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mars_agents/sync/
mod.rs

1pub mod apply;
2pub mod diff;
3pub mod filter;
4pub mod mutation;
5pub mod plan;
6pub mod provider;
7pub mod rewrite;
8pub mod target;
9pub mod types;
10
11use std::cmp::Reverse;
12use std::collections::BTreeMap;
13use std::collections::{BinaryHeap, HashMap, HashSet, VecDeque};
14use std::path::Path;
15
16use crate::config::{Config, EffectiveConfig, LocalConfig, Settings};
17use crate::diagnostic::{Diagnostic, DiagnosticCollector};
18use crate::error::MarsError;
19use crate::fs::FileLock;
20use crate::hash;
21use crate::lock::{ItemId, ItemKind};
22use crate::lock::{LockFile, LockIndex};
23use crate::resolve::{ResolveOptions, ResolvedGraph};
24use crate::source::GlobalCache;
25use crate::sync::apply::ApplyResult;
26pub use crate::sync::apply::SyncOptions;
27use crate::sync::target::{TargetItem, TargetState};
28use crate::types::managed_cmd;
29use crate::types::{ContentHash, DestPath, MarsContext, SourceId, SourceName, SourceOrigin};
30use crate::validate::ValidationWarning;
31
32// Re-export mutation types for public API compatibility.
33pub use crate::sync::mutation::{ConfigMutation, DependencyUpsertChange, apply_config_mutation};
34
35/// Report from a completed sync operation.
36#[derive(Debug)]
37pub struct SyncReport {
38    pub applied: ApplyResult,
39    pub pruned: Vec<apply::ActionOutcome>,
40    pub diagnostics: Vec<Diagnostic>,
41    pub dependency_changes: Vec<DependencyUpsertChange>,
42    pub upgrades_available: usize,
43    /// Per-target sync outcomes from the target sync phase.
44    pub target_outcomes: Vec<crate::target_sync::TargetSyncOutcome>,
45    /// Whether this was a dry run (`--diff`). Affects output wording only.
46    pub dry_run: bool,
47}
48
49impl SyncReport {
50    /// Whether the sync produced any unresolved conflicts.
51    pub fn has_conflicts(&self) -> bool {
52        self.applied
53            .outcomes
54            .iter()
55            .any(|o| matches!(o.action, apply::ActionTaken::Conflicted))
56    }
57}
58
59/// What a CLI command requests from the sync pipeline.
60#[derive(Debug, Clone)]
61pub struct SyncRequest {
62    /// How to resolve versions.
63    pub resolution: ResolutionMode,
64    /// Config mutation to apply under flock.
65    pub mutation: Option<ConfigMutation>,
66    /// Behavior flags.
67    pub options: SyncOptions,
68}
69
70/// Resolution behavior for the resolver stage.
71#[derive(Debug, Clone)]
72pub enum ResolutionMode {
73    /// Normal sync behavior.
74    Normal,
75    /// Upgrade behavior (maximize versions), optionally scoped to specific
76    /// sources and optionally bumping direct constraints.
77    Maximize {
78        targets: HashSet<SourceName>,
79        bump: bool,
80    },
81}
82
83// ---------------------------------------------------------------------------
84// Pipeline phase structs — typed handoffs between pipeline stages.
85// Phase functions consume prior state by value (move semantics, no cloning).
86// ---------------------------------------------------------------------------
87
88/// Phase 1: Load and validate configuration under sync lock.
89pub(crate) struct LoadedConfig {
90    pub config: Config,
91    pub local: LocalConfig,
92    pub effective: EffectiveConfig,
93    pub old_lock: LockFile,
94    pub dependency_changes: Vec<DependencyUpsertChange>,
95    /// Intentional keepalive — holds the sync file lock for the duration of the pipeline. Dropping this field releases the lock.
96    #[allow(dead_code)]
97    pub sync_lock: FileLock,
98}
99
100/// Phase 2: Resolved dependency graph.
101pub(crate) struct ResolvedState {
102    pub loaded: LoadedConfig,
103    pub graph: ResolvedGraph,
104}
105
106/// Phase 3: Desired target state after discovery + filtering.
107pub(crate) struct TargetedState {
108    pub resolved: ResolvedState,
109    pub target: TargetState,
110    pub warnings: Vec<ValidationWarning>,
111}
112
113/// Phase 4: Diff + plan ready for execution.
114pub(crate) struct PlannedState {
115    pub targeted: TargetedState,
116    pub plan: plan::SyncPlan,
117}
118
119/// Phase 5: Applied results.
120pub(crate) struct AppliedState {
121    pub planned: PlannedState,
122    pub applied: ApplyResult,
123}
124
125/// Phase 6: Target sync results.
126pub(crate) struct SyncedState {
127    pub applied: AppliedState,
128    pub target_outcomes: Vec<crate::target_sync::TargetSyncOutcome>,
129    pub config_entries: BTreeMap<String, BTreeMap<String, crate::lock::ConfigEntryRecord>>,
130}
131
132/// Execute the unified sync pipeline.
133///
134/// Orchestrates phase functions, each consuming the prior phase's output struct.
135pub fn execute(ctx: &MarsContext, request: &SyncRequest) -> Result<SyncReport, MarsError> {
136    validate_request(request)?;
137    let mut diag = DiagnosticCollector::new();
138    let ir = crate::reader::read(ctx, request, &mut diag)?;
139    crate::compiler::compile(ctx, ir, request, &mut diag)
140}
141
142// ---------------------------------------------------------------------------
143// Phase functions
144// ---------------------------------------------------------------------------
145
146/// Phase 1: Acquire sync lock, load config, apply mutations, merge effective config,
147/// and load the existing lock file.
148pub(crate) fn load_config(
149    ctx: &MarsContext,
150    request: &SyncRequest,
151    diag: &mut DiagnosticCollector,
152) -> Result<LoadedConfig, MarsError> {
153    let project_root = &ctx.project_root;
154    let mars_dir = project_root.join(".mars");
155
156    std::fs::create_dir_all(mars_dir.join("cache"))?;
157
158    // Acquire sync lock before any config reads/mutations.
159    let lock_path = mars_dir.join("sync.lock");
160    let _sync_lock = crate::fs::FileLock::acquire(&lock_path)?;
161
162    // Load config under lock (auto-init when mutating and missing).
163    let mut config = match crate::config::load(project_root) {
164        Ok(config) => config,
165        Err(err) if mutation::is_config_not_found(&err) && request.mutation.is_some() => Config {
166            settings: Settings::default(),
167            ..Config::default()
168        },
169        Err(err) => return Err(err),
170    };
171
172    // Apply config mutation.
173    let dependency_changes = if let Some(m) = &request.mutation {
174        mutation::apply_mutation(&mut config, m)?
175    } else {
176        Vec::new()
177    };
178
179    // Load/mutate local overrides under the same lock.
180    let mut local = crate::config::load_local(project_root)?;
181    if let Some(m) = &request.mutation {
182        mutation::apply_local_mutation(&mut local, m);
183    }
184
185    // Build effective config.
186    let (effective, config_diagnostics) =
187        crate::config::merge_with_root(config.clone(), local.clone(), project_root)?;
188    diag.extend(config_diagnostics);
189
190    // Load existing lock file, routing legacy promotion warnings through sync diagnostics.
191    let (old_lock, lock_diagnostics) = crate::lock::load_with_diagnostics(project_root)?;
192    diag.extend(lock_diagnostics);
193
194    Ok(LoadedConfig {
195        config,
196        local,
197        effective,
198        old_lock,
199        dependency_changes,
200        sync_lock: _sync_lock,
201    })
202}
203
204/// Phase 2: Validate upgrade targets, resolve the dependency graph.
205pub(crate) fn resolve_graph(
206    ctx: &MarsContext,
207    mut loaded: LoadedConfig,
208    request: &SyncRequest,
209    diag: &mut DiagnosticCollector,
210) -> Result<ResolvedState, MarsError> {
211    validate_targets(&request.resolution, &loaded.effective)?;
212
213    let cache = GlobalCache::new()?;
214    let source_provider = provider::RealSourceProvider {
215        cache: &cache,
216        project_root: &ctx.project_root,
217    };
218    let resolve_options = to_resolve_options(&request.resolution, request.options.frozen);
219    let graph = crate::resolve::resolve(
220        &loaded.effective,
221        &source_provider,
222        Some(&loaded.old_lock),
223        &resolve_options,
224        diag,
225    )?;
226
227    let bump_entries = planned_bump_entries(&loaded.config, &graph, &request.resolution);
228    if !bump_entries.is_empty() {
229        let bump_changes = mutation::apply_mutation(
230            &mut loaded.config,
231            &ConfigMutation::BatchUpsert(bump_entries),
232        )?;
233        loaded.dependency_changes.extend(bump_changes);
234    }
235
236    // Merge model config from dependency tree
237    let dep_models = declaration_ordered_dep_models(&graph, &loaded.effective);
238    let _ = crate::models::merge_model_config(&loaded.config.models, &dep_models, diag, None);
239
240    Ok(ResolvedState { loaded, graph })
241}
242
243/// Phase 3: Build target state, handle collisions, rewrite frontmatter refs, validate.
244///
245/// `local_items` are pre-discovered by the reader stage; no discovery is
246/// performed here so that dest-path assignment remains the only compiler
247/// concern for local content.
248pub(crate) fn build_target(
249    ctx: &MarsContext,
250    resolved: ResolvedState,
251    local_items: Vec<crate::local_source::LocalDiscoveredItem>,
252    _request: &SyncRequest,
253    diag: &mut DiagnosticCollector,
254) -> Result<TargetedState, MarsError> {
255    // Use .mars/ as the canonical content root for diff/collision checks.
256    let mars_dir = ctx.project_root.join(".mars");
257    let managed_root = &mars_dir;
258
259    // Build target state from resolved graph.
260    let (mut target_state, renames) =
261        target::build_with_collisions_and_diag(&resolved.graph, &resolved.loaded.effective, diag)?;
262
263    let local_source_name: SourceName = SourceOrigin::LocalPackage.to_string().into();
264    let local_source_id = SourceId::Path {
265        canonical: dunce::canonicalize(&ctx.project_root)
266            .unwrap_or_else(|_| ctx.project_root.clone()),
267        subpath: None,
268    };
269    let old_lock_index = LockIndex::new(&resolved.loaded.old_lock);
270
271    for item in local_items {
272        let source_path = item.disk_path();
273        let is_flat_skill = item.discovered.id.kind == ItemKind::Skill
274            && item.discovered.source_path == Path::new(".");
275        let source_hash = if is_flat_skill {
276            ContentHash::from(hash::compute_skill_hash_filtered(
277                &source_path,
278                crate::fs::FLAT_SKILL_EXCLUDED_TOP_LEVEL,
279            )?)
280        } else {
281            ContentHash::from(hash::compute_hash(&source_path, item.discovered.id.kind)?)
282        };
283        if item.discovered.id.kind == ItemKind::Agent
284            && let Err(message) =
285                crate::target::validate_agent_filename(item.discovered.id.name.as_str())
286        {
287            diag.error_with_category(
288                "invalid-agent-filename",
289                format!("{message}; skipping local agent"),
290                crate::diagnostic::DiagnosticCategory::Validation,
291            );
292            continue;
293        }
294        let dest_path =
295            default_dest_path(item.discovered.id.kind, item.discovered.id.name.as_str());
296
297        if let Some(existing) = target_state.items.shift_remove(&dest_path)
298            && existing.source_hash != source_hash
299        {
300            diag.warn(
301                "local-shadow",
302                format!(
303                    "local {} `{}` shadows dependency `{}` {} `{}`",
304                    item.discovered.id.kind,
305                    item.discovered.id.name,
306                    existing.source_name,
307                    existing.id.kind,
308                    existing.id.name
309                ),
310            );
311        }
312
313        let disk_path = dest_path.resolve(managed_root);
314        if !old_lock_index.contains_dest_path(&dest_path) && disk_path.symlink_metadata().is_ok() {
315            diag.warn(
316                "unmanaged-collision",
317                format!(
318                    "local {} `{}` collides with unmanaged path `{}` — leaving existing content untouched",
319                    item.discovered.id.kind, item.discovered.id.name, dest_path
320                ),
321            );
322            continue;
323        }
324
325        target_state.items.insert(
326            dest_path.clone(),
327            TargetItem {
328                id: ItemId {
329                    kind: item.discovered.id.kind,
330                    name: item.discovered.id.name.clone(),
331                },
332                source_name: local_source_name.clone(),
333                origin: SourceOrigin::LocalPackage,
334                source_id: local_source_id.clone(),
335                source_path,
336                dest_path,
337                source_hash,
338                is_flat_skill,
339                rewritten_content: None,
340            },
341        );
342    }
343
344    // Handle collisions + rewrite frontmatter refs.
345    if !renames.is_empty() {
346        let rewrite_warnings =
347            target::rewrite_skill_refs(&mut target_state, &renames, &resolved.graph)?;
348        for w in &rewrite_warnings {
349            diag.warn("rewrite-warning", w.to_string());
350        }
351    }
352
353    validate_skill_frontmatter_in_target(&target_state, diag);
354
355    // Validate skill references.
356    let warnings = validate_skill_refs(&target_state);
357
358    // Prevent managed installs from overwriting unmanaged files.
359    let unmanaged_collisions =
360        target::check_unmanaged_collisions(managed_root, &resolved.loaded.old_lock, &target_state);
361    for collision in &unmanaged_collisions {
362        diag.warn(
363            "unmanaged-collision",
364            format!(
365                "source `{}` collides with unmanaged path `{}` — leaving existing content untouched",
366                collision.source_name, collision.path
367            ),
368        );
369        target_state.items.shift_remove(&collision.path);
370    }
371
372    Ok(TargetedState {
373        resolved,
374        target: target_state,
375        warnings,
376    })
377}
378
379/// Phase 4: Compute diff, create plan.
380pub(crate) fn create_plan(
381    ctx: &MarsContext,
382    targeted: TargetedState,
383    request: &SyncRequest,
384    diag: &mut DiagnosticCollector,
385) -> Result<PlannedState, MarsError> {
386    // Diff against .mars/ canonical store.
387    let mars_dir = ctx.project_root.join(".mars");
388    let managed_root = &mars_dir;
389    let cache_bases_dir = mars_dir.join("cache").join("bases");
390
391    // Compute diff.
392    let sync_diff = diff::compute(
393        managed_root,
394        &targeted.resolved.loaded.old_lock,
395        &targeted.target,
396        request.options.force,
397    )?;
398
399    if !request.options.force {
400        for entry in &sync_diff.items {
401            if let diff::DiffEntry::LocalModified { target, .. } = entry {
402                diag.warn(
403                    "disk-lock-divergent",
404                    format!(
405                        "{} diverged from mars.lock checksum; preserving local content (run `{cmd1}` or `{cmd2}` to reset)",
406                        target.dest_path,
407                        cmd1 = managed_cmd("mars sync --force"),
408                        cmd2 = managed_cmd("mars repair"),
409                    ),
410                );
411            }
412        }
413    }
414
415    // Create plan.
416    let sync_plan = plan::create(&sync_diff, &request.options, &cache_bases_dir, diag);
417
418    Ok(PlannedState {
419        targeted,
420        plan: sync_plan,
421    })
422}
423
424/// Check that a frozen sync has no pending changes.
425pub(crate) fn check_frozen_gate(planned: &PlannedState) -> Result<(), MarsError> {
426    let has_changes = planned.plan.actions.iter().any(|a| {
427        !matches!(
428            a,
429            plan::PlannedAction::Skip { .. } | plan::PlannedAction::KeepLocal { .. }
430        )
431    });
432    if has_changes {
433        return Err(MarsError::FrozenViolation {
434            message: "lock file would change but --frozen is set".into(),
435        });
436    }
437    Ok(())
438}
439
440/// Phase 5: Persist config if mutated, apply plan to .mars/ canonical store.
441pub(crate) fn apply_plan(
442    ctx: &MarsContext,
443    planned: PlannedState,
444    request: &SyncRequest,
445) -> Result<AppliedState, MarsError> {
446    let project_root = &ctx.project_root;
447    let mars_dir = project_root.join(".mars");
448    let cache_bases_dir = mars_dir.join("cache").join("bases");
449
450    let has_bump_version_changes =
451        has_version_changes(&planned.targeted.resolved.loaded.dependency_changes)
452            && matches!(
453                request.resolution,
454                ResolutionMode::Maximize { bump: true, .. }
455            );
456    let has_mutation = request.mutation.is_some() || has_bump_version_changes;
457
458    // Persist config/local only after validation gate and before apply.
459    if has_mutation && !request.options.dry_run {
460        match &request.mutation {
461            Some(ConfigMutation::SetOverride { .. } | ConfigMutation::ClearOverride { .. }) => {
462                crate::config::save_local(project_root, &planned.targeted.resolved.loaded.local)?;
463            }
464            Some(
465                ConfigMutation::UpsertDependency { .. }
466                | ConfigMutation::BatchUpsert(..)
467                | ConfigMutation::RemoveDependency { .. }
468                | ConfigMutation::SetRename { .. },
469            ) => {
470                crate::config::save(project_root, &planned.targeted.resolved.loaded.config)?;
471            }
472            None => {
473                if has_bump_version_changes {
474                    crate::config::save(project_root, &planned.targeted.resolved.loaded.config)?;
475                }
476            }
477        }
478    }
479
480    // Apply plan to .mars/ canonical store (D25).
481    // Content is written to .mars/agents/ and .mars/skills/, then
482    // sync_targets() copies to all managed target directories.
483    let applied = apply::execute(&mars_dir, &planned.plan, &request.options, &cache_bases_dir)?;
484
485    Ok(AppliedState { planned, applied })
486}
487
488/// Phase 6: Sync managed targets from .mars/ canonical store.
489///
490/// Copies content from .mars/ to all configured target directories.
491/// Non-fatal — target sync errors are recorded as diagnostics.
492/// Lock is written regardless of target sync outcome (D21).
493pub(crate) fn sync_targets(
494    ctx: &MarsContext,
495    applied: AppliedState,
496    request: &SyncRequest,
497    agent_surface_policy: crate::compiler::AgentSurfacePolicy,
498    diag: &mut DiagnosticCollector,
499) -> SyncedState {
500    if request.options.dry_run {
501        return SyncedState {
502            applied,
503            target_outcomes: Vec::new(),
504            config_entries: BTreeMap::new(),
505        };
506    }
507
508    let mars_dir = ctx.project_root.join(".mars");
509    let targets = applied
510        .planned
511        .targeted
512        .resolved
513        .loaded
514        .effective
515        .settings
516        .managed_targets();
517    let previous_managed_paths = applied
518        .planned
519        .targeted
520        .resolved
521        .loaded
522        .old_lock
523        .all_output_dest_paths()
524        .map(|dest_path| dest_path.to_string())
525        .collect::<HashSet<String>>();
526
527    let outcomes;
528    let target_outcomes_source = if matches!(
529        agent_surface_policy,
530        crate::compiler::AgentSurfacePolicy::SuppressAll
531    ) {
532        outcomes = crate::compiler::suppress_agent_outcomes(&applied.applied.outcomes);
533        &outcomes
534    } else {
535        &applied.applied.outcomes
536    };
537
538    let target_outcomes = crate::target_sync::sync_managed_targets(
539        &ctx.project_root,
540        &mars_dir,
541        &targets,
542        target_outcomes_source,
543        &previous_managed_paths,
544        request.options.force,
545        diag,
546    );
547
548    SyncedState {
549        applied,
550        target_outcomes,
551        config_entries: BTreeMap::new(),
552    }
553}
554
555/// Phase 7: Write lock file, construct SyncReport.
556///
557/// Lock is written regardless of target sync outcome (D21).
558pub(crate) fn finalize(
559    ctx: &MarsContext,
560    state: SyncedState,
561    request: &SyncRequest,
562    diag: &mut DiagnosticCollector,
563) -> Result<SyncReport, MarsError> {
564    let project_root = &ctx.project_root;
565    let old_lock = &state.applied.planned.targeted.resolved.loaded.old_lock;
566    let graph = &state.applied.planned.targeted.resolved.graph;
567
568    // Write lock file (D21 — regardless of target sync outcome).
569    if !request.options.dry_run {
570        let new_lock = crate::lock::build(
571            graph,
572            &state.applied.applied,
573            old_lock,
574            state.config_entries,
575        )?;
576        crate::lock::write(project_root, &new_lock)?;
577
578        // Persist dependency-only model aliases so `mars models list` can load
579        // deps from cache, then overlay current consumer config without keeping
580        // stale consumer aliases from prior syncs.
581        let dep_models = declaration_ordered_dep_models(
582            graph,
583            &state.applied.planned.targeted.resolved.loaded.effective,
584        );
585        let empty_consumer: indexmap::IndexMap<String, crate::models::ModelAlias> =
586            indexmap::IndexMap::new();
587        let mut ignored_diag = DiagnosticCollector::new();
588        let dep_model_aliases = crate::models::merge_model_config(
589            &empty_consumer,
590            &dep_models,
591            &mut ignored_diag,
592            None,
593        );
594
595        // Best-effort models cache refresh: ensure the catalog covers any
596        // new aliases we're about to persist. Sync never aborts on refresh
597        // failure — warn and continue.
598        let mars_path = ctx.project_root.join(".mars");
599        let ttl = crate::models::load_models_cache_ttl(ctx);
600        let mode = crate::models::resolve_refresh_mode(request.options.no_refresh_models);
601        match crate::models::ensure_fresh(&mars_path, ttl, mode) {
602            Ok((_, crate::models::RefreshOutcome::StaleFallback { reason })) => {
603                diag.warn(
604                    "models-cache-refresh",
605                    format!("using stale models cache: {reason}"),
606                );
607            }
608            Ok((_, crate::models::RefreshOutcome::Offline)) => {}
609            Ok(_) => {}
610            Err(err) => {
611                diag.warn(
612                    "models-cache-refresh",
613                    format!("failed to refresh models cache: {err}"),
614                );
615            }
616        }
617
618        match serde_json::to_string_pretty(&dep_model_aliases) {
619            Ok(json) => {
620                let merged_path = ctx.project_root.join(".mars").join("models-merged.json");
621                if let Err(err) = crate::fs::atomic_write(&merged_path, json.as_bytes()) {
622                    diag.warn(
623                        "models-merge-write",
624                        format!("failed to write models-merged.json: {err}"),
625                    );
626                }
627            }
628            Err(err) => {
629                diag.warn(
630                    "models-merge-write",
631                    format!("failed to serialize merged model aliases: {err}"),
632                );
633            }
634        }
635    }
636
637    for w in &state.applied.planned.targeted.warnings {
638        match w {
639            ValidationWarning::MissingSkill {
640                agent,
641                skill_name,
642                suggestion,
643            } => {
644                let msg = match suggestion {
645                    Some(s) => format!(
646                        "agent `{}` references missing skill `{}` (did you mean `{}`?)",
647                        agent.name, skill_name, s
648                    ),
649                    None => {
650                        format!(
651                            "agent `{}` references missing skill `{}`",
652                            agent.name, skill_name
653                        )
654                    }
655                };
656                diag.warn("missing-skill", msg);
657            }
658        }
659    }
660    let dependency_changes = state
661        .applied
662        .planned
663        .targeted
664        .resolved
665        .loaded
666        .dependency_changes;
667    let effective = &state.applied.planned.targeted.resolved.loaded.effective;
668    let upgrades_available = if request.options.frozen {
669        0
670    } else {
671        graph
672            .nodes
673            .values()
674            .filter(|node| {
675                effective.dependencies.contains_key(&node.source_name)
676                    && matches!(
677                        (&node.resolved_ref.version, &node.latest_version),
678                        (Some(resolved), Some(latest)) if latest > resolved
679                    )
680            })
681            .count()
682    };
683
684    Ok(SyncReport {
685        applied: state.applied.applied,
686        pruned: Vec::new(),
687        diagnostics: diag.drain(),
688        dependency_changes,
689        upgrades_available,
690        target_outcomes: state.target_outcomes,
691        dry_run: request.options.dry_run,
692    })
693}
694
695fn declaration_ordered_dep_models(
696    graph: &ResolvedGraph,
697    config: &EffectiveConfig,
698) -> Vec<crate::models::ResolvedDepModels> {
699    // Declaration positions for direct deps in consumer mars.toml.
700    let mut decl_pos: HashMap<SourceName, usize> = HashMap::new();
701    for (idx, name) in config.dependencies.keys().enumerate() {
702        decl_pos.insert(name.clone(), idx);
703    }
704
705    // Propagate declaration position to transitives: a transitive dependency
706    // takes the minimum position among all direct dependencies that reach it.
707    for (idx, sponsor) in config.dependencies.keys().enumerate() {
708        let Some(sponsor_node) = graph.nodes.get(sponsor) else {
709            continue;
710        };
711
712        let mut queue: VecDeque<SourceName> = sponsor_node.deps.iter().cloned().collect();
713        let mut visited: HashSet<SourceName> = HashSet::new();
714
715        while let Some(dep) = queue.pop_front() {
716            if !visited.insert(dep.clone()) {
717                continue;
718            }
719
720            decl_pos
721                .entry(dep.clone())
722                .and_modify(|pos| *pos = (*pos).min(idx))
723                .or_insert(idx);
724
725            if let Some(dep_node) = graph.nodes.get(&dep) {
726                queue.extend(dep_node.deps.iter().cloned());
727            }
728        }
729    }
730
731    // Build Kahn structures using dependency edges:
732    // dep -> dependent (name depends on dep).
733    let mut in_degree: HashMap<SourceName, usize> = HashMap::new();
734    let mut adjacency: HashMap<SourceName, Vec<SourceName>> = HashMap::new();
735
736    for name in graph.nodes.keys() {
737        in_degree.entry(name.clone()).or_insert(0);
738        adjacency.entry(name.clone()).or_default();
739    }
740
741    for (name, node) in &graph.nodes {
742        for dep in &node.deps {
743            if graph.nodes.contains_key(dep) {
744                *in_degree.entry(name.clone()).or_insert(0) += 1;
745                adjacency.entry(dep.clone()).or_default().push(name.clone());
746            }
747        }
748    }
749
750    let mut ready: BinaryHeap<Reverse<(usize, SourceName)>> = BinaryHeap::new();
751    for (name, degree) in &in_degree {
752        if *degree == 0 {
753            let position = decl_pos.get(name).copied().unwrap_or(usize::MAX);
754            ready.push(Reverse((position, name.clone())));
755        }
756    }
757
758    let mut ordered: Vec<SourceName> = Vec::with_capacity(graph.nodes.len());
759    while let Some(Reverse((_, current))) = ready.pop() {
760        ordered.push(current.clone());
761
762        if let Some(dependents) = adjacency.get(&current) {
763            for dependent in dependents {
764                if let Some(degree) = in_degree.get_mut(dependent) {
765                    *degree -= 1;
766                    if *degree == 0 {
767                        let position = decl_pos.get(dependent).copied().unwrap_or(usize::MAX);
768                        ready.push(Reverse((position, dependent.clone())));
769                    }
770                }
771            }
772        }
773    }
774
775    // Graph should already be acyclic from resolver; this keeps behavior
776    // deterministic if that invariant is ever violated.
777    let ordered_names: Vec<SourceName> = if ordered.len() == graph.nodes.len() {
778        ordered
779    } else {
780        graph.order.clone()
781    };
782
783    ordered_names
784        .iter()
785        .filter_map(|name| {
786            let node = graph.nodes.get(name)?;
787            let manifest = node.manifest.as_ref()?;
788            if manifest.models.is_empty() {
789                return None;
790            }
791            Some(crate::models::ResolvedDepModels {
792                source_name: name.to_string(),
793                models: manifest.models.clone(),
794            })
795        })
796        .collect()
797}
798
799fn default_dest_path(kind: ItemKind, name: &str) -> DestPath {
800    match kind {
801        ItemKind::Agent => DestPath::from(format!("agents/{name}.md")),
802        ItemKind::Skill => DestPath::from(format!("skills/{name}")),
803        ItemKind::Hook => DestPath::from(format!("hooks/{name}")),
804        ItemKind::McpServer => DestPath::from(format!("mcp/{name}")),
805        ItemKind::BootstrapDoc => DestPath::from(format!("bootstrap/{name}/BOOTSTRAP.md")),
806    }
807}
808
809fn validate_request(request: &SyncRequest) -> Result<(), MarsError> {
810    if request.options.frozen && matches!(request.resolution, ResolutionMode::Maximize { .. }) {
811        return Err(MarsError::InvalidRequest {
812            message:
813                "cannot use --frozen with upgrade (frozen locks versions; upgrade maximizes them)"
814                    .to_string(),
815        });
816    }
817
818    if request.options.frozen && request.mutation.is_some() {
819        return Err(MarsError::InvalidRequest {
820            message:
821                "cannot modify config in --frozen mode (config change would require lock update)"
822                    .to_string(),
823        });
824    }
825
826    Ok(())
827}
828
829fn validate_targets(
830    resolution: &ResolutionMode,
831    effective: &EffectiveConfig,
832) -> Result<(), MarsError> {
833    if let ResolutionMode::Maximize { targets, .. } = resolution {
834        for name in targets {
835            if !effective.dependencies.contains_key(name) {
836                return Err(MarsError::Source {
837                    source_name: name.to_string(),
838                    message: format!("dependency `{name}` not found in mars.toml"),
839                });
840            }
841        }
842    }
843
844    Ok(())
845}
846
847fn to_resolve_options(mode: &ResolutionMode, frozen: bool) -> ResolveOptions {
848    if frozen {
849        return ResolveOptions::frozen();
850    }
851
852    match mode {
853        ResolutionMode::Normal => ResolveOptions::sync(),
854        ResolutionMode::Maximize { targets, bump } => {
855            ResolveOptions::upgrade(targets.clone(), *bump)
856        }
857    }
858}
859
860fn planned_bump_entries(
861    config: &Config,
862    graph: &ResolvedGraph,
863    mode: &ResolutionMode,
864) -> Vec<(SourceName, crate::config::DependencyEntry)> {
865    let ResolutionMode::Maximize {
866        targets,
867        bump: true,
868    } = mode
869    else {
870        return Vec::new();
871    };
872
873    config
874        .dependencies
875        .iter()
876        .filter_map(|(name, entry)| {
877            if !targets.is_empty() && !targets.contains(name) {
878                return None;
879            }
880            // Only git dependencies with semver-tagged resolution can be bumped.
881            entry.url.as_ref()?;
882            let node = graph.nodes.get(name)?;
883            let resolved_version = node.resolved_ref.version.as_ref()?;
884            let resolved_tag = node.resolved_ref.version_tag.as_ref()?;
885            if !constraint_needs_bump(entry.version.as_deref(), resolved_version) {
886                return None;
887            }
888            if entry.version.as_deref() == Some(resolved_tag.as_str()) {
889                return None;
890            }
891            let mut bumped = entry.clone();
892            bumped.version = Some(resolved_tag.clone());
893            Some((name.clone(), bumped))
894        })
895        .collect()
896}
897
898fn constraint_needs_bump(current: Option<&str>, resolved: &semver::Version) -> bool {
899    match crate::resolve::parse_version_constraint(current) {
900        crate::resolve::VersionConstraint::Semver(req) => !req.matches(resolved),
901        crate::resolve::VersionConstraint::Latest
902        | crate::resolve::VersionConstraint::RefPin(_) => false,
903    }
904}
905
906fn has_version_changes(changes: &[DependencyUpsertChange]) -> bool {
907    changes
908        .iter()
909        .any(|change| change.old_version != change.new_version)
910}
911
912/// Validate skill references: check that agents' `skills:` frontmatter entries
913/// reference skills that exist in the target state.
914fn validate_skill_refs(target: &target::TargetState) -> Vec<ValidationWarning> {
915    use crate::lock::ItemKind;
916    use crate::validate::{extract_skills_from_content, find_suggestion};
917
918    // Collect available skill names
919    let available_skills: HashSet<String> = target
920        .items
921        .values()
922        .filter(|item| item.id.kind == ItemKind::Skill)
923        .map(|item| item.id.name.to_string())
924        .collect();
925
926    let mut warnings = Vec::new();
927
928    for item in target
929        .items
930        .values()
931        .filter(|item| item.id.kind == ItemKind::Agent)
932    {
933        let content = match &item.rewritten_content {
934            Some(content) => content.clone(),
935            None => std::fs::read_to_string(&item.source_path).unwrap_or_default(),
936        };
937        for skill_name in extract_skills_from_content(&content) {
938            if !available_skills.contains(&skill_name) {
939                let suggestion = find_suggestion(&skill_name, &available_skills);
940                warnings.push(ValidationWarning::MissingSkill {
941                    agent: item.id.clone(),
942                    skill_name,
943                    suggestion,
944                });
945            }
946        }
947    }
948
949    warnings
950}
951
952fn validate_skill_frontmatter_in_target(
953    target: &target::TargetState,
954    diag: &mut DiagnosticCollector,
955) {
956    use crate::lock::ItemKind;
957
958    for item in target
959        .items
960        .values()
961        .filter(|item| item.id.kind == ItemKind::Skill)
962    {
963        validate_skill_frontmatter_at_source(&item.source_path, item.id.name.as_str(), diag);
964    }
965}
966
967fn validate_skill_frontmatter_at_source(
968    source_path: &Path,
969    skill_name: &str,
970    diag: &mut DiagnosticCollector,
971) {
972    let skill_md = if source_path.is_dir() {
973        source_path.join("SKILL.md")
974    } else {
975        source_path.to_path_buf()
976    };
977    let Ok(content) = std::fs::read_to_string(&skill_md) else {
978        return;
979    };
980    let mut skill_diags = Vec::new();
981    let _ = crate::compiler::skills::parse_skill_content(&content, &mut skill_diags);
982    for d in skill_diags {
983        if d.is_error() {
984            diag.error_with_category(
985                "skill-schema-error",
986                format!("skill `{skill_name}`: {}", d.message()),
987                crate::diagnostic::DiagnosticCategory::Validation,
988            );
989        } else {
990            diag.warn(
991                "skill-schema-warning",
992                format!("skill `{skill_name}`: {}", d.message()),
993            );
994        }
995    }
996}
997
998#[cfg(test)]
999mod tests {
1000    use super::*;
1001    use crate::config::*;
1002    use crate::lock::{ItemKind, LockFile};
1003    use crate::resolve::{ResolvedGraph, ResolvedNode};
1004    use indexmap::IndexMap;
1005    use std::fs;
1006    use std::path::PathBuf;
1007    use tempfile::TempDir;
1008
1009    /// Helper to set up a complete sync context with temp dirs.
1010    struct TestFixture {
1011        project_root: TempDir,
1012        managed_root: PathBuf,
1013        source_trees: Vec<TempDir>,
1014    }
1015
1016    impl TestFixture {
1017        fn new() -> Self {
1018            let project_root = TempDir::new().unwrap();
1019            let managed_root = project_root.path().join(".agents");
1020            // Create .mars/cache directories
1021            fs::create_dir_all(project_root.path().join(".mars/cache/bases")).unwrap();
1022            TestFixture {
1023                project_root,
1024                managed_root,
1025                source_trees: Vec::new(),
1026            }
1027        }
1028
1029        fn add_source(&mut self, agents: &[(&str, &str)], skills: &[(&str, &str)]) -> usize {
1030            let dir = TempDir::new().unwrap();
1031            if !agents.is_empty() {
1032                let agents_dir = dir.path().join("agents");
1033                fs::create_dir_all(&agents_dir).unwrap();
1034                for (name, content) in agents {
1035                    fs::write(agents_dir.join(name), content).unwrap();
1036                }
1037            }
1038            if !skills.is_empty() {
1039                let skills_dir = dir.path().join("skills");
1040                fs::create_dir_all(&skills_dir).unwrap();
1041                for (name, content) in skills {
1042                    let skill_dir = skills_dir.join(name);
1043                    fs::create_dir_all(&skill_dir).unwrap();
1044                    fs::write(skill_dir.join("SKILL.md"), content).unwrap();
1045                }
1046            }
1047            self.source_trees.push(dir);
1048            self.source_trees.len() - 1
1049        }
1050
1051        fn project_root(&self) -> &std::path::Path {
1052            self.project_root.path()
1053        }
1054
1055        fn managed_root(&self) -> &std::path::Path {
1056            &self.managed_root
1057        }
1058
1059        fn tree_path(&self, idx: usize) -> PathBuf {
1060            self.source_trees[idx].path().to_path_buf()
1061        }
1062    }
1063
1064    fn make_graph_config(
1065        fixture: &TestFixture,
1066        sources: Vec<(&str, usize, FilterMode)>,
1067    ) -> (ResolvedGraph, EffectiveConfig) {
1068        let mut nodes = IndexMap::new();
1069        let mut order = Vec::new();
1070        let mut config_dependencies = IndexMap::new();
1071
1072        for (name, tree_idx, filter) in sources {
1073            let tree_path = fixture.tree_path(tree_idx);
1074            nodes.insert(
1075                name.into(),
1076                ResolvedNode {
1077                    source_name: name.into(),
1078                    source_id: crate::types::SourceId::Path {
1079                        canonical: tree_path.clone(),
1080                        subpath: None,
1081                    },
1082                    rooted_ref: crate::resolve::RootedSourceRef {
1083                        checkout_root: tree_path.clone(),
1084                        package_root: tree_path.clone(),
1085                    },
1086                    resolved_ref: crate::source::ResolvedRef {
1087                        source_name: name.into(),
1088                        version: None,
1089                        version_tag: None,
1090                        commit: None,
1091                        tree_path: tree_path.clone(),
1092                    },
1093                    latest_version: None,
1094                    manifest: None,
1095                    deps: vec![],
1096                },
1097            );
1098            order.push(name.into());
1099
1100            config_dependencies.insert(
1101                name.into(),
1102                EffectiveDependency {
1103                    name: name.into(),
1104                    id: crate::types::SourceId::Path {
1105                        canonical: tree_path.clone(),
1106                        subpath: None,
1107                    },
1108                    spec: SourceSpec::Path(tree_path),
1109                    subpath: None,
1110                    filter,
1111                    rename: crate::types::RenameMap::new(),
1112                    is_overridden: false,
1113                    original_git: None,
1114                },
1115            );
1116        }
1117
1118        (
1119            ResolvedGraph {
1120                nodes,
1121                order,
1122                filters: std::collections::HashMap::new(),
1123            },
1124            EffectiveConfig {
1125                dependencies: config_dependencies,
1126                settings: Settings::default(),
1127            },
1128        )
1129    }
1130
1131    fn path_dependency_entry(path: &std::path::Path) -> DependencyEntry {
1132        DependencyEntry {
1133            url: None,
1134            path: Some(path.to_path_buf()),
1135            subpath: None,
1136            version: None,
1137            filter: FilterConfig::default(),
1138        }
1139    }
1140
1141    fn git_dependency_entry(url: &str, version: &str, filter: FilterConfig) -> DependencyEntry {
1142        DependencyEntry {
1143            url: Some(url.into()),
1144            path: None,
1145            subpath: None,
1146            version: Some(version.to_string()),
1147            filter,
1148        }
1149    }
1150
1151    fn create_sync_plan(
1152        sync_diff: &diff::SyncDiff,
1153        options: &SyncOptions,
1154        cache_bases_dir: &std::path::Path,
1155    ) -> plan::SyncPlan {
1156        let mut diag = DiagnosticCollector::new();
1157        plan::create(sync_diff, options, cache_bases_dir, &mut diag)
1158    }
1159
1160    fn graph_with_versions(entries: &[(&str, &str, &str)]) -> ResolvedGraph {
1161        let mut nodes = IndexMap::new();
1162        let mut order = Vec::new();
1163        for (name, url, tag) in entries {
1164            let version = semver::Version::parse(tag.trim_start_matches('v')).unwrap();
1165            nodes.insert(
1166                (*name).into(),
1167                ResolvedNode {
1168                    source_name: (*name).into(),
1169                    source_id: crate::types::SourceId::git(crate::types::SourceUrl::from(*url)),
1170                    rooted_ref: crate::resolve::RootedSourceRef {
1171                        checkout_root: PathBuf::from(format!("/tmp/{name}")),
1172                        package_root: PathBuf::from(format!("/tmp/{name}")),
1173                    },
1174                    resolved_ref: crate::source::ResolvedRef {
1175                        source_name: (*name).into(),
1176                        version: Some(version),
1177                        version_tag: Some((*tag).to_string()),
1178                        commit: Some("abc123".into()),
1179                        tree_path: PathBuf::from(format!("/tmp/{name}")),
1180                    },
1181                    latest_version: None,
1182                    manifest: None,
1183                    deps: vec![],
1184                },
1185            );
1186            order.push((*name).into());
1187        }
1188
1189        ResolvedGraph {
1190            nodes,
1191            order,
1192            filters: std::collections::HashMap::new(),
1193        }
1194    }
1195
1196    fn model_alias(model: &str) -> crate::models::ModelAlias {
1197        crate::models::ModelAlias {
1198            harness: None,
1199            description: None,
1200            default_effort: None,
1201            autocompact: None,
1202            autocompact_pct: None,
1203            spec: crate::models::ModelSpec::Pinned {
1204                model: model.to_string(),
1205                provider: None,
1206            },
1207        }
1208    }
1209
1210    fn manifest_with_models(name: &str) -> Manifest {
1211        let mut models = IndexMap::new();
1212        models.insert(
1213            format!("{name}-alias"),
1214            model_alias(&format!("{name}-model")),
1215        );
1216        Manifest {
1217            package: PackageInfo {
1218                name: name.to_string(),
1219                version: "1.0.0".to_string(),
1220                description: None,
1221            },
1222            dependencies: IndexMap::new(),
1223            models,
1224        }
1225    }
1226
1227    fn resolved_node(name: &str, deps: &[&str], with_models: bool) -> ResolvedNode {
1228        let canonical = PathBuf::from(format!("/tmp/{name}"));
1229        ResolvedNode {
1230            source_name: name.into(),
1231            source_id: crate::types::SourceId::Path {
1232                canonical: canonical.clone(),
1233                subpath: None,
1234            },
1235            rooted_ref: crate::resolve::RootedSourceRef {
1236                checkout_root: canonical.clone(),
1237                package_root: canonical.clone(),
1238            },
1239            resolved_ref: crate::source::ResolvedRef {
1240                source_name: name.into(),
1241                version: None,
1242                version_tag: None,
1243                commit: None,
1244                tree_path: canonical,
1245            },
1246            latest_version: None,
1247            manifest: with_models.then(|| manifest_with_models(name)),
1248            deps: deps.iter().map(|dep| (*dep).into()).collect(),
1249        }
1250    }
1251
1252    fn effective_config_with_decl_order(names: &[&str]) -> EffectiveConfig {
1253        let mut dependencies = IndexMap::new();
1254        for name in names {
1255            let canonical = PathBuf::from(format!("/tmp/dep-{name}"));
1256            dependencies.insert(
1257                (*name).into(),
1258                EffectiveDependency {
1259                    name: (*name).into(),
1260                    id: crate::types::SourceId::Path {
1261                        canonical: canonical.clone(),
1262                        subpath: None,
1263                    },
1264                    spec: SourceSpec::Path(canonical),
1265                    subpath: None,
1266                    filter: FilterMode::All,
1267                    rename: crate::types::RenameMap::new(),
1268                    is_overridden: false,
1269                    original_git: None,
1270                },
1271            );
1272        }
1273        EffectiveConfig {
1274            dependencies,
1275            settings: Settings::default(),
1276        }
1277    }
1278
1279    fn dep_model_names(models: &[crate::models::ResolvedDepModels]) -> Vec<String> {
1280        models.iter().map(|m| m.source_name.clone()).collect()
1281    }
1282
1283    #[test]
1284    fn declaration_ordered_dep_models_sibling_order() {
1285        let mut nodes = IndexMap::new();
1286        nodes.insert("a".into(), resolved_node("a", &[], true));
1287        nodes.insert("b".into(), resolved_node("b", &[], true));
1288
1289        let graph = ResolvedGraph {
1290            nodes,
1291            order: vec!["a".into(), "b".into()],
1292            filters: std::collections::HashMap::new(),
1293        };
1294        let config = effective_config_with_decl_order(&["a", "b"]);
1295
1296        let dep_models = declaration_ordered_dep_models(&graph, &config);
1297        assert_eq!(dep_model_names(&dep_models), vec!["a", "b"]);
1298    }
1299
1300    #[test]
1301    fn declaration_ordered_dep_models_diamond_uses_minimum_sponsor_position() {
1302        let mut nodes = IndexMap::new();
1303        nodes.insert("a".into(), resolved_node("a", &["d"], true));
1304        nodes.insert("b".into(), resolved_node("b", &["d"], true));
1305        nodes.insert("d".into(), resolved_node("d", &[], true));
1306
1307        let graph = ResolvedGraph {
1308            nodes,
1309            order: vec!["d".into(), "a".into(), "b".into()],
1310            filters: std::collections::HashMap::new(),
1311        };
1312        let config = effective_config_with_decl_order(&["a", "b"]);
1313
1314        let dep_models = declaration_ordered_dep_models(&graph, &config);
1315        assert_eq!(dep_model_names(&dep_models), vec!["d", "a", "b"]);
1316    }
1317
1318    #[test]
1319    fn declaration_ordered_dep_models_transitives_follow_sponsor_declaration_order() {
1320        let mut nodes = IndexMap::new();
1321        nodes.insert("a".into(), resolved_node("a", &["d"], false));
1322        nodes.insert("b".into(), resolved_node("b", &["e"], false));
1323        nodes.insert("d".into(), resolved_node("d", &[], true));
1324        nodes.insert("e".into(), resolved_node("e", &[], true));
1325
1326        let graph = ResolvedGraph {
1327            nodes,
1328            order: vec!["d".into(), "e".into(), "a".into(), "b".into()],
1329            filters: std::collections::HashMap::new(),
1330        };
1331        let config = effective_config_with_decl_order(&["a", "b"]);
1332
1333        let dep_models = declaration_ordered_dep_models(&graph, &config);
1334        assert_eq!(dep_model_names(&dep_models), vec!["d", "e"]);
1335    }
1336
1337    #[test]
1338    fn declaration_ordered_dep_models_keeps_deps_before_dependents() {
1339        let mut nodes = IndexMap::new();
1340        nodes.insert("a".into(), resolved_node("a", &["d"], true));
1341        nodes.insert("d".into(), resolved_node("d", &[], true));
1342
1343        let graph = ResolvedGraph {
1344            nodes,
1345            order: vec!["d".into(), "a".into()],
1346            filters: std::collections::HashMap::new(),
1347        };
1348        // D is declared after A, but topological ordering must still emit D first.
1349        let config = effective_config_with_decl_order(&["a", "d"]);
1350
1351        let dep_models = declaration_ordered_dep_models(&graph, &config);
1352        assert_eq!(dep_model_names(&dep_models), vec!["d", "a"]);
1353    }
1354
1355    #[test]
1356    fn declaration_ordered_dep_models_is_deterministic() {
1357        let mut nodes = IndexMap::new();
1358        nodes.insert("a".into(), resolved_node("a", &["d"], true));
1359        nodes.insert("b".into(), resolved_node("b", &["e"], true));
1360        nodes.insert("d".into(), resolved_node("d", &[], true));
1361        nodes.insert("e".into(), resolved_node("e", &[], true));
1362
1363        let graph = ResolvedGraph {
1364            nodes,
1365            order: vec!["d".into(), "e".into(), "a".into(), "b".into()],
1366            filters: std::collections::HashMap::new(),
1367        };
1368        let config = effective_config_with_decl_order(&["a", "b"]);
1369
1370        let first = dep_model_names(&declaration_ordered_dep_models(&graph, &config));
1371        for _ in 0..10 {
1372            let current = dep_model_names(&declaration_ordered_dep_models(&graph, &config));
1373            assert_eq!(current, first);
1374        }
1375    }
1376
1377    #[test]
1378    fn declaration_ordered_dep_models_is_used_by_resolve_graph_and_finalize() {
1379        let source = include_str!("mod.rs");
1380        assert!(source.contains("declaration_ordered_dep_models(&graph, &loaded.effective)"));
1381        assert!(source.contains("&state.applied.planned.targeted.resolved.loaded.effective"));
1382    }
1383
1384    #[test]
1385    fn validate_request_rejects_frozen_with_maximize() {
1386        let request = SyncRequest {
1387            resolution: ResolutionMode::Maximize {
1388                targets: HashSet::new(),
1389                bump: false,
1390            },
1391            mutation: None,
1392            options: SyncOptions {
1393                force: false,
1394                dry_run: false,
1395                frozen: true,
1396                no_refresh_models: false,
1397            },
1398        };
1399
1400        let err = validate_request(&request).unwrap_err();
1401        assert!(matches!(err, MarsError::InvalidRequest { .. }));
1402        assert!(err.to_string().contains("--frozen"));
1403    }
1404
1405    #[test]
1406    fn validate_request_rejects_frozen_with_mutation() {
1407        let request = SyncRequest {
1408            resolution: ResolutionMode::Normal,
1409            mutation: Some(ConfigMutation::RemoveDependency {
1410                name: "base".into(),
1411            }),
1412            options: SyncOptions {
1413                force: false,
1414                dry_run: false,
1415                frozen: true,
1416                no_refresh_models: false,
1417            },
1418        };
1419
1420        let err = validate_request(&request).unwrap_err();
1421        assert!(matches!(err, MarsError::InvalidRequest { .. }));
1422        assert!(err.to_string().contains("cannot modify config"));
1423    }
1424
1425    #[test]
1426    fn planned_bump_entries_bump_all_outdated_pins() {
1427        let mut config = Config::default();
1428        config.dependencies.insert(
1429            "base".into(),
1430            git_dependency_entry(
1431                "https://example.com/base.git",
1432                "v1.0.0",
1433                FilterConfig::default(),
1434            ),
1435        );
1436        config.dependencies.insert(
1437            "tools".into(),
1438            git_dependency_entry(
1439                "https://example.com/tools.git",
1440                "v2.0.0",
1441                FilterConfig::default(),
1442            ),
1443        );
1444        config.dependencies.insert(
1445            "floating".into(),
1446            DependencyEntry {
1447                url: Some("https://example.com/floating.git".into()),
1448                path: None,
1449                subpath: None,
1450                version: None,
1451                filter: FilterConfig::default(),
1452            },
1453        );
1454
1455        let graph = graph_with_versions(&[
1456            ("base", "https://example.com/base.git", "v1.2.0"),
1457            ("tools", "https://example.com/tools.git", "v2.0.0"),
1458            ("floating", "https://example.com/floating.git", "v3.0.0"),
1459        ]);
1460
1461        let mode = ResolutionMode::Maximize {
1462            targets: HashSet::new(),
1463            bump: true,
1464        };
1465        let entries = planned_bump_entries(&config, &graph, &mode);
1466        assert_eq!(entries.len(), 1);
1467        assert_eq!(entries[0].0, SourceName::from("base"));
1468        assert_eq!(entries[0].1.version.as_deref(), Some("v1.2.0"));
1469    }
1470
1471    #[test]
1472    fn planned_bump_entries_bump_specific_targets_only() {
1473        let mut config = Config::default();
1474        config.dependencies.insert(
1475            "base".into(),
1476            git_dependency_entry(
1477                "https://example.com/base.git",
1478                "v1.0.0",
1479                FilterConfig::default(),
1480            ),
1481        );
1482        config.dependencies.insert(
1483            "tools".into(),
1484            git_dependency_entry(
1485                "https://example.com/tools.git",
1486                "v1.0.0",
1487                FilterConfig::default(),
1488            ),
1489        );
1490
1491        let graph = graph_with_versions(&[
1492            ("base", "https://example.com/base.git", "v2.0.0"),
1493            ("tools", "https://example.com/tools.git", "v2.0.0"),
1494        ]);
1495
1496        let mode = ResolutionMode::Maximize {
1497            targets: HashSet::from([SourceName::from("tools")]),
1498            bump: true,
1499        };
1500        let entries = planned_bump_entries(&config, &graph, &mode);
1501        assert_eq!(entries.len(), 1);
1502        assert_eq!(entries[0].0, SourceName::from("tools"));
1503        assert_eq!(entries[0].1.version.as_deref(), Some("v2.0.0"));
1504    }
1505
1506    #[test]
1507    fn planned_bump_entries_noop_when_already_latest() {
1508        let mut config = Config::default();
1509        config.dependencies.insert(
1510            "base".into(),
1511            git_dependency_entry(
1512                "https://example.com/base.git",
1513                "v1.2.0",
1514                FilterConfig::default(),
1515            ),
1516        );
1517
1518        let graph = graph_with_versions(&[("base", "https://example.com/base.git", "v1.2.0")]);
1519
1520        let mode = ResolutionMode::Maximize {
1521            targets: HashSet::new(),
1522            bump: true,
1523        };
1524        let entries = planned_bump_entries(&config, &graph, &mode);
1525        assert!(entries.is_empty());
1526    }
1527
1528    #[test]
1529    fn planned_bump_entries_preserve_filters_and_renames() {
1530        let mut rename = crate::types::RenameMap::new();
1531        rename.insert("coder".into(), "coder-v2".into());
1532
1533        let mut config = Config::default();
1534        config.dependencies.insert(
1535            "base".into(),
1536            git_dependency_entry(
1537                "https://example.com/base.git",
1538                "v1.0.0",
1539                FilterConfig {
1540                    agents: Some(vec!["coder".into()]),
1541                    rename: Some(rename.clone()),
1542                    ..FilterConfig::default()
1543                },
1544            ),
1545        );
1546
1547        let graph = graph_with_versions(&[("base", "https://example.com/base.git", "v2.0.0")]);
1548        let mode = ResolutionMode::Maximize {
1549            targets: HashSet::new(),
1550            bump: true,
1551        };
1552        let entries = planned_bump_entries(&config, &graph, &mode);
1553        let mut mutated = config.clone();
1554        let changes =
1555            mutation::apply_mutation(&mut mutated, &ConfigMutation::BatchUpsert(entries)).unwrap();
1556
1557        assert_eq!(changes.len(), 1);
1558        assert_eq!(changes[0].old_version.as_deref(), Some("v1.0.0"));
1559        assert_eq!(changes[0].new_version.as_deref(), Some("v2.0.0"));
1560
1561        let dep = &mutated.dependencies["base"];
1562        assert_eq!(dep.version.as_deref(), Some("v2.0.0"));
1563        assert_eq!(dep.filter.agents.as_deref(), Some(&["coder".into()][..]));
1564        assert_eq!(dep.filter.rename.as_ref(), Some(&rename));
1565    }
1566
1567    #[test]
1568    fn execute_auto_inits_config_for_mutation() {
1569        let project_root = TempDir::new().unwrap();
1570        let managed_root = project_root.path().join(".agents");
1571        fs::create_dir_all(project_root.path().join(".mars/cache/bases")).unwrap();
1572        let source = TempDir::new().unwrap();
1573        fs::create_dir_all(source.path().join("agents")).unwrap();
1574        fs::write(source.path().join("agents/coder.md"), "# Coder").unwrap();
1575
1576        let request = SyncRequest {
1577            resolution: ResolutionMode::Normal,
1578            mutation: Some(ConfigMutation::UpsertDependency {
1579                name: "base".into(),
1580                entry: path_dependency_entry(source.path()),
1581            }),
1582            options: SyncOptions::default(),
1583        };
1584
1585        let ctx = MarsContext::for_test(project_root.path().to_path_buf(), managed_root.clone());
1586        let report = execute(&ctx, &request).unwrap();
1587        assert!(!report.applied.outcomes.is_empty());
1588        assert!(project_root.path().join("mars.toml").exists());
1589
1590        let saved = crate::config::load(project_root.path()).unwrap();
1591        assert!(saved.dependencies.contains_key("base"));
1592    }
1593
1594    #[test]
1595    fn execute_dry_run_with_mutation_does_not_write_config() {
1596        let project_root = TempDir::new().unwrap();
1597        let managed_root = project_root.path().join(".agents");
1598        fs::create_dir_all(project_root.path().join(".mars/cache/bases")).unwrap();
1599        crate::config::save(
1600            project_root.path(),
1601            &Config {
1602                dependencies: IndexMap::new(),
1603                settings: Settings::default(),
1604                ..Config::default()
1605            },
1606        )
1607        .unwrap();
1608
1609        let source = TempDir::new().unwrap();
1610        fs::create_dir_all(source.path().join("agents")).unwrap();
1611        fs::write(source.path().join("agents/coder.md"), "# Coder").unwrap();
1612
1613        let request = SyncRequest {
1614            resolution: ResolutionMode::Normal,
1615            mutation: Some(ConfigMutation::UpsertDependency {
1616                name: "base".into(),
1617                entry: path_dependency_entry(source.path()),
1618            }),
1619            options: SyncOptions {
1620                force: false,
1621                dry_run: true,
1622                frozen: false,
1623                no_refresh_models: false,
1624            },
1625        };
1626
1627        let ctx = MarsContext::for_test(project_root.path().to_path_buf(), managed_root.clone());
1628        let report = execute(&ctx, &request).unwrap();
1629        assert!(!report.applied.outcomes.is_empty());
1630
1631        let saved = crate::config::load(project_root.path()).unwrap();
1632        assert!(!saved.dependencies.contains_key("base"));
1633        assert!(!managed_root.join("agents/coder.md").exists());
1634        assert!(!project_root.path().join("mars.lock").exists());
1635    }
1636
1637    // === Integration tests for the pipeline stages ===
1638
1639    #[test]
1640    fn full_pipeline_fresh_sync() {
1641        let mut fixture = TestFixture::new();
1642        let src_idx = fixture.add_source(
1643            &[("coder.md", "# Coder agent")],
1644            &[("planning", "# Planning skill")],
1645        );
1646
1647        let (graph, config) = make_graph_config(&fixture, vec![("base", src_idx, FilterMode::All)]);
1648
1649        // Build target
1650        let (target, renames) = target::build_with_collisions(&graph, &config).unwrap();
1651        assert!(renames.is_empty());
1652        assert_eq!(target.items.len(), 2);
1653
1654        // Compute diff against empty lock
1655        let lock = LockFile::empty();
1656        let sync_diff = diff::compute(fixture.managed_root(), &lock, &target, false).unwrap();
1657
1658        // All items should be Add
1659        assert_eq!(sync_diff.items.len(), 2);
1660        for entry in &sync_diff.items {
1661            assert!(matches!(entry, diff::DiffEntry::Add { .. }));
1662        }
1663
1664        // Create plan
1665        let cache_dir = fixture.project_root().join(".mars/cache/bases");
1666        let options = SyncOptions {
1667            force: false,
1668            dry_run: false,
1669            frozen: false,
1670            no_refresh_models: false,
1671        };
1672        let sync_plan = create_sync_plan(&sync_diff, &options, &cache_dir);
1673        assert_eq!(sync_plan.actions.len(), 2);
1674        for action in &sync_plan.actions {
1675            assert!(matches!(action, plan::PlannedAction::Install { .. }));
1676        }
1677
1678        // Execute plan
1679        let result =
1680            apply::execute(fixture.managed_root(), &sync_plan, &options, &cache_dir).unwrap();
1681        assert_eq!(result.outcomes.len(), 2);
1682
1683        // Verify files were created
1684        assert!(fixture.managed_root().join("agents/coder.md").exists());
1685        assert!(
1686            fixture
1687                .managed_root()
1688                .join("skills/planning/SKILL.md")
1689                .exists()
1690        );
1691
1692        // Build lock
1693        let new_lock =
1694            crate::lock::build(&graph, &result, &lock, std::collections::BTreeMap::new()).unwrap();
1695        assert_eq!(new_lock.items.len(), 2);
1696        assert!(new_lock.items.contains_key("agent/coder"));
1697        assert!(new_lock.items.contains_key("skill/planning"));
1698    }
1699
1700    #[test]
1701    fn re_sync_no_changes() {
1702        let mut fixture = TestFixture::new();
1703        let content = "# Coder agent";
1704        let src_idx = fixture.add_source(&[("coder.md", content)], &[]);
1705
1706        let (graph, config) = make_graph_config(&fixture, vec![("base", src_idx, FilterMode::All)]);
1707
1708        // First sync
1709        let (target, _) = target::build_with_collisions(&graph, &config).unwrap();
1710        let lock = LockFile::empty();
1711        let sync_diff = diff::compute(fixture.managed_root(), &lock, &target, false).unwrap();
1712        let cache_dir = fixture.project_root().join(".mars/cache/bases");
1713        let options = SyncOptions {
1714            force: false,
1715            dry_run: false,
1716            frozen: false,
1717            no_refresh_models: false,
1718        };
1719        let sync_plan = create_sync_plan(&sync_diff, &options, &cache_dir);
1720        let result =
1721            apply::execute(fixture.managed_root(), &sync_plan, &options, &cache_dir).unwrap();
1722        let first_lock =
1723            crate::lock::build(&graph, &result, &lock, std::collections::BTreeMap::new()).unwrap();
1724
1725        // Second sync with same content
1726        let (target2, _) = target::build_with_collisions(&graph, &config).unwrap();
1727        let sync_diff2 =
1728            diff::compute(fixture.managed_root(), &first_lock, &target2, false).unwrap();
1729
1730        // All items should be Unchanged
1731        for entry in &sync_diff2.items {
1732            assert!(
1733                matches!(entry, diff::DiffEntry::Unchanged { .. }),
1734                "expected Unchanged, got {entry:?}"
1735            );
1736        }
1737
1738        let sync_plan2 = create_sync_plan(&sync_diff2, &options, &cache_dir);
1739        for action in &sync_plan2.actions {
1740            assert!(matches!(action, plan::PlannedAction::Skip { .. }));
1741        }
1742    }
1743
1744    #[test]
1745    fn validate_skill_refs_ignores_stale_installed_agent_content() {
1746        let mut fixture = TestFixture::new();
1747        let src_idx = fixture.add_source(&[("design-lead.md", "# Design Lead\n")], &[]);
1748        fs::create_dir_all(fixture.managed_root().join("agents")).unwrap();
1749        fs::write(
1750            fixture.managed_root().join("agents/design-lead.md"),
1751            "---\nskills: [handoff]\n---\n# Stale Design Lead\n",
1752        )
1753        .unwrap();
1754
1755        let (graph, config) = make_graph_config(&fixture, vec![("base", src_idx, FilterMode::All)]);
1756        let (target, _) = target::build_with_collisions(&graph, &config).unwrap();
1757
1758        let warnings = validate_skill_refs(&target);
1759
1760        assert!(
1761            warnings.is_empty(),
1762            "target source removed the missing ref, but stale installed content produced {warnings:?}"
1763        );
1764    }
1765
1766    #[test]
1767    fn validate_skill_refs_warns_for_missing_target_source_ref() {
1768        let mut fixture = TestFixture::new();
1769        let src_idx = fixture.add_source(
1770            &[("coder.md", "---\nskills: [missing-skill]\n---\n# Coder\n")],
1771            &[],
1772        );
1773
1774        let (graph, config) = make_graph_config(&fixture, vec![("base", src_idx, FilterMode::All)]);
1775        let (target, _) = target::build_with_collisions(&graph, &config).unwrap();
1776
1777        let warnings = validate_skill_refs(&target);
1778
1779        assert_eq!(warnings.len(), 1);
1780        match &warnings[0] {
1781            ValidationWarning::MissingSkill {
1782                agent,
1783                skill_name,
1784                suggestion,
1785            } => {
1786                assert_eq!(agent.name, "coder");
1787                assert_eq!(skill_name, "missing-skill");
1788                assert_eq!(suggestion, &None);
1789            }
1790        }
1791    }
1792
1793    #[test]
1794    fn validate_skill_refs_uses_rewritten_content() {
1795        let fixture = TestFixture::new();
1796        let source_path = fixture.project_root().join("source-agent.md");
1797        fs::write(
1798            &source_path,
1799            "---\nskills: [old-skill]\n---\n# Source content before rewrite\n",
1800        )
1801        .unwrap();
1802        let skill_path = fixture.project_root().join("skills").join("new-skill");
1803        fs::create_dir_all(&skill_path).unwrap();
1804        fs::write(skill_path.join("SKILL.md"), "# New Skill\n").unwrap();
1805
1806        let source_name = SourceName::from("base");
1807        let source_id = SourceId::Path {
1808            canonical: fixture.project_root().to_path_buf(),
1809            subpath: None,
1810        };
1811        let mut items = IndexMap::new();
1812        items.insert(
1813            DestPath::new("agents/coder.md").unwrap(),
1814            TargetItem {
1815                id: ItemId {
1816                    kind: ItemKind::Agent,
1817                    name: "coder".into(),
1818                },
1819                source_name: source_name.clone(),
1820                origin: SourceOrigin::Dependency(source_name.clone()),
1821                source_id: source_id.clone(),
1822                source_path,
1823                dest_path: DestPath::new("agents/coder.md").unwrap(),
1824                source_hash: ContentHash::from("sha256:source"),
1825                is_flat_skill: false,
1826                rewritten_content: Some(
1827                    "---\nskills: [new-skill]\n---\n# Rewritten content\n".to_string(),
1828                ),
1829            },
1830        );
1831        items.insert(
1832            DestPath::new("skills/new-skill").unwrap(),
1833            TargetItem {
1834                id: ItemId {
1835                    kind: ItemKind::Skill,
1836                    name: "new-skill".into(),
1837                },
1838                source_name: source_name.clone(),
1839                origin: SourceOrigin::Dependency(source_name),
1840                source_id,
1841                source_path: skill_path,
1842                dest_path: DestPath::new("skills/new-skill").unwrap(),
1843                source_hash: ContentHash::from("sha256:skill"),
1844                is_flat_skill: false,
1845                rewritten_content: None,
1846            },
1847        );
1848        let target = TargetState { items };
1849
1850        let warnings = validate_skill_refs(&target);
1851
1852        assert!(
1853            warnings.is_empty(),
1854            "validation should use rewritten content instead of stale source content: {warnings:?}"
1855        );
1856    }
1857
1858    #[test]
1859    fn source_update_detects_changes() {
1860        let mut fixture = TestFixture::new();
1861        let src_idx = fixture.add_source(&[("coder.md", "# Version 1")], &[]);
1862
1863        let (graph, config) = make_graph_config(&fixture, vec![("base", src_idx, FilterMode::All)]);
1864
1865        // First sync
1866        let (target, _) = target::build_with_collisions(&graph, &config).unwrap();
1867        let lock = LockFile::empty();
1868        let sync_diff = diff::compute(fixture.managed_root(), &lock, &target, false).unwrap();
1869        let cache_dir = fixture.project_root().join(".mars/cache/bases");
1870        let options = SyncOptions {
1871            force: false,
1872            dry_run: false,
1873            frozen: false,
1874            no_refresh_models: false,
1875        };
1876        let sync_plan = create_sync_plan(&sync_diff, &options, &cache_dir);
1877        let result =
1878            apply::execute(fixture.managed_root(), &sync_plan, &options, &cache_dir).unwrap();
1879        let first_lock =
1880            crate::lock::build(&graph, &result, &lock, std::collections::BTreeMap::new()).unwrap();
1881
1882        // Update source content
1883        let agents_dir = fixture.tree_path(src_idx).join("agents");
1884        fs::write(agents_dir.join("coder.md"), "# Version 2").unwrap();
1885
1886        // Rebuild target with updated content
1887        let (target2, _) = target::build_with_collisions(&graph, &config).unwrap();
1888        let sync_diff2 =
1889            diff::compute(fixture.managed_root(), &first_lock, &target2, false).unwrap();
1890
1891        // Should detect an Update
1892        assert_eq!(sync_diff2.items.len(), 1);
1893        assert!(matches!(
1894            &sync_diff2.items[0],
1895            diff::DiffEntry::Update { .. }
1896        ));
1897    }
1898
1899    #[test]
1900    fn local_modification_preserved() {
1901        let mut fixture = TestFixture::new();
1902        let src_idx = fixture.add_source(&[("coder.md", "# Original")], &[]);
1903
1904        let (graph, config) = make_graph_config(&fixture, vec![("base", src_idx, FilterMode::All)]);
1905
1906        // First sync
1907        let (target, _) = target::build_with_collisions(&graph, &config).unwrap();
1908        let lock = LockFile::empty();
1909        let sync_diff = diff::compute(fixture.managed_root(), &lock, &target, false).unwrap();
1910        let cache_dir = fixture.project_root().join(".mars/cache/bases");
1911        let options = SyncOptions {
1912            force: false,
1913            dry_run: false,
1914            frozen: false,
1915            no_refresh_models: false,
1916        };
1917        let sync_plan = create_sync_plan(&sync_diff, &options, &cache_dir);
1918        let result =
1919            apply::execute(fixture.managed_root(), &sync_plan, &options, &cache_dir).unwrap();
1920        let first_lock =
1921            crate::lock::build(&graph, &result, &lock, std::collections::BTreeMap::new()).unwrap();
1922
1923        // Locally modify the installed file
1924        fs::write(
1925            fixture.managed_root().join("agents/coder.md"),
1926            "# Locally modified",
1927        )
1928        .unwrap();
1929
1930        // Re-sync (source unchanged)
1931        let (target2, _) = target::build_with_collisions(&graph, &config).unwrap();
1932        let sync_diff2 =
1933            diff::compute(fixture.managed_root(), &first_lock, &target2, false).unwrap();
1934
1935        // Should detect LocalModified
1936        assert_eq!(sync_diff2.items.len(), 1);
1937        assert!(matches!(
1938            &sync_diff2.items[0],
1939            diff::DiffEntry::LocalModified { .. }
1940        ));
1941
1942        // Plan should KeepLocal
1943        let sync_plan2 = create_sync_plan(&sync_diff2, &options, &cache_dir);
1944        assert!(matches!(
1945            &sync_plan2.actions[0],
1946            plan::PlannedAction::KeepLocal { .. }
1947        ));
1948    }
1949
1950    #[test]
1951    fn force_overwrites_local_modifications() {
1952        let mut fixture = TestFixture::new();
1953        let src_idx = fixture.add_source(&[("coder.md", "# Original")], &[]);
1954
1955        let (graph, config) = make_graph_config(&fixture, vec![("base", src_idx, FilterMode::All)]);
1956
1957        // First sync
1958        let (target, _) = target::build_with_collisions(&graph, &config).unwrap();
1959        let lock = LockFile::empty();
1960        let sync_diff = diff::compute(fixture.managed_root(), &lock, &target, false).unwrap();
1961        let cache_dir = fixture.project_root().join(".mars/cache/bases");
1962        let options = SyncOptions {
1963            force: false,
1964            dry_run: false,
1965            frozen: false,
1966            no_refresh_models: false,
1967        };
1968        let sync_plan = create_sync_plan(&sync_diff, &options, &cache_dir);
1969        let result =
1970            apply::execute(fixture.managed_root(), &sync_plan, &options, &cache_dir).unwrap();
1971        let first_lock =
1972            crate::lock::build(&graph, &result, &lock, std::collections::BTreeMap::new()).unwrap();
1973
1974        // Locally modify the installed file
1975        fs::write(
1976            fixture.managed_root().join("agents/coder.md"),
1977            "# Locally modified",
1978        )
1979        .unwrap();
1980
1981        // Update source too (triggers conflict)
1982        let agents_dir = fixture.tree_path(src_idx).join("agents");
1983        fs::write(agents_dir.join("coder.md"), "# Upstream update").unwrap();
1984
1985        // Re-sync with --force
1986        let (target2, _) = target::build_with_collisions(&graph, &config).unwrap();
1987        let sync_diff2 =
1988            diff::compute(fixture.managed_root(), &first_lock, &target2, false).unwrap();
1989
1990        let force_options = SyncOptions {
1991            force: true,
1992            dry_run: false,
1993            frozen: false,
1994            no_refresh_models: false,
1995        };
1996        let sync_plan2 = create_sync_plan(&sync_diff2, &force_options, &cache_dir);
1997        assert!(matches!(
1998            &sync_plan2.actions[0],
1999            plan::PlannedAction::Overwrite { .. }
2000        ));
2001
2002        let result2 = apply::execute(
2003            fixture.managed_root(),
2004            &sync_plan2,
2005            &force_options,
2006            &cache_dir,
2007        )
2008        .unwrap();
2009        assert!(matches!(
2010            result2.outcomes[0].action,
2011            apply::ActionTaken::Updated
2012        ));
2013
2014        // File should have upstream content
2015        let content = fs::read_to_string(fixture.managed_root().join("agents/coder.md")).unwrap();
2016        assert_eq!(content, "# Upstream update");
2017    }
2018
2019    #[test]
2020    fn orphan_removed_when_source_drops_item() {
2021        let mut fixture = TestFixture::new();
2022        let src_idx = fixture.add_source(
2023            &[("coder.md", "# Coder"), ("reviewer.md", "# Reviewer")],
2024            &[],
2025        );
2026
2027        let (graph, config) = make_graph_config(&fixture, vec![("base", src_idx, FilterMode::All)]);
2028
2029        // First sync — install both
2030        let (target, _) = target::build_with_collisions(&graph, &config).unwrap();
2031        let lock = LockFile::empty();
2032        let sync_diff = diff::compute(fixture.managed_root(), &lock, &target, false).unwrap();
2033        let cache_dir = fixture.project_root().join(".mars/cache/bases");
2034        let options = SyncOptions {
2035            force: false,
2036            dry_run: false,
2037            frozen: false,
2038            no_refresh_models: false,
2039        };
2040        let sync_plan = create_sync_plan(&sync_diff, &options, &cache_dir);
2041        let result =
2042            apply::execute(fixture.managed_root(), &sync_plan, &options, &cache_dir).unwrap();
2043        let first_lock =
2044            crate::lock::build(&graph, &result, &lock, std::collections::BTreeMap::new()).unwrap();
2045
2046        assert!(fixture.managed_root().join("agents/coder.md").exists());
2047        assert!(fixture.managed_root().join("agents/reviewer.md").exists());
2048
2049        // Remove reviewer from source
2050        fs::remove_file(fixture.tree_path(src_idx).join("agents/reviewer.md")).unwrap();
2051
2052        // Re-sync
2053        let (target2, _) = target::build_with_collisions(&graph, &config).unwrap();
2054        let sync_diff2 =
2055            diff::compute(fixture.managed_root(), &first_lock, &target2, false).unwrap();
2056
2057        // Should have one Unchanged and one Orphan
2058        let orphan_count = sync_diff2
2059            .items
2060            .iter()
2061            .filter(|e| matches!(e, diff::DiffEntry::Orphan { .. }))
2062            .count();
2063        assert_eq!(orphan_count, 1);
2064
2065        let sync_plan2 = create_sync_plan(&sync_diff2, &options, &cache_dir);
2066        let result2 =
2067            apply::execute(fixture.managed_root(), &sync_plan2, &options, &cache_dir).unwrap();
2068
2069        // Reviewer should be removed
2070        assert!(!fixture.managed_root().join("agents/reviewer.md").exists());
2071        // Coder should still be there
2072        assert!(fixture.managed_root().join("agents/coder.md").exists());
2073
2074        // Check remove outcome
2075        let removed = result2
2076            .outcomes
2077            .iter()
2078            .any(|o| matches!(o.action, apply::ActionTaken::Removed));
2079        assert!(removed);
2080    }
2081
2082    #[test]
2083    fn dry_run_produces_plan_without_changes() {
2084        let mut fixture = TestFixture::new();
2085        let src_idx = fixture.add_source(&[("coder.md", "# Coder")], &[]);
2086
2087        let (graph, config) = make_graph_config(&fixture, vec![("base", src_idx, FilterMode::All)]);
2088
2089        let (target, _) = target::build_with_collisions(&graph, &config).unwrap();
2090        let lock = LockFile::empty();
2091        let sync_diff = diff::compute(fixture.managed_root(), &lock, &target, false).unwrap();
2092
2093        let cache_dir = fixture.project_root().join(".mars/cache/bases");
2094        let dry_options = SyncOptions {
2095            force: false,
2096            dry_run: true,
2097            frozen: false,
2098            no_refresh_models: false,
2099        };
2100
2101        let sync_plan = create_sync_plan(&sync_diff, &dry_options, &cache_dir);
2102        assert!(!sync_plan.actions.is_empty());
2103
2104        // Execute in dry-run mode
2105        let result =
2106            apply::execute(fixture.managed_root(), &sync_plan, &dry_options, &cache_dir).unwrap();
2107        assert!(!result.outcomes.is_empty());
2108
2109        // No files should have been created
2110        assert!(!fixture.managed_root().join("agents/coder.md").exists());
2111    }
2112
2113    #[test]
2114    fn lock_written_after_apply() {
2115        let mut fixture = TestFixture::new();
2116        let src_idx = fixture.add_source(&[("coder.md", "# Coder")], &[]);
2117
2118        let (graph, config) = make_graph_config(&fixture, vec![("base", src_idx, FilterMode::All)]);
2119
2120        // Full pipeline minus actual sync() (which needs real config files)
2121        let (target, _) = target::build_with_collisions(&graph, &config).unwrap();
2122        let lock = LockFile::empty();
2123        let sync_diff = diff::compute(fixture.managed_root(), &lock, &target, false).unwrap();
2124        let cache_dir = fixture.project_root().join(".mars/cache/bases");
2125        let options = SyncOptions {
2126            force: false,
2127            dry_run: false,
2128            frozen: false,
2129            no_refresh_models: false,
2130        };
2131        let sync_plan = create_sync_plan(&sync_diff, &options, &cache_dir);
2132        let result =
2133            apply::execute(fixture.managed_root(), &sync_plan, &options, &cache_dir).unwrap();
2134
2135        let new_lock =
2136            crate::lock::build(&graph, &result, &lock, std::collections::BTreeMap::new()).unwrap();
2137        crate::lock::write(fixture.project_root(), &new_lock).unwrap();
2138
2139        // Verify lock file exists and is valid
2140        let reloaded = crate::lock::load(fixture.project_root()).unwrap();
2141        assert_eq!(reloaded.items.len(), 1);
2142        assert!(reloaded.items.contains_key("agent/coder"));
2143
2144        let item = &reloaded.items["agent/coder"];
2145        assert_eq!(item.kind, ItemKind::Agent);
2146        assert!(!item.source_checksum.is_empty());
2147        assert!(!item.outputs[0].installed_checksum.is_empty());
2148    }
2149
2150    #[test]
2151    fn two_sources_no_collision() {
2152        let mut fixture = TestFixture::new();
2153        let src_a = fixture.add_source(&[("coder.md", "# Coder from A")], &[]);
2154        let src_b = fixture.add_source(&[("reviewer.md", "# Reviewer from B")], &[]);
2155
2156        let (graph, config) = make_graph_config(
2157            &fixture,
2158            vec![
2159                ("source-a", src_a, FilterMode::All),
2160                ("source-b", src_b, FilterMode::All),
2161            ],
2162        );
2163
2164        let (target, renames) = target::build_with_collisions(&graph, &config).unwrap();
2165        assert!(renames.is_empty());
2166        assert_eq!(target.items.len(), 2);
2167
2168        let lock = LockFile::empty();
2169        let sync_diff = diff::compute(fixture.managed_root(), &lock, &target, false).unwrap();
2170        let cache_dir = fixture.project_root().join(".mars/cache/bases");
2171        let options = SyncOptions {
2172            force: false,
2173            dry_run: false,
2174            frozen: false,
2175            no_refresh_models: false,
2176        };
2177        let sync_plan = create_sync_plan(&sync_diff, &options, &cache_dir);
2178        let result =
2179            apply::execute(fixture.managed_root(), &sync_plan, &options, &cache_dir).unwrap();
2180
2181        assert!(fixture.managed_root().join("agents/coder.md").exists());
2182        assert!(fixture.managed_root().join("agents/reviewer.md").exists());
2183        assert_eq!(result.outcomes.len(), 2);
2184    }
2185
2186    // === Tests for OnlySkills / OnlyAgents filter in pipeline ===
2187
2188    #[test]
2189    fn pipeline_only_skills_filter() {
2190        let mut fixture = TestFixture::new();
2191        let src_idx = fixture.add_source(
2192            &[("coder.md", "# Coder agent")],
2193            &[("planning", "# Planning skill")],
2194        );
2195
2196        let (graph, config) =
2197            make_graph_config(&fixture, vec![("base", src_idx, FilterMode::OnlySkills)]);
2198
2199        let (target, _) = target::build_with_collisions(&graph, &config).unwrap();
2200        // Should only have the skill, not the agent
2201        assert_eq!(target.items.len(), 1);
2202        assert!(target.items.contains_key("skills/planning"));
2203    }
2204
2205    #[test]
2206    fn pipeline_only_agents_filter() {
2207        let mut fixture = TestFixture::new();
2208        // Agent with a skill dependency in frontmatter
2209        let agent_content = "---\nskills:\n  - planning\n---\n# Coder agent";
2210        let src_idx = fixture.add_source(
2211            &[("coder.md", agent_content)],
2212            &[
2213                ("planning", "# Planning skill"),
2214                ("standalone", "# Standalone skill"),
2215            ],
2216        );
2217
2218        let (graph, config) =
2219            make_graph_config(&fixture, vec![("base", src_idx, FilterMode::OnlyAgents)]);
2220
2221        let (target, _) = target::build_with_collisions(&graph, &config).unwrap();
2222        // Should have the agent + its transitive skill dep, but NOT standalone
2223        assert_eq!(target.items.len(), 2);
2224        assert!(target.items.contains_key("agents/coder.md"));
2225        assert!(target.items.contains_key("skills/planning"));
2226        assert!(!target.items.contains_key("skills/standalone"));
2227    }
2228
2229    #[test]
2230    fn pipeline_only_agents_no_agents_source() {
2231        let mut fixture = TestFixture::new();
2232        let src_idx = fixture.add_source(&[], &[("planning", "# Planning skill")]);
2233
2234        let (graph, config) =
2235            make_graph_config(&fixture, vec![("base", src_idx, FilterMode::OnlyAgents)]);
2236
2237        let (target, _) = target::build_with_collisions(&graph, &config).unwrap();
2238        // No agents means nothing gets installed
2239        assert_eq!(target.items.len(), 0);
2240    }
2241}