Backend: - Persist best_diff as a high-water mark in kv store so it survives restarts and transient ckpool gaps - Persist acked_best_diff so the "new best share" glow survives pool restarts and works across multiple new bests before dismissal - Add POST /api/admin/ack-best and /api/admin/reset-ack-best endpoints Frontend: - Best share card: golden glow, shimmer, sparkles, "NEW BEST SHARE!" tag with previous value, "Nice" dismiss button - Optimistic local override so Nice/test buttons respond instantly instead of waiting for next WebSocket push - Fix shimmer sweep to go left-to-right (not start from middle) - Share animations: reject (red flash + shake) suppresses accept; reject effect declared first so guard reads correct state - Share tooltips show exact counts on hover - Block reward tooltip shows full amount in satoshis - Expected block uses 1h hashrate instead of 1m - formatDuration uses full unit names; years always show 1 decimal - formatWork always shows 2 decimal places - Map chain "main" to "mainnet" in block height card
719 lines
24 KiB
Go
719 lines
24 KiB
Go
// Package state merges data from CKPool (via Unix socket), Bitcoin Core
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// (via JSON-RPC), and future sources (ZMQ, log tailer) into a single
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// thread-safe snapshot the HTTP layer can serve. The snapshot is refreshed
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// on a ticker; readers get a copy without blocking the refresh.
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package state
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import (
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"context"
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"log/slog"
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"strconv"
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"sync"
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"time"
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"github.com/kamadopool/kamado-api/internal/bitcoind"
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"github.com/kamadopool/kamado-api/internal/ckpool"
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"github.com/kamadopool/kamado-api/internal/store"
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"github.com/kamadopool/kamado-api/internal/zmqmon"
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)
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// HashratePoint is a single timestamped hashrate sample for the 24h chart.
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type HashratePoint struct {
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T int64 `json:"t"` // unix seconds
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V float64 `json:"v"` // H/s
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}
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// Snapshot is the merged view served to the UI. All fields are safe to
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// JSON-serialize directly.
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type Snapshot struct {
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GeneratedAt time.Time `json:"generated_at"`
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// CKPool-derived fields
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Pool *ckpool.PoolStats `json:"pool"`
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Uptime int64 `json:"uptime_seconds"`
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Users []ckpool.User `json:"users"`
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Workers []ckpool.Worker `json:"workers"`
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Clients []ckpool.StratumClient `json:"clients"`
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// Derived/enriched fields
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HashrateHs float64 `json:"hashrate_hs_1m"` // from PoolStats.DSPS1
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HashrateHs5m float64 `json:"hashrate_hs_5m"`
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HashrateHs1h float64 `json:"hashrate_hs_1h"`
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HashrateHs24h float64 `json:"hashrate_hs_24h"`
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// Best share difficulty ever seen across all workers.
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BestDiff float64 `json:"best_diff"`
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// Last best-diff value acknowledged by the user via the UI.
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// The frontend shows a "new best" glow when best_diff > this.
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AckedBestDiff float64 `json:"acked_best_diff"`
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// Cumulative work done by the pool across its entire lifetime, in
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// diff-1-normalized shares (multiply by 2^32 for total hashes).
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// Survives ckpool restarts via kv-store persistence.
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CumulativeShares float64 `json:"cumulative_shares"`
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// Next-block reward (subsidy + fees) from bitcoind getblocktemplate,
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// in BTC. Refreshed at most once per minute.
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NextBlockRewardBTC float64 `json:"next_block_reward_btc"`
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// Predicted percent change at the next difficulty retarget, clamped
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// to Bitcoin's consensus range of [-75, +300]. Derived from the
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// observed block interval since the current epoch started.
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NextDifficultyPercent float64 `json:"next_difficulty_percent"`
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// Bitcoin Core fields
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Chain *bitcoind.BlockchainInfo `json:"chain"`
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NetworkHashrateHs float64 `json:"network_hashrate_hs"`
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// Recent found blocks (in-memory history; persisted in Phase 2b.5).
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RecentBlocks []BlockRecord `json:"recent_blocks,omitempty"`
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// 24-hour hashrate history, sampled once per minute (max 1440 points).
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HashrateHistory []HashratePoint `json:"hashrate_history,omitempty"`
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// Optional override for explorer links in the UI. Empty means use
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// mempool.space defaults. Set via MEMPOOL_BASE_URL env, surfaced by
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// the StartOS config "Block Explorer" -> "Custom URL".
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MempoolBaseURL string `json:"mempool_base_url,omitempty"`
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// Counts of share-submit attempts ("Possible/Submitting block solve"
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// log lines) and confirmed solves ("Solved and confirmed block").
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// A growing gap means bitcoind is rejecting our submissions or
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// dropping the RPC — surface it in the UI as an alert.
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BlockSubmitAttempts int64 `json:"block_submit_attempts"`
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BlockSubmitsConfirmed int64 `json:"block_submits_confirmed"`
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// Health diagnostics for /healthz and the UI status badge.
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// LastZMQEventAge is the seconds-since the last bitcoind hashblock
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// frame arrived; -1 means no event seen since startup. ZMQEnabled
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// is whether the user configured an endpoint at all.
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ZMQEnabled bool `json:"zmq_enabled"`
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LastZMQEventAge float64 `json:"last_zmq_event_age,omitempty"` // seconds; >=0
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HasLastZMQEvent bool `json:"has_last_zmq_event"`
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TipChangedAge float64 `json:"tip_changed_age"` // seconds since tip height last changed
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// Share counters: raw counts (1 submission = 1 share regardless of diff).
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// Session = since ckpool started; AllTime = persisted across restarts.
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SessionAccepted int64 `json:"session_accepted"`
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SessionRejected int64 `json:"session_rejected"`
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AllTimeAccepted int64 `json:"alltime_accepted"`
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AllTimeRejected int64 `json:"alltime_rejected"`
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// Block update latency diagnostics (ZMQ trigger → mining.notify).
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LatencyCount int64 `json:"latency_count"`
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LatencyAvgMs int64 `json:"latency_avg_ms"`
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LatencyLastMs int64 `json:"latency_last_ms"`
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StaleWorkHashes float64 `json:"stale_work_hashes"`
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// Health
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CKPoolOK bool `json:"ckpool_ok"`
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BitcoinOK bool `json:"bitcoin_ok"`
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LastError string `json:"last_error,omitempty"`
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}
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const (
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maxHistoryPoints = 1440 // 24h at 1 sample/min
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// kvCumulativeWork is versioned: "cumulative_shares" (v1) accidentally
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// summed pool.shares (raw per-share count), which is meaningless for
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// hashrate math. "cumulative_work" (v2) sums pool.accepted — the
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// diff-1-normalized work, so cumulative_work * 2^32 is real hashes.
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// The old key is orphaned in the kv table on upgrade; harmless.
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kvCumulativeWork = "cumulative_work"
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kvSubmitAttempts = "block_submit_attempts"
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kvSubmitsConfirmed = "block_submits_confirmed"
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kvLatencyCount = "latency_count"
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kvLatencySumMs = "latency_sum_ms"
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kvLatencyLastMs = "latency_last_ms"
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kvStaleWorkHashes = "stale_work_hashes"
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kvAckedBestDiff = "acked_best_diff"
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kvBestDiff = "best_diff"
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kvAllTimeAccepted = "alltime_accepted"
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kvAllTimeRejected = "alltime_rejected"
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// reconcileInterval is how often we sweep recent blocks looking
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// for missing hash/reward enrichment and reorg-orphaned hashes.
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// 60s is fast enough to recover from a transient bitcoind hiccup
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// within a minute, slow enough to never load the RPC.
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reconcileInterval = 60 * time.Second
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// reconcileLookback caps how far back the reconcile loop looks.
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// Blocks older than this with empty hash are abandoned; hashes
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// older than this are assumed deep enough to never reorg.
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reconcileLookback = 24 * time.Hour
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)
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// Aggregator refreshes a Snapshot on a ticker.
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type Aggregator struct {
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CK *ckpool.Client
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RPC *bitcoind.RPC
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Store *store.BlockStore // optional; nil disables persistence
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Interval time.Duration
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Log *slog.Logger
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// Static config that the UI consumes via the snapshot. Empty
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// MempoolBaseURL leaves the UI on its mempool.space defaults.
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MempoolBaseURL string
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// OnRefresh, if set, is called (non-blocking) after each snapshot
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// refresh. Used by the WebSocket hub to push updates to clients.
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OnRefresh func(Snapshot)
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mu sync.RWMutex
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snap Snapshot
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blocks []BlockRecord
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// 24h hashrate history ring buffer, sampled once per minute.
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hrHistory []HashratePoint
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lastHRSampleAt time.Time
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// Cumulative pool work in diff-1-normalized shares, surviving
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// ckpool restarts. Maintained by re-reading pool.Shares each
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// refresh and integrating only the positive delta — a decrease
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// means ckpool restarted and its counter reset to 0, so we reset
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// our delta baseline without losing the accumulated total.
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//
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// hasPoolSharesBaseline guards against double-counting on api
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// restart: cumulativeShares is loaded from disk, and the first
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// post-load observation of pool.Shares only establishes the
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// baseline — the current ckpool counter was already accounted for
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// before we crashed.
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cumulativeShares float64
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lastPoolShares float64
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hasPoolSharesBaseline bool
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lastCumulativeSave time.Time
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// Next-block reward cache; refreshed on its own cadence so we don't
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// hammer bitcoind with getblocktemplate on every poll tick.
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nextBlockReward float64
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lastTemplateFetch time.Time
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// Retarget epoch-start timestamp cache. Updated when we cross a
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// new retarget boundary (every 2016 blocks); within an epoch we
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// just re-use the cached value and re-extrapolate each refresh.
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retargetEpoch int64
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retargetStartUnix int64
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// ckFailStreak counts consecutive refreshes where CKPool returned an
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// error. The first failure after a streak of successes is logged at
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// DEBUG (likely a transient warm-up or lock hiccup); repeated failures
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// escalate to WARN.
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ckFailStreak int
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// readyOnce + ready closes the Ready() channel exactly once after
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// the first refresh completes. main blocks briefly on this so the
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// HTTP server doesn't serve a never-refreshed (all-zeros) snapshot.
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readyOnce sync.Once
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ready chan struct{}
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// Submit-attempt vs confirmed counters. Persisted in kv so the
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// running gap survives restarts. Both are monotonic.
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blockSubmitAttempts int64
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blockSubmitsConfirmed int64
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lastSubmitCountSave time.Time
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// ZMQ diagnostics: timestamp of the last hashblock frame relayed
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// from zmqmon. Used by /healthz to flag stale subscriptions.
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zmqEnabled bool
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lastZMQEventTime time.Time
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// Tip-change tracking: the height and time when we last saw the
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// chain tip advance. Used to distinguish "ZMQ stale" from "no
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// blocks on the network".
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lastTipHeight int64
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lastTipChangedAt time.Time
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// All-time share counters (raw, not diff-weighted). Accumulated
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// using the same delta-integration pattern as cumulative_shares.
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allTimeAccepted int64
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allTimeRejected int64
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lastPoolAcceptedRaw int64
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lastPoolRejectedRaw int64
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hasShareCountBaseline bool
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lastShareCountSave time.Time
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// Block update latency tracking (from ckpool patch 0005).
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// Persisted to kv store so stats accumulate across restarts.
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latencyCount int64 // number of observations
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latencySumMs int64 // sum of all latencies in ms
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latencyLastMs int64 // most recent observation
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staleWorkHashes float64 // cumulative wasted hashes = sum(latency_s * hashrate_at_event)
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// High-water mark for the best share difficulty ever seen.
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// Persisted to kv so it survives restarts and transient ckpool gaps.
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bestDiff float64
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// Last best-diff value acknowledged by the user in the UI.
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ackedBestDiff float64
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}
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func New(ck *ckpool.Client, rpc *bitcoind.RPC, interval time.Duration, log *slog.Logger) *Aggregator {
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return &Aggregator{
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CK: ck,
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RPC: rpc,
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Interval: interval,
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Log: log,
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ready: make(chan struct{}),
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}
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}
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// Ready returns a channel that's closed once the aggregator has
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// completed its first refresh — used by main to delay HTTP serving
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// until /api/snapshot reflects real state instead of zeros.
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func (a *Aggregator) Ready() <-chan struct{} {
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return a.ready
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}
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func (a *Aggregator) markReady() {
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a.readyOnce.Do(func() { close(a.ready) })
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}
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// Run blocks until ctx is cancelled, refreshing the snapshot every Interval.
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// It runs one immediate refresh at startup so readers don't see an empty
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// snapshot after ctx launches the goroutine. Persisted block history is
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// loaded from the store before the first refresh. If tipEvents is non-nil,
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// each received tip triggers an immediate refresh outside the poll cadence.
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func (a *Aggregator) Run(ctx context.Context, tipEvents <-chan zmqmon.TipEvent) {
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a.mu.Lock()
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a.zmqEnabled = tipEvents != nil
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a.mu.Unlock()
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a.loadPersistedBlocks()
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a.loadPersistedState()
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a.refresh(ctx)
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t := time.NewTicker(a.Interval)
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defer t.Stop()
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for {
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select {
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case <-ctx.Done():
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return
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case <-t.C:
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a.refresh(ctx)
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case ev, ok := <-tipEvents:
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if !ok {
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tipEvents = nil
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continue
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}
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a.mu.Lock()
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a.lastZMQEventTime = ev.SeenAt
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a.mu.Unlock()
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a.Log.Debug("zmq tip, refreshing", "hash", ev.Hash)
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a.refresh(ctx)
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}
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}
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}
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// Snapshot returns a copy of the current snapshot.
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func (a *Aggregator) Snapshot() Snapshot {
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a.mu.RLock()
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defer a.mu.RUnlock()
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return a.snap
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}
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func (a *Aggregator) refresh(ctx context.Context) {
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ctx, cancel := context.WithTimeout(ctx, 10*time.Second)
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defer cancel()
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next := Snapshot{GeneratedAt: time.Now(), MempoolBaseURL: a.MempoolBaseURL}
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// --- ckpool: poolstats, users, workers, clients, uptime ---
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if ps, err := a.CK.PoolStats(ctx); err == nil {
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next.Pool = ps
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next.HashrateHs = ckpool.DSPSToHashrate(ps.DSPS1)
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next.HashrateHs5m = ckpool.DSPSToHashrate(ps.DSPS5)
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next.HashrateHs1h = ckpool.DSPSToHashrate(ps.DSPS60)
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next.HashrateHs24h = ckpool.DSPSToHashrate(ps.DSPS1440)
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next.CKPoolOK = true
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a.ckFailStreak = 0
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} else {
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a.ckFailStreak++
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// First failure or two: likely transient (stratifier warm-up or
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// a lock hiccup during a reconnect). Only escalate to WARN after
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// three consecutive failures.
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if a.ckFailStreak >= 3 {
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a.Log.Warn("ckpool poolstats failed", "err", err, "streak", a.ckFailStreak)
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} else {
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a.Log.Debug("ckpool poolstats transient error", "err", err, "streak", a.ckFailStreak)
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}
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next.LastError = err.Error()
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}
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if u, err := a.CK.Uptime(ctx); err == nil {
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next.Uptime = u
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}
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if us, err := a.CK.Users(ctx); err == nil {
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next.Users = us
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}
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if ws, err := a.CK.Workers(ctx); err == nil {
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next.Workers = ws
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}
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if cs, err := a.CK.Clients(ctx); err == nil {
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next.Clients = cs
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}
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// --- bitcoind: chain + network hashrate ---
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if bi, err := a.RPC.GetBlockchainInfo(ctx); err == nil {
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next.Chain = bi
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next.BitcoinOK = true
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// Track when the tip height last changed.
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if bi.Blocks != a.lastTipHeight {
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a.lastTipHeight = bi.Blocks
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a.lastTipChangedAt = time.Now()
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}
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if !a.lastTipChangedAt.IsZero() {
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next.TipChangedAge = time.Since(a.lastTipChangedAt).Seconds()
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}
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if nh, err := a.RPC.GetNetworkHashPS(ctx, -1, int(bi.Blocks)); err == nil {
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next.NetworkHashrateHs = nh
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}
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} else {
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a.Log.Warn("bitcoind getblockchaininfo failed", "err", err)
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if next.LastError == "" {
|
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next.LastError = err.Error()
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}
|
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}
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|
|
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// --- predicted difficulty adjustment ---
|
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// Fetch the timestamp of the first block in the current retarget
|
|
// epoch (height - height%2016) once per epoch and cache it, then
|
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// compute (expected / elapsed - 1) * 100 where expected = blocks_in *
|
|
// 600 seconds. Bitcoin clamps the consensus adjustment factor to
|
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// [1/4, 4x], i.e. [-75%, +300%].
|
|
if next.Chain != nil && next.Chain.Blocks > 0 {
|
|
height := next.Chain.Blocks
|
|
epoch := height / 2016
|
|
inEpoch := height % 2016
|
|
if inEpoch > 0 {
|
|
if a.retargetEpoch != epoch || a.retargetStartUnix == 0 {
|
|
startHeight := epoch * 2016
|
|
lookupCtx, cancelLookup := context.WithTimeout(ctx, 3*time.Second)
|
|
if hash, err := a.RPC.GetBlockHash(lookupCtx, startHeight); err == nil {
|
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if blk, err := a.RPC.GetBlock(lookupCtx, hash); err == nil {
|
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a.retargetEpoch = epoch
|
|
a.retargetStartUnix = blk.Time
|
|
}
|
|
}
|
|
cancelLookup()
|
|
}
|
|
if a.retargetStartUnix > 0 {
|
|
elapsed := float64(time.Now().Unix() - a.retargetStartUnix)
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|
// Match Bitcoin Core / mempool.space: project nActualTimespan
|
|
// by treating the elapsed window as covering (inEpoch + 1)
|
|
// block intervals, since at retarget the consensus formula
|
|
// uses (lastBlock.time - firstBlock.time) across all 2016
|
|
// blocks of the epoch.
|
|
expected := float64(inEpoch+1) * 600
|
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if elapsed > 0 {
|
|
factor := expected / elapsed
|
|
if factor > 4 {
|
|
factor = 4
|
|
}
|
|
if factor < 0.25 {
|
|
factor = 0.25
|
|
}
|
|
next.NextDifficultyPercent = (factor - 1) * 100
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
// Compute pool-wide best-ever share diff from workers, then clamp
|
|
// to the persisted high-water mark so a ckpool restart or transient
|
|
// socket timeout can never lower the value.
|
|
for _, w := range next.Workers {
|
|
d := w.BestEver
|
|
if d == 0 {
|
|
d = w.BestDiff
|
|
}
|
|
if d > next.BestDiff {
|
|
next.BestDiff = d
|
|
}
|
|
}
|
|
|
|
a.mu.Lock()
|
|
|
|
// High-water mark: only increases, never decreases.
|
|
if next.BestDiff > a.bestDiff {
|
|
a.bestDiff = next.BestDiff
|
|
if a.Store != nil {
|
|
val := strconv.FormatFloat(a.bestDiff, 'f', -1, 64)
|
|
_ = a.Store.SetKV(kvBestDiff, val)
|
|
}
|
|
}
|
|
next.BestDiff = a.bestDiff
|
|
next.AckedBestDiff = a.ackedBestDiff
|
|
now := time.Now()
|
|
|
|
// --- cumulative work tracking ---
|
|
// Integrate only positive deltas on pool.Accepted, which is ckpool's
|
|
// accounted_diff_shares — the sum of each accepted share's
|
|
// difficulty, in diff-1-normalized units. pool.Shares is the raw
|
|
// per-share count and is useless for hashrate math. A decrease
|
|
// means ckpool restarted (or its state reset); we reset the
|
|
// baseline without touching the accumulated total. The first
|
|
// observation after load only establishes the baseline — the
|
|
// current counter was already integrated before we shut down.
|
|
if next.Pool != nil {
|
|
cur := float64(next.Pool.Accepted)
|
|
if a.hasPoolSharesBaseline && cur >= a.lastPoolShares {
|
|
a.cumulativeShares += cur - a.lastPoolShares
|
|
}
|
|
a.lastPoolShares = cur
|
|
a.hasPoolSharesBaseline = true
|
|
}
|
|
next.CumulativeShares = a.cumulativeShares
|
|
|
|
// Persist cumulative_shares at most once per minute.
|
|
if a.Store != nil && now.Sub(a.lastCumulativeSave) >= time.Minute {
|
|
val := strconv.FormatFloat(a.cumulativeShares, 'f', -1, 64)
|
|
if err := a.Store.SetKV(kvCumulativeWork, val); err != nil {
|
|
a.Log.Warn("cumulative_shares persist failed", "err", err)
|
|
}
|
|
a.lastCumulativeSave = now
|
|
}
|
|
|
|
// --- raw share count tracking (1 share = 1 submission) ---
|
|
// pool.Shares = raw accepted count, pool.RejectCount = raw rejected count.
|
|
// Delta-integrate the same way as cumulative work.
|
|
if next.Pool != nil {
|
|
curAcc := next.Pool.Shares
|
|
curRej := next.Pool.RejectCount
|
|
if a.hasShareCountBaseline {
|
|
if curAcc >= a.lastPoolAcceptedRaw {
|
|
a.allTimeAccepted += curAcc - a.lastPoolAcceptedRaw
|
|
}
|
|
if curRej >= a.lastPoolRejectedRaw {
|
|
a.allTimeRejected += curRej - a.lastPoolRejectedRaw
|
|
}
|
|
}
|
|
a.lastPoolAcceptedRaw = curAcc
|
|
a.lastPoolRejectedRaw = curRej
|
|
a.hasShareCountBaseline = true
|
|
next.SessionAccepted = curAcc
|
|
next.SessionRejected = curRej
|
|
}
|
|
next.AllTimeAccepted = a.allTimeAccepted
|
|
next.AllTimeRejected = a.allTimeRejected
|
|
|
|
// Persist share counts at most once per minute.
|
|
if a.Store != nil && now.Sub(a.lastShareCountSave) >= time.Minute {
|
|
_ = a.Store.SetKV(kvAllTimeAccepted, strconv.FormatInt(a.allTimeAccepted, 10))
|
|
_ = a.Store.SetKV(kvAllTimeRejected, strconv.FormatInt(a.allTimeRejected, 10))
|
|
a.lastShareCountSave = now
|
|
}
|
|
|
|
// --- hashrate history sample (once per minute) ---
|
|
if now.Sub(a.lastHRSampleAt) >= time.Minute {
|
|
p := HashratePoint{T: now.Unix(), V: next.HashrateHs}
|
|
a.hrHistory = append(a.hrHistory, p)
|
|
if len(a.hrHistory) > maxHistoryPoints {
|
|
a.hrHistory = a.hrHistory[len(a.hrHistory)-maxHistoryPoints:]
|
|
}
|
|
a.lastHRSampleAt = now
|
|
if a.Store != nil {
|
|
if err := a.Store.InsertHashrateSample(p.T, p.V); err != nil {
|
|
a.Log.Warn("hashrate persist failed", "err", err)
|
|
}
|
|
// Keep the persisted window bounded to 24h + a small slack.
|
|
cutoff := now.Add(-25 * time.Hour).Unix()
|
|
_ = a.Store.PruneHashrateBefore(cutoff)
|
|
}
|
|
}
|
|
if len(a.hrHistory) > 0 {
|
|
next.HashrateHistory = make([]HashratePoint, len(a.hrHistory))
|
|
copy(next.HashrateHistory, a.hrHistory)
|
|
}
|
|
|
|
// --- next-block reward (refreshed every ~15s so users see the
|
|
// fee component tick up as mempool grows; bitcoind caches the
|
|
// template internally, so the RPC is cheap even at this cadence).
|
|
next.NextBlockRewardBTC = a.nextBlockReward
|
|
needTemplate := now.Sub(a.lastTemplateFetch) >= 15*time.Second
|
|
a.mu.Unlock()
|
|
|
|
if needTemplate && a.RPC != nil && next.BitcoinOK {
|
|
tplCtx, cancelTpl := context.WithTimeout(ctx, 5*time.Second)
|
|
tpl, err := a.RPC.GetBlockTemplate(tplCtx)
|
|
cancelTpl()
|
|
if err == nil && tpl != nil {
|
|
reward := float64(tpl.CoinbaseValue) / 1e8
|
|
a.mu.Lock()
|
|
a.nextBlockReward = reward
|
|
a.lastTemplateFetch = now
|
|
next.NextBlockRewardBTC = reward
|
|
a.mu.Unlock()
|
|
} else if err != nil {
|
|
a.Log.Debug("getblocktemplate failed", "err", err)
|
|
}
|
|
}
|
|
|
|
a.mu.Lock()
|
|
// Attach current block history so /api/snapshot and WebSocket
|
|
// pushes carry the same view.
|
|
if len(a.blocks) > 0 {
|
|
next.RecentBlocks = make([]BlockRecord, len(a.blocks))
|
|
copy(next.RecentBlocks, a.blocks)
|
|
}
|
|
next.BlockSubmitAttempts = a.blockSubmitAttempts
|
|
next.BlockSubmitsConfirmed = a.blockSubmitsConfirmed
|
|
next.ZMQEnabled = a.zmqEnabled
|
|
if !a.lastZMQEventTime.IsZero() {
|
|
next.LastZMQEventAge = time.Since(a.lastZMQEventTime).Seconds()
|
|
next.HasLastZMQEvent = true
|
|
}
|
|
next.LatencyCount = a.latencyCount
|
|
if a.latencyCount > 0 {
|
|
next.LatencyAvgMs = a.latencySumMs / a.latencyCount
|
|
}
|
|
next.LatencyLastMs = a.latencyLastMs
|
|
next.StaleWorkHashes = a.staleWorkHashes
|
|
a.snap = next
|
|
cb := a.OnRefresh
|
|
pushed := next
|
|
a.mu.Unlock()
|
|
|
|
if cb != nil {
|
|
cb(pushed)
|
|
}
|
|
a.markReady()
|
|
}
|
|
|
|
// AckBestDiff records the current best_diff as acknowledged so the UI
|
|
// stops showing the "new best share" glow until a higher one appears.
|
|
func (a *Aggregator) AckBestDiff() {
|
|
a.mu.Lock()
|
|
a.ackedBestDiff = a.snap.BestDiff
|
|
a.mu.Unlock()
|
|
if a.Store != nil {
|
|
val := strconv.FormatFloat(a.snap.BestDiff, 'f', -1, 64)
|
|
if err := a.Store.SetKV(kvAckedBestDiff, val); err != nil {
|
|
a.Log.Warn("acked_best_diff persist failed", "err", err)
|
|
}
|
|
}
|
|
}
|
|
|
|
// ResetAckedBestDiff clears the acknowledged best diff so the "new best
|
|
// share" glow reappears. Used by the debug/test UI button.
|
|
func (a *Aggregator) ResetAckedBestDiff() {
|
|
a.mu.Lock()
|
|
a.ackedBestDiff = 0
|
|
a.mu.Unlock()
|
|
if a.Store != nil {
|
|
_ = a.Store.SetKV(kvAckedBestDiff, "0")
|
|
}
|
|
}
|
|
|
|
// loadPersistedState restores cumulative work and hashrate history from
|
|
// the store so they survive process restarts. Safe to call with a nil
|
|
// Store — becomes a no-op.
|
|
func (a *Aggregator) loadPersistedState() {
|
|
if a.Store == nil {
|
|
return
|
|
}
|
|
|
|
if v, err := a.Store.GetKV(kvCumulativeWork); err != nil {
|
|
a.Log.Warn("cumulative_shares load failed", "err", err)
|
|
} else if v != "" {
|
|
if f, perr := strconv.ParseFloat(v, 64); perr == nil {
|
|
a.mu.Lock()
|
|
a.cumulativeShares = f
|
|
a.mu.Unlock()
|
|
a.Log.Info("cumulative_shares loaded", "value", f)
|
|
}
|
|
}
|
|
|
|
if v, err := a.Store.GetKV(kvSubmitAttempts); err == nil && v != "" {
|
|
if n, perr := strconv.ParseInt(v, 10, 64); perr == nil {
|
|
a.mu.Lock()
|
|
a.blockSubmitAttempts = n
|
|
a.mu.Unlock()
|
|
}
|
|
}
|
|
if v, err := a.Store.GetKV(kvSubmitsConfirmed); err == nil && v != "" {
|
|
if n, perr := strconv.ParseInt(v, 10, 64); perr == nil {
|
|
a.mu.Lock()
|
|
a.blockSubmitsConfirmed = n
|
|
a.mu.Unlock()
|
|
}
|
|
}
|
|
|
|
// Restore all-time share counts.
|
|
if v, err := a.Store.GetKV(kvAllTimeAccepted); err == nil && v != "" {
|
|
if n, perr := strconv.ParseInt(v, 10, 64); perr == nil {
|
|
a.mu.Lock()
|
|
a.allTimeAccepted = n
|
|
a.mu.Unlock()
|
|
}
|
|
}
|
|
if v, err := a.Store.GetKV(kvAllTimeRejected); err == nil && v != "" {
|
|
if n, perr := strconv.ParseInt(v, 10, 64); perr == nil {
|
|
a.mu.Lock()
|
|
a.allTimeRejected = n
|
|
a.mu.Unlock()
|
|
}
|
|
}
|
|
|
|
// Restore best diff high-water mark.
|
|
if v, err := a.Store.GetKV(kvBestDiff); err == nil && v != "" {
|
|
if f, perr := strconv.ParseFloat(v, 64); perr == nil {
|
|
a.mu.Lock()
|
|
a.bestDiff = f
|
|
a.mu.Unlock()
|
|
}
|
|
}
|
|
|
|
// Restore acknowledged best diff.
|
|
if v, err := a.Store.GetKV(kvAckedBestDiff); err == nil && v != "" {
|
|
if f, perr := strconv.ParseFloat(v, 64); perr == nil {
|
|
a.mu.Lock()
|
|
a.ackedBestDiff = f
|
|
a.mu.Unlock()
|
|
}
|
|
}
|
|
|
|
// Restore latency stats.
|
|
a.mu.Lock()
|
|
if v, err := a.Store.GetKV(kvLatencyCount); err == nil && v != "" {
|
|
if n, perr := strconv.ParseInt(v, 10, 64); perr == nil {
|
|
a.latencyCount = n
|
|
}
|
|
}
|
|
if v, err := a.Store.GetKV(kvLatencySumMs); err == nil && v != "" {
|
|
if n, perr := strconv.ParseInt(v, 10, 64); perr == nil {
|
|
a.latencySumMs = n
|
|
}
|
|
}
|
|
if v, err := a.Store.GetKV(kvLatencyLastMs); err == nil && v != "" {
|
|
if n, perr := strconv.ParseInt(v, 10, 64); perr == nil {
|
|
a.latencyLastMs = n
|
|
}
|
|
}
|
|
if v, err := a.Store.GetKV(kvStaleWorkHashes); err == nil && v != "" {
|
|
if f, perr := strconv.ParseFloat(v, 64); perr == nil {
|
|
a.staleWorkHashes = f
|
|
}
|
|
}
|
|
if a.latencyCount > 0 {
|
|
a.Log.Info("latency stats loaded", "count", a.latencyCount,
|
|
"avg_ms", a.latencySumMs/a.latencyCount, "last_ms", a.latencyLastMs)
|
|
}
|
|
a.mu.Unlock()
|
|
|
|
cutoff := time.Now().Add(-24 * time.Hour).Unix()
|
|
if samples, err := a.Store.HashrateSince(cutoff); err != nil {
|
|
a.Log.Warn("hashrate history load failed", "err", err)
|
|
} else if len(samples) > 0 {
|
|
hist := make([]HashratePoint, 0, len(samples))
|
|
for _, s := range samples {
|
|
hist = append(hist, HashratePoint{T: s.T, V: s.V})
|
|
}
|
|
a.mu.Lock()
|
|
a.hrHistory = hist
|
|
a.lastHRSampleAt = time.Unix(hist[len(hist)-1].T, 0)
|
|
a.mu.Unlock()
|
|
a.Log.Info("hashrate history loaded", "count", len(hist))
|
|
}
|
|
}
|