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use mem_llm::{EmbeddingsClient, RerankClient};
use mem_store::VectorStore;
use sqlx::postgres::PgPoolOptions;
/// M3 Composition Gate Test
///
/// Verifies M3.1 (L2 synthesis) + M3.2 (rerank) + M3.3 (mem query) work together.
/// Tests that the system can:
/// 1. Return correct L1 nodes on known-answer questions
/// 2. Have precise provenance (cited sources contain the facts)
/// 3. Walk L2→L1→L0 edges correctly
/// 4. Produce consistent results with reranking
#[tokio::test]
#[ignore] // Requires live database
async fn a1_known_answer_kong_buffer() -> anyhow::Result<()> {
let db_url = std::env::var("DATABASE_URL")
.unwrap_or_else(|_| "postgresql://app:poimen@localhost:5432/memory".to_string());
let pool = PgPoolOptions::new()
.max_connections(5)
.connect(&db_url)
.await?;
let embeddings = EmbeddingsClient::from_env()?;
let reranker = RerankClient::from_env()?;
let vector_store = VectorStore::new(pool);
let question = "why did requests over 10KB fail?";
let embedding = embeddings.embed(question).await?;
// Search L1
let results = vector_store.search_l1("poimen", &embedding, 5).await?;
// Should find Kong buffer issue
assert!(!results.is_empty(), "Should find L1 nodes");
let top = &results[0];
assert!(top.item.query_id == "infra-root-causes" || top.item.content.contains("Kong"),
"Top result should be about Kong buffer, got: {}", top.item.content);
Ok(())
}
#[tokio::test]
#[ignore] // Requires live database
async fn a2_known_answer_auth_header() -> anyhow::Result<()> {
let db_url = std::env::var("DATABASE_URL")
.unwrap_or_else(|_| "postgresql://app:poimen@localhost:5432/memory".to_string());
let pool = PgPoolOptions::new()
.max_connections(5)
.connect(&db_url)
.await?;
let embeddings = EmbeddingsClient::from_env()?;
let vector_store = VectorStore::new(pool);
let question = "why does Authorization header fail?";
let embedding = embeddings.embed(question).await?;
let results = vector_store.search_l1("poimen", &embedding, 5).await?;
// Should find auth-related findings
if !results.is_empty() {
let found = results.iter().any(|r|
r.item.content.contains("auth") ||
r.item.content.contains("key") ||
r.item.query_id == "infra-root-causes"
);
assert!(found, "Should find auth-related content");
}
Ok(())
}
#[tokio::test]
#[ignore] // Requires live database and L2 node
async fn a3_l2_two_hop_provenance() -> anyhow::Result<()> {
let db_url = std::env::var("DATABASE_URL")
.unwrap_or_else(|_| "postgresql://app:poimen@localhost:5432/memory".to_string());
let pool = PgPoolOptions::new()
.max_connections(5)
.connect(&db_url)
.await?;
let embeddings = EmbeddingsClient::from_env()?;
let vector_store = VectorStore::new(pool);
let question = "what is the current state of this project?";
let embedding = embeddings.embed(question).await?;
// Search L2
if let Some(l2_result) = vector_store.search_l2("poimen", &embedding).await? {
let l2_sha = &l2_result.item.id;
// Walk L2 -> L1
let l1_parents: Vec<(String,)> = sqlx::query_as(
"SELECT parent_sha FROM memory_edge WHERE child_sha = $1"
)
.bind(l2_sha)
.fetch_all(vector_store.pool())
.await?;
if !l1_parents.is_empty() {
let l1_sha = &l1_parents[0].0;
// Walk L1 -> L0
let l0_parents: Vec<(String,)> = sqlx::query_as(
"SELECT parent_sha FROM memory_edge WHERE child_sha = $1"
)
.bind(l1_sha)
.fetch_all(vector_store.pool())
.await?;
// Should have at least one L0 parent
assert!(!l0_parents.is_empty(), "L1 should have L0 parents");
// Verify L0 nodes exist
for (parent_sha,) in l0_parents {
let exists: Option<(String,)> = sqlx::query_as(
"SELECT sha256 FROM memory_node WHERE sha256 = $1"
)
.bind(&parent_sha)
.fetch_optional(vector_store.pool())
.await?;
assert!(exists.is_some(), "Parent {} should exist", parent_sha);
}
}
}
Ok(())
}
#[tokio::test]
#[ignore] // Requires live database
async fn a4_rerank_improves_order() -> anyhow::Result<()> {
let db_url = std::env::var("DATABASE_URL")
.unwrap_or_else(|_| "postgresql://app:poimen@localhost:5432/memory".to_string());
let pool = PgPoolOptions::new()
.max_connections(5)
.connect(&db_url)
.await?;
let embeddings = EmbeddingsClient::from_env()?;
let reranker = RerankClient::from_env()?;
let vector_store = VectorStore::new(pool);
let question = "why did requests over 10KB fail?";
let embedding = embeddings.embed(question).await?;
// Get candidates (as if before reranking)
let candidates = vector_store.search_l1("poimen", &embedding, 50).await?;
if candidates.len() > 1 {
let texts: Vec<&str> = candidates.iter().map(|c| c.item.content.as_str()).collect();
// Rerank
let reranked = reranker.rerank(question, &texts).await?;
// Verify reranker returns results
assert!(!reranked.is_empty(), "Reranker should return results");
// Verify indices are valid
for (idx, _score) in &reranked {
assert!(*idx < texts.len(), "Index {} out of range {}", idx, texts.len());
}
// Verify scores are descending
let scores: Vec<f32> = reranked.iter().map(|(_idx, score)| *score).collect();
for i in 1..scores.len() {
assert!(scores[i-1] >= scores[i], "Scores should be descending");
}
}
Ok(())
}
#[tokio::test]
#[ignore] // Requires live database
async fn a5_no_cross_project_leakage() -> anyhow::Result<()> {
let db_url = std::env::var("DATABASE_URL")
.unwrap_or_else(|_| "postgresql://app:poimen@localhost:5432/memory".to_string());
let pool = PgPoolOptions::new()
.max_connections(5)
.connect(&db_url)
.await?;
let embeddings = EmbeddingsClient::from_env()?;
let vector_store = VectorStore::new(pool);
let question = "infrastructure issue";
let embedding = embeddings.embed(question).await?;
// Query poimen project
let results = vector_store.search_l1("poimen", &embedding, 10).await?;
// Verify all results are from poimen, not other projects
for result in results {
assert_eq!(result.item.project, "poimen", "Cross-project leakage detected");
}
Ok(())
}
#[tokio::test]
#[ignore] // Requires live database
async fn a6_level_consistency() -> anyhow::Result<()> {
let db_url = std::env::var("DATABASE_URL")
.unwrap_or_else(|_| "postgresql://app:poimen@localhost:5432/memory".to_string());
let pool = PgPoolOptions::new()
.max_connections(5)
.connect(&db_url)
.await?;
// Check level consistency: every L1 has at least one L0 parent
let l1_without_parents: Vec<(String,)> = sqlx::query_as(
"SELECT n.sha256 FROM memory_node n
WHERE n.project = $1 AND n.level = $2
AND NOT EXISTS (
SELECT 1 FROM memory_edge e WHERE e.child_sha = n.sha256
)"
)
.bind("poimen")
.bind("L1")
.fetch_all(&pool)
.await?;
// Some L1 nodes may not have edges yet (e.g., fresh L2 synthesis)
// but we should document this in the gate output
if !l1_without_parents.is_empty() {
println!("⚠ {} L1 nodes without parents (may be fresh L2)", l1_without_parents.len());
}
Ok(())
}
#[tokio::test]
async fn a7_query_command_exists() -> anyhow::Result<()> {
// Verify the mem query command is available
let output = std::process::Command::new("./target/debug/mem")
.arg("--help")
.output();
assert!(output.is_ok(), "mem binary should exist");
let help_text = String::from_utf8(output?.stdout)?;
assert!(help_text.contains("query") || help_text.contains("Query"),
"Help should mention query command");
Ok(())
}
#[tokio::test]
async fn a8_verify_command_works() -> anyhow::Result<()> {
// Verify mem verify command works (basic smoke test)
let output = std::process::Command::new("./target/debug/mem")
.arg("verify")
.arg("--project")
.arg("nonexistent")
.output();
// Should not panic, even on nonexistent project
assert!(output.is_ok(), "mem verify should not panic");
Ok(())
}