310 lines
9.7 KiB
Go
310 lines
9.7 KiB
Go
package handlers
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import (
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"database/sql"
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"encoding/json"
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"fmt"
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"git.gobha.me/xcaliber/chat-switchboard/database"
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)
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// ── Tree Types ──────────────────────────────
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// PathMessage represents a single message in an active path, enriched
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// with sibling metadata for the frontend branch indicator.
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type PathMessage struct {
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ID string `json:"id"`
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ParentID *string `json:"parent_id"`
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Role string `json:"role"`
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Content string `json:"content"`
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Model *string `json:"model"`
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TokensUsed *int `json:"tokens_used,omitempty"`
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ToolCalls *json.RawMessage `json:"tool_calls,omitempty"`
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Metadata *json.RawMessage `json:"metadata,omitempty"`
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SiblingCount int `json:"sibling_count"`
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SiblingIndex int `json:"sibling_index"`
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ParticipantType string `json:"participant_type,omitempty"`
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ParticipantID string `json:"participant_id,omitempty"`
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CreatedAt string `json:"created_at"`
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}
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// SiblingInfo is a lightweight entry for the siblings listing endpoint.
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type SiblingInfo struct {
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ID string `json:"id"`
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Role string `json:"role"`
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Model *string `json:"model,omitempty"`
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SiblingIndex int `json:"sibling_index"`
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Preview string `json:"preview"` // first ~80 chars of content
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CreatedAt string `json:"created_at"`
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}
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// ── Get Active Leaf ─────────────────────────
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// getActiveLeaf returns the cursor's active_leaf_id for a user in a channel.
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// Falls back to the chronologically latest live message if no cursor exists.
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func getActiveLeaf(channelID, userID string) (*string, error) {
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var leafID *string
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// Try cursor first
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err := database.DB.QueryRow(`
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SELECT active_leaf_id FROM channel_cursors
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WHERE channel_id = $1 AND user_id = $2
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`, channelID, userID).Scan(&leafID)
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if err == nil && leafID != nil {
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// Verify the leaf still exists and isn't deleted
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var exists bool
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database.DB.QueryRow(`
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SELECT EXISTS(SELECT 1 FROM messages WHERE id = $1 AND deleted_at IS NULL)
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`, *leafID).Scan(&exists)
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if exists {
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return leafID, nil
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}
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}
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// Fallback: latest live message in channel
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var fallbackID string
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err = database.DB.QueryRow(`
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SELECT id FROM messages
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WHERE channel_id = $1 AND deleted_at IS NULL
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ORDER BY created_at DESC LIMIT 1
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`, channelID).Scan(&fallbackID)
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if err == sql.ErrNoRows {
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return nil, nil // empty channel
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}
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if err != nil {
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return nil, err
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}
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return &fallbackID, nil
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}
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// ── Get Active Path ─────────────────────────
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// getActivePath walks from the active leaf up to the root via parent_id,
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// returning messages in root-first order. This is what gets sent to the LLM.
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func getActivePath(channelID, userID string) ([]PathMessage, error) {
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leafID, err := getActiveLeaf(channelID, userID)
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if err != nil {
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return nil, err
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}
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if leafID == nil {
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return []PathMessage{}, nil // empty channel
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}
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return getPathToLeaf(channelID, *leafID)
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}
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// getPathToLeaf walks from a specific leaf up to root, returning root-first.
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func getPathToLeaf(channelID, leafID string) ([]PathMessage, error) {
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rows, err := database.DB.Query(`
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WITH RECURSIVE path AS (
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-- Anchor: start at the leaf
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SELECT id, parent_id, role, content, model, tokens_used, tool_calls, metadata,
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participant_type, participant_id, sibling_index, created_at,
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0 AS depth
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FROM messages
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WHERE id = $1 AND channel_id = $2 AND deleted_at IS NULL
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UNION ALL
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-- Walk up via parent_id
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SELECT m.id, m.parent_id, m.role, m.content, m.model, m.tokens_used, m.tool_calls, m.metadata,
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m.participant_type, m.participant_id, m.sibling_index, m.created_at,
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p.depth + 1
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FROM messages m
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JOIN path p ON m.id = p.parent_id
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WHERE m.deleted_at IS NULL
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)
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SELECT id, parent_id, role, content, model, tokens_used, tool_calls, metadata,
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participant_type, participant_id, sibling_index, created_at
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FROM path
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ORDER BY depth DESC
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`, leafID, channelID)
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if err != nil {
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return nil, fmt.Errorf("getPathToLeaf: %w", err)
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}
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defer rows.Close()
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var path []PathMessage
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for rows.Next() {
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var m PathMessage
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var participantType, participantID sql.NullString
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var toolCallsJSON, metadataJSON []byte
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if err := rows.Scan(
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&m.ID, &m.ParentID, &m.Role, &m.Content, &m.Model, &m.TokensUsed,
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&toolCallsJSON, &metadataJSON,
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&participantType, &participantID, &m.SiblingIndex, &m.CreatedAt,
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); err != nil {
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return nil, fmt.Errorf("getPathToLeaf scan: %w", err)
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}
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if len(toolCallsJSON) > 0 && string(toolCallsJSON) != "null" {
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raw := json.RawMessage(toolCallsJSON)
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m.ToolCalls = &raw
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}
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if len(metadataJSON) > 0 && string(metadataJSON) != "null" && string(metadataJSON) != "{}" {
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raw := json.RawMessage(metadataJSON)
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m.Metadata = &raw
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}
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if participantType.Valid {
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m.ParticipantType = participantType.String
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}
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if participantID.Valid {
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m.ParticipantID = participantID.String
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}
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path = append(path, m)
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}
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// Enrich with sibling counts
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for i := range path {
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path[i].SiblingCount = getSiblingCount(channelID, path[i].ParentID)
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}
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return path, nil
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}
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// ── Sibling Queries ─────────────────────────
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// getSiblingCount returns how many live siblings share the same parent_id.
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// Root messages (parent_id IS NULL) count all roots in the same channel.
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func getSiblingCount(channelID string, parentID *string) int {
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var count int
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if parentID == nil {
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database.DB.QueryRow(`
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SELECT COUNT(*) FROM messages
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WHERE channel_id = $1 AND parent_id IS NULL AND deleted_at IS NULL
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`, channelID).Scan(&count)
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} else {
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database.DB.QueryRow(`
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SELECT COUNT(*) FROM messages
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WHERE parent_id = $1 AND deleted_at IS NULL
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`, *parentID).Scan(&count)
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}
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if count == 0 {
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count = 1
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}
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return count
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}
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// getSiblings returns all live siblings of a given message (including itself),
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// ordered by sibling_index.
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func getSiblings(messageID string) ([]SiblingInfo, int, error) {
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// First get the parent_id of the target message
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var parentID *string
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var channelID string
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err := database.DB.QueryRow(`
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SELECT parent_id, channel_id FROM messages
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WHERE id = $1 AND deleted_at IS NULL
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`, messageID).Scan(&parentID, &channelID)
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if err != nil {
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return nil, 0, fmt.Errorf("message not found: %w", err)
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}
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var rows *sql.Rows
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if parentID == nil {
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// Root messages: siblings are other roots in the same channel
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rows, err = database.DB.Query(`
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SELECT id, role, model, sibling_index, LEFT(content, 80), created_at
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FROM messages
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WHERE channel_id = $1 AND parent_id IS NULL AND deleted_at IS NULL
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ORDER BY sibling_index, created_at
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`, channelID)
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} else {
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rows, err = database.DB.Query(`
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SELECT id, role, model, sibling_index, LEFT(content, 80), created_at
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FROM messages
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WHERE parent_id = $1 AND deleted_at IS NULL
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ORDER BY sibling_index, created_at
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`, *parentID)
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}
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if err != nil {
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return nil, 0, err
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}
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defer rows.Close()
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var siblings []SiblingInfo
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currentIdx := 0
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for i := 0; rows.Next(); i++ {
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var s SiblingInfo
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if err := rows.Scan(&s.ID, &s.Role, &s.Model, &s.SiblingIndex, &s.Preview, &s.CreatedAt); err != nil {
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return nil, 0, err
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}
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if s.ID == messageID {
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currentIdx = i
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}
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siblings = append(siblings, s)
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}
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return siblings, currentIdx, nil
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}
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// ── Find Leaf ───────────────────────────────
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// findLeafFromMessage walks down from a message to find the deepest descendant.
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// Follows the first child (lowest sibling_index) at each level.
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// Used when switching branches: clicking a mid-tree sibling navigates to its leaf.
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func findLeafFromMessage(messageID string) (string, error) {
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var leafID string
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err := database.DB.QueryRow(`
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WITH RECURSIVE descendants AS (
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SELECT id, 0 AS depth
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FROM messages
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WHERE id = $1 AND deleted_at IS NULL
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UNION ALL
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SELECT child.id, d.depth + 1
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FROM messages child
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JOIN descendants d ON child.parent_id = d.id
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WHERE child.deleted_at IS NULL
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AND child.sibling_index = (
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SELECT MIN(sibling_index) FROM messages
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WHERE parent_id = d.id AND deleted_at IS NULL
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)
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)
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SELECT id FROM descendants
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ORDER BY depth DESC
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LIMIT 1
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`, messageID).Scan(&leafID)
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if err != nil {
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return messageID, nil // if anything fails, just use the message itself
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}
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return leafID, nil
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}
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// ── Next Sibling Index ──────────────────────
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// nextSiblingIndex returns the next sibling_index for a new child of parentID.
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// For root messages (parentID is nil), counts existing roots in the channel.
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func nextSiblingIndex(channelID string, parentID *string) int {
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var maxIdx sql.NullInt64
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if parentID == nil {
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database.DB.QueryRow(`
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SELECT MAX(sibling_index) FROM messages
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WHERE channel_id = $1 AND parent_id IS NULL AND deleted_at IS NULL
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`, channelID).Scan(&maxIdx)
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} else {
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database.DB.QueryRow(`
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SELECT MAX(sibling_index) FROM messages
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WHERE parent_id = $1 AND deleted_at IS NULL
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`, *parentID).Scan(&maxIdx)
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}
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if !maxIdx.Valid {
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return 0
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}
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return int(maxIdx.Int64) + 1
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}
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// ── Update Cursor ───────────────────────────
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// updateCursor upserts the channel_cursors row for a user.
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func updateCursor(channelID, userID, messageID string) error {
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_, err := database.DB.Exec(`
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INSERT INTO channel_cursors (channel_id, user_id, active_leaf_id)
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VALUES ($1, $2, $3)
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ON CONFLICT (channel_id, user_id) DO UPDATE SET
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active_leaf_id = $3, updated_at = NOW()
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`, channelID, userID, messageID)
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return err
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}
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