1use crate::commands::ingest::IngestArgs;
13use crate::commands::ingest_claude::ExtractionResult;
14use crate::entity_type::EntityType;
15use crate::errors::AppError;
16use crate::paths::AppPaths;
17use crate::storage::connection::{ensure_db_ready, open_rw};
18use crate::storage::entities::{self, NewEntity, NewRelationship};
19use crate::storage::memories::{self, NewMemory};
20
21use rusqlite::Connection;
22use serde::{Deserialize, Serialize};
23use std::io::Write;
24use std::path::{Path, PathBuf};
25use std::process::{Command, Stdio};
26use std::time::Instant;
27
28const MIN_CODEX_VERSION: &str = "0.120.0";
29
30const EXTRACTION_SCHEMA_CODEX: &str = r#"{
32 "type": "object",
33 "properties": {
34 "name": { "type": "string" },
35 "description": { "type": "string" },
36 "entities": {
37 "type": "array",
38 "items": {
39 "type": "object",
40 "properties": {
41 "name": { "type": "string" },
42 "entity_type": {
43 "type": "string",
44 "enum": ["project","tool","person","file","concept","incident","decision","organization","location","date"]
45 }
46 },
47 "required": ["name", "entity_type"],
48 "additionalProperties": false
49 }
50 },
51 "relationships": {
52 "type": "array",
53 "items": {
54 "type": "object",
55 "properties": {
56 "source": { "type": "string" },
57 "target": { "type": "string" },
58 "relation": {
59 "type": "string",
60 "enum": ["applies-to","uses","depends-on","causes","fixes","contradicts","supports","follows","related","replaces","tracked-in"]
61 },
62 "strength": { "type": "number", "minimum": 0, "maximum": 1 }
63 },
64 "required": ["source","target","relation","strength"],
65 "additionalProperties": false
66 }
67 }
68 },
69 "required": ["name","description","entities","relationships"],
70 "additionalProperties": false
71}"#;
72
73const EXTRACTION_PROMPT: &str = "You are a knowledge graph entity extractor. Given a document, extract:\n\
741. A short kebab-case name (max 60 chars) capturing the document's main topic\n\
752. A one-sentence description (10-20 words) summarizing the key insight\n\
763. Domain-specific entities (concepts, tools, people, decisions, projects, files)\n\
774. Typed relationships between entities with strength scores\n\n\
78Rules:\n\
79- Entity names: lowercase kebab-case, 2+ chars, domain-specific only\n\
80- NEVER extract generic terms, stop words, numbers, UUIDs, or single characters\n\
81- Relationship types MUST be one of: applies-to, uses, depends-on, causes, fixes, contradicts, supports, follows, related, replaces, tracked-in\n\
82- NEVER use 'mentions' as relationship type\n\
83- Strength: 0.9 for hard dependencies, 0.7 for design relationships, 0.5 for contextual links, 0.3 for weak references\n\
84- Prefer fewer high-quality entities over many low-quality ones\n\
85- Description must answer: What is this about and WHY does it matter?";
86
87#[derive(Debug, Clone, Deserialize, Serialize)]
89struct CodexUsage {
90 input_tokens: u64,
91 #[serde(default)]
92 cached_input_tokens: u64,
93 output_tokens: u64,
94 #[serde(default)]
95 reasoning_output_tokens: u64,
96}
97
98#[derive(Debug, Serialize)]
99struct PhaseEvent<'a> {
100 phase: &'a str,
101 #[serde(skip_serializing_if = "Option::is_none")]
102 codex_path: Option<&'a str>,
103 #[serde(skip_serializing_if = "Option::is_none")]
104 version: Option<&'a str>,
105 #[serde(skip_serializing_if = "Option::is_none")]
106 dir: Option<&'a str>,
107 #[serde(skip_serializing_if = "Option::is_none")]
108 files_total: Option<usize>,
109 #[serde(skip_serializing_if = "Option::is_none")]
110 files_new: Option<usize>,
111 #[serde(skip_serializing_if = "Option::is_none")]
112 files_existing: Option<usize>,
113}
114
115#[derive(Debug, Serialize)]
116struct FileEvent<'a> {
117 file: &'a str,
118 name: &'a str,
119 status: &'a str,
120 #[serde(skip_serializing_if = "Option::is_none")]
121 memory_id: Option<i64>,
122 #[serde(skip_serializing_if = "Option::is_none")]
123 entities: Option<usize>,
124 #[serde(skip_serializing_if = "Option::is_none")]
125 rels: Option<usize>,
126 #[serde(skip_serializing_if = "Option::is_none")]
128 cost_usd: Option<f64>,
129 #[serde(skip_serializing_if = "Option::is_none")]
130 input_tokens: Option<u64>,
131 #[serde(skip_serializing_if = "Option::is_none")]
132 output_tokens: Option<u64>,
133 #[serde(skip_serializing_if = "Option::is_none")]
134 elapsed_ms: Option<u64>,
135 #[serde(skip_serializing_if = "Option::is_none")]
136 error: Option<&'a str>,
137 index: usize,
138 total: usize,
139}
140
141#[derive(Debug, Serialize)]
142struct Summary {
143 summary: bool,
144 files_total: usize,
145 completed: usize,
146 failed: usize,
147 skipped: usize,
148 entities_total: usize,
149 rels_total: usize,
150 input_tokens_total: u64,
151 output_tokens_total: u64,
152 elapsed_ms: u64,
153}
154
155pub fn find_codex_binary(explicit: Option<&Path>) -> Result<PathBuf, AppError> {
162 if let Some(p) = explicit {
163 if p.exists() {
164 return Ok(p.to_path_buf());
165 }
166 return Err(AppError::Validation(format!(
167 "Codex CLI binary not found at explicit path: {}",
168 p.display()
169 )));
170 }
171
172 if let Ok(env_path) = std::env::var("SQLITE_GRAPHRAG_CODEX_BINARY") {
173 let p = PathBuf::from(&env_path);
174 if p.exists() {
175 return Ok(p);
176 }
177 }
178
179 let name = if cfg!(windows) { "codex.exe" } else { "codex" };
180 if let Some(path_var) = std::env::var_os("PATH") {
181 for dir in std::env::split_paths(&path_var) {
182 let candidate = dir.join(name);
183 if candidate.exists() {
184 return Ok(candidate);
185 }
186 }
187 }
188
189 Err(AppError::Validation(
190 "Codex CLI binary not found in PATH. Install it from https://github.com/openai/codex or specify --codex-binary".to_string(),
191 ))
192}
193
194fn validate_codex_version(binary: &Path) -> Result<String, AppError> {
201 let resolved = which::which(binary).map_err(|_| {
202 AppError::Validation(format!(
203 "executable '{}' not found in PATH; ensure Codex CLI is installed",
204 binary.display()
205 ))
206 })?;
207 let output = Command::new(&resolved)
208 .arg("--version")
209 .stdin(Stdio::null())
210 .stdout(Stdio::piped())
211 .stderr(Stdio::piped())
212 .output()
213 .map_err(AppError::Io)?;
214
215 let raw = String::from_utf8(output.stdout)
216 .map_err(|_| AppError::Validation("codex --version output is not UTF-8".to_string()))?;
217
218 let version_str = raw.trim().to_string();
219
220 let numeric = version_str.split_whitespace().last().unwrap_or("").trim();
222
223 fn parse_semver(s: &str) -> Option<(u64, u64, u64)> {
224 let parts: Vec<&str> = s.splitn(3, '.').collect();
225 if parts.len() < 2 {
226 return None;
227 }
228 let major = parts[0].parse::<u64>().ok()?;
229 let minor = parts[1].parse::<u64>().ok()?;
230 let patch = parts
231 .get(2)
232 .and_then(|p| p.parse::<u64>().ok())
233 .unwrap_or(0);
234 Some((major, minor, patch))
235 }
236
237 if let (Some(actual), Some(min)) = (parse_semver(numeric), parse_semver(MIN_CODEX_VERSION)) {
238 if actual < min {
239 return Err(AppError::Validation(format!(
240 "Codex CLI version {numeric} is below minimum required {MIN_CODEX_VERSION}"
241 )));
242 }
243 }
244
245 Ok(version_str)
246}
247
248fn write_schema_tempfile() -> Result<tempfile::NamedTempFile, AppError> {
254 let mut f = tempfile::NamedTempFile::new().map_err(AppError::Io)?;
255 std::io::Write::write_all(&mut f, EXTRACTION_SCHEMA_CODEX.as_bytes()).map_err(AppError::Io)?;
256 std::io::Write::flush(&mut f).map_err(AppError::Io)?;
257 Ok(f)
258}
259
260fn extract_with_codex(
271 binary: &Path,
272 file_content: &[u8],
273 model: Option<&str>,
274 timeout_secs: u64,
275 schema_file: &Path,
276) -> Result<(ExtractionResult, Option<CodexUsage>), AppError> {
277 use wait_timeout::ChildExt;
278
279 let _ = timeout_secs; let _ = file_content; let _ = schema_file; let prompt = String::new(); let mut cmd = crate::commands::codex_spawn::build_codex_command(
288 &crate::commands::codex_spawn::CodexSpawnArgs {
289 binary,
290 prompt: &prompt,
291 json_schema: "", input_text: "",
293 model,
294 timeout_secs,
295 schema_path: schema_file.to_path_buf(),
296 },
297 );
298
299 let _ = std::fs::write(
306 schema_file,
307 crate::commands::ingest_codex::EXTRACTION_SCHEMA_CODEX,
308 );
309
310 cmd.stdin(Stdio::piped())
311 .stdout(Stdio::piped())
312 .stderr(Stdio::piped());
313
314 let mut child = super::claude_runner::spawn_with_memory_limit(&mut cmd).map_err(|e| {
315 AppError::Io(std::io::Error::new(
316 e.kind(),
317 format!("failed to spawn codex: {e}"),
318 ))
319 })?;
320
321 let file_utf8 = String::from_utf8_lossy(file_content);
323 let stdin_payload = format!("{EXTRACTION_PROMPT}\n\n---\n\nDocument content:\n\n{file_utf8}");
324 let stdin_bytes = stdin_payload.into_bytes();
325
326 let mut child_stdin = child
327 .stdin
328 .take()
329 .ok_or_else(|| AppError::Validation("failed to open codex stdin".into()))?;
330 let stdin_thread = std::thread::spawn(move || -> Result<(), std::io::Error> {
331 child_stdin.write_all(&stdin_bytes)?;
332 drop(child_stdin);
333 Ok(())
334 });
335
336 let start = std::time::Instant::now();
337 let timeout = std::time::Duration::from_secs(timeout_secs);
338 let status = child.wait_timeout(timeout).map_err(AppError::Io)?;
339
340 match status {
341 Some(exit_status) => {
342 stdin_thread
343 .join()
344 .map_err(|_| AppError::Validation("stdin thread panicked".into()))?
345 .map_err(AppError::Io)?;
346
347 tracing::debug!(
348 target: "process",
349 exit_code = ?exit_status.code(),
350 elapsed_ms = start.elapsed().as_millis() as u64,
351 "external process completed"
352 );
353
354 let mut stdout_buf = Vec::new();
355 let mut stderr_buf = Vec::new();
356 if let Some(mut out) = child.stdout.take() {
357 std::io::Read::read_to_end(&mut out, &mut stdout_buf).map_err(AppError::Io)?;
358 }
359 if let Some(mut err) = child.stderr.take() {
360 std::io::Read::read_to_end(&mut err, &mut stderr_buf).map_err(AppError::Io)?;
361 }
362
363 if !exit_status.success() {
364 let stderr_str = String::from_utf8_lossy(&stderr_buf);
365 let stdout_str = String::from_utf8_lossy(&stdout_buf);
366 if let Ok((result, usage)) = parse_codex_output(&stdout_str) {
368 return Ok((result, usage));
369 }
370 if stderr_str.contains("401")
371 || stderr_str.contains("Unauthorized")
372 || stderr_str.contains("auth")
373 {
374 tracing::warn!(
375 target: "ingest",
376 "Codex CLI authentication expired. Re-authenticate with: codex auth login"
377 );
378 }
379 return Err(AppError::Validation(format!(
380 "codex exec exited with code {:?}: {}",
381 exit_status.code(),
382 stderr_str.trim()
383 )));
384 }
385
386 let stdout = String::from_utf8(stdout_buf)
387 .map_err(|_| AppError::Validation("codex exec stdout is not valid UTF-8".into()))?;
388 parse_codex_output(&stdout)
389 }
390 None => {
391 tracing::warn!(target: "ingest", timeout_secs, "codex exec timed out, killing process");
392 let _ = child.kill();
393 let _ = child.wait();
394 let _ = stdin_thread.join();
395 Err(AppError::Validation(format!(
396 "codex exec timed out after {timeout_secs} seconds"
397 )))
398 }
399 }
400}
401
402fn parse_codex_output(stdout: &str) -> Result<(ExtractionResult, Option<CodexUsage>), AppError> {
417 let mut last_agent_text: Option<String> = None;
418 let mut usage: Option<CodexUsage> = None;
419 let mut rate_limited = false;
420 let mut schema_error = false;
421 let mut turn_failed = false;
422 let mut failed_message = String::new();
423
424 for line in stdout.lines() {
425 let line = line.trim();
426 if line.is_empty() {
427 continue;
428 }
429
430 let event: serde_json::Value = match serde_json::from_str(line) {
431 Ok(v) => v,
432 Err(_) => {
433 tracing::warn!(target: "ingest", line, "codex output: skipping malformed JSONL line");
434 continue;
435 }
436 };
437
438 let event_type = match event.get("type").and_then(|t| t.as_str()) {
439 Some(t) => t,
440 None => continue,
441 };
442
443 match event_type {
444 "item.completed" => {
445 if let Some(item) = event.get("item") {
447 if item.get("type").and_then(|t| t.as_str()) == Some("agent_message") {
448 if let Some(text) = item.get("text").and_then(|t| t.as_str()) {
449 last_agent_text = Some(text.to_string());
450 }
451 }
452 }
453 }
454 "turn.completed" => {
455 if let Some(u) = event.get("usage") {
456 if let Ok(parsed) = serde_json::from_value::<CodexUsage>(u.clone()) {
457 usage = Some(parsed);
458 }
459 }
460 }
461 "turn.failed" => {
462 turn_failed = true;
463 if let Some(err) = event.get("error") {
464 let msg = err
465 .get("message")
466 .and_then(|m| m.as_str())
467 .unwrap_or("unknown error");
468 failed_message = msg.to_string();
469 if msg.contains("rate_limit")
470 || msg.contains("429")
471 || msg.contains("Too Many Requests")
472 {
473 rate_limited = true;
474 }
475 }
476 }
477 "error" => {
478 if let Some(msg) = event.get("message").and_then(|m| m.as_str()) {
479 if msg.contains("invalid_json_schema") || msg.contains("schema") {
480 schema_error = true;
481 }
482 tracing::warn!(target: "ingest", error_msg = msg, "codex error event received");
483 }
484 }
485 _ => {
486 }
488 }
489 }
490
491 if rate_limited {
492 return Err(AppError::RateLimited {
493 detail: failed_message,
494 });
495 }
496
497 if schema_error {
498 return Err(AppError::Validation(
499 "codex rejected the output schema (invalid_json_schema)".to_string(),
500 ));
501 }
502
503 if turn_failed {
504 return Err(AppError::Validation(format!(
505 "codex turn failed: {failed_message}"
506 )));
507 }
508
509 let text = last_agent_text.ok_or_else(|| {
510 AppError::Validation("codex output contained no agent_message item".to_string())
511 })?;
512
513 let extraction: ExtractionResult = serde_json::from_str(&text).map_err(|e| {
514 AppError::Validation(format!(
515 "failed to parse codex agent_message as ExtractionResult: {e}. text={text}"
516 ))
517 })?;
518
519 Ok((extraction, usage))
520}
521
522use crate::output::emit_json_line as emit_json;
523
524fn collect_matching_files(
526 dir: &Path,
527 pattern: &str,
528 recursive: bool,
529 max_files: usize,
530) -> Result<Vec<PathBuf>, AppError> {
531 let mut files = Vec::new();
532 super::ingest::collect_files(dir, pattern, recursive, &mut files)?;
533 files.sort_unstable();
534
535 if files.len() > max_files {
536 return Err(AppError::Validation(format!(
537 "found {} files, exceeds --max-files cap of {}",
538 files.len(),
539 max_files
540 )));
541 }
542
543 Ok(files)
544}
545
546fn open_queue_db(path: &str) -> Result<Connection, AppError> {
548 let conn = Connection::open(path)?;
549
550 conn.execute_batch(
551 "PRAGMA journal_mode=WAL;
552 CREATE TABLE IF NOT EXISTS queue (
553 id INTEGER PRIMARY KEY AUTOINCREMENT,
554 file_path TEXT NOT NULL UNIQUE,
555 name TEXT,
556 status TEXT NOT NULL DEFAULT 'pending',
557 memory_id INTEGER,
558 entities INTEGER DEFAULT 0,
559 rels INTEGER DEFAULT 0,
560 error TEXT,
561 input_tokens INTEGER DEFAULT 0,
562 output_tokens INTEGER DEFAULT 0,
563 attempt INTEGER DEFAULT 0,
564 elapsed_ms INTEGER,
565 created_at TEXT DEFAULT (datetime('now')),
566 done_at TEXT
567 );
568 CREATE INDEX IF NOT EXISTS idx_queue_status ON queue(status);",
569 )?;
570
571 Ok(conn)
572}
573
574pub fn run_codex_ingest(args: &IngestArgs) -> Result<(), AppError> {
580 let started = Instant::now();
581
582 if !args.dir.exists() {
583 return Err(AppError::Validation(format!(
584 "directory not found: {}",
585 args.dir.display()
586 )));
587 }
588
589 let early_ns = crate::namespace::resolve_namespace(args.namespace.as_deref())?;
594 let early_paths = AppPaths::resolve(args.db.as_deref())?;
595 let _singleton = crate::lock::acquire_job_singleton(
596 crate::lock::JobType::IngestCodex,
597 &early_ns,
598 &early_paths.db,
599 args.wait_job_singleton,
600 args.force_job_singleton,
601 )?;
602
603 let codex_binary = find_codex_binary(args.codex_binary.as_deref())?;
605 let version = validate_codex_version(&codex_binary)?;
606 tracing::info!(
607 target: "ingest",
608 binary = %codex_binary.display(),
609 version = %version,
610 "Codex CLI binary validated"
611 );
612
613 emit_json(&PhaseEvent {
614 phase: "validate",
615 codex_path: codex_binary.to_str(),
616 version: Some(&version),
617 dir: None,
618 files_total: None,
619 files_new: None,
620 files_existing: None,
621 });
622
623 let files = collect_matching_files(&args.dir, &args.pattern, args.recursive, args.max_files)?;
625
626 let queue_conn = open_queue_db(&args.queue_db)?;
627
628 if args.resume {
629 let reset = queue_conn
630 .execute(
631 "UPDATE queue SET status='pending' WHERE status='processing'",
632 [],
633 )
634 .map_err(|e| AppError::Validation(format!("queue resume failed: {e}")))?;
635 if reset > 0 {
636 tracing::info!(target: "ingest", count = reset, "reset stuck processing files to pending");
637 }
638 }
639
640 if args.retry_failed {
641 let count = queue_conn
642 .execute(
643 "UPDATE queue SET status='pending', attempt=0 WHERE status='failed'",
644 [],
645 )
646 .map_err(|e| AppError::Validation(format!("queue retry-failed reset failed: {e}")))?;
647 tracing::info!(target: "ingest", count, "retrying failed files");
648 }
649
650 if !args.resume && !args.retry_failed {
651 queue_conn
652 .execute("DELETE FROM queue", [])
653 .map_err(|e| AppError::Validation(format!("queue clear failed: {e}")))?;
654 }
655
656 let mut new_count = 0usize;
657 let mut existing_count = 0usize;
658
659 if !args.retry_failed {
660 for file in &files {
661 let file_str = file.to_string_lossy().into_owned();
662 let inserted = queue_conn
663 .execute(
664 "INSERT OR IGNORE INTO queue (file_path, status) VALUES (?1, 'pending')",
665 rusqlite::params![file_str],
666 )
667 .map_err(|e| AppError::Validation(format!("queue insert failed: {e}")))?;
668 if inserted > 0 {
669 new_count += 1;
670 } else {
671 existing_count += 1;
672 }
673 }
674 }
675
676 emit_json(&PhaseEvent {
677 phase: "scan",
678 codex_path: None,
679 version: None,
680 dir: args.dir.to_str(),
681 files_total: Some(files.len()),
682 files_new: Some(new_count),
683 files_existing: Some(existing_count),
684 });
685
686 if args.dry_run {
687 for (idx, file) in files.iter().enumerate() {
688 let (name, _truncated, _orig) =
689 super::ingest::derive_kebab_name(file, args.max_name_length);
690 emit_json(&FileEvent {
691 file: &file.to_string_lossy(),
692 name: &name,
693 status: "preview",
694 memory_id: None,
695 entities: None,
696 rels: None,
697 cost_usd: None,
698 input_tokens: None,
699 output_tokens: None,
700 elapsed_ms: None,
701 error: None,
702 index: idx,
703 total: files.len(),
704 });
705 }
706 emit_json(&Summary {
707 summary: true,
708 files_total: files.len(),
709 completed: 0,
710 failed: 0,
711 skipped: 0,
712 entities_total: 0,
713 rels_total: 0,
714 input_tokens_total: 0,
715 output_tokens_total: 0,
716 elapsed_ms: started.elapsed().as_millis() as u64,
717 });
718 if !args.keep_queue {
719 let _ = std::fs::remove_file(&args.queue_db);
720 }
721 return Ok(());
722 }
723
724 let paths = AppPaths::resolve(args.db.as_deref())?;
726 ensure_db_ready(&paths)?;
727 let conn = open_rw(&paths.db)?;
728 let namespace = crate::namespace::resolve_namespace(args.namespace.as_deref())?;
729 let memory_type_str = args.r#type.as_str().to_string();
730
731 let schema_tempfile = write_schema_tempfile()?;
733 let schema_path = schema_tempfile.path().to_path_buf();
734
735 let mut completed = 0usize;
736 let mut failed = 0usize;
737 let skipped_initial: usize = queue_conn
738 .query_row("SELECT COUNT(*) FROM queue WHERE status='done'", [], |r| {
739 r.get::<_, usize>(0)
740 })
741 .unwrap_or(0);
742 let mut skipped = skipped_initial;
743 let mut entities_total = 0usize;
744 let mut rels_total = 0usize;
745 let mut input_tokens_total = 0u64;
746 let mut output_tokens_total = 0u64;
747 let total = files.len();
748
749 let mut backoff_secs = args.rate_limit_wait;
750 let rate_limit_deadline = std::time::Instant::now() + std::time::Duration::from_secs(3600);
751
752 loop {
753 if crate::shutdown_requested() {
754 tracing::info!(target: "ingest", "shutdown requested, stopping before next file");
755 break;
756 }
757
758 let pending: Option<(i64, String)> = queue_conn
759 .query_row(
760 "UPDATE queue SET status='processing', attempt=attempt+1 \
761 WHERE id = (SELECT id FROM queue WHERE status='pending' ORDER BY id LIMIT 1) \
762 RETURNING id, file_path",
763 [],
764 |row| Ok((row.get(0)?, row.get(1)?)),
765 )
766 .ok();
767
768 let (queue_id, file_path) = match pending {
769 Some(p) => p,
770 None => break,
771 };
772
773 let file_started = Instant::now();
774
775 const MAX_FILE_SIZE: u64 = 10 * 1024 * 1024;
777 if let Ok(meta) = std::fs::metadata(&file_path) {
778 if meta.len() > MAX_FILE_SIZE {
779 let err_msg = format!("file exceeds 10MB stdin limit ({} bytes)", meta.len());
780 let _ = queue_conn.execute(
781 "UPDATE queue SET status='failed', error=?1, done_at=datetime('now') WHERE id=?2",
782 rusqlite::params![err_msg, queue_id],
783 );
784 let current_index = completed + failed + skipped;
785 failed += 1;
786 emit_json(&FileEvent {
787 file: &file_path,
788 name: "",
789 status: "failed",
790 memory_id: None,
791 entities: None,
792 rels: None,
793 cost_usd: None,
794 input_tokens: None,
795 output_tokens: None,
796 elapsed_ms: Some(file_started.elapsed().as_millis() as u64),
797 error: Some(&err_msg),
798 index: current_index,
799 total,
800 });
801 if args.fail_fast {
802 break;
803 }
804 continue;
805 }
806 }
807
808 let file_content = match std::fs::read(&file_path) {
809 Ok(c) => c,
810 Err(e) => {
811 let err_msg = format!("IO error: {e}");
812 let _ = queue_conn.execute(
813 "UPDATE queue SET status='failed', error=?1, done_at=datetime('now') WHERE id=?2",
814 rusqlite::params![err_msg, queue_id],
815 );
816 let current_index = completed + failed + skipped;
817 failed += 1;
818 emit_json(&FileEvent {
819 file: &file_path,
820 name: "",
821 status: "failed",
822 memory_id: None,
823 entities: None,
824 rels: None,
825 cost_usd: None,
826 input_tokens: None,
827 output_tokens: None,
828 elapsed_ms: Some(file_started.elapsed().as_millis() as u64),
829 error: Some(&err_msg),
830 index: current_index,
831 total,
832 });
833 if args.fail_fast {
834 break;
835 }
836 continue;
837 }
838 };
839
840 if file_content.len() > crate::constants::MAX_MEMORY_BODY_LEN {
842 let err_msg = format!(
843 "file body exceeds {} byte limit ({} bytes) — skipping to avoid wasting LLM tokens",
844 crate::constants::MAX_MEMORY_BODY_LEN,
845 file_content.len()
846 );
847 tracing::warn!(target: "ingest", file = %file_path, size = file_content.len(), "body exceeds limit, skipping LLM extraction");
848 let _ = queue_conn.execute(
849 "UPDATE queue SET status='skipped', error=?1, done_at=datetime('now') WHERE id=?2",
850 rusqlite::params![err_msg, queue_id],
851 );
852 let current_index = completed + failed + skipped;
853 skipped += 1;
854 emit_json(&FileEvent {
855 file: &file_path,
856 name: "",
857 status: "skipped",
858 memory_id: None,
859 entities: None,
860 rels: None,
861 cost_usd: None,
862 input_tokens: None,
863 output_tokens: None,
864 elapsed_ms: Some(file_started.elapsed().as_millis() as u64),
865 error: Some(&err_msg),
866 index: current_index,
867 total,
868 });
869 continue;
870 }
871
872 let max_extract_attempts: u32 = 2;
874 let mut extraction_result: Option<(ExtractionResult, Option<CodexUsage>)> = None;
875 let mut last_extract_err: Option<String> = None;
876 let mut last_was_rate_limited = false;
877
878 for attempt in 1..=max_extract_attempts {
879 match extract_with_codex(
880 &codex_binary,
881 &file_content,
882 args.codex_model.as_deref(),
883 args.codex_timeout,
884 &schema_path,
885 ) {
886 Ok(result) => {
887 extraction_result = Some(result);
888 break;
889 }
890 Err(ref e) if matches!(e, AppError::RateLimited { .. }) => {
891 last_extract_err = Some(format!("{e}"));
892 last_was_rate_limited = true;
893 break;
894 }
895 Err(e) => {
896 let msg = format!("{e}");
897 if attempt < max_extract_attempts {
898 let cold_start_delay = 2 * attempt as u64;
899 tracing::warn!(
900 target: "ingest",
901 attempt,
902 delay_secs = cold_start_delay,
903 error = %msg,
904 "codex extraction failed, retrying"
905 );
906 std::thread::sleep(std::time::Duration::from_secs(cold_start_delay));
907 }
908 last_extract_err = Some(msg);
909 }
910 }
911 }
912
913 if let Some((extraction, usage)) = extraction_result {
914 backoff_secs = args.rate_limit_wait;
915
916 let in_tok = usage.as_ref().map(|u| u.input_tokens).unwrap_or(0);
917 let out_tok = usage.as_ref().map(|u| u.output_tokens).unwrap_or(0);
918
919 let name = &extraction.name;
920 let ent_count = extraction.entities.len();
921 let rel_count = extraction.relationships.len();
922
923 let new_entities: Vec<NewEntity> = extraction
924 .entities
925 .iter()
926 .filter_map(|e| match e.entity_type.parse::<EntityType>() {
927 Ok(et) => Some(NewEntity {
928 name: e.name.clone(),
929 entity_type: et,
930 description: None,
931 }),
932 Err(_) => {
933 tracing::warn!(
934 target: "ingest",
935 entity = %e.name,
936 entity_type = %e.entity_type,
937 "entity type not recognized, skipping"
938 );
939 None
940 }
941 })
942 .collect();
943
944 let new_relationships: Vec<NewRelationship> = extraction
945 .relationships
946 .iter()
947 .map(|r| NewRelationship {
948 source: r.source.clone(),
949 target: r.target.clone(),
950 relation: crate::parsers::normalize_relation(&r.relation),
951 strength: r.strength,
952 description: None,
953 })
954 .collect();
955
956 let body_str = String::from_utf8_lossy(&file_content);
957 let body_hash = blake3::hash(body_str.as_bytes()).to_hex().to_string();
958 let new_memory = NewMemory {
959 name: name.clone(),
960 namespace: namespace.clone(),
961 memory_type: memory_type_str.clone(),
962 description: extraction.description.clone(),
963 body: body_str.to_string(),
964 body_hash,
965 session_id: None,
966 source: "agent".to_string(),
967 metadata: serde_json::Value::Object(serde_json::Map::new()),
968 };
969
970 let memory_id = match memories::find_by_name_any_state(&conn, &namespace, name)? {
972 Some((existing_id, is_deleted)) => {
973 if is_deleted {
974 memories::clear_deleted_at(&conn, existing_id)?;
975 }
976 let (old_name, old_desc, old_body): (String, String, String) = conn.query_row(
977 "SELECT name, COALESCE(description,''), COALESCE(body,'') FROM memories WHERE id=?1",
978 rusqlite::params![existing_id],
979 |r| Ok((r.get(0)?, r.get(1)?, r.get(2)?)),
980 )?;
981 memories::update(&conn, existing_id, &new_memory, None)?;
982 memories::sync_fts_after_update(
983 &conn,
984 existing_id,
985 &old_name,
986 &old_desc,
987 &old_body,
988 &new_memory.name,
989 &new_memory.description,
990 &new_memory.body,
991 )?;
992 tracing::info!(target: "ingest", name, memory_id = existing_id, "updated existing memory (force-merge)");
993 existing_id
994 }
995 None => match memories::insert(&conn, &new_memory) {
996 Ok(id) => id,
997 Err(e) => {
998 let err_msg = format!("{e}");
999 let _ = queue_conn.execute(
1000 "UPDATE queue SET status='failed', error=?1, done_at=datetime('now') WHERE id=?2",
1001 rusqlite::params![err_msg, queue_id],
1002 );
1003 let current_index = completed + failed + skipped;
1004 failed += 1;
1005 emit_json(&FileEvent {
1006 file: &file_path,
1007 name,
1008 status: "failed",
1009 memory_id: None,
1010 entities: None,
1011 rels: None,
1012 cost_usd: None,
1013 input_tokens: Some(in_tok),
1014 output_tokens: Some(out_tok),
1015 elapsed_ms: Some(file_started.elapsed().as_millis() as u64),
1016 error: Some(&err_msg),
1017 index: current_index,
1018 total,
1019 });
1020 input_tokens_total += in_tok;
1021 output_tokens_total += out_tok;
1022 if args.fail_fast {
1023 break;
1024 }
1025 continue;
1026 }
1027 },
1028 };
1029
1030 for ent in &new_entities {
1031 if let Ok(eid) = entities::upsert_entity(&conn, &namespace, ent) {
1032 let _ = entities::link_memory_entity(&conn, memory_id, eid);
1033 }
1034 }
1035 for rel in &new_relationships {
1036 crate::parsers::warn_if_non_canonical(&rel.relation);
1037 let src_id = entities::find_entity_id(&conn, &namespace, &rel.source);
1038 let tgt_id = entities::find_entity_id(&conn, &namespace, &rel.target);
1039 if let (Ok(Some(sid)), Ok(Some(tid))) = (src_id, tgt_id) {
1040 let _ = conn.execute(
1041 "INSERT OR IGNORE INTO relationships (namespace, source_id, target_id, relation, weight) VALUES (?1, ?2, ?3, ?4, ?5)",
1042 rusqlite::params![namespace, sid, tid, rel.relation, rel.strength],
1043 );
1044 }
1045 }
1046
1047 let _ = queue_conn.execute(
1048 "UPDATE queue SET status='done', name=?1, memory_id=?2, entities=?3, rels=?4, \
1049 input_tokens=?5, output_tokens=?6, elapsed_ms=?7, done_at=datetime('now') WHERE id=?8",
1050 rusqlite::params![
1051 name,
1052 memory_id,
1053 ent_count,
1054 rel_count,
1055 in_tok,
1056 out_tok,
1057 file_started.elapsed().as_millis() as i64,
1058 queue_id
1059 ],
1060 );
1061
1062 let current_index = completed + failed + skipped;
1063 completed += 1;
1064 entities_total += ent_count;
1065 rels_total += rel_count;
1066 input_tokens_total += in_tok;
1067 output_tokens_total += out_tok;
1068
1069 emit_json(&FileEvent {
1070 file: &file_path,
1071 name,
1072 status: "done",
1073 memory_id: Some(memory_id),
1074 entities: Some(ent_count),
1075 rels: Some(rel_count),
1076 cost_usd: None,
1077 input_tokens: Some(in_tok),
1078 output_tokens: Some(out_tok),
1079 elapsed_ms: Some(file_started.elapsed().as_millis() as u64),
1080 error: None,
1081 index: current_index,
1082 total,
1083 });
1084 } else if let Some(ref err_str) = last_extract_err {
1085 if last_was_rate_limited {
1086 if crate::retry::is_kill_switch_active() {
1087 tracing::warn!(target: "ingest", "SQLITE_GRAPHRAG_DISABLE_RETRY=1, skipping rate-limit retry");
1088 } else if std::time::Instant::now() >= rate_limit_deadline {
1089 tracing::error!(target: "ingest", "rate-limit retry deadline (1h) exhausted");
1090 } else {
1091 let half = backoff_secs / 2;
1092 let jitter = if half == 0 { 0 } else { fastrand::u64(0..half) };
1093 let actual_wait = half + jitter;
1094 tracing::warn!(target: "ingest", delay_secs = actual_wait, error_kind = "rate_limited", "Codex rate limited, backing off");
1095 let _ = queue_conn.execute(
1096 "UPDATE queue SET status='pending' WHERE id=?1",
1097 rusqlite::params![queue_id],
1098 );
1099 std::thread::sleep(std::time::Duration::from_secs(actual_wait));
1100 backoff_secs = (backoff_secs * 2).min(900);
1101 continue;
1102 }
1103 } else {
1104 let _ = queue_conn.execute(
1105 "UPDATE queue SET status='failed', error=?1, done_at=datetime('now') WHERE id=?2",
1106 rusqlite::params![err_str, queue_id],
1107 );
1108 let current_index = completed + failed + skipped;
1109 failed += 1;
1110 emit_json(&FileEvent {
1111 file: &file_path,
1112 name: "",
1113 status: "failed",
1114 memory_id: None,
1115 entities: None,
1116 rels: None,
1117 cost_usd: None,
1118 input_tokens: None,
1119 output_tokens: None,
1120 elapsed_ms: Some(file_started.elapsed().as_millis() as u64),
1121 error: Some(err_str),
1122 index: current_index,
1123 total,
1124 });
1125 if args.fail_fast {
1126 break;
1127 }
1128 }
1129 }
1130 }
1131
1132 let _ = conn.execute_batch("PRAGMA wal_checkpoint(PASSIVE);");
1134
1135 emit_json(&Summary {
1137 summary: true,
1138 files_total: total,
1139 completed,
1140 failed,
1141 skipped,
1142 entities_total,
1143 rels_total,
1144 input_tokens_total,
1145 output_tokens_total,
1146 elapsed_ms: started.elapsed().as_millis() as u64,
1147 });
1148
1149 if !args.keep_queue && failed == 0 {
1150 let _ = std::fs::remove_file(&args.queue_db);
1151 }
1152
1153 Ok(())
1154}
1155
1156#[cfg(test)]
1157mod tests {
1158 use super::*;
1159
1160 fn make_agent_message_event(text: &str) -> String {
1161 format!(
1162 r#"{{"type":"item.completed","item":{{"id":"item_0","type":"agent_message","text":{}}}}}"#,
1163 serde_json::to_string(text).unwrap()
1164 )
1165 }
1166
1167 fn make_usage_event(input: u64, output: u64) -> String {
1168 format!(
1169 r#"{{"type":"turn.completed","usage":{{"input_tokens":{input},"output_tokens":{output}}}}}"#
1170 )
1171 }
1172
1173 fn valid_extraction_json() -> String {
1174 r#"{"name":"test-module","description":"A test module for unit testing purposes","entities":[{"name":"test-entity","entity_type":"concept"}],"relationships":[{"source":"test-entity","target":"test-module","relation":"applies-to","strength":0.8}]}"#.to_string()
1175 }
1176
1177 #[test]
1178 fn test_parse_codex_output_valid() {
1179 let jsonl = format!(
1180 "{}\n{}\n{}",
1181 r#"{"type":"thread.started","thread_id":"t1"}"#,
1182 make_agent_message_event(&valid_extraction_json()),
1183 make_usage_event(100, 50),
1184 );
1185
1186 let (result, usage) = parse_codex_output(&jsonl).expect("parse must succeed");
1187 assert_eq!(result.name, "test-module");
1188 assert_eq!(result.entities.len(), 1);
1189 assert_eq!(result.relationships.len(), 1);
1190 let u = usage.expect("usage must be present");
1191 assert_eq!(u.input_tokens, 100);
1192 assert_eq!(u.output_tokens, 50);
1193 }
1194
1195 #[test]
1196 fn test_parse_codex_output_turn_failed() {
1197 let jsonl = format!(
1198 "{}\n{}",
1199 r#"{"type":"thread.started","thread_id":"t1"}"#,
1200 r#"{"type":"turn.failed","error":{"message":"model error occurred"}}"#,
1201 );
1202
1203 let err = parse_codex_output(&jsonl).unwrap_err();
1204 let msg = format!("{err}");
1205 assert!(
1206 msg.contains("turn failed"),
1207 "expected 'turn failed' in: {msg}"
1208 );
1209 assert!(msg.contains("model error occurred"));
1210 }
1211
1212 #[test]
1213 fn test_parse_codex_output_rate_limit() {
1214 let jsonl = r#"{"type":"turn.failed","error":{"message":"rate_limit exceeded, 429 Too Many Requests"}}"#;
1215
1216 let err = parse_codex_output(jsonl).unwrap_err();
1217 assert!(
1218 matches!(err, AppError::RateLimited { .. }),
1219 "expected AppError::RateLimited, got: {err}"
1220 );
1221 }
1222
1223 #[test]
1224 fn test_parse_codex_output_schema_error() {
1225 let jsonl = r#"{"type":"error","message":"invalid_json_schema: additional properties not allowed"}"#;
1226
1227 let err = parse_codex_output(jsonl).unwrap_err();
1228 let msg = format!("{err}");
1229 assert!(
1230 msg.contains("invalid_json_schema") || msg.contains("schema"),
1231 "expected schema error in: {msg}"
1232 );
1233 }
1234
1235 #[test]
1236 fn test_extraction_schema_codex_valid_json() {
1237 let _: serde_json::Value =
1238 serde_json::from_str(EXTRACTION_SCHEMA_CODEX).expect("schema must be valid JSON");
1239 }
1240
1241 #[test]
1242 fn test_extraction_schema_codex_has_additional_properties_false() {
1243 let schema: serde_json::Value =
1244 serde_json::from_str(EXTRACTION_SCHEMA_CODEX).expect("schema must be valid JSON");
1245
1246 assert_eq!(
1248 schema["additionalProperties"].as_bool(),
1249 Some(false),
1250 "root must have additionalProperties: false"
1251 );
1252
1253 assert_eq!(
1255 schema["properties"]["entities"]["items"]["additionalProperties"].as_bool(),
1256 Some(false),
1257 "entity items must have additionalProperties: false"
1258 );
1259
1260 assert_eq!(
1262 schema["properties"]["relationships"]["items"]["additionalProperties"].as_bool(),
1263 Some(false),
1264 "relationship items must have additionalProperties: false"
1265 );
1266 }
1267
1268 #[test]
1269 fn test_parse_codex_output_last_agent_message_wins() {
1270 let first_text = r#"{"name":"first-result","description":"First result should be ignored","entities":[],"relationships":[]}"#;
1272 let second_text = r#"{"name":"final-result","description":"Final result wins over earlier ones","entities":[{"name":"final-entity","entity_type":"concept"}],"relationships":[]}"#;
1273
1274 let jsonl = format!(
1275 "{}\n{}\n{}\n{}",
1276 r#"{"type":"thread.started","thread_id":"t1"}"#,
1277 make_agent_message_event(first_text),
1278 make_agent_message_event(second_text),
1279 make_usage_event(200, 80),
1280 );
1281
1282 let (result, _) = parse_codex_output(&jsonl).expect("parse must succeed");
1283 assert_eq!(result.name, "final-result", "last agent_message should win");
1284 assert_eq!(result.entities.len(), 1);
1285 }
1286
1287 #[test]
1288 fn test_parse_codex_output_skips_malformed_lines() {
1289 let jsonl = format!(
1290 "not json at all\n{}\n{{broken\n{}",
1291 make_agent_message_event(&valid_extraction_json()),
1292 make_usage_event(10, 5),
1293 );
1294
1295 let (result, _) = parse_codex_output(&jsonl).expect("malformed lines must be skipped");
1297 assert_eq!(result.name, "test-module");
1298 }
1299}