Full-stack feature for boosting transactions via bitcoind's prioritisetransaction RPC: Backend: - New accelerator package with Accelerate, Cancel, MaxFeerate, List, and background Cleanup goroutine (removes confirmed/dropped txs) - RPC wrappers: GetMempoolEntry, PrioritiseTransaction, GetRawMempoolVerbose, IsRPCError helpers - SQLite boosted_txs table for persistence across restarts - Revenue impact measured via getblocktemplate before/after comparison - Hard cap at 2000 sat/vB; MaxFeerate uses fees.base (not modified) to ignore our own prior priority adjustments Frontend: - Rocket icon in header with 10s jiggle animation - AcceleratorPage with flame-gradient border, txid input, feerate input, "Prioritize above all" button with spinner, boost list with cancel buttons, and dismissible error/success messages - Hash-based routing (#/accelerator) - SharesBar font size bump
223 lines
7.1 KiB
Go
223 lines
7.1 KiB
Go
// Package httpapi serves the Kamado REST API. WebSocket push and static
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// UI serving land in a follow-up commit.
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package httpapi
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import (
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"encoding/json"
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"errors"
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"io/fs"
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"log/slog"
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"net/http"
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"strings"
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"github.com/kamadopool/kamado-api/internal/accelerator"
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"github.com/kamadopool/kamado-api/internal/state"
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"github.com/kamadopool/kamado-api/internal/webui"
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)
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type Server struct {
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Agg *state.Aggregator
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Acc *accelerator.Service
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Hub *Hub
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Log *slog.Logger
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}
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func New(agg *state.Aggregator, acc *accelerator.Service, log *slog.Logger) *Server {
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return &Server{Agg: agg, Acc: acc, Hub: NewHub(), Log: log}
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}
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// Handler returns an http.Handler with all kamado routes mounted under
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// /api and the embedded Svelte dashboard served under /. Unknown
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// non-/api paths fall back to index.html for SPA-style routing.
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func (s *Server) Handler() http.Handler {
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mux := http.NewServeMux()
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mux.HandleFunc("GET /api/health", s.health)
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mux.HandleFunc("GET /api/pool", s.pool)
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mux.HandleFunc("GET /api/users", s.users)
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mux.HandleFunc("GET /api/workers", s.workers)
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mux.HandleFunc("GET /api/clients", s.clients)
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mux.HandleFunc("GET /api/blocks", s.blocks)
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mux.HandleFunc("GET /api/snapshot", s.snapshot)
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mux.HandleFunc("GET /api/ws", s.handleWS)
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mux.HandleFunc("GET /api/admin/debug-blocks", s.debugBlocks)
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mux.HandleFunc("POST /api/admin/reset-latency", s.resetLatency)
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mux.HandleFunc("POST /api/accelerate", s.accelerate)
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mux.HandleFunc("POST /api/accelerate/cancel", s.accelerateCancel)
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mux.HandleFunc("POST /api/accelerate/max", s.accelerateMax)
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mux.HandleFunc("GET /api/accelerate/list", s.accelerateList)
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mux.Handle("/", spaHandler(webui.FS()))
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return mux
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}
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// spaHandler serves static files from the embedded dist tree and
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// falls back to index.html on 404 so client-side routing works. It
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// refuses anything under /api to keep the contract with mux patterns
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// explicit (those routes register their own handlers above).
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func spaHandler(root fs.FS) http.Handler {
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fileServer := http.FileServerFS(root)
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return http.HandlerFunc(func(w http.ResponseWriter, r *http.Request) {
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// Defence-in-depth — /api routes are matched by the mux first
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// with their GET patterns, but a bare POST /api/... would fall
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// through here. Return 404 so we don't accidentally shadow
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// API semantics with HTML.
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if strings.HasPrefix(r.URL.Path, "/api/") || r.URL.Path == "/api" {
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http.NotFound(w, r)
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return
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}
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// Fast path: exact file exists in the embed.
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clean := strings.TrimPrefix(r.URL.Path, "/")
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if clean == "" {
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clean = "index.html"
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}
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if _, err := fs.Stat(root, clean); err == nil {
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fileServer.ServeHTTP(w, r)
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return
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} else if !errors.Is(err, fs.ErrNotExist) {
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http.Error(w, "webui: "+err.Error(), http.StatusInternalServerError)
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return
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}
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// SPA fallback: serve index.html with a 200 so reloads on a
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// client-side route don't 404.
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r2 := r.Clone(r.Context())
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r2.URL.Path = "/"
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fileServer.ServeHTTP(w, r2)
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})
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}
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func writeJSON(w http.ResponseWriter, status int, v any) {
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w.Header().Set("Content-Type", "application/json; charset=utf-8")
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w.Header().Set("Cache-Control", "no-store")
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w.WriteHeader(status)
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_ = json.NewEncoder(w).Encode(v)
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}
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// ---- handlers ---------------------------------------------------------
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func (s *Server) health(w http.ResponseWriter, r *http.Request) {
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snap := s.Agg.Snapshot()
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status := http.StatusOK
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// Submit-attempt gap: if we've tried to submit more blocks than have
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// been confirmed, surface the gap. A non-zero gap is a strong signal
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// even if everything else looks healthy.
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submitGap := snap.BlockSubmitAttempts - snap.BlockSubmitsConfirmed
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if submitGap < 0 {
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submitGap = 0
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}
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// ZMQ freshness: only meaningful if the operator enabled it. Stale
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// = no event in 30 minutes (typical mainnet block interval is 10
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// min, but spikes happen).
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zmqStale := false
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if snap.ZMQEnabled && snap.HasLastZMQEvent && snap.LastZMQEventAge > 1800 {
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zmqStale = true
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}
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overallOK := snap.CKPoolOK && snap.BitcoinOK && submitGap == 0 && !zmqStale
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if !snap.CKPoolOK || !snap.BitcoinOK {
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status = http.StatusServiceUnavailable
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}
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writeJSON(w, status, map[string]any{
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"ok": overallOK,
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"ckpool": snap.CKPoolOK,
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"bitcoin": snap.BitcoinOK,
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"submit_attempts": snap.BlockSubmitAttempts,
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"submits_confirmed": snap.BlockSubmitsConfirmed,
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"submit_gap": submitGap,
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"zmq_enabled": snap.ZMQEnabled,
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"zmq_event_age_seconds": snap.LastZMQEventAge,
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"zmq_has_event": snap.HasLastZMQEvent,
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"zmq_stale": zmqStale,
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"last_error": snap.LastError,
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})
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}
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func (s *Server) snapshot(w http.ResponseWriter, r *http.Request) {
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writeJSON(w, http.StatusOK, s.Agg.Snapshot())
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}
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func (s *Server) pool(w http.ResponseWriter, r *http.Request) {
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snap := s.Agg.Snapshot()
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writeJSON(w, http.StatusOK, map[string]any{
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"pool": snap.Pool,
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"uptime_seconds": snap.Uptime,
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"hashrate_hs_1m": snap.HashrateHs,
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"hashrate_hs_5m": snap.HashrateHs5m,
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"hashrate_hs_1h": snap.HashrateHs1h,
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"hashrate_hs_24h": snap.HashrateHs24h,
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"chain": snap.Chain,
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"network_hashrate_hs": snap.NetworkHashrateHs,
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})
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}
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func (s *Server) users(w http.ResponseWriter, r *http.Request) {
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writeJSON(w, http.StatusOK, s.Agg.Snapshot().Users)
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}
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func (s *Server) workers(w http.ResponseWriter, r *http.Request) {
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writeJSON(w, http.StatusOK, s.Agg.Snapshot().Workers)
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}
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func (s *Server) clients(w http.ResponseWriter, r *http.Request) {
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writeJSON(w, http.StatusOK, s.Agg.Snapshot().Clients)
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}
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func (s *Server) blocks(w http.ResponseWriter, r *http.Request) {
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writeJSON(w, http.StatusOK, s.Agg.Blocks())
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}
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// debugBlocks exposes raw block state from both the in-memory snapshot
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// (what the UI sees) and the DB (ground truth) for troubleshooting.
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func (s *Server) debugBlocks(w http.ResponseWriter, r *http.Request) {
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type row struct {
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Height int64 `json:"height"`
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Hash string `json:"hash"`
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Chain string `json:"chain"`
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OrphanedAt string `json:"orphaned_at"`
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FoundAt string `json:"found_at"`
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RewardBTC float64 `json:"reward_btc"`
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Source string `json:"source"`
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}
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fmtBlock := func(b state.BlockRecord) row {
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orphaned := ""
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if b.OrphanedAt != nil {
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orphaned = b.OrphanedAt.Format("2006-01-02T15:04:05Z")
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}
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return row{
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Height: b.Height,
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Hash: b.Hash,
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Chain: b.Chain,
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OrphanedAt: orphaned,
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FoundAt: b.FoundAt.Format("2006-01-02T15:04:05Z"),
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RewardBTC: b.RewardBT,
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Source: b.Source,
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}
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}
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// In-memory blocks (what /api/blocks and /api/snapshot serve)
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memBlocks := s.Agg.Blocks()
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mem := make([]row, 0, len(memBlocks))
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for _, b := range memBlocks {
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mem = append(mem, fmtBlock(b))
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}
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// DB blocks (ground truth)
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dbBlocks := s.Agg.BlocksFromStore()
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db := make([]row, 0, len(dbBlocks))
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for _, b := range dbBlocks {
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db = append(db, fmtBlock(b))
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}
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writeJSON(w, http.StatusOK, map[string]any{
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"memory": mem,
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"db": db,
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})
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}
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func (s *Server) resetLatency(w http.ResponseWriter, _ *http.Request) {
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s.Agg.ResetLatency()
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writeJSON(w, http.StatusOK, map[string]any{"ok": true})
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}
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