memstead_base/workspace.rs
1//! Workspace concept — first-class in `memstead-base` after the
2//! workspace-store rebuild.
3//!
4//! A [`Workspace`] is the operator-curated collection of mounts;
5//! each [`Mount`] attaches one mem to the workspace via a storage
6//! backend (folder / git-branch / archive). One mount = one mem:
7//! five mems living on five branches in one git-repo materialise as
8//! five mounts; the engine pools the gitdir handle internally for the
9//! shared backend rather than collapsing the conceptual mount.
10//!
11//! This module ships the data shapes only. The persistence adapter
12//! that materialises a `Workspace` from `.memstead/workspace.toml` +
13//! `.memstead/state/mounts.json` lands separately as the file-adapter
14//! sessions move forward; tests and the macOS app's in-memory builder
15//! construct `Workspace` directly without going through any adapter.
16//!
17//! Distinct from [`crate::mem::MemRouterSnapshot`], which is the
18//! engine's *runtime* snapshot of writable / visible mems. The
19//! engine derives a `MemRouterSnapshot` from a `Workspace` at boot;
20//! the two coexist while the rebuild is in flight.
21
22use std::collections::{BTreeMap, HashMap};
23use std::path::PathBuf;
24
25use memstead_schema::SchemaRef;
26use memstead_schema::workspace_config::CrossLinkValue;
27use serde::{Deserialize, Serialize};
28
29/// A single mem attachment in a [`Workspace`]. One mount = one
30/// mem. The schema pin is on the mount because per-mem schema
31/// resolution is fixed in code (local-storage → built-in → registry,
32/// with the storage layer owning where "local" lives — see the
33/// glossary's *Schema* entry); the mount carries which schema this
34/// mem expects, the backend resolves where the YAMLs come from.
35#[derive(Debug, Clone, PartialEq, Eq)]
36pub struct Mount {
37 /// Operator-facing mem name within this workspace.
38 pub mem: String,
39 /// Optional *expectation assertion* about this mem's schema pin
40 /// (exact `<name>@<version>`). The authoritative pin is the mem's
41 /// own `MemConfig.schema` on its storage backend; boot/load
42 /// resolve from there. This field is a workspace-local cross-check —
43 /// useful for foreign or read-only mounts. `None` means "assert
44 /// nothing, trust the backend config". When `Some` and mismatching
45 /// the config pin, loading surfaces a `SchemaPinMismatch` finding
46 /// naming both values; neither is silently preferred. Resolution
47 /// falls back to this value only when the backend config carries no
48 /// pin.
49 pub schema: Option<SchemaRef>,
50 /// Backend-specific reference to the mem's content.
51 pub storage: MountStorage,
52 /// Read-only or writable attachment.
53 pub capability: MountCapability,
54 /// Eager (open the backend at engine start) or lazy (defer to
55 /// first read). V1 runtime treats every mount as `Eager`; the
56 /// `Lazy` slot is reserved for archive backends that should not
57 /// unzip at boot.
58 pub lifecycle: MountLifecycle,
59 /// Whether other mounts in the same workspace may form
60 /// cross-mem edges into this mount. Workspace-level cross-mem
61 /// permission policy can override.
62 pub cross_linkable: bool,
63 /// In-flight schema migration target. `Some(target)` puts the
64 /// mem in dual-pin state: writes validate against `target`
65 /// (the engine's effective validation schema), reads stay
66 /// permissive, and `schema` remains the settled pin until every
67 /// entity is integral against the target — then the atomic
68 /// switch sets `schema = target` and clears this field in one
69 /// workspace-store write. Persisted so a long migration is
70 /// resumable across engine restarts.
71 pub migration_target: Option<SchemaRef>,
72}
73
74impl Mount {
75 /// Hierarchical organisational path for this mount, or `None` for
76 /// flat layout / non-hierarchical storage. Mirrors the
77 /// `MemCreateParams.path` create-side input — at delete time the
78 /// lifecycle candidate composes as `<mem_path>/<name>` (or
79 /// `<name>` alone when `None`) to match the create-side rule.
80 ///
81 /// Derivation: `MountStorage::GitBranch` carries the path in its
82 /// `branch` field. Tolerates both fully-qualified
83 /// `refs/heads/<mem_path>/<mem>` (the shape `create_mem`
84 /// produces) and bare `<mem_path>/<mem>` (the shape
85 /// `mounts.json` operator-edited entries carry) — full's
86 /// `instantiate_full_backend` already normalises both forms. Strip
87 /// the optional `refs/heads/` prefix and the trailing `<mem>`
88 /// leaf. `Folder` / `Archive` carry no hierarchical path on the
89 /// storage variant — runtime callers that know the create-time
90 /// `path` plumb it directly into the router via
91 /// `Engine::register_writable_mem`.
92 pub fn mem_path(&self) -> Option<String> {
93 match &self.storage {
94 MountStorage::GitBranch { branch, .. } => {
95 let leaf = branch
96 .strip_prefix("refs/heads/")
97 .unwrap_or(branch.as_str());
98 let after_leaf = leaf.strip_suffix(&self.mem)?;
99 let trimmed = after_leaf.trim_end_matches('/');
100 if trimmed.is_empty() {
101 None
102 } else {
103 Some(trimmed.to_string())
104 }
105 }
106 MountStorage::Folder { .. } | MountStorage::Archive { .. } | MountStorage::InMemory => {
107 None
108 }
109 }
110 }
111}
112
113/// Storage reference for a [`Mount`]. One variant per
114/// [`crate::backend::MemBackend`] implementation. New backends add
115/// a variant; the file-adapter learns to round-trip it.
116#[derive(Debug, Clone, PartialEq, Eq)]
117pub enum MountStorage {
118 /// Folder backend — mem lives as a directory tree on disk.
119 /// The mem root may be the workspace root itself (collapsed
120 /// single-mem form: `.memstead/config.json` at root, no `mems/`
121 /// subfolder) or a sibling mem subfolder.
122 Folder {
123 /// Absolute path to the mem root directory.
124 path: PathBuf,
125 },
126 /// Git-branch backend — mem lives as a branch in a mem-repo
127 /// gitdir. Multi-repo workspaces are supported by varying
128 /// `gitdir` across mounts (see the *Storage backend* glossary
129 /// entry's *per-mount git-repo* block for the trade-offs).
130 GitBranch {
131 /// Absolute path to the gitdir
132 /// (typically `<workspace>/mem-repo/.git`).
133 gitdir: PathBuf,
134 /// Branch name within the gitdir holding the mem content.
135 branch: String,
136 },
137 /// Archive backend — mem lives inside a sealed `.mem` zip archive.
138 /// Always read-only; mounts of this storage carry
139 /// [`MountCapability::ReadOnly`].
140 Archive {
141 /// Absolute path to the sealed archive file.
142 path: PathBuf,
143 },
144 /// In-memory backend — mem lives entirely in RAM, with no
145 /// filesystem path and no git. Created empty, dropped with the
146 /// engine, leaving no on-disk residue. Serves ephemeral
147 /// per-session playground mems. Carries no fields: there is
148 /// nothing to locate on disk, and the backend holds all state
149 /// itself (see [`crate::storage::InMemoryBackend`]).
150 InMemory,
151}
152
153impl MountStorage {
154 /// Stable kebab-case backend identifier surfaced in error envelopes
155 /// (e.g. `MARKDOWN_EXPORT_UNSUPPORTED_BACKEND`'s `active_backend`
156 /// detail) and in the on-disk `mounts.json` serialisation. The
157 /// kebab-case form matches the `MountStorageWire` `#[serde(tag,
158 /// rename_all = "kebab-case")]` tag.
159 pub fn backend_id(&self) -> &'static str {
160 match self {
161 MountStorage::Folder { .. } => "folder",
162 MountStorage::GitBranch { .. } => "git-branch",
163 MountStorage::Archive { .. } => "archive",
164 MountStorage::InMemory => "in-memory",
165 }
166 }
167
168 /// Whether writes (and, for read-only backends, the loaded content)
169 /// survive process restart / session-TTL eviction. `Folder`,
170 /// `GitBranch`, and `Archive` all live on disk and persist; only
171 /// `InMemory` is volatile — its state is dropped with the engine,
172 /// so a `commit_sha` it returns denotes nothing durable. This is the
173 /// fact the durability marker projects: derived from the storage
174 /// *kind*, not from `current_head()` (which is `None` for both
175 /// `Folder` and `InMemory` and so cannot tell them apart).
176 pub fn is_durable(&self) -> bool {
177 match self {
178 MountStorage::Folder { .. }
179 | MountStorage::GitBranch { .. }
180 | MountStorage::Archive { .. } => true,
181 MountStorage::InMemory => false,
182 }
183 }
184}
185
186/// What the workspace may do with a mount.
187#[derive(Debug, Clone, Copy, PartialEq, Eq)]
188pub enum MountCapability {
189 /// Mutations rejected — the engine surfaces a typed read-only
190 /// error before reaching the backend.
191 ReadOnly,
192 /// Full read + write.
193 Write,
194}
195
196/// When the mount's backend initialises.
197#[derive(Debug, Clone, Copy, PartialEq, Eq)]
198pub enum MountLifecycle {
199 /// Open the backend at engine start.
200 Eager,
201 /// Defer initialisation until first read. V1 runtime ignores
202 /// this and treats every mount as `Eager`; the slot is reserved
203 /// for archive-backed mounts that should not unzip at boot.
204 Lazy,
205}
206
207/// Operator-curated workspace — the in-memory shape the engine
208/// receives.
209///
210/// The two-layer file adapter produces a `Workspace` by reading
211/// `.memstead/workspace.toml` (operator-edited rules) and
212/// `.memstead/state/mounts.json` (engine-managed mount list). Tests and
213/// the macOS app's in-memory builder construct `Workspace` directly.
214///
215/// V1 carries the mount list and operator policy. Plugin hooks and
216/// pipeline-config handles attach as additive fields — no breaking
217/// changes expected.
218#[derive(Debug, Clone, Default)]
219pub struct Workspace {
220 pub mounts: Vec<Mount>,
221 /// Workspace-level operator policy (mem create/delete rules,
222 /// cross-mem link permissions). Defaults to empty for tests
223 /// and the macOS app's in-memory builder; the file adapter
224 /// populates from `.memstead/workspace.toml`'s `[mem_management]`
225 /// and `[cross_mem_links]` sections. The unified engine reads
226 /// this via [`crate::Engine::settings`] after
227 /// [`crate::Engine::from_workspace_root`] threads it through
228 /// [`crate::Engine::set_settings`].
229 pub settings: WorkspaceSettings,
230}
231
232impl Workspace {
233 /// Empty workspace — zero mounts, default settings. Useful for
234 /// tests; production workspaces always carry at least one mount
235 /// (the engine rejects an empty `Workspace` at boot).
236 pub fn empty() -> Self {
237 Self {
238 mounts: Vec::new(),
239 settings: WorkspaceSettings::default(),
240 }
241 }
242}
243
244/// Workspace-level operator policy carried alongside the mount list.
245///
246/// Data carriers only — the matcher compilation lives in
247/// `crate::mem_management::CreateRuleSet`. The engine carries the
248/// raw settings so MCP handlers can surface them under `memstead_health
249/// { include_config: true }` and `memstead_overview`'s
250/// lifecycle-namespaces section.
251///
252/// `Default::default()` is a totally-empty policy: zero create rules,
253/// zero delete rules, no cross-mem link policy. The unified engine
254/// uses this as the bootstrap value at construction time; consumers
255/// that load a real policy call [`crate::Engine::set_settings`].
256#[derive(Debug, Clone, Default)]
257pub struct WorkspaceSettings {
258 /// Raw `[[mem_management.create]]` rules in declaration order.
259 /// Each entry carries a gitignore-style `pattern` matched against
260 /// the candidate mem path, an `schemas[]` allowlist, and an
261 /// optional `default_cross_links` synthesised cross-link
262 /// permission. Empty list means "no agent-driven mem creation
263 /// allowed" — `memstead_mem_create` rejects every candidate.
264 pub mem_create_rules: Vec<CreateRuleSetting>,
265 /// Raw `[[mem_management.delete]]` rules. Same first-match
266 /// semantics as [`Self::mem_create_rules`], minus the schema
267 /// dimension. Empty list means "no agent-driven mem deletion
268 /// allowed".
269 pub mem_delete_rules: Vec<DeleteRuleSetting>,
270 /// `[cross_mem_links]` policy — workspace-level cross-mem
271 /// edge permissions keyed by source mem. Empty map means
272 /// default-deny: every cross-mem edge fails until at least one
273 /// matching entry exists or a create-rule synthesised one.
274 pub cross_mem_links: BTreeMap<String, CrossLinkValue>,
275 /// `[mcp]` section — MCP-binary tuning knobs that operators set
276 /// per-workspace. The MCP binary reads this off
277 /// `Engine::settings()` at boot to size the response chunker
278 /// (`token_budget`) and filter the advertised tool surface
279 /// (`disabled_tools`). Defaulted when the section is absent.
280 pub mcp: McpSection,
281 /// `[mutations]` section — engine-wide mutation policy. The
282 /// `require_notes` field surfaces a `WarningHint::NoteMissing` on
283 /// mutation calls that omit a `note`. Default-zeroed when absent.
284 pub mutations: MutationsSection,
285 /// `[plugin.*]` namespace — opaque pass-through map keyed by
286 /// plugin identifier (`claude_code`, `macos`, …). Values are raw
287 /// TOML tables the engine never inspects; named plugins read
288 /// their own sub-table via `memstead_health { include_config: true }`.
289 pub plugin: HashMap<String, toml::Table>,
290}
291
292/// `[mcp]` section — settings the MCP binary reads at boot. Carried
293/// on `WorkspaceSettings` so the MCP server sources its tuning from
294/// `Engine::settings()` instead of a parallel TOML parse.
295#[derive(Debug, Default, Serialize, Deserialize, Clone, PartialEq, Eq)]
296#[serde(deny_unknown_fields)]
297pub struct McpSection {
298 /// Per-response chunking budget in tokens. `None` → caller falls
299 /// back to the compile-time `DEFAULT_TOKEN_BUDGET`.
300 pub token_budget: Option<usize>,
301 /// Blocklist of tool names. Entries matching a compiled-in tool
302 /// are hidden from `tools/list` and rejected with `TOOL_DISABLED`
303 /// on direct invocation. Unknown entries log a warning and drop
304 /// from the effective set. Empty / absent → every compiled-in
305 /// tool is advertised.
306 pub disabled_tools: Option<Vec<String>>,
307}
308
309/// `[mutations]` section — engine-wide mutation policy. Carried on
310/// `WorkspaceSettings` so plugins can read the configured posture via
311/// `memstead_health { include_config: true }` without a round-trip.
312#[derive(Debug, Default, Serialize, Deserialize, Clone, PartialEq, Eq)]
313#[serde(deny_unknown_fields)]
314pub struct MutationsSection {
315 /// When `true`, a mutation call without a `note` field emits a
316 /// `WarningHint { code: "note_missing" }`. The mutation still
317 /// succeeds — provenance is best-effort.
318 pub require_notes: Option<bool>,
319}
320
321/// One `[[mem_management.create]]` rule. Carries a glob `pattern`
322/// matched against the candidate mem path, the `schemas` allowlist
323/// (each entry an exact `name@x.y.z` pin or the literal `"*"` for
324/// any-schema), and an optional `default_cross_links` value applied
325/// to every mem the rule matches.
326#[derive(Debug, Clone, PartialEq, Eq)]
327pub struct CreateRuleSetting {
328 pub pattern: String,
329 pub schemas: Vec<String>,
330 pub default_cross_links: Option<CrossLinkValue>,
331}
332
333/// One `[[mem_management.delete]]` rule. Carries only a `pattern`;
334/// delete has no schema dimension.
335#[derive(Debug, Clone, PartialEq, Eq)]
336pub struct DeleteRuleSetting {
337 pub pattern: String,
338}
339
340/// The literal `"*"` schema-allowlist entry that admits any pinned
341/// schema. Consumed by the create-rule allowlist parser.
342pub const SCHEMA_WILDCARD: &str = "*";
343
344#[cfg(test)]
345mod tests {
346 use super::*;
347
348 fn pin(name: &str) -> SchemaRef {
349 SchemaRef::new(name, semver::Version::new(1, 0, 0))
350 }
351
352 #[test]
353 fn empty_workspace_has_no_mounts() {
354 let ws = Workspace::empty();
355 assert!(ws.mounts.is_empty());
356 }
357
358 #[test]
359 fn durability_follows_storage_kind() {
360 // On-disk backends persist; only in-memory is volatile. This is
361 // the fact the durability marker projects across overview / health
362 // / mutation responses.
363 let folder = MountStorage::Folder {
364 path: PathBuf::from("/work/mem"),
365 };
366 let git = MountStorage::GitBranch {
367 gitdir: PathBuf::from("/work/mem-repo/.git"),
368 branch: "specs".into(),
369 };
370 let archive = MountStorage::Archive {
371 path: PathBuf::from("/work/curated.mem"),
372 };
373 let in_memory = MountStorage::InMemory;
374
375 assert!(folder.is_durable());
376 assert!(git.is_durable());
377 assert!(archive.is_durable());
378 assert!(!in_memory.is_durable());
379
380 // The backend_id kebab string the marker rides alongside.
381 assert_eq!(folder.backend_id(), "folder");
382 assert_eq!(git.backend_id(), "git-branch");
383 assert_eq!(archive.backend_id(), "archive");
384 assert_eq!(in_memory.backend_id(), "in-memory");
385 }
386
387 #[test]
388 fn mount_can_describe_folder_storage() {
389 let m = Mount {
390 mem: "specs".into(),
391 schema: Some(pin("default")),
392 storage: MountStorage::Folder {
393 path: PathBuf::from("/work/mem"),
394 },
395 capability: MountCapability::Write,
396 lifecycle: MountLifecycle::Eager,
397 cross_linkable: true,
398 migration_target: None,
399 };
400 assert_eq!(m.mem, "specs");
401 assert!(matches!(m.storage, MountStorage::Folder { .. }));
402 }
403
404 #[test]
405 fn mount_can_describe_git_branch_storage() {
406 let m = Mount {
407 mem: "engine".into(),
408 schema: Some(pin("default")),
409 storage: MountStorage::GitBranch {
410 gitdir: PathBuf::from("/work/mem-repo/.git"),
411 branch: "engine".into(),
412 },
413 capability: MountCapability::Write,
414 lifecycle: MountLifecycle::Eager,
415 cross_linkable: true,
416 migration_target: None,
417 };
418 assert!(matches!(m.storage, MountStorage::GitBranch { .. }));
419 }
420
421 /// `Mount::mem_path()` derives the hierarchical path component
422 /// the delete-side lifecycle composer needs. Tolerates both bare
423 /// `<path>/<mem>` (operator-edited mounts.json) and
424 /// fully-qualified `refs/heads/<path>/<mem>` (runtime-created
425 /// mems). Folder / Archive variants always return `None`.
426 #[test]
427 fn mem_path_extracts_hierarchical_prefix_from_git_branch() {
428 // Bare hierarchical (mounts.json shape).
429 let m = Mount {
430 mem: "engine".into(),
431 schema: Some(pin("default")),
432 storage: MountStorage::GitBranch {
433 gitdir: PathBuf::from("/work/mem-repo/.git"),
434 branch: "memstead/engine".into(),
435 },
436 capability: MountCapability::Write,
437 lifecycle: MountLifecycle::Eager,
438 cross_linkable: true,
439 migration_target: None,
440 };
441 assert_eq!(m.mem_path(), Some("memstead".to_string()));
442
443 // Fully-qualified hierarchical (create_mem shape).
444 let m = Mount {
445 mem: "plan-foo".into(),
446 schema: Some(pin("default")),
447 storage: MountStorage::GitBranch {
448 gitdir: PathBuf::from("/work/mem-repo/.git"),
449 branch: "refs/heads/planning/plan-foo".into(),
450 },
451 capability: MountCapability::Write,
452 lifecycle: MountLifecycle::Eager,
453 cross_linkable: true,
454 migration_target: None,
455 };
456 assert_eq!(m.mem_path(), Some("planning".to_string()));
457
458 // Multi-segment hierarchical prefix.
459 let m = Mount {
460 mem: "leaf".into(),
461 schema: Some(pin("default")),
462 storage: MountStorage::GitBranch {
463 gitdir: PathBuf::from("/work/mem-repo/.git"),
464 branch: "refs/heads/a/b/c/leaf".into(),
465 },
466 capability: MountCapability::Write,
467 lifecycle: MountLifecycle::Eager,
468 cross_linkable: true,
469 migration_target: None,
470 };
471 assert_eq!(m.mem_path(), Some("a/b/c".to_string()));
472
473 // Flat layout (bare leaf, no prefix).
474 let m = Mount {
475 mem: "engine".into(),
476 schema: Some(pin("default")),
477 storage: MountStorage::GitBranch {
478 gitdir: PathBuf::from("/work/mem-repo/.git"),
479 branch: "engine".into(),
480 },
481 capability: MountCapability::Write,
482 lifecycle: MountLifecycle::Eager,
483 cross_linkable: true,
484 migration_target: None,
485 };
486 assert_eq!(m.mem_path(), None);
487
488 // Flat layout (fully-qualified, no prefix beyond refs/heads/).
489 let m = Mount {
490 mem: "engine".into(),
491 schema: Some(pin("default")),
492 storage: MountStorage::GitBranch {
493 gitdir: PathBuf::from("/work/mem-repo/.git"),
494 branch: "refs/heads/engine".into(),
495 },
496 capability: MountCapability::Write,
497 lifecycle: MountLifecycle::Eager,
498 cross_linkable: true,
499 migration_target: None,
500 };
501 assert_eq!(m.mem_path(), None);
502
503 // Folder backend has no hierarchical concept.
504 let m = Mount {
505 mem: "engine".into(),
506 schema: Some(pin("default")),
507 storage: MountStorage::Folder {
508 path: PathBuf::from("/work/mem"),
509 },
510 capability: MountCapability::Write,
511 lifecycle: MountLifecycle::Eager,
512 cross_linkable: true,
513 migration_target: None,
514 };
515 assert_eq!(m.mem_path(), None);
516 }
517
518 #[test]
519 fn mount_can_describe_archive_storage() {
520 let m = Mount {
521 mem: "external".into(),
522 schema: Some(pin("default")),
523 storage: MountStorage::Archive {
524 path: PathBuf::from("/deps/external.mem"),
525 },
526 capability: MountCapability::ReadOnly,
527 lifecycle: MountLifecycle::Lazy,
528 cross_linkable: false,
529 migration_target: None,
530 };
531 assert!(matches!(m.storage, MountStorage::Archive { .. }));
532 assert_eq!(m.capability, MountCapability::ReadOnly);
533 }
534
535 #[test]
536 fn workspace_with_heterogeneous_mounts() {
537 let ws = Workspace {
538 mounts: vec![
539 Mount {
540 mem: "engine".into(),
541 schema: Some(pin("default")),
542 storage: MountStorage::GitBranch {
543 gitdir: PathBuf::from("/work/mem-repo/.git"),
544 branch: "engine".into(),
545 },
546 capability: MountCapability::Write,
547 lifecycle: MountLifecycle::Eager,
548 cross_linkable: true,
549 migration_target: None,
550 },
551 Mount {
552 mem: "macos".into(),
553 schema: Some(pin("default")),
554 storage: MountStorage::GitBranch {
555 gitdir: PathBuf::from("/work/mem-repo/.git"),
556 branch: "macos".into(),
557 },
558 capability: MountCapability::Write,
559 lifecycle: MountLifecycle::Eager,
560 cross_linkable: true,
561 migration_target: None,
562 },
563 Mount {
564 mem: "external".into(),
565 schema: Some(pin("default")),
566 storage: MountStorage::Archive {
567 path: PathBuf::from("/deps/external.mem"),
568 },
569 capability: MountCapability::ReadOnly,
570 lifecycle: MountLifecycle::Lazy,
571 cross_linkable: false,
572 migration_target: None,
573 },
574 ],
575 settings: WorkspaceSettings::default(),
576 };
577 assert_eq!(ws.mounts.len(), 3);
578 // Two mounts share a gitdir — the engine will pool the handle
579 // internally; the conceptual mount stays per-mem.
580 let shared_gitdir_mounts = ws
581 .mounts
582 .iter()
583 .filter(|m| matches!(&m.storage, MountStorage::GitBranch { gitdir, .. } if gitdir == std::path::Path::new("/work/mem-repo/.git")))
584 .count();
585 assert_eq!(shared_gitdir_mounts, 2);
586 }
587}