1use indexmap::IndexMap;
9use lex_ast::canonicalize_program;
10use lex_bytecode::{compile_program, vm::Vm, Value};
11use lex_runtime::{check_program as check_policy, DefaultHandler, Policy};
12use lex_store::Store;
13use crate::publish_examples::record_examples_for_publish;
14use lex_syntax::{load_package, load_program_from_str, Manifest};
15use lex_vcs::{MergeSession, MergeSessionId};
16use serde::{Deserialize, Serialize};
17use std::collections::{BTreeMap, BTreeSet, HashMap};
18use std::path::PathBuf;
19use std::sync::{Arc, Mutex};
20use std::time::{SystemTime, UNIX_EPOCH};
21use tiny_http::{Header, Method, Request, Response};
22
23fn stage_fns(stages: &[lex_ast::Stage]) -> BTreeMap<String, lex_ast::FnDecl> {
25 stages.iter().filter_map(|s| match s {
26 lex_ast::Stage::FnDecl(fd) => Some((fd.name.clone(), fd.clone())),
27 _ => None,
28 }).collect()
29}
30
31fn stage_types(stages: &[lex_ast::Stage]) -> BTreeMap<String, lex_ast::TypeDecl> {
34 stages.iter().filter_map(|s| match s {
35 lex_ast::Stage::TypeDecl(td) => Some((td.name.clone(), td.clone())),
36 _ => None,
37 }).collect()
38}
39
40pub struct State {
41 pub store: Mutex<Store>,
42 pub root: PathBuf,
47 pub sessions: Mutex<HashMap<MergeSessionId, ApiMergeSession>>,
54 pub policy_ceiling: Option<Policy>,
75}
76
77pub struct ApiMergeSession {
84 pub inner: MergeSession,
85 pub src_branch: String,
86 pub dst_branch: String,
87}
88
89impl State {
90 pub fn open(root: PathBuf) -> anyhow::Result<Self> {
91 Self::open_with_ceiling(root, None)
92 }
93
94 pub fn open_with_ceiling(
99 root: PathBuf,
100 policy_ceiling: Option<Policy>,
101 ) -> anyhow::Result<Self> {
102 Ok(Self {
103 store: Mutex::new(Store::open(&root)?),
104 root,
105 sessions: Mutex::new(HashMap::new()),
106 policy_ceiling,
107 })
108 }
109
110 pub fn new_with_tenant(tenant_id: &str, store_root: PathBuf) -> anyhow::Result<Self> {
120 validate_tenant_id(tenant_id)?;
121 Self::open(store_root.join(tenant_id))
122 }
123
124 pub fn new_with_tenant_and_ceiling(
129 tenant_id: &str,
130 store_root: PathBuf,
131 policy_ceiling: Option<Policy>,
132 ) -> anyhow::Result<Self> {
133 validate_tenant_id(tenant_id)?;
134 Self::open_with_ceiling(store_root.join(tenant_id), policy_ceiling)
135 }
136}
137
138fn clamp_policy(requested: Policy, ceiling: &Policy) -> Policy {
154 let allow_effects: BTreeSet<String> = requested
155 .allow_effects
156 .intersection(&ceiling.allow_effects)
157 .cloned()
158 .collect();
159 let budget = match (requested.budget, ceiling.budget) {
160 (Some(r), Some(c)) => Some(r.min(c)),
161 (None, Some(c)) => Some(c),
162 (Some(r), None) => Some(r),
163 (None, None) => None,
164 };
165 Policy {
166 allow_effects,
167 allow_fs_read: ceiling.allow_fs_read.clone(),
168 allow_fs_write: ceiling.allow_fs_write.clone(),
169 allow_net_host: ceiling.allow_net_host.clone(),
170 allow_proc: ceiling.allow_proc.clone(),
171 allow_approval: ceiling.allow_approval.clone(),
172 budget,
173 }
174}
175
176fn validate_tenant_id(tenant_id: &str) -> anyhow::Result<()> {
177 if tenant_id.is_empty() {
178 anyhow::bail!("tenant_id must not be empty");
179 }
180 if tenant_id.len() > 64 {
181 anyhow::bail!("tenant_id must be at most 64 bytes");
182 }
183 if !tenant_id
184 .bytes()
185 .all(|b| b.is_ascii_alphanumeric() || b == b'_' || b == b'-')
186 {
187 anyhow::bail!(
188 "tenant_id {tenant_id:?} contains characters outside [A-Za-z0-9_-]"
189 );
190 }
191 Ok(())
192}
193
194#[derive(Debug, Serialize, Deserialize)]
195struct ErrorEnvelope {
196 error: String,
197 #[serde(skip_serializing_if = "Option::is_none")]
198 detail: Option<serde_json::Value>,
199}
200
201pub(crate) fn json_response(status: u16, body: &serde_json::Value) -> Response<std::io::Cursor<Vec<u8>>> {
202 let bytes = serde_json::to_vec(body).unwrap_or_else(|_| b"{}".to_vec());
203 Response::from_data(bytes)
204 .with_status_code(status)
205 .with_header(Header::from_bytes(&b"Content-Type"[..], &b"application/json"[..]).unwrap())
206}
207
208pub(crate) fn error_response(status: u16, msg: impl Into<String>) -> Response<std::io::Cursor<Vec<u8>>> {
209 json_response(status, &serde_json::to_value(ErrorEnvelope {
210 error: msg.into(), detail: None,
211 }).unwrap())
212}
213
214pub(crate) fn error_with_detail(status: u16, msg: impl Into<String>, detail: serde_json::Value)
215 -> Response<std::io::Cursor<Vec<u8>>>
216{
217 json_response(status, &serde_json::to_value(ErrorEnvelope {
218 error: msg.into(), detail: Some(detail),
219 }).unwrap())
220}
221
222fn write_error_response(prefix: &str, err: lex_store::StoreError)
228 -> Response<std::io::Cursor<Vec<u8>>>
229{
230 if let lex_store::StoreError::Contention { branch, attempts } = &err {
231 let body = serde_json::to_vec(&ErrorEnvelope {
232 error: format!("{prefix}: branch '{branch}' is contended (attempts={attempts})"),
233 detail: Some(serde_json::json!({
234 "kind": "contention",
235 "branch": branch,
236 "attempts": attempts,
237 })),
238 }).unwrap_or_else(|_| b"{}".to_vec());
239 return Response::from_data(body)
240 .with_status_code(503)
241 .with_header(Header::from_bytes(&b"Content-Type"[..], &b"application/json"[..]).unwrap())
242 .with_header(Header::from_bytes(&b"Retry-After"[..], &b"1"[..]).unwrap());
243 }
244 if let lex_store::StoreError::BudgetExceeded { session_id, cap, spent_after } = &err {
252 let body = serde_json::to_vec(&ErrorEnvelope {
253 error: format!(
254 "{prefix}: session `{session_id}` budget exceeded \
255 (spent_after={spent_after}, cap={cap})"
256 ),
257 detail: Some(serde_json::json!({
258 "kind": "budget_exceeded",
259 "session_id": session_id,
260 "cap": cap,
261 "spent_after": spent_after,
262 })),
263 }).unwrap_or_else(|_| b"{}".to_vec());
264 return Response::from_data(body)
265 .with_status_code(503)
266 .with_header(Header::from_bytes(&b"Content-Type"[..], &b"application/json"[..]).unwrap())
267 .with_header(Header::from_bytes(&b"Retry-After"[..], &b"0"[..]).unwrap());
268 }
269 error_response(500, format!("{prefix}: {err}"))
270}
271
272pub fn handle(state: Arc<State>, mut req: Request) -> std::io::Result<()> {
273 let method = req.method().clone();
274 let url = req.url().to_string();
275 let path = url.split('?').next().unwrap_or("").to_string();
276 let query = url.split_once('?').map(|(_, q)| q.to_string()).unwrap_or_default();
277
278 let x_lex_user = req.headers().iter()
283 .find(|h| h.field.equiv("x-lex-user"))
284 .map(|h| h.value.as_str().to_string());
285
286 if matches!(method, Method::Post) && path == "/v1/pkg/publish" {
288 let mut body_bytes: Vec<u8> = Vec::new();
289 let _ = req.as_reader().read_to_end(&mut body_bytes);
290 let resp = pkg_publish_handler(&state, &body_bytes);
291 return req.respond(resp);
292 }
293
294 let mut body = String::new();
295 let _ = req.as_reader().read_to_string(&mut body);
296
297 let resp = route(&state, &method, &path, &query, &body, x_lex_user.as_deref());
298 req.respond(resp)
299}
300
301pub fn handle_with_auth<F>(state: Arc<State>, req: Request, auth: F) -> std::io::Result<()>
305where
306 F: FnOnce(&str, &[Header]) -> bool,
307{
308 let path = req.url().split('?').next().unwrap_or("").to_string();
309 if !auth(&path, req.headers()) {
310 return req.respond(
311 Response::from_data(br#"{"error":"unauthorized"}"#.to_vec())
312 .with_status_code(401)
313 .with_header(
314 Header::from_bytes(&b"Content-Type"[..], &b"application/json"[..]).unwrap(),
315 ),
316 );
317 }
318 handle(state, req)
319}
320
321fn route(
322 state: &State,
323 method: &Method,
324 path: &str,
325 query: &str,
326 body: &str,
327 x_lex_user: Option<&str>,
328) -> Response<std::io::Cursor<Vec<u8>>> {
329 match (method, path) {
330 (Method::Get, "/") => crate::web::activity_handler(state),
332 (Method::Get, "/web/branches") => crate::web::branches_handler(state),
333 (Method::Get, "/web/trust") => crate::web::trust_handler(state),
334 (Method::Get, "/web/attention") => crate::web::attention_handler(state),
335 (Method::Get, p) if p.starts_with("/web/branch/") => {
336 let name = &p["/web/branch/".len()..];
337 crate::web::branch_handler(state, name)
338 }
339 (Method::Get, p) if p.starts_with("/web/stage/") => {
340 let id = &p["/web/stage/".len()..];
341 crate::web::stage_html_handler(state, id)
342 }
343 (Method::Post, p) if p.starts_with("/web/stage/") && (
348 p.ends_with("/pin") || p.ends_with("/defer")
349 || p.ends_with("/block") || p.ends_with("/unblock")
350 ) => {
351 let prefix_len = "/web/stage/".len();
352 let last_slash = p.rfind('/').unwrap_or(p.len());
353 let id = &p[prefix_len..last_slash];
354 let verb = &p[last_slash + 1..];
355 let decision = match verb {
356 "pin" => crate::web::WebStageDecision::Pin,
357 "defer" => crate::web::WebStageDecision::Defer,
358 "block" => crate::web::WebStageDecision::Block,
359 "unblock" => crate::web::WebStageDecision::Unblock,
360 _ => unreachable!("matched in outer guard"),
361 };
362 crate::web::stage_decision_handler(state, id, body, decision, x_lex_user)
363 }
364 (Method::Get, "/v1/health") => json_response(200, &serde_json::json!({"ok": true})),
366 (Method::Post, "/v1/parse") => parse_handler(body),
367 (Method::Post, "/v1/check") => check_handler(body),
368 (Method::Post, "/v1/publish") => publish_handler(state, body),
369 (Method::Post, "/v1/patch") => patch_handler(state, body),
370 (Method::Get, p) if p.starts_with("/v1/stage/") => {
371 let suffix = &p["/v1/stage/".len()..];
372 if let Some(id) = suffix.strip_suffix("/attestations") {
375 stage_attestations_handler(state, id)
376 } else {
377 stage_handler(state, suffix)
378 }
379 }
380 (Method::Post, "/v1/run") => run_handler(state, body, false),
381 (Method::Post, "/v1/replay") => run_handler(state, body, true),
382 (Method::Get, p) if p.starts_with("/v1/trace/") => {
383 let id = &p["/v1/trace/".len()..];
384 trace_handler(state, id)
385 }
386 (Method::Get, "/v1/diff") => diff_handler(state, query),
387 (Method::Post, "/v1/merge/start") => merge_start_handler(state, body),
388 (Method::Post, p) if p.starts_with("/v1/merge/") && p.ends_with("/resolve") => {
389 let id = &p["/v1/merge/".len()..p.len() - "/resolve".len()];
390 merge_resolve_handler(state, id, body)
391 }
392 (Method::Post, p) if p.starts_with("/v1/merge/") && p.ends_with("/commit") => {
393 let id = &p["/v1/merge/".len()..p.len() - "/commit".len()];
394 merge_commit_handler(state, id)
395 }
396 (Method::Post, "/v1/ops/batch") => ops_batch_handler(state, body),
398 (Method::Post, "/v1/attestations/batch") => attestations_batch_handler(state, body),
399 (Method::Post, "/v1/stages/batch") => crate::sync_http::stages_batch_handler(state, body),
402 (Method::Post, "/v1/stages/fetch") => crate::sync_http::stages_fetch_handler(state, body),
403 (Method::Post, "/v1/intents/batch") => crate::sync_http::intents_batch_handler(state, body),
404 (Method::Post, "/v1/intents/fetch") => crate::sync_http::intents_fetch_handler(state, body),
405 (Method::Get, "/v1/branches") => crate::branches_http::branches_list_handler(state),
409 (Method::Post, "/v1/branches") => crate::branches_http::branch_create_handler(state, body),
410 (Method::Post, p) if p.starts_with("/v1/branches/") && p.ends_with("/checkout") => {
411 let name = &p["/v1/branches/".len()..p.len() - "/checkout".len()];
412 crate::branches_http::branch_checkout_handler(state, name)
413 }
414 (Method::Get, p) if p.starts_with("/v1/branches/") && p.ends_with("/head") => {
417 let name = &p["/v1/branches/".len()..p.len() - "/head".len()];
418 crate::branches_http::branch_head_handler(state, name)
419 }
420 (Method::Post, p) if p.starts_with("/v1/branches/") && p.ends_with("/head") => {
421 let name = &p["/v1/branches/".len()..p.len() - "/head".len()];
422 crate::branches_http::branch_advance_head_handler(state, name, body)
423 }
424 (Method::Get, "/v1/ops/since") => ops_since_handler(state, query),
428 (Method::Get, "/v1/attestations/since") => attestations_since_handler(state, query),
429 (Method::Get, "/v1/pkg") => pkg_list_handler(state),
433 (Method::Put, p) if p.starts_with("/v1/pkg/") && p.ends_with("/visibility") => {
437 let name = &p["/v1/pkg/".len()..p.len() - "/visibility".len()];
438 pkg_set_visibility_handler(state, name, body)
439 }
440 (Method::Post, p) if p.starts_with("/v1/pkg/") && p.ends_with("/release") => {
443 let name = &p["/v1/pkg/".len()..p.len() - "/release".len()];
444 pkg_release_handler(state, name, body)
445 }
446 (Method::Get, p) if p.starts_with("/v1/pkg/") && p.ends_with("/head") => {
447 let name = &p["/v1/pkg/".len()..p.len() - "/head".len()];
448 pkg_head_handler(state, name)
449 }
450 (Method::Get, p) if p.starts_with("/v1/pkg/") && p.ends_with("/versions") => {
451 let name = &p["/v1/pkg/".len()..p.len() - "/versions".len()];
452 pkg_versions_handler(state, name)
453 }
454 (Method::Get, p) if p.starts_with("/v1/pkg/") && p.ends_with("/api-diff") => {
455 let name = &p["/v1/pkg/".len()..p.len() - "/api-diff".len()];
456 pkg_api_diff_handler(state, name, query)
457 }
458 (Method::Get, p) if p.starts_with("/v1/pkg/") && p.ends_with("/archive") => {
460 let inner = &p["/v1/pkg/".len()..p.len() - "/archive".len()];
461 if let Some((name, version)) = inner.split_once('/') {
463 pkg_archive_handler(state, name, version)
464 } else {
465 error_response(400, "expected /v1/pkg/{name}/{version}/archive")
466 }
467 }
468 (Method::Get, p) if p.starts_with("/v1/pkg/") && p["/v1/pkg/".len()..].contains('/') => {
470 let inner = &p["/v1/pkg/".len()..];
471 if let Some((name, version)) = inner.split_once('/') {
472 pkg_get_version_handler(state, name, version)
473 } else {
474 error_response(400, "expected /v1/pkg/{name}/{version}")
475 }
476 }
477 (Method::Get, p) if p.starts_with("/v1/pkg/") => {
478 let name = &p["/v1/pkg/".len()..];
479 pkg_get_handler(state, name)
480 }
481 (Method::Delete, p) if p.starts_with("/v1/pkg/") => {
482 let name = &p["/v1/pkg/".len()..];
483 pkg_delete_handler(state, name)
484 }
485 _ => error_response(404, format!("unknown route: {method:?} {path}")),
486 }
487}
488
489#[derive(Deserialize)]
490struct ParseReq { source: String }
491
492fn parse_handler(body: &str) -> Response<std::io::Cursor<Vec<u8>>> {
493 let req: ParseReq = match serde_json::from_str(body) {
494 Ok(r) => r, Err(e) => return error_response(400, format!("bad request: {e}")),
495 };
496 match load_program_from_str(&req.source) {
497 Ok(prog) => {
498 let stages = canonicalize_program(&prog);
499 json_response(200, &serde_json::to_value(&stages).unwrap())
500 }
501 Err(e) => error_response(400, format!("syntax error: {e}")),
502 }
503}
504
505pub(crate) fn check_handler(body: &str) -> Response<std::io::Cursor<Vec<u8>>> {
506 let req: ParseReq = match serde_json::from_str(body) {
507 Ok(r) => r, Err(e) => return error_response(400, format!("bad request: {e}")),
508 };
509 let prog = match load_program_from_str(&req.source) {
510 Ok(p) => p, Err(e) => return error_response(400, format!("syntax error: {e}")),
511 };
512 let stages = canonicalize_program(&prog);
513 match lex_types::check_program(&stages) {
514 Ok(_) => json_response(200, &serde_json::json!({"ok": true})),
515 Err(errs) => json_response(422, &serde_json::to_value(&errs).unwrap()),
516 }
517}
518
519#[derive(Deserialize)]
520struct PublishReq { source: String, #[serde(default)] activate: bool }
521
522pub(crate) fn publish_handler(state: &State, body: &str) -> Response<std::io::Cursor<Vec<u8>>> {
523 let req: PublishReq = match serde_json::from_str(body) {
524 Ok(r) => r, Err(e) => return error_response(400, format!("bad request: {e}")),
525 };
526 let prog = match load_program_from_str(&req.source) {
527 Ok(p) => p, Err(e) => return error_response(400, format!("syntax error: {e}")),
528 };
529 let mut stages = canonicalize_program(&prog);
533 if let Err(errs) = lex_types::check_and_rewrite_program(&mut stages) {
534 return error_with_detail(422, "type errors", serde_json::to_value(&errs).unwrap());
535 }
536 let example_errors = lex_runtime::evaluate_examples(&stages);
542 if !example_errors.is_empty() {
543 return error_with_detail(422, "example mismatch",
544 serde_json::to_value(&example_errors).unwrap_or_default());
545 }
546
547 let store = state.store.lock().unwrap();
548 let branch = store.current_branch();
549
550 let old_head = match store.branch_head(&branch) {
552 Ok(h) => h,
553 Err(e) => return error_response(500, format!("branch_head: {e}")),
554 };
555 let old_head_stages: Vec<lex_ast::Stage> =
557 old_head.values().filter_map(|stg| store.get_ast(stg).ok()).collect();
558 let old_fns = stage_fns(&old_head_stages);
559 let new_fns = stage_fns(&stages);
560 let old_types = stage_types(&old_head_stages);
561 let new_types = stage_types(&stages);
562 let report =
563 lex_vcs::compute_diff_with_types(&old_fns, &new_fns, &old_types, &new_types, false);
564
565 let mut new_imports: lex_vcs::ImportMap = lex_vcs::ImportMap::new();
567 {
568 let entry = new_imports.entry("<source>".into()).or_default();
569 for s in &stages {
570 if let lex_ast::Stage::Import(im) = s {
571 entry.insert(lex_vcs::ImportRef {
572 reference: im.reference.clone(),
573 alias: im.alias.clone(),
574 });
575 }
576 }
577 }
578
579 match store.publish_program(&branch, &stages, &report, &new_imports, req.activate) {
580 Ok(outcome) => {
581 record_examples_for_publish(&store, &stages, &outcome);
585 json_response(200, &serde_json::json!({
586 "ops": outcome.ops,
587 "head_op": outcome.head_op,
588 }))
589 }
590 Err(lex_store::StoreError::TypeError(errs)) => {
598 error_with_detail(422, "type errors", serde_json::to_value(&errs).unwrap())
599 }
600 Err(e) => write_error_response("publish_program", e),
601 }
602}
603
604#[derive(Deserialize)]
605struct PatchReq {
606 stage_id: String,
607 patch: lex_ast::Patch,
608 #[serde(default)] activate: bool,
609}
610
611fn patch_handler(state: &State, body: &str) -> Response<std::io::Cursor<Vec<u8>>> {
614 let req: PatchReq = match serde_json::from_str(body) {
615 Ok(r) => r, Err(e) => return error_response(400, format!("bad request: {e}")),
616 };
617 let store = state.store.lock().unwrap();
618
619 let original = match store.get_ast(&req.stage_id) {
621 Ok(s) => s, Err(e) => return error_response(404, format!("stage: {e}")),
622 };
623
624 let patched = match lex_ast::apply_patch(&original, &req.patch) {
626 Ok(s) => s,
627 Err(e) => return error_with_detail(422, "patch failed",
628 serde_json::to_value(&e).unwrap_or_default()),
629 };
630
631 let branch = store.current_branch();
642
643 let sig = match lex_ast::sig_id(&patched) {
645 Some(s) => s,
646 None => return error_response(500, "patched stage has no sig_id"),
647 };
648
649 let new_id = match store.publish(&patched) {
652 Ok(id) => id, Err(e) => return error_response(500, format!("publish: {e}")),
653 };
654
655 let original_effects: std::collections::BTreeSet<String> = match &original {
657 lex_ast::Stage::FnDecl(fd) => fd.effects.iter().map(|e| e.name.clone()).collect(),
658 _ => std::collections::BTreeSet::new(),
659 };
660 let patched_effects: std::collections::BTreeSet<String> = match &patched {
661 lex_ast::Stage::FnDecl(fd) => fd.effects.iter().map(|e| e.name.clone()).collect(),
662 _ => std::collections::BTreeSet::new(),
663 };
664 let head_now = match store.get_branch(&branch) {
665 Ok(b) => b.and_then(|b| b.head_op),
666 Err(e) => return error_response(500, format!("get_branch: {e}")),
667 };
668 let kind = if original_effects != patched_effects {
669 let from_budget = lex_vcs::operation_budget_from_effects(&original_effects);
676 let to_budget = lex_vcs::operation_budget_from_effects(&patched_effects);
677 lex_vcs::OperationKind::ChangeEffectSig {
678 sig_id: sig.clone(),
679 from_stage_id: req.stage_id.clone(),
680 to_stage_id: new_id.clone(),
681 from_effects: original_effects,
682 to_effects: patched_effects,
683 from_budget,
684 to_budget,
685 }
686 } else {
687 let budget = lex_vcs::operation_budget_from_effects(&original_effects);
688 lex_vcs::OperationKind::ModifyBody {
689 sig_id: sig.clone(),
690 from_stage_id: req.stage_id.clone(),
691 to_stage_id: new_id.clone(),
692 from_budget: budget,
693 to_budget: budget,
694 }
695 };
696 let transition = lex_vcs::StageTransition::Replace {
697 sig_id: sig.clone(),
698 from: req.stage_id.clone(),
699 to: new_id.clone(),
700 };
701 let op = lex_vcs::Operation::new(
702 kind,
703 head_now.into_iter().collect::<Vec<_>>(),
704 );
705 let op_id = match store.apply_operation_gated(&branch, op, transition) {
706 Ok(id) => id,
707 Err(lex_store::StoreError::TypeError(errs)) => return error_with_detail(
708 422, "type errors after patch", serde_json::to_value(&errs).unwrap_or_default()),
709 Err(e) => return write_error_response("apply_operation_gated", e),
710 };
711 if req.activate {
712 if let Err(e) = store.activate(&new_id) {
713 return error_response(500, format!("activate: {e}"));
714 }
715 }
716
717 let status = format!("{:?}",
718 store.get_status(&new_id).unwrap_or(lex_store::StageStatus::Draft)).to_lowercase();
719 json_response(200, &serde_json::json!({
720 "old_stage_id": req.stage_id,
721 "new_stage_id": new_id,
722 "sig_id": sig,
723 "status": status,
724 "op_id": op_id,
725 }))
726}
727
728pub(crate) fn stage_handler(state: &State, id: &str) -> Response<std::io::Cursor<Vec<u8>>> {
729 let store = state.store.lock().unwrap();
730 let meta = match store.get_metadata(id) {
731 Ok(m) => m, Err(e) => return error_response(404, format!("{e}")),
732 };
733 let ast = match store.get_ast(id) {
734 Ok(a) => a, Err(e) => return error_response(404, format!("{e}")),
735 };
736 let status = format!("{:?}", store.get_status(id).unwrap_or(lex_store::StageStatus::Draft)).to_lowercase();
737 json_response(200, &serde_json::json!({
738 "metadata": meta,
739 "ast": ast,
740 "status": status,
741 }))
742}
743
744pub(crate) fn stage_attestations_handler(state: &State, id: &str) -> Response<std::io::Cursor<Vec<u8>>> {
753 let store = state.store.lock().unwrap();
754 if let Err(e) = store.get_metadata(id) {
755 return error_response(404, format!("{e}"));
756 }
757 let log = match store.attestation_log() {
758 Ok(l) => l,
759 Err(e) => return error_response(500, format!("attestation log: {e}")),
760 };
761 let mut listing = match log.list_for_stage(&id.to_string()) {
762 Ok(v) => v,
763 Err(e) => return error_response(500, format!("list_for_stage: {e}")),
764 };
765 listing.sort_by_key(|a| std::cmp::Reverse(a.timestamp));
766 json_response(200, &serde_json::json!({"attestations": listing}))
767}
768
769#[derive(Deserialize, Default)]
770struct PolicyJson {
771 #[serde(default)] allow_effects: Vec<String>,
772 #[serde(default)] allow_fs_read: Vec<String>,
773 #[serde(default)] allow_fs_write: Vec<String>,
774 #[serde(default)] budget: Option<u64>,
775}
776
777impl PolicyJson {
778 fn into_policy(self) -> Policy {
779 Policy {
780 allow_effects: self.allow_effects.into_iter().collect::<BTreeSet<_>>(),
781 allow_fs_read: self.allow_fs_read.into_iter().map(PathBuf::from).collect(),
782 allow_fs_write: self.allow_fs_write.into_iter().map(PathBuf::from).collect(),
783 allow_net_host: Vec::new(),
784 allow_proc: Vec::new(),
785 allow_approval: Vec::new(),
786 budget: self.budget,
787 }
788 }
789}
790
791#[derive(Deserialize)]
792struct RunReq {
793 source: String,
794 #[serde(rename = "fn")] func: String,
795 #[serde(default)] args: Vec<serde_json::Value>,
796 #[serde(default)] policy: PolicyJson,
797 #[serde(default)] overrides: IndexMap<String, serde_json::Value>,
798}
799
800pub(crate) fn run_handler(state: &State, body: &str, with_overrides: bool) -> Response<std::io::Cursor<Vec<u8>>> {
801 let req: RunReq = match serde_json::from_str(body) {
802 Ok(r) => r, Err(e) => return error_response(400, format!("bad request: {e}")),
803 };
804 let prog = match load_program_from_str(&req.source) {
805 Ok(p) => p, Err(e) => return error_response(400, format!("syntax error: {e}")),
806 };
807 let stages = canonicalize_program(&prog);
808 if let Err(errs) = lex_types::check_program(&stages) {
809 return error_with_detail(422, "type errors", serde_json::to_value(&errs).unwrap());
810 }
811 let bc = compile_program(&stages);
812 let mut policy = req.policy.into_policy();
813 if let Some(ceiling) = &state.policy_ceiling {
819 policy = clamp_policy(policy, ceiling);
820 }
821 if let Err(violations) = check_policy(&bc, &policy) {
822 return error_with_detail(403, "policy violation", serde_json::to_value(&violations).unwrap());
823 }
824
825 let mut recorder = lex_trace::Recorder::new();
826 if with_overrides && !req.overrides.is_empty() {
827 recorder = recorder.with_overrides(req.overrides);
828 }
829 let handle = recorder.handle();
830 let handler = DefaultHandler::new(policy);
831 let mut vm = Vm::with_handler(&bc, Box::new(handler));
832 vm.set_tracer(Box::new(recorder));
833
834 let vargs: Vec<Value> = req.args.iter().map(json_to_value).collect();
835 let started = std::time::SystemTime::now().duration_since(std::time::UNIX_EPOCH).unwrap().as_secs();
836 let result = vm.call(&req.func, vargs);
837 let ended = std::time::SystemTime::now().duration_since(std::time::UNIX_EPOCH).unwrap().as_secs();
838
839 let store = state.store.lock().unwrap();
840 let (root_out, root_err, status) = match &result {
841 Ok(v) => (Some(value_to_json(v)), None, 200u16),
842 Err(e) => (None, Some(format!("{e}")), 200u16),
843 };
844 let tree = handle.finalize(req.func.clone(), serde_json::Value::Null,
845 root_out.clone(), root_err.clone(), started, ended);
846 let run_id = match store.save_trace(&tree) {
847 Ok(id) => id,
848 Err(e) => return error_response(500, format!("save_trace: {e}")),
849 };
850
851 let mut body = serde_json::json!({
852 "run_id": run_id,
853 "output": root_out,
854 });
855 if let Some(err) = root_err {
856 body["error"] = serde_json::Value::String(err);
857 }
858 json_response(status, &body)
859}
860
861fn trace_handler(state: &State, id: &str) -> Response<std::io::Cursor<Vec<u8>>> {
862 let store = state.store.lock().unwrap();
863 match store.load_trace(id) {
864 Ok(t) => json_response(200, &serde_json::to_value(&t).unwrap()),
865 Err(e) => error_response(404, format!("{e}")),
866 }
867}
868
869fn diff_handler(state: &State, query: &str) -> Response<std::io::Cursor<Vec<u8>>> {
870 let mut a = None;
871 let mut b = None;
872 for kv in query.split('&') {
873 if let Some((k, v)) = kv.split_once('=') {
874 match k { "a" => a = Some(v.to_string()), "b" => b = Some(v.to_string()), _ => {} }
875 }
876 }
877 let (Some(a), Some(b)) = (a, b) else {
878 return error_response(400, "missing a or b query params");
879 };
880 let store = state.store.lock().unwrap();
881 let ta = match store.load_trace(&a) { Ok(t) => t, Err(e) => return error_response(404, format!("a: {e}")) };
882 let tb = match store.load_trace(&b) { Ok(t) => t, Err(e) => return error_response(404, format!("b: {e}")) };
883 match lex_trace::diff_runs(&ta, &tb) {
884 Some(d) => json_response(200, &serde_json::to_value(&d).unwrap()),
885 None => json_response(200, &serde_json::json!({"divergence": null})),
886 }
887}
888
889fn json_to_value(v: &serde_json::Value) -> Value { Value::from_json(v) }
890
891fn value_to_json(v: &Value) -> serde_json::Value { v.to_json() }
892
893#[derive(Deserialize)]
894struct MergeStartReq {
895 src_branch: String,
896 dst_branch: String,
897}
898
899fn merge_start_handler(state: &State, body: &str) -> Response<std::io::Cursor<Vec<u8>>> {
910 let req: MergeStartReq = match serde_json::from_str(body) {
911 Ok(r) => r, Err(e) => return error_response(400, format!("bad request: {e}")),
912 };
913 let store = state.store.lock().unwrap();
914 let src_head = match store.get_branch(&req.src_branch) {
915 Ok(Some(b)) => b.head_op,
916 Ok(None) => return error_response(404, format!("unknown src branch `{}`", req.src_branch)),
917 Err(e) => return error_response(500, format!("src branch read: {e}")),
918 };
919 let dst_head = match store.get_branch(&req.dst_branch) {
920 Ok(Some(b)) => b.head_op,
921 Ok(None) => return error_response(404, format!("unknown dst branch `{}`", req.dst_branch)),
922 Err(e) => return error_response(500, format!("dst branch read: {e}")),
923 };
924 let log = match lex_vcs::OpLog::open(store.root()) {
925 Ok(l) => l,
926 Err(e) => return error_response(500, format!("op log: {e}")),
927 };
928 let merge_id = mint_merge_id();
932 let session = match MergeSession::start(
933 merge_id.clone(),
934 &log,
935 src_head.as_ref(),
936 dst_head.as_ref(),
937 ) {
938 Ok(s) => s,
939 Err(e) => return error_response(500, format!("merge start: {e}")),
940 };
941 let conflicts: Vec<&lex_vcs::ConflictRecord> = session.remaining_conflicts();
942 let auto_resolved_count = session.auto_resolved.len();
943 let body = serde_json::json!({
944 "merge_id": merge_id,
945 "src_head": session.src_head,
946 "dst_head": session.dst_head,
947 "lca": session.lca,
948 "conflicts": conflicts,
949 "auto_resolved_count": auto_resolved_count,
950 });
951 drop(conflicts);
952 drop(store);
953 let wrapped = ApiMergeSession {
954 inner: session,
955 src_branch: req.src_branch,
956 dst_branch: req.dst_branch,
957 };
958 state.sessions.lock().unwrap().insert(merge_id, wrapped);
959 json_response(200, &body)
960}
961
962#[derive(Deserialize)]
963struct MergeResolveReq {
964 resolutions: Vec<MergeResolveEntry>,
969}
970
971#[derive(Deserialize)]
972struct MergeResolveEntry {
973 conflict_id: String,
974 resolution: lex_vcs::Resolution,
975}
976
977fn merge_resolve_handler(
988 state: &State,
989 merge_id: &str,
990 body: &str,
991) -> Response<std::io::Cursor<Vec<u8>>> {
992 let req: MergeResolveReq = match serde_json::from_str(body) {
993 Ok(r) => r, Err(e) => return error_response(400, format!("bad request: {e}")),
994 };
995 let mut sessions = state.sessions.lock().unwrap();
996 let Some(wrapped) = sessions.get_mut(merge_id) else {
997 return error_response(404, format!("unknown merge_id `{merge_id}`"));
998 };
999 let pairs: Vec<(String, lex_vcs::Resolution)> = req.resolutions.into_iter()
1000 .map(|e| (e.conflict_id, e.resolution))
1001 .collect();
1002 let store = state.store.lock().unwrap();
1007 let checker = lex_store::MergeResolutionChecker::new(&store, wrapped.dst_branch.clone());
1008 let verdicts = wrapped.inner.resolve_checked(pairs, &checker);
1009 drop(store);
1010 let remaining: Vec<&lex_vcs::ConflictRecord> = wrapped.inner.remaining_conflicts();
1011 let body = serde_json::json!({
1012 "verdicts": verdicts,
1013 "remaining_conflicts": remaining,
1014 });
1015 json_response(200, &body)
1016}
1017
1018fn merge_commit_handler(
1037 state: &State,
1038 merge_id: &str,
1039) -> Response<std::io::Cursor<Vec<u8>>> {
1040 use std::collections::BTreeMap;
1041 let wrapped = match state.sessions.lock().unwrap().remove(merge_id) {
1042 Some(w) => w,
1043 None => return error_response(404, format!("unknown merge_id `{merge_id}`")),
1044 };
1045 let dst_branch = wrapped.dst_branch.clone();
1046 let src_head = wrapped.inner.src_head.clone();
1047 let dst_head = wrapped.inner.dst_head.clone();
1048 let auto_resolved = wrapped.inner.auto_resolved.clone();
1049
1050 let mut entries: BTreeMap<lex_vcs::SigId, Option<lex_vcs::StageId>> = BTreeMap::new();
1053
1054 for outcome in &auto_resolved {
1056 if let lex_vcs::MergeOutcome::Src { sig_id, stage_id } = outcome {
1057 entries.insert(sig_id.clone(), stage_id.clone());
1058 }
1059 }
1060
1061 let resolved = match wrapped.inner.commit() {
1063 Ok(r) => r,
1064 Err(lex_vcs::CommitError::ConflictsRemaining(ids)) => {
1065 return error_with_detail(
1069 422,
1070 "conflicts remaining",
1071 serde_json::json!({"unresolved": ids}),
1072 );
1073 }
1074 };
1075
1076 for (conflict_id, resolution) in resolved {
1077 match resolution {
1078 lex_vcs::Resolution::TakeOurs => {
1079 }
1081 lex_vcs::Resolution::TakeTheirs => {
1082 match resolve_take_theirs(state, &src_head, &conflict_id) {
1092 Ok(stage_id) => {
1093 entries.insert(conflict_id.clone(), stage_id);
1094 }
1095 Err(e) => return error_response(500, format!("resolve take_theirs: {e}")),
1096 }
1097 }
1098 lex_vcs::Resolution::Custom { op } => {
1099 match op.kind.merge_target() {
1108 Some((sig, stage)) => {
1109 if sig != conflict_id {
1110 return error_with_detail(
1111 422,
1112 "custom op targets a different sig than the conflict",
1113 serde_json::json!({
1114 "conflict_id": conflict_id,
1115 "op_targets": sig,
1116 }),
1117 );
1118 }
1119 entries.insert(conflict_id, stage);
1120 }
1121 None => {
1122 return error_with_detail(
1123 422,
1124 "custom op kind doesn't yield a single sig→stage delta",
1125 serde_json::json!({
1126 "conflict_id": conflict_id,
1127 "kind": serde_json::to_value(&op.kind).unwrap_or(serde_json::Value::Null),
1128 }),
1129 );
1130 }
1131 }
1132 }
1133 lex_vcs::Resolution::Defer => {
1134 return error_response(500, "internal: Defer slipped past commit gate");
1136 }
1137 }
1138 }
1139
1140 let resolved_count = entries.len();
1141 let mut parents: Vec<lex_vcs::OpId> = Vec::new();
1142 if let Some(d) = dst_head { parents.push(d); }
1143 if let Some(s) = src_head { parents.push(s); }
1144 let op = lex_vcs::Operation::new(
1145 lex_vcs::OperationKind::Merge { resolved: resolved_count },
1146 parents,
1147 );
1148 let transition = lex_vcs::StageTransition::Merge { entries };
1149 let store = state.store.lock().unwrap();
1150 match store.apply_merge_op_gated(&dst_branch, op, transition) {
1153 Ok(new_head_op) => json_response(200, &serde_json::json!({
1154 "new_head_op": new_head_op,
1155 "dst_branch": dst_branch,
1156 })),
1157 Err(lex_store::StoreError::TypeError(errs)) => error_with_detail(
1158 422, "merged program has type errors", serde_json::to_value(&errs).unwrap_or_default()),
1159 Err(e) => write_error_response("apply merge op", e),
1160 }
1161}
1162
1163fn resolve_take_theirs(
1168 state: &State,
1169 src_head: &Option<lex_vcs::OpId>,
1170 sig: &lex_vcs::SigId,
1171) -> std::io::Result<Option<lex_vcs::StageId>> {
1172 let store = state.store.lock().unwrap();
1173 let log = lex_vcs::OpLog::open(store.root())?;
1174 let Some(head) = src_head.as_ref() else { return Ok(None); };
1175 let mut current: Option<lex_vcs::StageId> = None;
1178 for record in log.walk_forward(head, None)? {
1179 match &record.produces {
1180 lex_vcs::StageTransition::Create { sig_id, stage_id }
1181 if sig_id == sig => { current = Some(stage_id.clone()); }
1182 lex_vcs::StageTransition::Replace { sig_id, to, .. }
1183 if sig_id == sig => { current = Some(to.clone()); }
1184 lex_vcs::StageTransition::Remove { sig_id, .. }
1185 if sig_id == sig => { current = None; }
1186 lex_vcs::StageTransition::Rename { from, to, body_stage_id }
1187 if from == sig || to == sig => {
1188 if from == sig { current = None; }
1189 if to == sig { current = Some(body_stage_id.clone()); }
1190 }
1191 lex_vcs::StageTransition::Merge { entries } => {
1192 if let Some(opt) = entries.get(sig) {
1193 current = opt.clone();
1194 }
1195 }
1196 _ => {}
1197 }
1198 }
1199 Ok(current)
1200}
1201
1202fn mint_merge_id() -> MergeSessionId {
1203 use std::sync::atomic::{AtomicU64, Ordering};
1204 static COUNTER: AtomicU64 = AtomicU64::new(0);
1205 let nanos = SystemTime::now()
1206 .duration_since(UNIX_EPOCH)
1207 .map(|d| d.as_nanos())
1208 .unwrap_or(0);
1209 let n = COUNTER.fetch_add(1, Ordering::Relaxed);
1210 format!("merge_{nanos:x}_{n:x}")
1211}
1212
1213pub(crate) fn ops_batch_handler(state: &State, body: &str)
1244 -> Response<std::io::Cursor<Vec<u8>>>
1245{
1246 let records: Vec<lex_vcs::OperationRecord> = match serde_json::from_str(body) {
1247 Ok(r) => r,
1248 Err(e) => return error_response(400,
1249 format!("body must be a JSON array of OperationRecord: {e}")),
1250 };
1251 let store = state.store.lock().unwrap();
1252 let log = match lex_vcs::OpLog::open(store.root()) {
1253 Ok(l) => l,
1254 Err(e) => return error_response(500, format!("opening op log: {e}")),
1255 };
1256
1257 let mut batch_ids: std::collections::BTreeSet<lex_vcs::OpId> =
1265 std::collections::BTreeSet::new();
1266 for rec in &records {
1267 let expected = rec.op.op_id();
1268 if expected != rec.op_id {
1269 return error_with_detail(409, "OpIdMismatch", serde_json::json!({
1270 "supplied": rec.op_id,
1271 "expected": expected,
1272 }));
1273 }
1274 for parent in &rec.op.parents {
1275 let known = match log.get(parent) {
1276 Ok(Some(_)) => true,
1277 Ok(None) => false,
1278 Err(e) => return error_response(500, format!("op log read: {e}")),
1279 };
1280 if !known && !batch_ids.contains(parent) {
1281 return error_with_detail(422, "MissingParent", serde_json::json!({
1282 "op_id": rec.op_id,
1283 "missing_parent": parent,
1284 }));
1285 }
1286 }
1287 batch_ids.insert(rec.op_id.clone());
1288 }
1289
1290 let mut added = 0usize;
1293 let mut added_ids: Vec<&lex_vcs::OpId> = Vec::new();
1294 for rec in &records {
1295 let already_present = matches!(log.get(&rec.op_id), Ok(Some(_)));
1296 match log.put(rec) {
1297 Ok(()) => {
1298 if !already_present {
1299 added += 1;
1300 added_ids.push(&rec.op_id);
1301 }
1302 }
1303 Err(e) => return error_response(500, format!("op log write: {e}")),
1304 }
1305 }
1306
1307 json_response(200, &serde_json::json!({
1308 "received": records.len(),
1309 "added": added,
1310 "skipped": records.len() - added,
1311 "added_ids": added_ids,
1312 }))
1313}
1314
1315pub(crate) fn attestations_batch_handler(state: &State, body: &str)
1337 -> Response<std::io::Cursor<Vec<u8>>>
1338{
1339 let attestations: Vec<lex_vcs::Attestation> = match serde_json::from_str(body) {
1340 Ok(a) => a,
1341 Err(e) => return error_response(400,
1342 format!("body must be a JSON array of Attestation: {e}")),
1343 };
1344 let store = state.store.lock().unwrap();
1345 let log = match store.attestation_log() {
1346 Ok(l) => l,
1347 Err(e) => return error_response(500, format!("opening attestation log: {e}")),
1348 };
1349 let op_log = match lex_vcs::OpLog::open(store.root()) {
1350 Ok(l) => l,
1351 Err(e) => return error_response(500, format!("opening op log: {e}")),
1352 };
1353
1354 for att in &attestations {
1356 let expected = lex_vcs::Attestation::with_timestamp(
1359 att.stage_id.clone(),
1360 att.op_id.clone(),
1361 att.intent_id.clone(),
1362 att.kind.clone(),
1363 att.result.clone(),
1364 att.produced_by.clone(),
1365 att.cost.clone(),
1366 att.timestamp,
1367 ).attestation_id;
1368 if expected != att.attestation_id {
1369 return error_with_detail(409, "AttestationIdMismatch", serde_json::json!({
1370 "supplied": att.attestation_id,
1371 "expected": expected,
1372 }));
1373 }
1374 if let Some(op_id) = &att.op_id {
1378 match op_log.get(op_id) {
1379 Ok(Some(_)) => {}
1380 Ok(None) => return error_with_detail(422, "UnknownOp", serde_json::json!({
1381 "attestation_id": att.attestation_id,
1382 "op_id": op_id,
1383 })),
1384 Err(e) => return error_response(500, format!("op log read: {e}")),
1385 }
1386 }
1387 }
1388
1389 let mut added = 0usize;
1393 let mut added_ids: Vec<&lex_vcs::AttestationId> = Vec::new();
1394 for att in &attestations {
1395 let already_present = matches!(log.get(&att.attestation_id), Ok(Some(_)));
1396 match log.put(att) {
1397 Ok(()) => {
1398 if !already_present {
1399 added += 1;
1400 added_ids.push(&att.attestation_id);
1401 }
1402 }
1403 Err(e) => return error_response(500, format!("attestation log write: {e}")),
1404 }
1405 }
1406
1407 json_response(200, &serde_json::json!({
1408 "received": attestations.len(),
1409 "added": added,
1410 "skipped": attestations.len() - added,
1411 "added_ids": added_ids,
1412 }))
1413}
1414
1415pub(crate) fn ops_since_handler(state: &State, query: &str)
1447 -> Response<std::io::Cursor<Vec<u8>>>
1448{
1449 let mut after: Option<String> = None;
1450 let mut branch = String::from("main");
1451 let mut limit: Option<usize> = None;
1452 for kv in query.split('&') {
1453 let Some((k, v)) = kv.split_once('=') else { continue };
1454 match k {
1455 "after" => after = Some(v.to_string()),
1456 "branch" => branch = v.to_string(),
1457 "limit" => {
1458 limit = Some(match v.parse::<usize>() {
1459 Ok(n) => n,
1460 Err(_) => return error_response(400,
1461 format!("limit must be a positive integer, got `{v}`")),
1462 });
1463 }
1464 _ => {}
1465 }
1466 }
1467
1468 let store = state.store.lock().unwrap();
1469 let log = match lex_vcs::OpLog::open(store.root()) {
1470 Ok(l) => l,
1471 Err(e) => return error_response(500, format!("opening op log: {e}")),
1472 };
1473 let head = match store.get_branch(&branch) {
1474 Ok(Some(b)) => b.head_op,
1475 Ok(None) => None,
1476 Err(e) => return error_response(500, format!("get_branch: {e}")),
1477 };
1478 let Some(head) = head else {
1479 return json_response(200, &serde_json::json!([]));
1480 };
1481
1482 let ops_since = match log.ops_since(&head, after.as_ref()) {
1483 Ok(o) => o,
1484 Err(e) => return error_response(500, format!("ops_since: {e}")),
1485 };
1486 let mut ops = ops_since;
1490 ops.reverse();
1491 if let Some(n) = limit {
1492 ops.truncate(n);
1493 }
1494
1495 json_response(200, &serde_json::to_value(&ops).unwrap_or_default())
1496}
1497
1498pub(crate) fn attestations_since_handler(state: &State, query: &str)
1511 -> Response<std::io::Cursor<Vec<u8>>>
1512{
1513 let mut after_op: Option<String> = None;
1514 let mut limit: Option<usize> = None;
1515 for kv in query.split('&') {
1516 let Some((k, v)) = kv.split_once('=') else { continue };
1517 match k {
1518 "after-op" => after_op = Some(v.to_string()),
1519 "limit" => {
1520 limit = Some(match v.parse::<usize>() {
1521 Ok(n) => n,
1522 Err(_) => return error_response(400,
1523 format!("limit must be a positive integer, got `{v}`")),
1524 });
1525 }
1526 _ => {}
1527 }
1528 }
1529
1530 let store = state.store.lock().unwrap();
1531 let log = match store.attestation_log() {
1532 Ok(l) => l,
1533 Err(e) => return error_response(500, format!("opening attestation log: {e}")),
1534 };
1535
1536 let exclude: std::collections::BTreeSet<String> = match &after_op {
1540 None => std::collections::BTreeSet::new(),
1541 Some(cutoff) => {
1542 let op_log = match lex_vcs::OpLog::open(store.root()) {
1543 Ok(l) => l,
1544 Err(e) => return error_response(500, format!("opening op log: {e}")),
1545 };
1546 match op_log.walk_back(cutoff, None) {
1547 Ok(records) => records.into_iter().map(|r| r.op_id).collect(),
1548 Err(_) => {
1549 std::collections::BTreeSet::new()
1553 }
1554 }
1555 }
1556 };
1557
1558 let all = match log.list_all() {
1559 Ok(v) => v,
1560 Err(e) => return error_response(500, format!("listing attestations: {e}")),
1561 };
1562 let mut filtered: Vec<lex_vcs::Attestation> = all
1563 .into_iter()
1564 .filter(|a| match &a.op_id {
1565 Some(op_id) => !exclude.contains(op_id),
1566 None => true,
1570 })
1571 .collect();
1572 filtered.sort_by(|a, b| {
1576 a.timestamp.cmp(&b.timestamp)
1577 .then_with(|| a.attestation_id.cmp(&b.attestation_id))
1578 });
1579 if let Some(n) = limit {
1580 filtered.truncate(n);
1581 }
1582
1583 json_response(200, &serde_json::to_value(&filtered).unwrap_or_default())
1584}
1585
1586#[derive(Debug, Clone, serde::Serialize, serde::Deserialize)]
1590struct PkgRecord {
1591 name: String,
1592 version: String,
1593 head_op: Option<String>,
1594 published_at: u64,
1595 function_names: Vec<String>,
1597 ops: Vec<serde_json::Value>,
1599}
1600
1601#[derive(Debug, Clone, Copy, PartialEq, Eq, serde::Serialize, serde::Deserialize, Default)]
1608#[serde(rename_all = "lowercase")]
1609pub enum Visibility {
1610 #[default]
1611 Private,
1612 Public,
1613}
1614
1615#[derive(Debug, Clone, serde::Serialize, serde::Deserialize, Default)]
1620struct PkgIndex {
1621 latest: Option<String>,
1623 versions: Vec<PkgVersionSummary>,
1625 #[serde(default)]
1629 visibility: Visibility,
1630}
1631
1632#[derive(Debug, Clone, serde::Serialize, serde::Deserialize)]
1633struct PkgVersionSummary {
1634 version: String,
1635 head_op: Option<String>,
1636 published_at: u64,
1637}
1638
1639fn pkg_name_dir(root: &std::path::Path, name: &str) -> PathBuf {
1640 root.join("packages").join(name)
1641}
1642
1643fn pkg_index_path(root: &std::path::Path, name: &str) -> PathBuf {
1644 pkg_name_dir(root, name).join("index.json")
1645}
1646
1647fn pkg_version_path(root: &std::path::Path, name: &str, version: &str) -> PathBuf {
1648 pkg_name_dir(root, name).join(format!("{version}.json"))
1649}
1650
1651fn pkg_archive_path(root: &std::path::Path, name: &str, version: &str) -> PathBuf {
1652 pkg_name_dir(root, name).join(format!("{version}.tar.gz"))
1653}
1654
1655fn load_pkg_index(root: &std::path::Path, name: &str) -> Option<PkgIndex> {
1656 let bytes = std::fs::read(pkg_index_path(root, name)).ok()?;
1657 serde_json::from_slice(&bytes).ok()
1658}
1659
1660fn load_pkg_record(root: &std::path::Path, name: &str, version: &str) -> Option<PkgRecord> {
1661 let bytes = std::fs::read(pkg_version_path(root, name, version)).ok()?;
1662 serde_json::from_slice(&bytes).ok()
1663}
1664
1665fn load_latest_pkg_record(root: &std::path::Path, name: &str) -> Option<PkgRecord> {
1666 let index = load_pkg_index(root, name)?;
1667 let latest = index.latest.clone()?;
1668 load_pkg_record(root, name, &latest)
1669}
1670
1671fn pkg_is_public(root: &std::path::Path, name: &str) -> bool {
1675 load_pkg_index(root, name).map(|i| i.visibility) == Some(Visibility::Public)
1676}
1677
1678fn valid_pkg_segment(s: &str) -> bool {
1683 !s.is_empty()
1684 && s.len() <= 128
1685 && s != "."
1686 && s != ".."
1687 && s.chars().all(|c| c.is_ascii_alphanumeric() || matches!(c, '.' | '_' | '-'))
1688}
1689
1690#[derive(Deserialize)]
1691struct VisibilityReq {
1692 visibility: Visibility,
1693}
1694
1695fn pkg_set_visibility_handler(
1702 state: &State,
1703 name: &str,
1704 body: &str,
1705) -> Response<std::io::Cursor<Vec<u8>>> {
1706 if !valid_pkg_segment(name) {
1707 return error_response(400, format!("invalid package name {name:?}"));
1708 }
1709 let req: VisibilityReq = match serde_json::from_str(body) {
1710 Ok(r) => r,
1711 Err(e) => return error_response(400, format!("bad request: {e}")),
1712 };
1713 let mut index = match load_pkg_index(&state.root, name) {
1714 Some(i) => i,
1715 None => return error_response(404, format!("package {name:?} not found")),
1716 };
1717 index.visibility = req.visibility;
1718 let bytes = serde_json::to_vec_pretty(&index).unwrap_or_default();
1719 match std::fs::write(pkg_index_path(&state.root, name), bytes) {
1720 Ok(()) => json_response(
1721 200,
1722 &serde_json::json!({ "name": name, "visibility": index.visibility }),
1723 ),
1724 Err(e) => error_response(500, format!("write index: {e}")),
1725 }
1726}
1727
1728#[derive(serde::Deserialize)]
1729struct ReleaseReq {
1730 version: String,
1731 #[serde(default)]
1732 branch: Option<String>,
1733}
1734
1735fn pkg_release_handler(state: &State, name: &str, body: &str) -> Response<std::io::Cursor<Vec<u8>>> {
1744 if !valid_pkg_segment(name) {
1745 return error_response(400, format!("invalid package name {name:?}"));
1746 }
1747 let req: ReleaseReq = match serde_json::from_str(body) {
1748 Ok(r) => r,
1749 Err(e) => return error_response(400, format!("bad request: {e}")),
1750 };
1751 let version = req.version.trim().to_string();
1752 if version.is_empty() || !valid_pkg_segment(&version) {
1753 return error_response(400, "version must be a non-empty, path-safe string (e.g. 1.2.0)");
1754 }
1755 if load_pkg_record(&state.root, name, &version).is_some() {
1757 return error_response(
1758 409,
1759 format!("{name}@{version} already released; releases are immutable — bump the version"),
1760 );
1761 }
1762
1763 let store = state.store.lock().unwrap();
1764 let branch = req.branch.unwrap_or_else(|| store.current_branch());
1765 let head_op = match store.get_branch(&branch) {
1766 Ok(Some(b)) => b.head_op,
1767 Ok(None) => return error_response(404, format!("unknown branch {branch:?}")),
1768 Err(e) => return error_response(500, format!("get_branch: {e}")),
1769 };
1770 let Some(head_op) = head_op else {
1771 return error_response(400, format!("branch {branch:?} has no commits to release"));
1772 };
1773
1774 let predecessor = load_pkg_index(&state.root, name)
1785 .map(|i| i.versions)
1786 .unwrap_or_default()
1787 .into_iter()
1788 .filter_map(|v| lex_syntax::semver::parse_exact(&v.version).map(|p| (p, v)))
1789 .filter(|(p, _)| lex_syntax::semver::parse_exact(&version).map(|n| *p < n).unwrap_or(false))
1790 .max_by_key(|(p, _)| *p)
1791 .map(|(_, v)| v);
1792 if let Some(prev) = predecessor {
1793 if let (Some(prev_head), Some(declared)) = (
1794 prev.head_op.clone(),
1795 lex_syntax::semver::bump_between(&prev.version, &version),
1796 ) {
1797 if let (Ok(prev_api), Ok(new_api)) = (
1798 lex_store::api::public_api_at_op(&store, &prev_head),
1799 lex_store::api::public_api_at_op(&store, &head_op),
1800 ) {
1801 use lex_store::api::ApiChange;
1802 use lex_syntax::semver::Bump;
1803 let (required, why) = match lex_store::api::classify_api_change(&prev_api, &new_api) {
1804 ApiChange::Breaking(d) => (Bump::Major, d),
1805 ApiChange::Additive(d) => (Bump::Minor, d),
1806 ApiChange::None => (Bump::Patch, String::new()),
1807 };
1808 if declared < required {
1809 let need = match required {
1810 Bump::Major => "major",
1811 Bump::Minor => "minor",
1812 Bump::Patch => "patch",
1813 };
1814 return error_response(
1815 422,
1816 format!(
1817 "version bump too small: {} → {version} is a {declared:?} bump, \
1818 but the API change ({why}) requires a {need} bump",
1819 prev.version
1820 ),
1821 );
1822 }
1823 }
1824 }
1825 }
1826
1827 let head = store.branch_head(&branch).unwrap_or_default();
1830 let pairs: Vec<(String, String)> = head.iter().map(|(s, st)| (s.clone(), st.clone())).collect();
1831 let function_names: Vec<String> = store
1832 .get_asts_for_sigs_bulk(&pairs)
1833 .into_iter()
1834 .filter_map(|r| r.ok())
1835 .filter_map(|s| match s {
1836 lex_ast::Stage::FnDecl(fd) => Some(fd.name),
1837 _ => None,
1838 })
1839 .collect();
1840 drop(store);
1841
1842 let published_at = std::time::SystemTime::now()
1843 .duration_since(std::time::UNIX_EPOCH)
1844 .map(|d| d.as_secs())
1845 .unwrap_or(0);
1846 let record = PkgRecord {
1847 name: name.to_string(),
1848 version: version.clone(),
1849 head_op: Some(head_op.clone()),
1850 published_at,
1851 function_names,
1852 ops: Vec::new(),
1853 };
1854 if let Err(e) = save_pkg_record(&state.root, &record, None) {
1855 return error_response(500, format!("write release: {e}"));
1856 }
1857 json_response(
1858 201,
1859 &serde_json::json!({
1860 "name": name,
1861 "version": version,
1862 "head_op": head_op,
1863 "branch": branch,
1864 }),
1865 )
1866}
1867
1868fn public_pkg_names(root: &std::path::Path) -> Vec<String> {
1871 list_pkg_names(root)
1872 .into_iter()
1873 .filter(|name| pkg_is_public(root, name))
1874 .collect()
1875}
1876
1877fn public_pkg_list_handler(state: &State) -> Response<std::io::Cursor<Vec<u8>>> {
1881 let packages: Vec<serde_json::Value> = public_pkg_names(&state.root)
1882 .iter()
1883 .filter_map(|name| {
1884 let r = load_latest_pkg_record(&state.root, name)?;
1885 Some(serde_json::json!({
1886 "name": r.name,
1887 "version": r.version,
1888 "head_op": r.head_op,
1889 "published_at": r.published_at,
1890 }))
1891 })
1892 .collect();
1893 json_response(200, &serde_json::json!({ "packages": packages }))
1894}
1895
1896#[derive(Debug, PartialEq, Eq)]
1901enum PublicTarget {
1902 List,
1903 Latest(String),
1904 Versions(String),
1905 ApiDiff(String),
1906 Head(String),
1907 Version(String, String),
1908 Archive(String, String),
1909}
1910
1911impl PublicTarget {
1912 fn pkg_name(&self) -> Option<&str> {
1914 match self {
1915 PublicTarget::List => None,
1916 PublicTarget::Latest(n)
1917 | PublicTarget::Versions(n)
1918 | PublicTarget::ApiDiff(n)
1919 | PublicTarget::Head(n)
1920 | PublicTarget::Version(n, _)
1921 | PublicTarget::Archive(n, _) => Some(n),
1922 }
1923 }
1924}
1925
1926fn resolve_public(method: &Method, path: &str) -> Result<PublicTarget, u16> {
1931 if !matches!(method, Method::Get) {
1932 return Err(405);
1933 }
1934 let rest = path.trim_matches('/');
1935 if rest.is_empty() {
1936 return Ok(PublicTarget::List);
1937 }
1938 let segs: Vec<&str> = rest.split('/').collect();
1939 if !segs.iter().all(|s| valid_pkg_segment(s)) {
1940 return Err(404);
1941 }
1942 match segs.as_slice() {
1943 [n] => Ok(PublicTarget::Latest(n.to_string())),
1944 [n, "versions"] => Ok(PublicTarget::Versions(n.to_string())),
1945 [n, "api-diff"] => Ok(PublicTarget::ApiDiff(n.to_string())),
1946 [n, "head"] => Ok(PublicTarget::Head(n.to_string())),
1947 [n, v, "archive"] => Ok(PublicTarget::Archive(n.to_string(), v.to_string())),
1948 [n, v] => Ok(PublicTarget::Version(n.to_string(), v.to_string())),
1949 _ => Err(404),
1950 }
1951}
1952
1953pub fn route_public(
1964 state: &State,
1965 method: &Method,
1966 path: &str,
1967 query: &str,
1968) -> Response<std::io::Cursor<Vec<u8>>> {
1969 let target = match resolve_public(method, path) {
1970 Ok(t) => t,
1971 Err(405) => return error_response(405, "public read is GET-only"),
1972 Err(_) => return error_response(404, "not found"),
1973 };
1974 if let PublicTarget::List = target {
1976 return public_pkg_list_handler(state);
1977 }
1978 if let Some(name) = target.pkg_name() {
1980 if !pkg_is_public(&state.root, name) {
1981 return error_response(404, format!("package {name:?} not found"));
1982 }
1983 }
1984 match target {
1985 PublicTarget::List => unreachable!("handled above"),
1986 PublicTarget::Latest(n) => pkg_get_handler(state, &n),
1987 PublicTarget::Versions(n) => pkg_versions_handler(state, &n),
1988 PublicTarget::ApiDiff(n) => pkg_api_diff_handler(state, &n, query),
1989 PublicTarget::Head(n) => pkg_head_handler(state, &n),
1990 PublicTarget::Version(n, v) => pkg_get_version_handler(state, &n, &v),
1991 PublicTarget::Archive(n, v) => pkg_archive_handler(state, &n, &v),
1992 }
1993}
1994
1995fn save_pkg_record(
1996 root: &std::path::Path,
1997 record: &PkgRecord,
1998 archive: Option<&[u8]>,
2001) -> std::io::Result<()> {
2002 let dir = pkg_name_dir(root, &record.name);
2003 std::fs::create_dir_all(&dir)?;
2004
2005 let rec_bytes = serde_json::to_vec_pretty(record).unwrap_or_default();
2007 std::fs::write(pkg_version_path(root, &record.name, &record.version), rec_bytes)?;
2008
2009 if let Some(archive) = archive {
2011 std::fs::write(pkg_archive_path(root, &record.name, &record.version), archive)?;
2012 }
2013
2014 let mut index = load_pkg_index(root, &record.name).unwrap_or_default();
2016 index.latest = Some(record.version.clone());
2017 if !index.versions.iter().any(|v| v.version == record.version) {
2018 index.versions.push(PkgVersionSummary {
2019 version: record.version.clone(),
2020 head_op: record.head_op.clone(),
2021 published_at: record.published_at,
2022 });
2023 }
2024 let idx_bytes = serde_json::to_vec_pretty(&index).unwrap_or_default();
2025 std::fs::write(pkg_index_path(root, &record.name), idx_bytes)
2026}
2027
2028fn list_pkg_names(root: &std::path::Path) -> Vec<String> {
2029 let dir = root.join("packages");
2030 let Ok(entries) = std::fs::read_dir(&dir) else {
2031 return Vec::new();
2032 };
2033 let mut names: Vec<String> = entries
2034 .filter_map(|e| e.ok())
2035 .filter(|e| e.path().is_dir())
2036 .filter_map(|e| e.file_name().into_string().ok())
2037 .collect();
2038 names.sort();
2039 names
2040}
2041
2042fn collect_lex_files(dir: &std::path::Path, out: &mut Vec<PathBuf>) {
2043 let Ok(entries) = std::fs::read_dir(dir) else { return };
2044 let mut entries: Vec<_> = entries.filter_map(|e| e.ok()).collect();
2045 entries.sort_by_key(|e| e.path());
2046 for entry in entries {
2047 let path = entry.path();
2048 if path.is_dir() {
2049 collect_lex_files(&path, out);
2050 } else if path.extension().and_then(|x| x.to_str()) == Some("lex") {
2051 out.push(path);
2052 }
2053 }
2054}
2055
2056fn pkg_publish_handler(state: &State, body: &[u8]) -> Response<std::io::Cursor<Vec<u8>>> {
2059 let tmp = match tempfile::TempDir::new() {
2060 Ok(t) => t,
2061 Err(e) => return error_response(500, format!("create temp dir: {e}")),
2062 };
2063 {
2064 let gz = flate2::read::GzDecoder::new(std::io::Cursor::new(body));
2065 let mut ar = tar::Archive::new(gz);
2066 if let Err(e) = ar.unpack(tmp.path()) {
2067 return error_response(400, format!("unpack archive: {e}"));
2068 }
2069 }
2070
2071 let toml_path = tmp.path().join("lex.toml");
2072 if !toml_path.exists() {
2073 return error_response(400, "archive must contain lex.toml at root");
2074 }
2075 let manifest = match Manifest::load(&toml_path) {
2076 Ok(m) => m,
2077 Err(e) => return error_response(400, format!("lex.toml: {e}")),
2078 };
2079 let (pkg_name, pkg_version) = match &manifest.package {
2080 Some(m) => (m.name.clone(), m.version.clone()),
2081 None => return error_response(400, "lex.toml must have a [package] section"),
2082 };
2083
2084 if load_pkg_record(&state.root, &pkg_name, &pkg_version).is_some() {
2088 return error_response(
2089 409,
2090 format!(
2091 "package {pkg_name}@{pkg_version} already published; \
2092 bump the version in lex.toml to publish a new release"
2093 ),
2094 );
2095 }
2096
2097 let src_dir = tmp.path().join("src");
2098 if !src_dir.exists() {
2099 return error_response(400, "archive must contain a src/ directory");
2100 }
2101 let mut lex_files: Vec<PathBuf> = Vec::new();
2102 collect_lex_files(&src_dir, &mut lex_files);
2103 if lex_files.is_empty() {
2104 return error_response(400, "no .lex files found in src/");
2105 }
2106
2107 let store = state.store.lock().unwrap();
2108 let branch = store.current_branch();
2109
2110 let old_head = match store.branch_head(&branch) {
2130 Ok(h) => h,
2131 Err(e) => return error_response(500, format!("branch_head: {e}")),
2132 };
2133 let old_pairs: Vec<(String, String)> =
2140 old_head.iter().map(|(sig, stage)| (sig.clone(), stage.clone())).collect();
2141 let mut old_fns_by_name: BTreeMap<String, Vec<lex_ast::FnDecl>> = BTreeMap::new();
2142 for fd in store.get_asts_for_sigs_bulk(&old_pairs)
2143 .into_iter()
2144 .filter_map(|r| r.ok())
2145 .filter_map(|s| match s { lex_ast::Stage::FnDecl(fd) => Some(fd), _ => None })
2146 {
2147 old_fns_by_name.entry(fd.name.clone()).or_default().push(fd);
2148 }
2149 let mut old_types_by_name: BTreeMap<String, lex_ast::TypeDecl> = BTreeMap::new();
2152 for td in store.get_asts_for_sigs_bulk(&old_pairs)
2153 .into_iter()
2154 .filter_map(|r| r.ok())
2155 .filter_map(|s| match s { lex_ast::Stage::TypeDecl(td) => Some(td), _ => None })
2156 {
2157 old_types_by_name.insert(td.name.clone(), td);
2158 }
2159 fn structural_key(fd: &lex_ast::FnDecl) -> Option<String> {
2167 let mut anon = fd.clone();
2168 anon.name = String::new();
2169 lex_ast::sig_id(&lex_ast::Stage::FnDecl(anon))
2170 }
2171
2172 fn take_matching(
2182 map: &mut BTreeMap<String, Vec<lex_ast::FnDecl>>,
2183 name: &str,
2184 new_fd: &lex_ast::FnDecl,
2185 ) -> Option<lex_ast::FnDecl> {
2186 let candidates = map.get_mut(name)?;
2187 let idx = match candidates.len() {
2188 0 => return None,
2189 1 => 0,
2190 _ => {
2191 let want = structural_key(new_fd);
2192 candidates.iter().position(|c| structural_key(c) == want)?
2193 }
2194 };
2195 let matched = candidates.remove(idx);
2196 if candidates.is_empty() {
2197 map.remove(name);
2198 }
2199 Some(matched)
2200 }
2201
2202 let loaded = match load_package(&lex_files, tmp.path(), &pkg_name) {
2222 Ok(p) => p,
2223 Err(e) => return error_response(400, format!("load package: {e}")),
2224 };
2225 let mut stages = canonicalize_program(&loaded.program);
2226 if let Err(errs) = lex_types::check_and_rewrite_program(&mut stages) {
2232 return error_with_detail(
2233 422,
2234 format!("type errors in package {pkg_name}"),
2235 serde_json::to_value(&errs).unwrap(),
2236 );
2237 }
2238 let new_fns = stage_fns(&stages);
2239 let all_function_names: Vec<String> = new_fns.keys().cloned().collect();
2240
2241 let mut old_fns: BTreeMap<String, lex_ast::FnDecl> = BTreeMap::new();
2246 for (name, new_fd) in &new_fns {
2247 if let Some(fd) = take_matching(&mut old_fns_by_name, name, new_fd) {
2248 old_fns.insert(name.clone(), fd);
2249 }
2250 }
2251 let new_types = stage_types(&stages);
2252 let old_types: BTreeMap<String, lex_ast::TypeDecl> = new_types
2256 .keys()
2257 .filter_map(|n| old_types_by_name.get(n).map(|td| (n.clone(), td.clone())))
2258 .collect();
2259 let report =
2260 lex_vcs::compute_diff_with_types(&old_fns, &new_fns, &old_types, &new_types, false);
2261
2262 let mut new_imports = lex_vcs::ImportMap::new();
2272 for (file, modules) in &loaded.imports_by_file {
2273 let entry = new_imports.entry(file.clone()).or_default();
2274 for m in modules {
2275 entry.insert(lex_vcs::ImportRef {
2276 reference: m.clone(),
2277 alias: lex_vcs::default_import_alias(m),
2278 });
2279 }
2280 }
2281
2282 let outcome = match store.publish_program_with_intent(
2285 &branch,
2286 &stages,
2287 &report,
2288 &new_imports,
2289 false,
2290 None,
2291 None,
2292 &loaded.module_prefixes,
2293 ) {
2294 Ok(outcome) => outcome,
2295 Err(lex_store::StoreError::TypeError(errs)) => {
2296 return error_with_detail(422, "type errors", serde_json::to_value(&errs).unwrap());
2297 }
2298 Err(e) => return write_error_response("publish_program", e),
2299 };
2300 let all_ops: Vec<serde_json::Value> = match serde_json::to_value(&outcome.ops) {
2301 Ok(serde_json::Value::Array(arr)) => arr,
2302 _ => Vec::new(),
2303 };
2304 let final_head_op = outcome.head_op;
2305
2306 let now = SystemTime::now()
2331 .duration_since(UNIX_EPOCH)
2332 .map(|d| d.as_secs())
2333 .unwrap_or(0);
2334 let record = PkgRecord {
2335 name: pkg_name.clone(),
2336 version: pkg_version,
2337 head_op: final_head_op.clone(),
2338 published_at: now,
2339 function_names: all_function_names,
2340 ops: all_ops.clone(),
2341 };
2342 if let Err(e) = save_pkg_record(&state.root, &record, Some(body)) {
2343 return error_response(500, format!("save package index: {e}"));
2344 }
2345
2346 json_response(200, &serde_json::json!({
2347 "package": pkg_name,
2348 "ops": all_ops,
2349 "head_op": final_head_op,
2350 }))
2351}
2352
2353fn pkg_list_handler(state: &State) -> Response<std::io::Cursor<Vec<u8>>> {
2355 let names = list_pkg_names(&state.root);
2356 let packages: Vec<serde_json::Value> = names.iter()
2357 .filter_map(|name| {
2358 let idx = load_pkg_index(&state.root, name)?;
2359 let latest = idx.latest.as_deref()?;
2360 let r = load_pkg_record(&state.root, name, latest)?;
2361 Some(serde_json::json!({
2362 "name": r.name,
2363 "version": r.version,
2364 "head_op": r.head_op,
2365 "published_at": r.published_at,
2366 }))
2367 })
2368 .collect();
2369 json_response(200, &serde_json::json!({ "packages": packages }))
2370}
2371
2372fn pkg_get_handler(state: &State, name: &str) -> Response<std::io::Cursor<Vec<u8>>> {
2374 match load_latest_pkg_record(&state.root, name) {
2375 Some(r) => json_response(200, &serde_json::json!({
2376 "name": r.name,
2377 "version": r.version,
2378 "head_op": r.head_op,
2379 "published_at": r.published_at,
2380 "function_names": r.function_names,
2381 "ops": r.ops,
2382 })),
2383 None => error_response(404, format!("package {name:?} not found")),
2384 }
2385}
2386
2387fn pkg_versions_handler(state: &State, name: &str) -> Response<std::io::Cursor<Vec<u8>>> {
2389 match load_pkg_index(&state.root, name) {
2390 Some(idx) => json_response(200, &serde_json::json!({
2391 "name": name,
2392 "latest": idx.latest,
2393 "versions": idx.versions,
2394 })),
2395 None => error_response(404, format!("package {name:?} not found")),
2396 }
2397}
2398
2399fn pkg_api_diff_handler(state: &State, name: &str, query: &str) -> Response<std::io::Cursor<Vec<u8>>> {
2404 let mut from: Option<String> = None;
2405 let mut to: Option<String> = None;
2406 for kv in query.split('&') {
2407 match kv.split_once('=') {
2408 Some(("from", v)) => from = Some(v.to_string()),
2409 Some(("to", v)) => to = Some(v.to_string()),
2410 _ => {}
2411 }
2412 }
2413 let (Some(from), Some(to)) = (from, to) else {
2414 return error_response(400, "api-diff requires ?from=<version>&to=<version>");
2415 };
2416 let head_of = |v: &str| load_pkg_record(&state.root, name, v).and_then(|r| r.head_op);
2417 let (Some(from_head), Some(to_head)) = (head_of(&from), head_of(&to)) else {
2418 return error_response(404, format!("{name}: unknown release in {from}..{to}"));
2419 };
2420
2421 let store = state.store.lock().unwrap();
2422 let (prev_api, new_api) = match (
2423 lex_store::api::public_api_at_op(&store, &from_head),
2424 lex_store::api::public_api_at_op(&store, &to_head),
2425 ) {
2426 (Ok(a), Ok(b)) => (a, b),
2427 _ => return error_response(500, "could not read package APIs for the given releases"),
2428 };
2429 let (change, detail) = match lex_store::api::classify_api_change(&prev_api, &new_api) {
2430 lex_store::api::ApiChange::Breaking(d) => ("breaking", d),
2431 lex_store::api::ApiChange::Additive(d) => ("additive", d),
2432 lex_store::api::ApiChange::None => ("none", String::new()),
2433 };
2434 let renames = lex_store::api::detect_renames(&prev_api, &new_api);
2435 json_response(200, &serde_json::json!({
2436 "name": name, "from": from, "to": to,
2437 "change": change, "detail": detail, "renames": renames,
2438 }))
2439}
2440
2441fn pkg_get_version_handler(state: &State, name: &str, version: &str) -> Response<std::io::Cursor<Vec<u8>>> {
2443 match load_pkg_record(&state.root, name, version) {
2444 Some(r) => json_response(200, &serde_json::json!({
2445 "name": r.name,
2446 "version": r.version,
2447 "head_op": r.head_op,
2448 "published_at": r.published_at,
2449 "function_names": r.function_names,
2450 "ops": r.ops,
2451 })),
2452 None => error_response(404, format!("package {name:?}@{version:?} not found")),
2453 }
2454}
2455
2456fn pkg_archive_handler(state: &State, name: &str, version: &str) -> Response<std::io::Cursor<Vec<u8>>> {
2458 let gzip = |bytes: Vec<u8>| {
2459 Response::from_data(bytes).with_status_code(200).with_header(
2460 tiny_http::Header::from_bytes(&b"Content-Type"[..], &b"application/gzip"[..]).unwrap(),
2461 )
2462 };
2463
2464 if let Ok(bytes) = std::fs::read(pkg_archive_path(&state.root, name, version)) {
2466 return gzip(bytes);
2467 }
2468
2469 if let Some(head_op) = load_pkg_record(&state.root, name, version).and_then(|r| r.head_op) {
2473 match render_op_log_archive(state, name, version, &head_op) {
2474 Ok(bytes) => return gzip(bytes),
2475 Err(e) => {
2476 return error_response(500, format!("rendering archive for {name:?}@{version:?}: {e}"));
2477 }
2478 }
2479 }
2480
2481 error_response(404, format!("archive for {name:?}@{version:?} not found"))
2482}
2483
2484fn render_op_log_archive(
2490 state: &State,
2491 name: &str,
2492 version: &str,
2493 head_op: &str,
2494) -> Result<Vec<u8>, String> {
2495 let files: Vec<(String, String)> = {
2500 let store = state.store.lock().unwrap();
2501 let head = lex_store::render::package_head_at_op(&store, head_op)
2502 .map_err(|e| format!("reading head {head_op}: {e}"))?;
2503 match lex_store::render::render_source(&store, &head)
2504 .map_err(|e| format!("rendering source at {head_op}: {e}"))?
2505 {
2506 lex_store::render::RenderedSource::Single(src) => vec![("src/lib.lex".to_string(), src)],
2507 lex_store::render::RenderedSource::Multi(tree) => tree.into_iter().collect(),
2508 }
2509 };
2510
2511 let manifest = format!("[package]\nname = \"{name}\"\nversion = \"{version}\"\n");
2512 let mut enc = flate2::write::GzEncoder::new(Vec::new(), flate2::Compression::default());
2513 {
2514 let mut ar = tar::Builder::new(&mut enc);
2515 let mut append = |p: &str, data: &[u8]| -> std::io::Result<()> {
2516 let mut h = tar::Header::new_gnu();
2517 h.set_size(data.len() as u64);
2518 h.set_mode(0o644);
2519 h.set_cksum();
2520 ar.append_data(&mut h, p, data)
2521 };
2522 append("lex.toml", manifest.as_bytes()).map_err(|e| e.to_string())?;
2523 for (path, src) in &files {
2524 append(path, src.as_bytes()).map_err(|e| e.to_string())?;
2525 }
2526 ar.finish().map_err(|e| e.to_string())?;
2527 }
2528 enc.finish().map_err(|e| e.to_string())
2529}
2530
2531fn pkg_head_handler(state: &State, name: &str) -> Response<std::io::Cursor<Vec<u8>>> {
2533 match load_latest_pkg_record(&state.root, name) {
2534 Some(r) => json_response(200, &serde_json::json!({
2535 "name": r.name,
2536 "version": r.version,
2537 "head_op": r.head_op,
2538 })),
2539 None => error_response(404, format!("package {name:?} not found")),
2540 }
2541}
2542
2543fn pkg_delete_handler(state: &State, name: &str) -> Response<std::io::Cursor<Vec<u8>>> {
2545 let record = match load_latest_pkg_record(&state.root, name) {
2546 Some(r) => r,
2547 None => return error_response(404, format!("package {name:?} not found")),
2548 };
2549
2550 let store = state.store.lock().unwrap();
2551 let branch = store.current_branch();
2552
2553 let head = match store.branch_head(&branch) {
2554 Ok(h) => h,
2555 Err(e) => return error_response(500, format!("branch_head: {e}")),
2556 };
2557
2558 let head_pairs: Vec<(String, String)> = head
2565 .iter()
2566 .map(|(sig, stage)| (sig.clone(), stage.clone()))
2567 .collect();
2568 let old_fns: BTreeMap<String, lex_ast::FnDecl> = store
2569 .get_asts_for_sigs_bulk(&head_pairs)
2570 .into_iter()
2571 .filter_map(|r| r.ok())
2572 .filter_map(|s| match s {
2573 lex_ast::Stage::FnDecl(fd)
2574 if record.function_names.contains(&fd.name) => Some((fd.name.clone(), fd)),
2575 _ => None,
2576 })
2577 .collect();
2578
2579 let new_fns: BTreeMap<String, lex_ast::FnDecl> = BTreeMap::new();
2580 let report = lex_vcs::compute_diff(&old_fns, &new_fns, false);
2581 let empty_imports = lex_vcs::ImportMap::new();
2582
2583 match store.publish_program(&branch, &[], &report, &empty_imports, false) {
2584 Ok(outcome) => {
2585 let ver = record.version.clone();
2587 let _ = std::fs::remove_file(pkg_version_path(&state.root, name, &ver));
2588 let _ = std::fs::remove_file(pkg_archive_path(&state.root, name, &ver));
2589 if let Some(mut idx) = load_pkg_index(&state.root, name) {
2591 idx.versions.retain(|v| v.version != ver);
2592 idx.latest = idx.versions.last().map(|v| v.version.clone());
2593 if idx.versions.is_empty() {
2594 let _ = std::fs::remove_dir_all(pkg_name_dir(&state.root, name));
2595 } else {
2596 let bytes = serde_json::to_vec_pretty(&idx).unwrap_or_default();
2597 let _ = std::fs::write(pkg_index_path(&state.root, name), bytes);
2598 }
2599 }
2600 json_response(200, &serde_json::json!({
2601 "deleted": name,
2602 "version": ver,
2603 "ops": outcome.ops,
2604 "head_op": outcome.head_op,
2605 }))
2606 }
2607 Err(lex_store::StoreError::TypeError(errs)) => {
2608 error_with_detail(422, "type errors", serde_json::to_value(&errs).unwrap())
2609 }
2610 Err(e) => write_error_response("retract package", e),
2611 }
2612}
2613
2614#[cfg(test)]
2615mod policy_ceiling_tests {
2616 use super::*;
2617 use lex_runtime::Policy;
2618 use std::path::PathBuf;
2619
2620 fn permissive_request() -> Policy {
2624 Policy {
2625 allow_effects: ["io", "fs_read", "fs_write", "net", "proc"]
2626 .iter()
2627 .map(|s| s.to_string())
2628 .collect(),
2629 allow_fs_read: vec![PathBuf::from("/")],
2630 allow_fs_write: vec![PathBuf::from("/")],
2631 allow_net_host: Vec::new(),
2632 allow_proc: Vec::new(),
2633 allow_approval: Vec::new(),
2634 budget: None,
2635 }
2636 }
2637
2638 #[test]
2639 fn ceiling_drops_effects_the_caller_was_not_granted() {
2640 let ceiling = Policy {
2641 allow_effects: ["io", "time"].iter().map(|s| s.to_string()).collect(),
2642 ..Policy::default()
2643 };
2644 let got = clamp_policy(permissive_request(), &ceiling);
2645 assert!(got.allow_effects.contains("io"));
2646 assert!(!got.allow_effects.contains("proc"), "proc must not survive a ceiling without it");
2647 assert!(!got.allow_effects.contains("fs_write"));
2648 assert!(!got.allow_effects.contains("net"));
2649 assert!(!got.allow_effects.contains("time"));
2651 }
2652
2653 #[test]
2654 fn ceiling_scopes_override_caller_scopes() {
2655 let ceiling = Policy {
2656 allow_effects: ["fs_read"].iter().map(|s| s.to_string()).collect(),
2657 allow_fs_read: vec![PathBuf::from("/srv/tenant")],
2658 ..Policy::default()
2659 };
2660 let got = clamp_policy(permissive_request(), &ceiling);
2661 assert_eq!(got.allow_fs_read, vec![PathBuf::from("/srv/tenant")]);
2664 assert!(got.allow_fs_write.is_empty());
2665 assert!(got.allow_proc.is_empty());
2666 assert!(got.allow_net_host.is_empty());
2667 }
2668
2669 #[test]
2670 fn ceiling_caps_budget_and_prefers_the_smaller() {
2671 let mut req = permissive_request();
2673 req.budget = None;
2674 let ceiling = Policy { budget: Some(1_000), ..Policy::default() };
2675 assert_eq!(clamp_policy(req, &ceiling).budget, Some(1_000));
2676
2677 let mut req2 = permissive_request();
2679 req2.budget = Some(50);
2680 let ceiling2 = Policy { budget: Some(1_000), ..Policy::default() };
2681 assert_eq!(clamp_policy(req2, &ceiling2).budget, Some(50));
2682 }
2683
2684 #[test]
2685 fn empty_ceiling_is_pure_only() {
2686 let got = clamp_policy(permissive_request(), &Policy::default());
2687 assert!(got.allow_effects.is_empty(), "an empty ceiling grants nothing");
2688 assert!(got.allow_proc.is_empty());
2689 assert!(got.allow_fs_write.is_empty());
2690 }
2691}
2692
2693#[cfg(test)]
2694mod public_read_tests {
2695 use super::*;
2696
2697 fn seed_pkg(root: &std::path::Path, name: &str, version: &str) {
2700 let record = PkgRecord {
2701 name: name.to_string(),
2702 version: version.to_string(),
2703 head_op: Some(format!("op-{name}")),
2704 published_at: 1,
2705 function_names: vec![format!("{name}.f")],
2706 ops: vec![],
2707 };
2708 save_pkg_record(root, &record, Some(format!("ARCHIVE:{name}@{version}").as_bytes()))
2709 .expect("seed package");
2710 }
2711
2712 #[test]
2713 fn new_package_defaults_to_private() {
2714 let tmp = tempfile::TempDir::new().unwrap();
2715 seed_pkg(tmp.path(), "lex-schema", "0.9.2");
2716 assert!(!pkg_is_public(tmp.path(), "lex-schema"));
2717 assert!(!pkg_is_public(tmp.path(), "does-not-exist"));
2719 }
2720
2721 #[test]
2722 fn set_visibility_round_trips_and_index_persists() {
2723 let tmp = tempfile::TempDir::new().unwrap();
2724 let state = State::open(tmp.path().to_path_buf()).unwrap();
2725 seed_pkg(tmp.path(), "lex-schema", "0.9.2");
2726
2727 let _ = pkg_set_visibility_handler(&state, "lex-schema", r#"{"visibility":"public"}"#);
2728 assert!(pkg_is_public(tmp.path(), "lex-schema"));
2729 let idx = load_pkg_index(tmp.path(), "lex-schema").unwrap();
2731 assert_eq!(idx.latest.as_deref(), Some("0.9.2"));
2732 assert_eq!(idx.versions.len(), 1);
2733
2734 let _ = pkg_set_visibility_handler(&state, "lex-schema", r#"{"visibility":"private"}"#);
2735 assert!(!pkg_is_public(tmp.path(), "lex-schema"));
2736 }
2737
2738 #[test]
2739 fn set_visibility_on_unknown_package_is_a_noop() {
2740 let tmp = tempfile::TempDir::new().unwrap();
2741 let state = State::open(tmp.path().to_path_buf()).unwrap();
2742 let _ = pkg_set_visibility_handler(&state, "ghost", r#"{"visibility":"public"}"#);
2744 assert!(load_pkg_index(tmp.path(), "ghost").is_none());
2745 }
2746
2747 #[test]
2748 fn public_listing_omits_private_packages() {
2749 let tmp = tempfile::TempDir::new().unwrap();
2750 let state = State::open(tmp.path().to_path_buf()).unwrap();
2751 seed_pkg(tmp.path(), "pub-pkg", "1.0.0");
2752 seed_pkg(tmp.path(), "priv-pkg", "1.0.0");
2753 let _ = pkg_set_visibility_handler(&state, "pub-pkg", r#"{"visibility":"public"}"#);
2754
2755 let names = public_pkg_names(tmp.path());
2756 assert_eq!(names, vec!["pub-pkg".to_string()]);
2757 }
2758
2759 #[test]
2760 fn resolve_public_maps_routes() {
2761 let get = Method::Get;
2762 assert_eq!(resolve_public(&get, "").unwrap(), PublicTarget::List);
2763 assert_eq!(resolve_public(&get, "/").unwrap(), PublicTarget::List);
2764 assert_eq!(
2765 resolve_public(&get, "/lex-schema").unwrap(),
2766 PublicTarget::Latest("lex-schema".into())
2767 );
2768 assert_eq!(
2769 resolve_public(&get, "/lex-schema/versions").unwrap(),
2770 PublicTarget::Versions("lex-schema".into())
2771 );
2772 assert_eq!(
2773 resolve_public(&get, "/lex-schema/head").unwrap(),
2774 PublicTarget::Head("lex-schema".into())
2775 );
2776 assert_eq!(
2777 resolve_public(&get, "/lex-schema/0.9.2").unwrap(),
2778 PublicTarget::Version("lex-schema".into(), "0.9.2".into())
2779 );
2780 assert_eq!(
2781 resolve_public(&get, "/lex-schema/0.9.2/archive").unwrap(),
2782 PublicTarget::Archive("lex-schema".into(), "0.9.2".into())
2783 );
2784 }
2785
2786 #[test]
2787 fn resolve_public_rejects_bad_method_and_traversal() {
2788 assert_eq!(resolve_public(&Method::Put, "/lex-schema"), Err(405));
2790 assert_eq!(resolve_public(&Method::Post, "").err(), Some(405));
2791 assert_eq!(resolve_public(&Method::Get, "/.."), Err(404));
2793 assert_eq!(resolve_public(&Method::Get, "/lex-schema/../etc"), Err(404));
2794 assert_eq!(resolve_public(&Method::Get, "/a/b/c/d"), Err(404));
2795 assert!(resolve_public(&Method::Get, "/lex schema").is_err());
2797 }
2798}