ee24b7786a
- generic SystemResourceProbe: owner-agnostic /proc/meminfo system RAM overlaid on the vendor GPU probe, wired on both managed and static paths so the VRAM/GPU/RAM gauge renders with an external llama-server (was dormant) - F-002: classify provider 4xx (e.g. llama.cpp 400) as terminal, not retryable (except 408/429); stops retrying deterministic request failures to exhaustion - F-003: FileSystemPromptLoader expands leading ~ / ~/ to user home - F-004: map InferenceFailedEvent + RetryAttemptedEvent to new ServerMessage.InferenceFailed / RetryAttempted, decoded+rendered in tui-go; ArtifactContentStoredEvent explicitly mapped to null (internal, no warn) - tests: tilde expansion, SystemResourceProbe (static/managed/fail-soft)
471 lines
14 KiB
Go
471 lines
14 KiB
Go
package app
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import (
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"crypto/rand"
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"encoding/hex"
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"fmt"
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"strings"
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"time"
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"github.com/correx/tui-go/internal/protocol"
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)
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func nowMillis() int64 { return time.Now().UnixMilli() }
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func newSessionID() string {
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b := make([]byte, 16)
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_, _ = rand.Read(b)
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return hex.EncodeToString(b)
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}
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func containsFold(haystack, needle string) bool {
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return strings.Contains(strings.ToLower(haystack), strings.ToLower(needle))
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}
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func formatTime(epochMillis int64) string {
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return time.UnixMilli(epochMillis).UTC().Format("15:04:05")
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}
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// inferCategory maps an event type string to a display category, matching the
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// Kotlin inferCategory heuristic.
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func inferCategory(t string) string {
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lt := strings.ToLower(t)
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switch {
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case strings.Contains(lt, "approval"):
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return "Approval"
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case strings.Contains(lt, "infer"):
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return "Inference"
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case strings.Contains(lt, "tool"):
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return "Tool"
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case strings.Contains(lt, "context"):
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return "Context"
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case strings.Contains(lt, "stage"), strings.Contains(lt, "lifecycle"):
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return "Lifecycle"
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case strings.Contains(lt, "session"), strings.Contains(lt, "artifact"):
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return "Domain"
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default:
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return "Lifecycle"
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}
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}
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// narrationLine maps a progress frame to a dim router-feed line, or "" if the
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// frame is not a narration trigger.
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func narrationLine(msg protocol.ServerMessage) string {
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switch msg.Type {
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case protocol.TypeStageStarted:
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return "→ " + msg.StageID
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case protocol.TypeStageCompleted:
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return "✓ " + msg.StageID
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case protocol.TypeStageFailed:
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if msg.Reason != "" {
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return "⚠ " + msg.StageID + ": " + msg.Reason
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}
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return "⚠ " + msg.StageID
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case protocol.TypeSessionPaused:
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return "⏸ paused"
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case protocol.TypeSessionResumed:
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return "▶ resumed"
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case protocol.TypeSessionCompleted:
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return "✓ workflow complete"
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case protocol.TypeSessionFailed:
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if msg.Reason != "" {
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return "✗ workflow failed: " + msg.Reason
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}
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return "✗ workflow failed"
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default:
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return ""
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}
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}
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// applyServer mutates the model for a single (non-buffered) server message.
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func (m *Model) applyServer(msg protocol.ServerMessage) {
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debugLog("SRV type=%s session=%s reason=%s", msg.Type, msg.SessionID, msg.Reason)
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// Auto-vivify: any event for an unknown session creates it, so session
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// existence is derived from the event stream, not a dedicated control frame.
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if msg.IsEventBearing() && msg.SessionID != "" {
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m.ensureSession(msg.SessionID)
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}
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// Inject dim narration lines for progress frames. Runs in addition to the
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// per-type handling below (which feeds the events panel separately).
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if line := narrationLine(msg); line != "" {
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m.appendRouter(msg.SessionID, RouterEntry{Role: "narration", Content: line})
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}
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switch msg.Type {
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case protocol.TypeSessionAnnounced:
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m.onSessionAnnounced(msg)
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case protocol.TypeRouterNarration:
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entry := RouterEntry{Role: "narration_llm", Content: msg.Content}
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if msg.LatencyMs != nil && msg.TotalTokens != nil {
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entry.Metrics = &TurnMetrics{LatencyMs: *msg.LatencyMs, TotalTokens: *msg.TotalTokens}
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}
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m.appendRouter(msg.SessionID, entry)
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case protocol.TypeChatTurn:
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m.routerConnected = true
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role := "router"
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if msg.Role == "USER" {
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role = "user"
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}
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entry := RouterEntry{Role: role, Content: msg.Content}
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if msg.LatencyMs != nil && msg.TotalTokens != nil {
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entry.Metrics = &TurnMetrics{LatencyMs: *msg.LatencyMs, TotalTokens: *msg.TotalTokens}
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}
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m.appendRouter(msg.SessionID, entry)
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if s := m.session(msg.SessionID); s != nil {
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s.LastEventAt = nowMillis()
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}
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case protocol.TypeSessionPaused:
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label := "PAUSED"
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if msg.Reason == "APPROVAL_PENDING" {
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label = "PAUSED awaiting approval"
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}
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m.touch(msg.SessionID, label)
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if s := m.session(msg.SessionID); s != nil {
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s.Active = false
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}
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case protocol.TypeSessionResumed:
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if s := m.session(msg.SessionID); s != nil {
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s.Status = "ACTIVE"
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s.Pending = nil
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s.LastEventAt = nowMillis()
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}
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case protocol.TypeSessionCompleted:
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m.touch(msg.SessionID, "COMPLETED")
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if s := m.session(msg.SessionID); s != nil {
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s.Active = false
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}
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case protocol.TypeSessionFailed:
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m.touch(msg.SessionID, "FAILED")
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if s := m.session(msg.SessionID); s != nil {
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s.Active = false
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}
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case protocol.TypeStageStarted:
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if s := m.session(msg.SessionID); s != nil {
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s.CurrentStage = msg.StageID
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s.Tools = nil
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s.addEvent(msg.OccurredAt, "StageStarted", msg.StageID)
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}
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case protocol.TypeStageCompleted:
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if s := m.session(msg.SessionID); s != nil {
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s.CurrentStage = ""
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s.addEvent(msg.OccurredAt, "StageCompleted", msg.StageID)
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}
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case protocol.TypeStageFailed:
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if s := m.session(msg.SessionID); s != nil {
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s.CurrentStage = ""
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s.addEvent(msg.OccurredAt, "StageFailed", msg.StageID)
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}
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case protocol.TypeInferenceStarted:
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if s := m.session(msg.SessionID); s != nil {
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s.Active = true
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s.addEvent(nowMillis(), "InferenceStarted", msg.StageID)
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}
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case protocol.TypeInferenceDone:
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if s := m.session(msg.SessionID); s != nil {
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s.Active = false
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s.LastOutput = msg.Summary
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if msg.Response != "" {
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s.LastResponse = msg.Response
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}
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s.addEvent(msg.OccurredAt, "InferenceCompleted", msg.StageID)
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}
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case protocol.TypeInferenceTimeout:
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if s := m.session(msg.SessionID); s != nil {
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s.Active = false
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s.addEvent(nowMillis(), "InferenceTimedOut", msg.StageID)
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}
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case protocol.TypeInferenceFailed:
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if s := m.session(msg.SessionID); s != nil {
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s.Active = false
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s.addEvent(nowMillis(), "InferenceFailed", msg.StageID+": "+msg.Reason)
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}
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case protocol.TypeInferenceRetry:
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if s := m.session(msg.SessionID); s != nil {
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s.addEvent(nowMillis(), "RetryAttempted",
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fmt.Sprintf("%s (%d/%d): %s", msg.StageID, msg.AttemptNumber, msg.MaxAttempts, msg.FailureReason))
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}
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case protocol.TypeToolStarted:
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if s := m.session(msg.SessionID); s != nil {
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s.Active = true
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s.Tools = append(s.Tools, ToolRecord{Name: msg.ToolName, Status: ToolStarted})
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if len(s.Tools) > 8 {
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s.Tools = s.Tools[len(s.Tools)-8:]
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}
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s.LastEventAt = nowMillis()
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}
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case protocol.TypeToolCompleted:
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if s := m.session(msg.SessionID); s != nil {
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s.Active = false
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s.markTool(msg.ToolName, ToolCompleted)
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s.LastOutput = msg.ToolName + ": " + msg.Summary
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s.addEvent(msg.OccurredAt, "ToolCompleted", msg.ToolName)
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}
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if msg.Diff != nil && *msg.Diff != "" {
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m.appendRouter(msg.SessionID, RouterEntry{Role: "tool", Content: *msg.Diff})
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}
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case protocol.TypeToolAssessed:
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if s := m.session(msg.SessionID); s != nil {
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if msg.Disposition != "PROCEED" || len(msg.AssessedIssues) > 0 {
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detail := msg.Disposition
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if len(msg.AssessedIssues) > 0 {
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detail += " [" + msg.AssessedIssues[0].Code + "]"
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}
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s.LastOutput = msg.ToolName + " assessed: " + detail
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s.addEvent(msg.OccurredAt, "ToolAssessed", detail)
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}
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}
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case protocol.TypeToolFailed:
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if s := m.session(msg.SessionID); s != nil {
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s.markTool(msg.ToolName, ToolFailed)
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s.LastEventAt = msg.OccurredAt
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}
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case protocol.TypeToolRejected:
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if s := m.session(msg.SessionID); s != nil {
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s.markTool(msg.ToolName, ToolRejected)
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s.LastEventAt = nowMillis()
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}
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case protocol.TypeArtifactCreated:
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if s := m.session(msg.SessionID); s != nil {
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s.addEvent(nowMillis(), "ArtifactCreated", msg.ArtifactID)
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}
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case protocol.TypeWorkspaceBound:
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if s := m.session(msg.SessionID); s != nil {
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s.WorkspaceRoot = msg.WorkspaceRoot
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}
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case protocol.TypeApprovalRequired:
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m.onApprovalRequired(msg)
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case protocol.TypeApprovalResolved:
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if s := m.session(msg.SessionID); s != nil {
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s.Pending = nil
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detail := msg.Outcome
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if msg.Reason != "" {
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detail += " — " + msg.Reason
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}
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s.addEvent(msg.OccurredAt, "ApprovalResolved", detail)
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s.LastEventAt = nowMillis()
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}
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case protocol.TypeSessionSnapshot:
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m.onSnapshot(msg)
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case protocol.TypeStageManifest:
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if s := m.session(msg.SessionID); s != nil {
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byStage := map[string][]ManifestTool{}
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for _, st := range msg.Stages {
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tools := make([]ManifestTool, 0, len(st.Tools))
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for _, td := range st.Tools {
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tools = append(tools, ManifestTool{Name: td.Name, Tier: td.Tier})
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}
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byStage[st.StageID] = tools
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}
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s.ToolsByStage = byStage
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}
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case protocol.TypeProviderStatus:
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m.currentModel = msg.ProviderID
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if containsFold(msg.ProviderID, "llama") || containsFold(msg.ProviderID, "local") {
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m.providerType = "LOCAL"
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} else {
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m.providerType = "REMOTE"
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}
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case protocol.TypeWorkflowList:
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m.workflows = m.workflows[:0]
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for _, w := range msg.Workflows {
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m.workflows = append(m.workflows, Workflow{ID: w.WorkflowID, Description: w.Description})
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}
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case protocol.TypeModelChanged:
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if msg.Loaded {
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m.currentModel = msg.ModelID
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m.providerType = "LOCAL"
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}
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case protocol.TypeModelList:
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m.availableModels = append(m.availableModels[:0], msg.Models...)
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if msg.Current != "" {
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m.currentModel = msg.Current
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m.providerType = "LOCAL"
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}
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case protocol.TypeResourceStatus:
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m.gpuUsedMB = msg.GpuMemoryUsedMb
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m.gpuTotalMB = msg.GpuMemoryTotalMb
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m.gpuUtil = msg.GpuUtilizationPct
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m.ramMB = msg.ProcessRssMb
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m.sysRamUsedMB = msg.SystemRamUsedMb
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m.sysRamTotalMB = msg.SystemRamTotalMb
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case protocol.TypeArtifactList:
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m.artifacts = msg.Artifacts
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m.artifactsFor = msg.SessionID
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m.artifactsLoading = false
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m.artifactScroll = 0
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if m.artifactsIndex >= len(m.artifacts) {
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m.artifactsIndex = 0
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}
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case protocol.TypeConfigSnapshot:
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m.configFields = msg.ConfigFields
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m.configRestart = msg.ConfigRestartRequired
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m.configLoading = false
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if msg.ConfigError != nil {
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m.configError = *msg.ConfigError
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} else {
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// A clean snapshot means the staged edits were accepted (or this is a fresh fetch).
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m.configError = ""
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m.configStaged = map[string]string{}
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}
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if m.configIndex >= len(m.configFields) {
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m.configIndex = 0
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}
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}
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// Background-update badge for non-selected sessions.
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if sid := sessionIDOf(msg); sid != "" && sid != m.selectedID {
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m.bgUpdates++
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}
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}
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func sessionIDOf(msg protocol.ServerMessage) string {
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switch msg.Type {
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case protocol.TypeStageManifest, protocol.TypeSnapshotComplete,
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protocol.TypeProtocolError, protocol.TypeProviderStatus,
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protocol.TypeWorkflowList, protocol.TypeRouterResponse,
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protocol.TypeModelChanged, protocol.TypeModelList, protocol.TypeResourceStatus,
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protocol.TypeArtifactList, protocol.TypeConfigSnapshot:
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return ""
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default:
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return msg.SessionID
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}
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}
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// onSessionAnnounced fills in a session's workflow identity (the announce is the
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// only event carrying workflowId) and applies auto-focus. The session entry itself
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// was already created by the auto-vivify path in applyServer.
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func (m *Model) onSessionAnnounced(msg protocol.ServerMessage) {
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s := m.ensureSession(msg.SessionID)
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s.Status = "ACTIVE"
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if msg.WorkflowID != "" {
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s.WorkflowID = msg.WorkflowID
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s.Name = msg.WorkflowID
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}
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s.LastEventAt = nowMillis()
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if m.pendingWorkflowFocus {
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m.selectedID = msg.SessionID
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m.sessionEntered = true
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m.pendingWorkflowFocus = false
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} else if m.selectedID == "" {
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m.selectedID = msg.SessionID
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}
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}
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func (m *Model) onApprovalRequired(msg protocol.ServerMessage) {
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risk := "unknown"
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var rationale []string
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if msg.RiskSummary != nil {
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risk = msg.RiskSummary.Level
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rationale = msg.RiskSummary.Rationale
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}
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info := &Approval{
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RequestID: msg.RequestID,
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SessionID: msg.SessionID,
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Tier: msg.Tier,
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Risk: risk,
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ToolName: deref(&msg.ToolName),
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Preview: derefp(msg.Preview),
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Rationale: rationale,
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}
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if s := m.session(msg.SessionID); s != nil {
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s.Pending = info
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}
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}
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func (m *Model) onSnapshot(msg protocol.ServerMessage) {
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var pending *Approval
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if len(msg.PendingAppr) > 0 {
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a := msg.PendingAppr[0]
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pending = &Approval{
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RequestID: a.RequestID, SessionID: msg.SessionID, Tier: a.Tier,
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Risk: "unknown", ToolName: derefp(a.ToolName), Preview: derefp(a.Preview),
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}
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}
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status := "running"
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if msg.State != nil {
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status = msg.State.Status
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}
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if pending != nil {
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status = "PAUSED awaiting approval"
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}
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sess := Session{
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ID: msg.SessionID, Status: status, WorkflowID: msg.WorkflowID,
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Name: msg.WorkflowID, LastEventAt: nowMillis(), Pending: pending,
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}
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if msg.State != nil && msg.State.CurrentStageID != nil {
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sess.CurrentStage = *msg.State.CurrentStageID
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}
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for _, e := range msg.RecentEvents {
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sess.Events = append(sess.Events, EventEntry{formatTime(e.Timestamp), e.Type, e.Detail})
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}
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for _, t := range msg.Tools {
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sess.Tools = append(sess.Tools, ToolRecord{Name: t.Name, Tier: t.Tier, Status: toolStatusOf(t.Status)})
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}
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// Replace existing session with same id, else append.
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replaced := false
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for i := range m.sessions {
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if m.sessions[i].ID == msg.SessionID {
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m.sessions[i] = sess
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replaced = true
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break
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}
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}
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if !replaced {
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m.sessions = append(m.sessions, sess)
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}
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if m.selectedID == "" {
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m.selectedID = msg.SessionID
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}
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}
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func (m *Model) touch(id, status string) {
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if s := m.session(id); s != nil {
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s.Status = status
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s.LastEventAt = nowMillis()
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}
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}
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// --- Session helpers ---
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// maxSessionEvents bounds retained per-session history (effectively "all" for a
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// session, while keeping memory bounded on very long runs). The EVENTS panel
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// shows the tail that fits; the `e` inspector scrolls the full retained list.
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const maxSessionEvents = 1000
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func (s *Session) addEvent(epochMillis int64, typ, detail string) {
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s.Events = append(s.Events, EventEntry{formatTime(epochMillis), typ, detail})
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if len(s.Events) > maxSessionEvents {
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s.Events = s.Events[len(s.Events)-maxSessionEvents:]
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}
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s.LastEventAt = epochMillis
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}
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func (s *Session) markTool(name string, status ToolStatus) {
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for i := range s.Tools {
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if s.Tools[i].Name == name && s.Tools[i].Status == ToolStarted {
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s.Tools[i].Status = status
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}
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}
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}
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func toolStatusOf(s string) ToolStatus {
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switch s {
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case "COMPLETED":
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return ToolCompleted
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case "FAILED":
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return ToolFailed
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case "REJECTED":
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return ToolRejected
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default:
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return ToolStarted
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}
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}
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func deref(s *string) string {
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if s == nil {
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return ""
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}
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return *s
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}
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func derefp(s *string) string { return deref(s) }
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