Files
poimen-memory/crates/mem-store/src/rebuild.rs
T

244 lines
7.9 KiB
Rust

use anyhow::{anyhow, Result};
use std::collections::HashMap;
use std::fs;
use std::path::{Path, PathBuf};
use sha2::{Digest, Sha256};
use serde::{Deserialize, Serialize};
use crate::{MemoryNode, Level, PgRepo};
/// Memory record from log (local copy for rebuild purposes)
#[derive(Debug, Clone, Serialize, Deserialize)]
struct MemoryRecord {
pub level: String,
pub project: String,
pub query_id: Option<String>,
pub text: String,
pub run_id: String,
pub t: i32,
pub source: Option<String>,
pub parents: Vec<MemoryParent>,
}
/// Parent reference for provenance
#[derive(Debug, Clone, Serialize, Deserialize)]
struct MemoryParent {
pub source: String,
pub t: i32,
pub description: Option<String>,
}
/// Rebuild options
#[derive(Debug, Clone)]
pub struct RebuildOpts {
pub project: String,
pub allow_partial: bool, // Allow rebuilding from incomplete logs
pub embedding_cache_dir: Option<PathBuf>,
pub log_dir: Option<PathBuf>,
}
/// Rebuild statistics
#[derive(Debug, Clone, Default)]
pub struct RebuildStats {
pub nodes_l0: i64,
pub nodes_l1: i64,
pub nodes_l2: i64,
pub edges: i64,
pub embeddings_computed: i64,
pub embeddings_cached: i64,
}
/// Rebuild orchestrator: rebuild database from log (vault projection delegated to Obsidian service)
pub struct RebuildEngine {
repo: PgRepo,
}
impl RebuildEngine {
/// Create rebuild engine with Postgres connection
pub async fn new(db_url: &str) -> Result<Self> {
let repo = PgRepo::connect(db_url).await?;
Ok(Self { repo })
}
/// Execute database rebuild: clear → insert nodes → insert edges
///
/// Order matters: nodes first (foreign key constraint), then edges.
/// Vault projection delegated to Obsidian service.
pub async fn rebuild(&self, opts: RebuildOpts) -> Result<RebuildStats> {
let log_dir = opts.log_dir.unwrap_or_else(|| PathBuf::from("log"));
let cache_dir = opts
.embedding_cache_dir
.clone()
.unwrap_or_else(|| PathBuf::from(".cache"));
// Create cache directory
fs::create_dir_all(&cache_dir)?;
// Read all memories from log files
let memories = Self::read_log_memories(&log_dir, &opts.project, opts.allow_partial).await?;
let mut stats = RebuildStats::default();
// PASS 1: Clear project
self.repo.clear_project(&opts.project).await?;
// PASS 2: Insert all nodes (convert memories to nodes, batch embeddings)
{
let mut nodes_by_sha: HashMap<String, MemoryNode> = HashMap::new();
let mut sha_to_level: HashMap<String, Level> = HashMap::new();
let mut sha_to_parents: HashMap<String, Vec<String>> = HashMap::new();
for memory in &memories {
let sha = Self::memory_sha(&memory.text);
let level = match memory.level.as_str() {
"L0" => Level::L0,
"L1" => Level::L1,
"L2" => Level::L2,
"R" => Level::R,
_ => continue,
};
let node = MemoryNode {
sha256: sha.clone(),
level,
project: memory.project.clone(),
query_id: memory.query_id.clone(),
run_id: memory.run_id.clone(),
t: memory.t,
source: memory.source.clone(),
text: memory.text.clone(),
};
nodes_by_sha.insert(sha.clone(), node);
sha_to_level.insert(sha.clone(), level);
// Track parents from provenance
let parent_shas: Vec<String> = memory
.parents
.iter()
.map(|p| Self::parent_sha(&p.source, p.t))
.collect();
if !parent_shas.is_empty() {
sha_to_parents.insert(sha, parent_shas);
}
}
// Upsert all nodes
for node in nodes_by_sha.values() {
self.repo.upsert_node(node).await?;
}
stats.nodes_l0 = nodes_by_sha.values().filter(|n| n.level == Level::L0).count() as i64;
stats.nodes_l1 = nodes_by_sha.values().filter(|n| n.level == Level::L1).count() as i64;
stats.nodes_l2 = nodes_by_sha.values().filter(|n| n.level == Level::L2).count() as i64;
// PASS 3: Insert edges (after all nodes exist)
for (child_sha, parent_shas) in sha_to_parents {
self.repo.insert_edges(&child_sha, &parent_shas).await?;
stats.edges += parent_shas.len() as i64;
}
// TODO: Batch embeddings with embedding cache
// For now, mock stats
stats.embeddings_cached = 0;
stats.embeddings_computed = 0;
}
Ok(stats)
}
/// Read all memory records from log directory
///
/// Returns error if any log is incomplete (no `run_end`) unless `allow_partial`
pub async fn read_log_memories(
log_dir: &Path,
project: &str,
allow_partial: bool,
) -> Result<Vec<MemoryRecord>> {
let mut memories = Vec::new();
// Look for log/project/ directory
let project_dir = log_dir.join(project);
if !project_dir.exists() {
return Ok(memories);
}
// Iterate over query directories
for entry in fs::read_dir(&project_dir)? {
let query_dir = entry?.path();
if !query_dir.is_dir() {
continue;
}
// Iterate over run files
for run_entry in fs::read_dir(&query_dir)? {
let run_file = run_entry?.path();
if run_file.extension().map(|e| e != "jsonl").unwrap_or(true) {
continue;
}
// Read JSONL file
let contents = fs::read_to_string(&run_file)?;
for line in contents.lines() {
if line.trim().is_empty() {
continue;
}
// Parse memory record (simplified — real implementation parses event log)
if let Ok(memory) = serde_json::from_str::<MemoryRecord>(line) {
memories.push(memory);
}
}
// Check for run_end (simplified — would need full log parsing)
if !allow_partial && !contents.contains("run_end") {
return Err(anyhow!(
"Incomplete log: {} (missing run_end). Use --allow-partial to ignore.",
run_file.display()
));
}
}
}
Ok(memories)
}
/// Compute stable sha256 for memory text (content identity)
pub fn memory_sha(text: &str) -> String {
let mut hasher = Sha256::new();
hasher.update(text.as_bytes());
format!("{:x}", hasher.finalize())
}
/// Compute parent sha from source + timestamp
fn parent_sha(source: &str, t: i32) -> String {
format!("{}-{}", source, t)
}
}
#[cfg(test)]
mod tests {
use super::*;
#[test]
fn test_memory_sha_deterministic() {
let text = "same content";
let sha1 = RebuildEngine::memory_sha(text);
let sha2 = RebuildEngine::memory_sha(text);
assert_eq!(sha1, sha2, "Same content must produce same SHA");
}
#[test]
fn test_memory_sha_differs() {
let sha1 = RebuildEngine::memory_sha("content a");
let sha2 = RebuildEngine::memory_sha("content b");
assert_ne!(sha1, sha2, "Different content must produce different SHAs");
}
#[test]
fn test_parent_sha_format() {
let parent_sha = RebuildEngine::parent_sha("pi", 42);
assert_eq!(parent_sha, "pi-42");
}
}