- Updated `Worker.handleDeploy` to handle STIM bundles using `ExtractProfileBundle` and `ExtractMinerBundle`. - Used `PeerConnection.SharedSecret` as the password for decryption. - Implemented logic for `BundleProfile`, `BundleMiner`, and `BundleFull`. - Fixed broken files `pkg/node/dispatcher.go` and `pkg/node/peer.go` to ensure compilation and testing. - Updated tests in `pkg/node/worker_test.go` and added coverage for deployment logic.
402 lines
11 KiB
Go
402 lines
11 KiB
Go
package node
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import (
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"encoding/base64"
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"encoding/json"
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"fmt"
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"path/filepath"
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"time"
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"github.com/Snider/Mining/pkg/logging"
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"github.com/adrg/xdg"
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)
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// MinerManager interface for the mining package integration.
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// This allows the node package to interact with mining.Manager without import cycles.
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type MinerManager interface {
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StartMiner(minerType string, config interface{}) (MinerInstance, error)
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StopMiner(name string) error
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ListMiners() []MinerInstance
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GetMiner(name string) (MinerInstance, error)
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}
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// MinerInstance represents a running miner for stats collection.
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type MinerInstance interface {
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GetName() string
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GetType() string
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GetStats() (interface{}, error)
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GetConsoleHistory(lines int) []string
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}
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// ProfileManager interface for profile operations.
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type ProfileManager interface {
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GetProfile(id string) (interface{}, error)
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SaveProfile(profile interface{}) error
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}
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// Worker handles incoming messages on a worker node.
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type Worker struct {
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node *NodeManager
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transport *Transport
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minerManager MinerManager
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profileManager ProfileManager
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startTime time.Time
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}
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// NewWorker creates a new Worker instance.
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func NewWorker(node *NodeManager, transport *Transport) *Worker {
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return &Worker{
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node: node,
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transport: transport,
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startTime: time.Now(),
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}
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}
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// SetMinerManager sets the miner manager for handling miner operations.
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func (w *Worker) SetMinerManager(manager MinerManager) {
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w.minerManager = manager
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}
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// SetProfileManager sets the profile manager for handling profile operations.
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func (w *Worker) SetProfileManager(manager ProfileManager) {
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w.profileManager = manager
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}
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// HandleMessage processes incoming messages and returns a response.
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func (w *Worker) HandleMessage(conn *PeerConnection, msg *Message) {
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var response *Message
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var err error
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switch msg.Type {
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case MsgPing:
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response, err = w.handlePing(msg)
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case MsgGetStats:
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response, err = w.handleGetStats(msg)
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case MsgStartMiner:
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response, err = w.handleStartMiner(msg)
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case MsgStopMiner:
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response, err = w.handleStopMiner(msg)
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case MsgGetLogs:
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response, err = w.handleGetLogs(msg)
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case MsgDeploy:
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response, err = w.handleDeploy(conn, msg)
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default:
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// Unknown message type - ignore or send error
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return
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}
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if err != nil {
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// Send error response
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identity := w.node.GetIdentity()
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if identity != nil {
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errMsg, _ := NewErrorMessage(
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identity.ID,
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msg.From,
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ErrCodeOperationFailed,
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err.Error(),
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msg.ID,
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)
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conn.Send(errMsg)
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}
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return
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}
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if response != nil {
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logging.Debug("sending response", logging.Fields{"type": response.Type, "to": msg.From})
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if err := conn.Send(response); err != nil {
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logging.Error("failed to send response", logging.Fields{"error": err})
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} else {
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logging.Debug("response sent successfully")
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}
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}
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}
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// handlePing responds to ping requests.
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func (w *Worker) handlePing(msg *Message) (*Message, error) {
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var ping PingPayload
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if err := msg.ParsePayload(&ping); err != nil {
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return nil, fmt.Errorf("invalid ping payload: %w", err)
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}
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pong := PongPayload{
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SentAt: ping.SentAt,
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ReceivedAt: time.Now().UnixMilli(),
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}
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return msg.Reply(MsgPong, pong)
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}
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// handleGetStats responds with current miner statistics.
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func (w *Worker) handleGetStats(msg *Message) (*Message, error) {
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identity := w.node.GetIdentity()
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if identity == nil {
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return nil, fmt.Errorf("node identity not initialized")
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}
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stats := StatsPayload{
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NodeID: identity.ID,
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NodeName: identity.Name,
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Miners: []MinerStatsItem{},
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Uptime: int64(time.Since(w.startTime).Seconds()),
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}
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if w.minerManager != nil {
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miners := w.minerManager.ListMiners()
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for _, miner := range miners {
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minerStats, err := miner.GetStats()
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if err != nil {
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continue
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}
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// Convert to MinerStatsItem - this is a simplified conversion
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// The actual implementation would need to match the mining package's stats structure
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item := convertMinerStats(miner, minerStats)
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stats.Miners = append(stats.Miners, item)
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}
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}
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return msg.Reply(MsgStats, stats)
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}
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// convertMinerStats converts miner stats to the protocol format.
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func convertMinerStats(miner MinerInstance, rawStats interface{}) MinerStatsItem {
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item := MinerStatsItem{
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Name: miner.GetName(),
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Type: miner.GetType(),
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}
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// Try to extract common fields from the stats
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if statsMap, ok := rawStats.(map[string]interface{}); ok {
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if hashrate, ok := statsMap["hashrate"].(float64); ok {
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item.Hashrate = hashrate
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}
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if shares, ok := statsMap["shares"].(int); ok {
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item.Shares = shares
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}
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if rejected, ok := statsMap["rejected"].(int); ok {
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item.Rejected = rejected
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}
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if uptime, ok := statsMap["uptime"].(int); ok {
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item.Uptime = uptime
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}
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if pool, ok := statsMap["pool"].(string); ok {
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item.Pool = pool
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}
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if algorithm, ok := statsMap["algorithm"].(string); ok {
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item.Algorithm = algorithm
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}
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}
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return item
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}
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// handleStartMiner starts a miner with the given profile.
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func (w *Worker) handleStartMiner(msg *Message) (*Message, error) {
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if w.minerManager == nil {
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return nil, fmt.Errorf("miner manager not configured")
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}
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var payload StartMinerPayload
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if err := msg.ParsePayload(&payload); err != nil {
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return nil, fmt.Errorf("invalid start miner payload: %w", err)
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}
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// Validate miner type is provided
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if payload.MinerType == "" {
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return nil, fmt.Errorf("miner type is required")
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}
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// Get the config from the profile or use the override
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var config interface{}
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if payload.Config != nil {
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config = payload.Config
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} else if w.profileManager != nil {
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profile, err := w.profileManager.GetProfile(payload.ProfileID)
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if err != nil {
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return nil, fmt.Errorf("profile not found: %s", payload.ProfileID)
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}
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config = profile
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} else {
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return nil, fmt.Errorf("no config provided and no profile manager configured")
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}
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// Start the miner
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miner, err := w.minerManager.StartMiner(payload.MinerType, config)
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if err != nil {
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ack := MinerAckPayload{
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Success: false,
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Error: err.Error(),
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}
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return msg.Reply(MsgMinerAck, ack)
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}
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ack := MinerAckPayload{
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Success: true,
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MinerName: miner.GetName(),
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}
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return msg.Reply(MsgMinerAck, ack)
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}
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// handleStopMiner stops a running miner.
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func (w *Worker) handleStopMiner(msg *Message) (*Message, error) {
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if w.minerManager == nil {
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return nil, fmt.Errorf("miner manager not configured")
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}
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var payload StopMinerPayload
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if err := msg.ParsePayload(&payload); err != nil {
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return nil, fmt.Errorf("invalid stop miner payload: %w", err)
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}
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err := w.minerManager.StopMiner(payload.MinerName)
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ack := MinerAckPayload{
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Success: err == nil,
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MinerName: payload.MinerName,
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}
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if err != nil {
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ack.Error = err.Error()
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}
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return msg.Reply(MsgMinerAck, ack)
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}
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// handleGetLogs returns console logs from a miner.
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func (w *Worker) handleGetLogs(msg *Message) (*Message, error) {
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if w.minerManager == nil {
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return nil, fmt.Errorf("miner manager not configured")
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}
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var payload GetLogsPayload
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if err := msg.ParsePayload(&payload); err != nil {
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return nil, fmt.Errorf("invalid get logs payload: %w", err)
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}
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// Validate and limit the Lines parameter to prevent resource exhaustion
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const maxLogLines = 10000
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if payload.Lines <= 0 || payload.Lines > maxLogLines {
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payload.Lines = maxLogLines
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}
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miner, err := w.minerManager.GetMiner(payload.MinerName)
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if err != nil {
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return nil, fmt.Errorf("miner not found: %s", payload.MinerName)
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}
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lines := miner.GetConsoleHistory(payload.Lines)
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logs := LogsPayload{
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MinerName: payload.MinerName,
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Lines: lines,
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HasMore: len(lines) >= payload.Lines,
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}
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return msg.Reply(MsgLogs, logs)
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}
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// handleDeploy handles deployment of profiles or miner bundles.
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func (w *Worker) handleDeploy(conn *PeerConnection, msg *Message) (*Message, error) {
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var payload DeployPayload
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if err := msg.ParsePayload(&payload); err != nil {
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return nil, fmt.Errorf("invalid deploy payload: %w", err)
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}
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// Reconstruct Bundle object from payload
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bundle := &Bundle{
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Type: BundleType(payload.BundleType),
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Name: payload.Name,
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Data: payload.Data,
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Checksum: payload.Checksum,
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}
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// Use shared secret as password (base64 encoded)
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password := ""
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if conn != nil && len(conn.SharedSecret) > 0 {
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password = base64.StdEncoding.EncodeToString(conn.SharedSecret)
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}
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switch bundle.Type {
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case BundleProfile:
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if w.profileManager == nil {
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return nil, fmt.Errorf("profile manager not configured")
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}
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// Decrypt and extract profile data
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profileData, err := ExtractProfileBundle(bundle, password)
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if err != nil {
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return nil, fmt.Errorf("failed to extract profile bundle: %w", err)
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}
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// Unmarshal into interface{} to pass to ProfileManager
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var profile interface{}
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if err := json.Unmarshal(profileData, &profile); err != nil {
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return nil, fmt.Errorf("invalid profile data JSON: %w", err)
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}
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if err := w.profileManager.SaveProfile(profile); err != nil {
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ack := DeployAckPayload{
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Success: false,
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Name: payload.Name,
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Error: err.Error(),
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}
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return msg.Reply(MsgDeployAck, ack)
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}
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ack := DeployAckPayload{
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Success: true,
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Name: payload.Name,
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}
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return msg.Reply(MsgDeployAck, ack)
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case BundleMiner, BundleFull:
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// Determine installation directory
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// We use xdg.DataHome/lethean-desktop/miners/<bundle_name>
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minersDir := filepath.Join(xdg.DataHome, "lethean-desktop", "miners")
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installDir := filepath.Join(minersDir, payload.Name)
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logging.Info("deploying miner bundle", logging.Fields{
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"name": payload.Name,
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"path": installDir,
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"type": payload.BundleType,
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})
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// Extract miner bundle
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minerPath, profileData, err := ExtractMinerBundle(bundle, password, installDir)
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if err != nil {
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return nil, fmt.Errorf("failed to extract miner bundle: %w", err)
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}
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// If the bundle contained a profile config, save it
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if len(profileData) > 0 && w.profileManager != nil {
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var profile interface{}
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if err := json.Unmarshal(profileData, &profile); err != nil {
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logging.Warn("failed to parse profile from miner bundle", logging.Fields{"error": err})
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} else {
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if err := w.profileManager.SaveProfile(profile); err != nil {
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logging.Warn("failed to save profile from miner bundle", logging.Fields{"error": err})
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}
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}
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}
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// Success response
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ack := DeployAckPayload{
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Success: true,
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Name: payload.Name,
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}
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// Log the installation
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logging.Info("miner bundle installed successfully", logging.Fields{
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"name": payload.Name,
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"miner_path": minerPath,
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})
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return msg.Reply(MsgDeployAck, ack)
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default:
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return nil, fmt.Errorf("unknown bundle type: %s", payload.BundleType)
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}
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}
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// RegisterWithTransport registers the worker's message handler with the transport.
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func (w *Worker) RegisterWithTransport() {
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w.transport.OnMessage(w.HandleMessage)
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}
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