dashboard-v2 PR 1: design doc + backend read-only endpoints #92
@@ -29,6 +29,7 @@ mod hot;
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mod manifest;
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mod restore;
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mod serve;
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mod serve_v2;
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mod snapshot;
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mod sync;
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mod zfs;
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@@ -27,6 +27,7 @@ pub mod hot;
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pub mod manifest;
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pub mod restore;
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pub mod serve;
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pub mod serve_v2;
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pub mod snapshot;
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pub mod sync;
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pub mod zfs;
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@@ -8,6 +8,7 @@ mod hot;
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mod manifest;
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mod restore;
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mod serve;
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mod serve_v2;
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mod snapshot;
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mod sync;
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mod zfs;
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@@ -693,7 +693,15 @@ pub fn build_app(cfg: Config, manifest_path: PathBuf, static_dir: Option<PathBuf
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api = api.fallback_service(tower_http::services::ServeDir::new(dir));
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}
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api.layer(cors).with_state(state)
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// dashboard-v2 backend (docs/dashboard-v2.md). Additive alongside
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// the legacy /api/* routes above so the cutover doesn't break the
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// old dashboard while the new one is being iterated on.
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let v2_state = std::sync::Arc::new(crate::serve_v2::V2State::from_config(&state.cfg));
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let v2_routes = crate::serve_v2::routes().with_state(v2_state);
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Router::new()
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.merge(api.layer(cors.clone()).with_state(state))
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.merge(v2_routes.layer(cors))
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}
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pub async fn run_server(
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@@ -0,0 +1,561 @@
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//! dashboard-v2 backend — additive `/api/v2/*` handlers.
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//!
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//! Reads the distributed-architecture stores (BlobStore, TagStore,
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//! RefStore, SnapshotStore, RefTracking). Kept in a separate file
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//! from `serve.rs` so the legacy ZFS-era handlers there can be
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//! removed cleanly at cutover without a big rebase.
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//!
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//! Design + endpoint spec: `docs/dashboard-v2.md`.
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//!
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//! Single-node reads in this cut. Cross-node fleet aggregation
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//! (fan-out via QUIC RPC) lands in a follow-on PR.
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use axum::{
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extract::{Path, Query, State},
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routing::get,
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Json, Router,
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};
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use serde::{Deserialize, Serialize};
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use std::path::PathBuf;
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use std::sync::Arc;
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use crate::cluster::blob::{BlobId, BlobStore};
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use crate::cluster::ref_tracking::{RefEntry, RefTracking};
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use crate::cluster::refs::RefStore;
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use crate::cluster::snapshot::SnapshotStore;
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use crate::cluster::tags::TagStore;
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use crate::config::Config;
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/// Runtime shared by all v2 handlers. Cheap clones — inner types
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/// are `Arc<_>` or filesystem-backed with no in-memory state.
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#[derive(Clone)]
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pub struct V2State {
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pub node_name: String,
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pub blob_store_root: Option<PathBuf>,
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}
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impl V2State {
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pub fn from_config(cfg: &Config) -> Self {
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let blob_store_root = cfg
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.cluster
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.as_ref()
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.and_then(|c| c.blob_store_root.clone());
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Self {
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node_name: cfg.node.name.clone(),
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blob_store_root,
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}
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}
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fn open_blob(&self) -> Option<BlobStore> {
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let root = self.blob_store_root.as_ref()?;
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BlobStore::open(root.clone()).ok()
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}
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fn open_tags(&self) -> Option<TagStore> {
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let root = self.blob_store_root.as_ref()?;
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TagStore::open(root.join("tags-db")).ok()
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}
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fn open_refs(&self) -> Option<RefStore> {
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let root = self.blob_store_root.as_ref()?;
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RefStore::open(root.join("refs-db")).ok()
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}
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fn open_snapshots(&self) -> Option<SnapshotStore> {
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let root = self.blob_store_root.as_ref()?;
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SnapshotStore::open(root.clone()).ok()
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}
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fn open_ref_tracking(&self) -> Option<RefTracking> {
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let root = self.blob_store_root.as_ref()?;
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RefTracking::open(root.clone()).ok()
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}
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}
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// ── request / response shapes ────────────────────────────────────
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#[derive(Serialize, Deserialize)]
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pub struct NodeStatusV2 {
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pub node_name: String,
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pub blob_store_root: Option<PathBuf>,
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pub blob_count: usize,
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pub tag_count: usize,
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pub ref_count: usize,
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pub snapshot_count: usize,
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pub ref_tracking_count: usize,
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pub blob_store_bytes: u64,
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}
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#[derive(Deserialize)]
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pub struct Pagination {
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#[serde(default = "default_limit")]
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pub limit: usize,
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#[serde(default)]
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pub offset: usize,
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}
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fn default_limit() -> usize {
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200
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}
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#[derive(Serialize, Deserialize)]
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pub struct BlobSummary {
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pub blob_id_hex: String,
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pub size_bytes: u64,
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pub chunk_count: usize,
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}
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#[derive(Serialize, Deserialize)]
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pub struct TagSummaryV2 {
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pub key: String,
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pub value_hex: String,
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}
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#[derive(Deserialize)]
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pub struct TagFilter {
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#[serde(default)]
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pub prefix: String,
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}
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#[derive(Serialize, Deserialize)]
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pub struct RefSummary {
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pub fingerprint_hex: String,
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pub blob_id_hex: String,
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}
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#[derive(Serialize, Deserialize)]
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pub struct SnapshotSummaryV2 {
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pub name: String,
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pub created_at_unix: u64,
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pub blob_count: usize,
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pub file_bytes: u64,
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}
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#[derive(Serialize, Deserialize)]
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pub struct RefTrackingItem {
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pub fingerprint_hex: String,
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pub repo: String,
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pub refs: Vec<String>,
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pub first_seen_unix: u64,
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pub last_seen_unix: u64,
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}
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impl From<RefEntry> for RefTrackingItem {
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fn from(e: RefEntry) -> Self {
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let mut hex = String::with_capacity(64);
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for b in &e.fingerprint {
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hex.push_str(&format!("{b:02x}"));
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}
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Self {
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fingerprint_hex: hex,
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repo: e.repo,
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refs: e.refs,
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first_seen_unix: e.first_seen_unix,
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last_seen_unix: e.last_seen_unix,
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}
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}
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}
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#[derive(Deserialize)]
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pub struct RefTrackingFilter {
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#[serde(default)]
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pub repo: String,
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}
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#[derive(Serialize)]
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pub struct EmptyReason {
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pub reason: String,
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}
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// ── handlers ─────────────────────────────────────────────────────
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async fn handle_status(State(s): State<Arc<V2State>>) -> Json<NodeStatusV2> {
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let blob = s.open_blob();
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let tags = s.open_tags();
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let refs = s.open_refs();
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let snaps = s.open_snapshots();
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let rt = s.open_ref_tracking();
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let root = s.blob_store_root.clone();
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let blob_count = match &blob {
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Some(b) => b.list_blob_ids().await.map(|v| v.len()).unwrap_or(0),
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None => 0,
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};
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let tag_count = match &tags {
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Some(t) => t.list().await.map(|v| v.len()).unwrap_or(0),
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None => 0,
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};
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let ref_count = match &refs {
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Some(r) => r.list().await.map(|v| v.len()).unwrap_or(0),
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None => 0,
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};
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let snapshot_count = match &snaps {
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Some(s) => s.list().await.map(|v| v.len()).unwrap_or(0),
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None => 0,
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};
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let ref_tracking_count = match &rt {
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Some(r) => r.list_all().await.map(|v| v.len()).unwrap_or(0),
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None => 0,
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};
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let blob_store_bytes = match &root {
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Some(p) => dir_size_bytes(p),
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None => 0,
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};
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Json(NodeStatusV2 {
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node_name: s.node_name.clone(),
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blob_store_root: root,
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blob_count,
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tag_count,
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ref_count,
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snapshot_count,
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ref_tracking_count,
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blob_store_bytes,
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})
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}
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async fn handle_node_status(
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State(s): State<Arc<V2State>>,
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Path(name): Path<String>,
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) -> Result<Json<NodeStatusV2>, (axum::http::StatusCode, Json<EmptyReason>)> {
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// Single-node cut: only "local" or "<own name>" resolves.
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// Cross-node lookup lands with the fleet fan-out follow-on.
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if name != "local" && name != s.node_name {
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return Err((
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axum::http::StatusCode::NOT_IMPLEMENTED,
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Json(EmptyReason {
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reason: format!(
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"cross-node lookup not yet implemented; requested {name}, this is {}",
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s.node_name
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),
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}),
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));
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}
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Ok(handle_status(State(s)).await)
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}
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async fn handle_blobs(
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State(s): State<Arc<V2State>>,
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Query(p): Query<Pagination>,
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) -> Json<Vec<BlobSummary>> {
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let store = match s.open_blob() {
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Some(b) => b,
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None => return Json(Vec::new()),
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};
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let mut ids = store.list_blob_ids().await.unwrap_or_default();
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ids.sort();
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let store = std::sync::Arc::new(store);
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let out = ids.into_iter().skip(p.offset).take(p.limit).map(|id| {
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let store = store.clone();
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async move {
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let manifest = store.load_manifest(&id).await.ok().flatten();
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BlobSummary {
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blob_id_hex: id.to_hex(),
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size_bytes: manifest.as_ref().map(|m| m.total_size).unwrap_or(0),
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chunk_count: manifest.map(|m| m.chunks.len()).unwrap_or(0),
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}
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}
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});
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let collected: Vec<BlobSummary> = futures_join(out).await;
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Json(collected)
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}
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async fn handle_tags(
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State(s): State<Arc<V2State>>,
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Query(f): Query<TagFilter>,
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) -> Json<Vec<TagSummaryV2>> {
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let store = match s.open_tags() {
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Some(t) => t,
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None => return Json(Vec::new()),
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};
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let entries = store.list().await.unwrap_or_default();
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let out: Vec<_> = entries
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.into_iter()
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.filter(|e| f.prefix.is_empty() || e.key.starts_with(&f.prefix))
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.map(|e| TagSummaryV2 {
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key: e.key,
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value_hex: e.value_hex,
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})
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.collect();
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Json(out)
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}
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async fn handle_refs(
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State(s): State<Arc<V2State>>,
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Query(p): Query<Pagination>,
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) -> Json<Vec<RefSummary>> {
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let store = match s.open_refs() {
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Some(r) => r,
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None => return Json(Vec::new()),
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};
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let all = store.list().await.unwrap_or_default();
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let out: Vec<_> = all
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.into_iter()
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.skip(p.offset)
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.take(p.limit)
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.map(|(k, v)| {
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let mut kh = String::with_capacity(64);
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for b in &k {
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kh.push_str(&format!("{b:02x}"));
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}
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RefSummary {
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fingerprint_hex: kh,
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blob_id_hex: BlobId::from_bytes(v).to_hex(),
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}
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})
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.collect();
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Json(out)
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}
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async fn handle_snapshots(State(s): State<Arc<V2State>>) -> Json<Vec<SnapshotSummaryV2>> {
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let store = match s.open_snapshots() {
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Some(s) => s,
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None => return Json(Vec::new()),
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};
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let entries = store.list().await.unwrap_or_default();
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let out: Vec<_> = entries
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.into_iter()
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.map(|s| SnapshotSummaryV2 {
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name: s.name,
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created_at_unix: s.created_at_unix,
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blob_count: s.blob_count,
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file_bytes: s.file_bytes,
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})
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.collect();
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Json(out)
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}
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async fn handle_ref_tracking(
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State(s): State<Arc<V2State>>,
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Query(f): Query<RefTrackingFilter>,
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) -> Json<Vec<RefTrackingItem>> {
|
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let store = match s.open_ref_tracking() {
|
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Some(r) => r,
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None => return Json(Vec::new()),
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};
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let all = store.list_all().await.unwrap_or_default();
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let out: Vec<_> = all
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.into_iter()
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.filter(|e| f.repo.is_empty() || e.repo == f.repo)
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.map(RefTrackingItem::from)
|
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.collect();
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Json(out)
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}
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|
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// ── helpers ──────────────────────────────────────────────────────
|
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|
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/// Recursive byte count. Silent on read errors — used only for
|
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/// reporting, not correctness.
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fn dir_size_bytes(root: &std::path::Path) -> u64 {
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let mut total: u64 = 0;
|
||||
let mut stack = vec![root.to_path_buf()];
|
||||
while let Some(dir) = stack.pop() {
|
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let entries = match std::fs::read_dir(&dir) {
|
||||
Ok(e) => e,
|
||||
Err(_) => continue,
|
||||
};
|
||||
for entry in entries.flatten() {
|
||||
let ft = match entry.file_type() {
|
||||
Ok(t) => t,
|
||||
Err(_) => continue,
|
||||
};
|
||||
if ft.is_dir() {
|
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stack.push(entry.path());
|
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} else if ft.is_file() {
|
||||
if let Ok(m) = entry.metadata() {
|
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total = total.saturating_add(m.len());
|
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}
|
||||
}
|
||||
}
|
||||
}
|
||||
total
|
||||
}
|
||||
|
||||
/// Sequentially resolve N per-item async closures. Kept simple —
|
||||
/// blob-metadata reads are I/O light and page-sized (200 default);
|
||||
/// concurrent-fan-out isn't worth the complexity here.
|
||||
async fn futures_join<F, T>(iter: impl Iterator<Item = F>) -> Vec<T>
|
||||
where
|
||||
F: std::future::Future<Output = T>,
|
||||
{
|
||||
let mut out = Vec::new();
|
||||
for f in iter {
|
||||
out.push(f.await);
|
||||
}
|
||||
out
|
||||
}
|
||||
|
||||
// ── route registration ──────────────────────────────────────────
|
||||
|
||||
/// Attach the v2 route tree onto an existing axum Router.
|
||||
///
|
||||
/// Caller supplies the v2 state via `.with_state(state)` when
|
||||
/// building the final router.
|
||||
pub fn routes() -> Router<Arc<V2State>> {
|
||||
Router::new()
|
||||
.route("/api/v2/node/local/status", get(handle_status))
|
||||
.route("/api/v2/node/:name/status", get(handle_node_status))
|
||||
.route("/api/v2/storage/blobs", get(handle_blobs))
|
||||
.route("/api/v2/storage/tags", get(handle_tags))
|
||||
.route("/api/v2/storage/refs", get(handle_refs))
|
||||
.route("/api/v2/storage/snapshots", get(handle_snapshots))
|
||||
.route("/api/v2/storage/ref-tracking", get(handle_ref_tracking))
|
||||
}
|
||||
|
||||
#[cfg(test)]
|
||||
mod tests {
|
||||
use super::*;
|
||||
use axum::body::to_bytes;
|
||||
use axum::{body::Body, http::Request};
|
||||
use tempfile::TempDir;
|
||||
use tower::ServiceExt;
|
||||
|
||||
async fn seed_state() -> (TempDir, Arc<V2State>) {
|
||||
let tmp = TempDir::new().unwrap();
|
||||
let root = tmp.path().to_path_buf();
|
||||
// Seed one blob so /status has non-zero numbers.
|
||||
let store = BlobStore::open(root.clone()).unwrap();
|
||||
store.put_bytes(b"hello v2").await.unwrap();
|
||||
let snap = SnapshotStore::open(root.clone()).unwrap();
|
||||
snap.create("seed", &store, 42).await.unwrap();
|
||||
let state = Arc::new(V2State {
|
||||
node_name: "test-node".into(),
|
||||
blob_store_root: Some(root),
|
||||
});
|
||||
(tmp, state)
|
||||
}
|
||||
|
||||
#[tokio::test]
|
||||
async fn status_reports_seeded_blob_and_snapshot() {
|
||||
let (_tmp, state) = seed_state().await;
|
||||
let app: Router = routes().with_state(state);
|
||||
let resp = app
|
||||
.oneshot(
|
||||
Request::builder()
|
||||
.uri("/api/v2/node/local/status")
|
||||
.body(Body::empty())
|
||||
.unwrap(),
|
||||
)
|
||||
.await
|
||||
.unwrap();
|
||||
assert_eq!(resp.status(), axum::http::StatusCode::OK);
|
||||
let bytes = to_bytes(resp.into_body(), 65_536).await.unwrap();
|
||||
let body: NodeStatusV2 = serde_json::from_slice(&bytes).unwrap();
|
||||
assert_eq!(body.node_name, "test-node");
|
||||
assert_eq!(body.blob_count, 1);
|
||||
assert_eq!(body.snapshot_count, 1);
|
||||
assert!(body.blob_store_bytes > 0);
|
||||
}
|
||||
|
||||
#[tokio::test]
|
||||
async fn cross_node_status_returns_not_implemented() {
|
||||
let (_tmp, state) = seed_state().await;
|
||||
let app: Router = routes().with_state(state);
|
||||
let resp = app
|
||||
.oneshot(
|
||||
Request::builder()
|
||||
.uri("/api/v2/node/architect/status")
|
||||
.body(Body::empty())
|
||||
.unwrap(),
|
||||
)
|
||||
.await
|
||||
.unwrap();
|
||||
assert_eq!(resp.status(), axum::http::StatusCode::NOT_IMPLEMENTED);
|
||||
}
|
||||
|
||||
#[tokio::test]
|
||||
async fn blobs_endpoint_paginates() {
|
||||
let (_tmp, state) = seed_state().await;
|
||||
// Seed more blobs.
|
||||
if let Some(root) = &state.blob_store_root {
|
||||
let store = BlobStore::open(root.clone()).unwrap();
|
||||
for i in 0..5 {
|
||||
store
|
||||
.put_bytes(format!("payload-{i}").as_bytes())
|
||||
.await
|
||||
.unwrap();
|
||||
}
|
||||
}
|
||||
let app: Router = routes().with_state(state);
|
||||
let resp = app
|
||||
.oneshot(
|
||||
Request::builder()
|
||||
.uri("/api/v2/storage/blobs?limit=2&offset=1")
|
||||
.body(Body::empty())
|
||||
.unwrap(),
|
||||
)
|
||||
.await
|
||||
.unwrap();
|
||||
assert_eq!(resp.status(), axum::http::StatusCode::OK);
|
||||
let bytes = to_bytes(resp.into_body(), 65_536).await.unwrap();
|
||||
let body: Vec<BlobSummary> = serde_json::from_slice(&bytes).unwrap();
|
||||
assert_eq!(body.len(), 2);
|
||||
}
|
||||
|
||||
#[tokio::test]
|
||||
async fn tags_endpoint_filters_by_prefix() {
|
||||
let (_tmp, state) = seed_state().await;
|
||||
if let Some(root) = &state.blob_store_root {
|
||||
let ts = TagStore::open(root.join("tags-db")).unwrap();
|
||||
ts.put("clawverse:main:latest", &[0xAA; 32]).await.unwrap();
|
||||
ts.put("other:tag", &[0xBB; 32]).await.unwrap();
|
||||
}
|
||||
let app: Router = routes().with_state(state);
|
||||
let resp = app
|
||||
.oneshot(
|
||||
Request::builder()
|
||||
.uri("/api/v2/storage/tags?prefix=clawverse:")
|
||||
.body(Body::empty())
|
||||
.unwrap(),
|
||||
)
|
||||
.await
|
||||
.unwrap();
|
||||
let bytes = to_bytes(resp.into_body(), 65_536).await.unwrap();
|
||||
let body: Vec<TagSummaryV2> = serde_json::from_slice(&bytes).unwrap();
|
||||
assert_eq!(body.len(), 1);
|
||||
assert_eq!(body[0].key, "clawverse:main:latest");
|
||||
}
|
||||
|
||||
#[tokio::test]
|
||||
async fn snapshots_endpoint_returns_seeded() {
|
||||
let (_tmp, state) = seed_state().await;
|
||||
let app: Router = routes().with_state(state);
|
||||
let resp = app
|
||||
.oneshot(
|
||||
Request::builder()
|
||||
.uri("/api/v2/storage/snapshots")
|
||||
.body(Body::empty())
|
||||
.unwrap(),
|
||||
)
|
||||
.await
|
||||
.unwrap();
|
||||
let bytes = to_bytes(resp.into_body(), 65_536).await.unwrap();
|
||||
let body: Vec<SnapshotSummaryV2> = serde_json::from_slice(&bytes).unwrap();
|
||||
assert_eq!(body.len(), 1);
|
||||
assert_eq!(body[0].name, "seed");
|
||||
assert_eq!(body[0].created_at_unix, 42);
|
||||
}
|
||||
|
||||
#[tokio::test]
|
||||
async fn ref_tracking_filters_by_repo() {
|
||||
let (_tmp, state) = seed_state().await;
|
||||
if let Some(root) = &state.blob_store_root {
|
||||
let rt = RefTracking::open(root.clone()).unwrap();
|
||||
rt.record([0x11; 32], "r/x", "main", 100).await.unwrap();
|
||||
rt.record([0x22; 32], "r/y", "main", 100).await.unwrap();
|
||||
}
|
||||
let app: Router = routes().with_state(state);
|
||||
let resp = app
|
||||
.oneshot(
|
||||
Request::builder()
|
||||
.uri("/api/v2/storage/ref-tracking?repo=r/x")
|
||||
.body(Body::empty())
|
||||
.unwrap(),
|
||||
)
|
||||
.await
|
||||
.unwrap();
|
||||
let bytes = to_bytes(resp.into_body(), 65_536).await.unwrap();
|
||||
let body: Vec<RefTrackingItem> = serde_json::from_slice(&bytes).unwrap();
|
||||
assert_eq!(body.len(), 1);
|
||||
assert_eq!(body[0].repo, "r/x");
|
||||
}
|
||||
}
|
||||
@@ -0,0 +1,98 @@
|
||||
# dashboard-v2 — single-pane-of-glass command center
|
||||
|
||||
Redesign of the legacy `claw-store serve` dashboard for the current
|
||||
distributed architecture.
|
||||
|
||||
## Design goals
|
||||
|
||||
1. **One URL for the whole fleet.** Hit any node's `:7700`; that node
|
||||
fans out to every peer via existing QUIC RPC and serves an
|
||||
aggregated view. No "3 browser tabs" pattern.
|
||||
2. **Command-center landing page.** At-a-glance health strip + key
|
||||
metrics + recent-events feed. Operator answers "is anything on
|
||||
fire?" in <2 s.
|
||||
3. **Node-detail drill-down.** Click any node in the strip → detail
|
||||
page with per-node metrics, timers, storage counts, journal tail.
|
||||
4. **Cross-cutting content browsers.** Blobs / Tags / Refs / Snapshots
|
||||
aggregated across the fleet, searchable, click-through to detail.
|
||||
5. **Trigger actions from the UI.** Scrub, GC, snapshot-create,
|
||||
pin/unpin — anything currently a CLI invocation.
|
||||
|
||||
## Non-goals (v2 scope)
|
||||
|
||||
- Real-time streaming metrics beyond SSE snapshots. Prometheus stays
|
||||
the source of truth for graphs; this dashboard is for state +
|
||||
actions, not observability.
|
||||
- Auth beyond a shared bearer token (fleet is trust-perimeter — CA
|
||||
auth for the UI is future work).
|
||||
- Editing configs. Read + trigger, never write config.
|
||||
|
||||
## Backend shape
|
||||
|
||||
Additive `/api/v2/*` alongside the legacy `/api/*` handlers so the
|
||||
cutover is safe:
|
||||
|
||||
```
|
||||
/api/v2/fleet aggregated snapshot (all peers)
|
||||
/api/v2/node/<name>/status this-peer or remote via gossip lookup
|
||||
/api/v2/node/<name>/timers systemd timer state for the 4 timers
|
||||
/api/v2/node/<name>/journal?unit=… last N lines of journalctl
|
||||
/api/v2/storage/blobs?limit&offset BlobStore::list_blob_ids + summaries
|
||||
/api/v2/storage/tags?prefix TagStore::list (both layers)
|
||||
/api/v2/storage/refs?limit&offset RefStore::list unioned
|
||||
/api/v2/storage/snapshots SnapshotStore::list
|
||||
/api/v2/storage/ref-tracking?repo RefTracking::list_all
|
||||
/api/v2/cache/metrics router.metrics().snapshot() + gossiped
|
||||
/api/v2/peers gossip snapshot + last-probe route
|
||||
/api/v2/events SSE — fleet event stream
|
||||
POST /api/v2/actions/scrub
|
||||
POST /api/v2/actions/gc { evict_to_gb? }
|
||||
POST /api/v2/actions/snapshot { name }
|
||||
POST /api/v2/actions/pin { key, blob_id_hex }
|
||||
POST /api/v2/actions/unpin { key }
|
||||
```
|
||||
|
||||
## Aggregation model
|
||||
|
||||
**Server-side fan-out.** When the dashboard requests `/api/v2/fleet`,
|
||||
the serving node walks its gossip peer list and issues a
|
||||
`PeerStatus` RPC to each. Results collated into one JSON.
|
||||
|
||||
Trade-offs:
|
||||
- Simpler frontend (no per-peer TLS material in browser).
|
||||
- Backend caches results per-endpoint (5 s TTL) so 10 dashboard
|
||||
tabs don't cause 30 peer RPCs.
|
||||
- Any node can serve the dashboard — no "coordinator" single point
|
||||
of failure.
|
||||
|
||||
## Frontend shape (implementation PR follows)
|
||||
|
||||
Routes:
|
||||
|
||||
```
|
||||
/ → CommandCenter
|
||||
/nodes/<name> → NodeDetail
|
||||
/storage/blobs → StorageBrowser (blobs tab)
|
||||
/storage/tags → StorageBrowser (tags tab)
|
||||
/storage/refs → StorageBrowser (refs tab)
|
||||
/storage/snapshots → StorageBrowser (snapshots tab)
|
||||
/refs/tracking → RefTracking
|
||||
/ops → OpsPanel (timers + actions + journal)
|
||||
```
|
||||
|
||||
React + Vite + Tailwind, single SPA served from `/usr/share/claw-store/static-v2/`.
|
||||
|
||||
## Cutover plan
|
||||
|
||||
1. Ship v2 backend endpoints — legacy `/api/*` untouched.
|
||||
2. Ship v2 frontend at `dashboard-v2/`, built to `static-v2/`.
|
||||
3. `claw-store serve --v2-static-dir <path>` — new flag serves v2 assets at `/v2` while `/` still serves legacy for a burn-in period.
|
||||
4. After burn-in: swap defaults; legacy accessible at `/legacy`.
|
||||
5. Remove legacy after 30 days.
|
||||
|
||||
## Auth
|
||||
|
||||
Config-driven: `[dashboard] api_token = "..."`. Bearer required for
|
||||
all POST endpoints; GET endpoints open on trusted-fleet networks
|
||||
(tailscale + LAN). If token absent → POSTs disabled entirely
|
||||
(read-only dashboard). Same shape as the legacy dashboard.
|
||||
Reference in New Issue
Block a user