
2004
2005 let tool_args = build_tool_args(&args, &ctx, Some(&schema));
2006
2007 assert_eq!(
2008 tool_args.named.get("query"),
2009 Some(&Value::String("search".to_string()))
2010 );
2011 assert_eq!(
2012 tool_args.named.get("output"),
2013 Some(&Value::String("out.txt".to_string()))
2014 );
2015 assert!(tool_args.flags.contains("verbose"));
2016 assert!(tool_args.positional.is_empty());
2017 }
2018
2019 #[test]
2020 fn test_mixed_flags_and_positional_fill() {
2021 let args = vec![
2023 Arg::LongFlag("output".to_string()),
2024 Arg::Positional(Expr::Literal(Value::String("foo".to_string()))),
2025 Arg::Positional(Expr::Literal(Value::String("val1".to_string()))),
2026 ];
2027 let schema = make_test_schema();
2028 let ctx = make_minimal_ctx();
2029
2030 let tool_args = build_tool_args(&args, &ctx, Some(&schema));
2031
2032 assert_eq!(
2033 tool_args.named.get("output"),
2034 Some(&Value::String("foo".to_string()))
2035 );
2036 assert_eq!(
2037 tool_args.named.get("query"),
2038 Some(&Value::String("val1".to_string()))
2039 );
2040 assert!(tool_args.positional.is_empty());
2041 }
2042
2043 #[test]
2044 fn test_alias_flag_prevents_mapping_overwrite() {
2045 let schema = ToolSchema::new("test", "")
2047 .param(ParamSchema::required("query", "string", "").with_aliases(["-q"]))
2048 .param(ParamSchema::required("output", "string", ""))
2049 .with_positional_mapping();
2050 let args = vec![
2051 Arg::ShortFlag("q".to_string()),
2052 Arg::Positional(Expr::Literal(Value::String("search".to_string()))),
2053 Arg::Positional(Expr::Literal(Value::String("out.txt".to_string()))),
2054 ];
2055 let ctx = make_minimal_ctx();
2056
2057 let tool_args = build_tool_args(&args, &ctx, Some(&schema));
2058
2059 assert_eq!(
2060 tool_args.named.get("query"),
2061 Some(&Value::String("search".to_string()))
2062 );
2063 assert_eq!(
2064 tool_args.named.get("output"),
2065 Some(&Value::String("out.txt".to_string()))
2066 );
2067 assert!(tool_args.positional.is_empty());
2068 }
2069
2070 #[test]
2071 fn test_builtin_schema_no_positional_mapping() {
2072 let schema = ToolSchema::new("echo", "")
2074 .param(ParamSchema::optional("args", "any", Value::Null, ""))
2075 .param(ParamSchema::optional("no_newline", "bool", Value::Bool(false), ""));
2076 let args = vec![
2078 Arg::Positional(Expr::Literal(Value::String("hello".to_string()))),
2079 Arg::Positional(Expr::Literal(Value::String("world".to_string()))),
2080 ];
2081 let ctx = make_minimal_ctx();
2082
2083 let tool_args = build_tool_args(&args, &ctx, Some(&schema));
2084
2085 assert_eq!(
2087 tool_args.positional,
2088 vec![
2089 Value::String("hello".to_string()),
2090 Value::String("world".to_string()),
2091 ]
2092 );
2093 assert!(tool_args.named.get("args").is_none());
2094 }
2095
2096 #[test]
2097 fn test_short_flag_with_alias_consumes_value() {
2098 let schema = ToolSchema::new("head", "Output first part of files")
2101 .param(ParamSchema::optional("lines", "int", Value::Int(10), "Number of lines")
2102 .with_aliases(["-n"]));
2103 let args = vec![
2104 Arg::ShortFlag("n".to_string()),
2105 Arg::Positional(Expr::Literal(Value::Int(5))),
2106 Arg::Positional(Expr::Literal(Value::String("/tmp/file.txt".to_string()))),
2107 ];
2108 let ctx = make_minimal_ctx();
2109
2110 let tool_args = build_tool_args(&args, &ctx, Some(&schema));
2111
2112 assert!(tool_args.flags.is_empty(), "no boolean flags: {:?}", tool_args.flags);
2113 assert_eq!(tool_args.named.get("lines"), Some(&Value::Int(5)), "should resolve alias to canonical name");
2114 assert_eq!(tool_args.positional, vec![Value::String("/tmp/file.txt".to_string())]);
2115 }
2116
2117 #[tokio::test]
2120 async fn test_merge_stderr_redirect() {
2121 let result = ExecResult::from_output(0, "stdout content", "stderr content");
2123
2124 let redirects = vec![Redirect {
2125 kind: RedirectKind::MergeStderr,
2126 target: Expr::Literal(Value::Null),
2127 }];
2128
2129 let ctx = make_minimal_ctx();
2130 let result = apply_redirects(result, &redirects, &ctx).await;
2131
2132 assert_eq!(&*result.text_out(), "stdout contentstderr content");
2133 assert!(result.err.is_empty());
2134 }
2135
2136 #[tokio::test]
2137 async fn test_merge_stderr_with_empty_stderr() {
2138 let result = ExecResult::from_output(0, "stdout only", "");
2140
2141 let redirects = vec![Redirect {
2142 kind: RedirectKind::MergeStderr,
2143 target: Expr::Literal(Value::Null),
2144 }];
2145
2146 let ctx = make_minimal_ctx();
2147 let result = apply_redirects(result, &redirects, &ctx).await;
2148
2149 assert_eq!(&*result.text_out(), "stdout only");
2150 assert!(result.err.is_empty());
2151 }
2152
2153 #[tokio::test]
2154 async fn test_merge_stderr_order_matters() {
2155 let result = ExecResult::from_output(0, "stdout\n", "stderr\n");
2160
2161 let redirects = vec![Redirect {
2163 kind: RedirectKind::MergeStderr,
2164 target: Expr::Literal(Value::Null),
2165 }];
2166
2167 let ctx = make_minimal_ctx();
2168 let result = apply_redirects(result, &redirects, &ctx).await;
2169
2170 assert_eq!(&*result.text_out(), "stdout\nstderr\n");
2171 assert!(result.err.is_empty());
2172 }
2173
2174 #[tokio::test]
2175 async fn test_redirect_with_command_execution() {
2176 let (runner, mut ctx, dispatcher) = make_runner_and_ctx().await;
2177
2178 let cmd = Command {
2180 name: "echo".to_string(),
2181 args: vec![Arg::Positional(Expr::Literal(Value::String("hello".to_string())))],
2182 redirects: vec![Redirect {
2183 kind: RedirectKind::MergeStderr,
2184 target: Expr::Literal(Value::Null),
2185 }],
2186 };
2187
2188 let result = runner.run(&[cmd], &mut ctx, &dispatcher).await;
2189 assert!(result.ok());
2190 assert!(result.text_out().contains("hello"));
2192 }
2193
2194 #[tokio::test]
2195 async fn test_merge_stderr_in_pipeline() {
2196 let (runner, mut ctx, dispatcher) = make_runner_and_ctx().await;
2197
2198 let echo_cmd = Command {
2201 name: "echo".to_string(),
2202 args: vec![Arg::Positional(Expr::Literal(Value::String("output".to_string())))],
2203 redirects: vec![Redirect {
2204 kind: RedirectKind::MergeStderr,
2205 target: Expr::Literal(Value::Null),
2206 }],
2207 };
2208 let grep_cmd = Command {
2209 name: "grep".to_string(),
2210 args: vec![Arg::Positional(Expr::Literal(Value::String("output".to_string())))],
2211 redirects: vec![],
2212 };
2213
2214 let result = runner.run(&[echo_cmd, grep_cmd], &mut ctx, &dispatcher).await;
2215 assert!(result.ok(), "result failed: code={}, err={}", result.code, result.err);
2216 assert!(result.text_out().contains("output"));
2217 }
2218}