594 lines
18 KiB
Go
594 lines
18 KiB
Go
package main
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import (
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"crypto/rand"
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"encoding/hex"
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"net/http"
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"strconv"
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"strings"
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"time"
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"github.com/gin-gonic/gin"
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"github.com/gorilla/websocket"
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"gorm.io/gorm"
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)
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var upgrader = websocket.Upgrader{
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CheckOrigin: func(r *http.Request) bool { return true },
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}
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type signupRequest struct {
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InviteCode string `json:"invite_code" binding:"required"`
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DisplayName string `json:"display_name" binding:"required"`
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}
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type sendMessageRequest struct {
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SenderID uint `json:"sender_id" binding:"required"`
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Text string `json:"text" binding:"required"`
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SenderMode SenderMode `json:"sender_mode"`
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// Approved represents the human tapping "승인" on an L1 draft, or on an
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// L2 draft outside the whitelist (PRD.md §2.2). Ignored for
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// human-authored messages.
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Approved bool `json:"approved"`
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}
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type updateTwinSettingsRequest struct {
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AutonomyLevel AutonomyLevel `json:"autonomy_level" binding:"required"`
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}
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type createWhitelistRuleRequest struct {
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ContactID *uint `json:"contact_id"`
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TopicKeyword string `json:"topic_keyword" binding:"required"`
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}
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type draftMessageRequest struct {
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ContextLines []string `json:"context_lines" binding:"required"`
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StyleExamples []string `json:"style_examples"`
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History []string `json:"history"`
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K int `json:"k"`
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}
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func setupRouter(db *gorm.DB, relay *ConnectionManager, ai *AIServiceClient) *gin.Engine {
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r := gin.Default()
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r.GET("/health", func(c *gin.Context) {
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c.JSON(http.StatusOK, gin.H{"status": "ok"})
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})
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r.POST("/invites", func(c *gin.Context) {
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code, err := generateInviteCode()
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if err != nil {
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c.JSON(http.StatusInternalServerError, gin.H{"detail": err.Error()})
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return
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}
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invite := InviteCode{Code: code}
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if err := db.Create(&invite).Error; err != nil {
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c.JSON(http.StatusInternalServerError, gin.H{"detail": err.Error()})
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return
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}
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c.JSON(http.StatusOK, gin.H{"code": invite.Code})
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})
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r.GET("/admin/metrics", func(c *gin.Context) {
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// v1-minimal (roadmap.md §2.6): only counts honestly derivable from
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// the current schema. Draft-generation latency and AI-service error
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// rate need a request-timing/logging layer that doesn't exist yet --
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// not fabricated here, left for that future work.
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var usersTotal, humanMessages, twinMessages, escalationsTotal int64
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var conversationsTotal, conversationsVetoed, invitesMinted, invitesUsed int64
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db.Model(&User{}).Count(&usersTotal)
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db.Model(&Message{}).Where("sender_mode = ?", SenderHuman).Count(&humanMessages)
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db.Model(&Message{}).Where("sender_mode = ?", SenderTwin).Count(&twinMessages)
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db.Model(&EscalationLog{}).Count(&escalationsTotal)
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db.Model(&Conversation{}).Count(&conversationsTotal)
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db.Model(&Conversation{}).Where("twin_disabled_by_peer = ?", true).Count(&conversationsVetoed)
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db.Model(&InviteCode{}).Count(&invitesMinted)
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db.Model(&InviteCode{}).Where("used_at IS NOT NULL").Count(&invitesUsed)
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type reasonCount struct {
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Reason string
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Count int64
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}
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var reasonCounts []reasonCount
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db.Model(&EscalationLog{}).Select("reason, count(*) as count").Group("reason").Scan(&reasonCounts)
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escalationsByReason := map[string]int64{}
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for _, rc := range reasonCounts {
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escalationsByReason[rc.Reason] = rc.Count
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}
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var peerVetoRate float64
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if conversationsTotal > 0 {
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peerVetoRate = float64(conversationsVetoed) / float64(conversationsTotal)
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}
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c.JSON(http.StatusOK, gin.H{
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"users_total": usersTotal,
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"messages_human_total": humanMessages,
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"messages_twin_total": twinMessages,
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"escalations_total": escalationsTotal,
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"escalations_by_reason": escalationsByReason,
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"conversations_total": conversationsTotal,
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"conversations_vetoed": conversationsVetoed,
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// Approximates vision.md's "분신 거부율" metric at conversation
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// granularity (vetoed conversations / all conversations) --
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// vision.md doesn't pin down the exact denominator, so treat
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// this as a first approximation, not the final definition.
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"peer_veto_rate": peerVetoRate,
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"invites_minted": invitesMinted,
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"invites_used": invitesUsed,
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})
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})
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r.POST("/auth/signup", func(c *gin.Context) {
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var req signupRequest
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if err := c.ShouldBindJSON(&req); err != nil {
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c.JSON(http.StatusBadRequest, gin.H{"detail": err.Error()})
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return
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}
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// 초대 기반 베타(roadmap.md §2.6): 가입은 누군가 실제로 발급한 미사용
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// 코드가 있어야만 된다 -- 아무 문자열이나 처음 쓰면 통과되던 이전
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// 방식은 "초대 기반"이 아니었음.
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var invite InviteCode
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if err := db.Where("code = ?", req.InviteCode).First(&invite).Error; err != nil {
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c.JSON(http.StatusBadRequest, gin.H{"detail": "invalid invite code"})
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return
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}
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if invite.UsedAt != nil {
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c.JSON(http.StatusConflict, gin.H{"detail": "invite code already used"})
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return
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}
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user := User{InviteCode: req.InviteCode, DisplayName: req.DisplayName}
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if err := db.Create(&user).Error; err != nil {
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c.JSON(http.StatusInternalServerError, gin.H{"detail": err.Error()})
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return
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}
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db.Create(&TwinSettings{UserID: user.ID, AutonomyLevel: AutonomyL0})
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now := time.Now()
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invite.UsedAt = &now
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invite.UsedByUserID = &user.ID
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db.Save(&invite)
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c.JSON(http.StatusOK, gin.H{"id": user.ID, "display_name": user.DisplayName})
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})
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r.POST("/conversations/:id/messages", func(c *gin.Context) {
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convID, ok := parseUintParam(c, "id")
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if !ok {
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return
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}
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var conversation Conversation
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if err := db.First(&conversation, convID).Error; err != nil {
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c.JSON(http.StatusNotFound, gin.H{"detail": "conversation not found"})
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return
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}
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var req sendMessageRequest
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if err := c.ShouldBindJSON(&req); err != nil {
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c.JSON(http.StatusBadRequest, gin.H{"detail": err.Error()})
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return
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}
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if req.SenderMode == "" {
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req.SenderMode = SenderHuman
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}
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// Hard gate: a twin-authored send is an unattended action, so it
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// must clear escalation_filter regardless of how it got here --
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// this is the one chokepoint every twin auto-send passes through,
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// so no client or upstream path can bypass it (AGENTS.md absolute
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// safety invariants). Human-authored messages are the human's own
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// words and are never gated. On any doubt (AI service unreachable
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// or erroring) we fail closed and block the send. Peer veto is
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// checked first (it's a total kill switch for this conversation,
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// independent of content), then escalation, then autonomy level --
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// none of the later checks can override an earlier block.
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if req.SenderMode == SenderTwin {
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if conversation.TwinDisabledByPeer {
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c.JSON(http.StatusForbidden, gin.H{"detail": "상대방이 분신을 거부해서 이 대화방에서는 자동 발송이 꺼져 있습니다"})
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return
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}
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result, err := ai.checkEscalation(req.Text)
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if err != nil {
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c.JSON(http.StatusBadGateway, gin.H{"detail": "escalation gate unavailable, twin send blocked: " + err.Error()})
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return
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}
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if result.Escalate {
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db.Create(&EscalationLog{
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UserID: req.SenderID,
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ConversationID: convID,
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Reason: result.Reason,
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MessageSnippet: req.Text,
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})
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c.JSON(http.StatusForbidden, gin.H{"detail": "escalated", "reason": result.Reason})
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return
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}
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// Autonomy gate (PRD.md §2.1/§2.2, tech-design.md §3): missing
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// settings fail closed to L0, the documented default.
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level := AutonomyL0
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var settings TwinSettings
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if err := db.Where("user_id = ?", req.SenderID).First(&settings).Error; err == nil {
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level = settings.AutonomyLevel
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}
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switch level {
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case AutonomyL0:
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c.JSON(http.StatusForbidden, gin.H{"detail": "L0(비서 모드)에서는 분신 자동 발송이 허용되지 않습니다 -- 초안만 생성하고 사람이 직접 보내세요"})
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return
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case AutonomyL1:
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if !req.Approved {
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c.JSON(http.StatusForbidden, gin.H{"detail": "L1은 발송 전 사용자 승인이 필요합니다"})
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return
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}
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case AutonomyL2:
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if !req.Approved && !whitelistMatches(db, req.SenderID, req.Text) {
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c.JSON(http.StatusForbidden, gin.H{"detail": "화이트리스트에 없는 주제는 L1과 동일하게 사용자 승인이 필요합니다"})
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return
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}
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default:
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c.JSON(http.StatusForbidden, gin.H{"detail": "알 수 없는 자율성 레벨이라 발송을 차단합니다"})
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return
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}
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}
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message := Message{
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ConversationID: convID,
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SenderID: req.SenderID,
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SenderMode: req.SenderMode,
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Text: req.Text,
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}
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if err := db.Create(&message).Error; err != nil {
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c.JSON(http.StatusInternalServerError, gin.H{"detail": err.Error()})
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return
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}
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relay.broadcast(convID, gin.H{
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"type": "message",
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"id": message.ID,
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"sender_id": message.SenderID,
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"sender_mode": message.SenderMode,
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"text": message.Text,
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})
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c.JSON(http.StatusOK, gin.H{"id": message.ID})
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})
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r.POST("/messages/:id/retract", func(c *gin.Context) {
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msgID, ok := parseUintParam(c, "id")
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if !ok {
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return
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}
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var message Message
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if err := db.First(&message, msgID).Error; err != nil {
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c.JSON(http.StatusNotFound, gin.H{"detail": "message not found"})
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return
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}
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// One-tap undo (PRD.md §3.1, AGENTS.md "every automatic action needs
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// post-hoc notification + one-tap undo") applies to unattended
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// twin auto-sends -- a human retracting their own words is a
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// different, unrelated feature this endpoint doesn't cover.
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if message.SenderMode != SenderTwin {
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c.JSON(http.StatusBadRequest, gin.H{"detail": "only twin-authored (auto-sent) messages can be retracted"})
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return
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}
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if message.Retracted {
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c.JSON(http.StatusConflict, gin.H{"detail": "message already retracted"})
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return
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}
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message.Retracted = true
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if err := db.Save(&message).Error; err != nil {
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c.JSON(http.StatusInternalServerError, gin.H{"detail": err.Error()})
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return
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}
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relay.broadcast(message.ConversationID, gin.H{
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"type": "retraction",
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"id": message.ID,
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})
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c.JSON(http.StatusOK, gin.H{"id": message.ID, "retracted": true})
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})
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r.POST("/conversations/:id/draft", func(c *gin.Context) {
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convID, ok := parseUintParam(c, "id")
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if !ok {
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return
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}
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var conversation Conversation
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if err := db.First(&conversation, convID).Error; err != nil {
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c.JSON(http.StatusNotFound, gin.H{"detail": "conversation not found"})
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return
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}
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var req draftMessageRequest
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if err := c.ShouldBindJSON(&req); err != nil {
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c.JSON(http.StatusBadRequest, gin.H{"detail": err.Error()})
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return
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}
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if len(req.StyleExamples) == 0 && len(req.History) == 0 {
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c.JSON(http.StatusBadRequest, gin.H{"detail": "provide style_examples or history"})
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return
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}
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// EscalationLog persistence (sender's post-hoc notification + undo
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// trail) is a separate checklist item -- roadmap.md Phase 1 §2.2
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// "사후 알림 + 되돌리기 로그 스키마/API". This endpoint only proxies
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// to the AI service for now.
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result, err := ai.requestDraft(draftRequest{
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ContextLines: req.ContextLines,
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StyleExamples: req.StyleExamples,
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History: req.History,
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K: req.K,
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})
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if err != nil {
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c.JSON(http.StatusBadGateway, gin.H{"detail": err.Error()})
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return
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}
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c.JSON(http.StatusOK, gin.H{"status": result.Status, "text": result.Text})
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})
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r.POST("/conversations/:id/veto", func(c *gin.Context) {
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convID, ok := parseUintParam(c, "id")
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if !ok {
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return
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}
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var conversation Conversation
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if err := db.First(&conversation, convID).Error; err != nil {
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c.JSON(http.StatusNotFound, gin.H{"detail": "conversation not found"})
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return
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}
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// Peer veto (PRD.md §3.1, tech-design.md §4, AGENTS.md absolute
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// safety invariants): the counterpart asked to talk to the human
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// only. One-way for v1 -- no "un-veto" endpoint, matching the
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// PRD's "즉시 중단" wording; nothing in scope calls for reversing it.
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conversation.TwinDisabledByPeer = true
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if err := db.Save(&conversation).Error; err != nil {
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c.JSON(http.StatusInternalServerError, gin.H{"detail": err.Error()})
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return
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}
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c.JSON(http.StatusOK, gin.H{"conversation_id": convID, "twin_disabled_by_peer": true})
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})
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r.PATCH("/users/:id/twin-settings", func(c *gin.Context) {
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userID, ok := parseUintParam(c, "id")
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if !ok {
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return
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}
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var req updateTwinSettingsRequest
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if err := c.ShouldBindJSON(&req); err != nil {
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c.JSON(http.StatusBadRequest, gin.H{"detail": err.Error()})
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return
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}
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if req.AutonomyLevel != AutonomyL0 && req.AutonomyLevel != AutonomyL1 && req.AutonomyLevel != AutonomyL2 {
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c.JSON(http.StatusBadRequest, gin.H{"detail": "autonomy_level must be one of L0, L1, L2"})
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return
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}
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var settings TwinSettings
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if err := db.Where("user_id = ?", userID).First(&settings).Error; err != nil {
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c.JSON(http.StatusNotFound, gin.H{"detail": "twin settings not found for user"})
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return
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}
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settings.AutonomyLevel = req.AutonomyLevel
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if err := db.Save(&settings).Error; err != nil {
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c.JSON(http.StatusInternalServerError, gin.H{"detail": err.Error()})
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return
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}
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c.JSON(http.StatusOK, gin.H{"user_id": userID, "autonomy_level": settings.AutonomyLevel})
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})
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r.POST("/users/:id/whitelist-rules", func(c *gin.Context) {
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userID, ok := parseUintParam(c, "id")
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if !ok {
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return
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}
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var user User
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if err := db.First(&user, userID).Error; err != nil {
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c.JSON(http.StatusNotFound, gin.H{"detail": "user not found"})
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return
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}
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var req createWhitelistRuleRequest
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if err := c.ShouldBindJSON(&req); err != nil {
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c.JSON(http.StatusBadRequest, gin.H{"detail": err.Error()})
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return
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}
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rule := WhitelistRule{UserID: userID, ContactID: req.ContactID, TopicKeyword: req.TopicKeyword}
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if err := db.Create(&rule).Error; err != nil {
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c.JSON(http.StatusInternalServerError, gin.H{"detail": err.Error()})
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return
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}
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c.JSON(http.StatusOK, gin.H{
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"id": rule.ID,
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"user_id": rule.UserID,
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"contact_id": rule.ContactID,
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"topic_keyword": rule.TopicKeyword,
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})
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})
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r.GET("/users/:id/whitelist-rules", func(c *gin.Context) {
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userID, ok := parseUintParam(c, "id")
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if !ok {
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return
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}
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var user User
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if err := db.First(&user, userID).Error; err != nil {
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c.JSON(http.StatusNotFound, gin.H{"detail": "user not found"})
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return
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}
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var rules []WhitelistRule
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db.Where("user_id = ?", userID).Order("id").Find(&rules)
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out := make([]gin.H, 0, len(rules))
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for _, rule := range rules {
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out = append(out, gin.H{
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"id": rule.ID,
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"contact_id": rule.ContactID,
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"topic_keyword": rule.TopicKeyword,
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})
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}
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c.JSON(http.StatusOK, gin.H{"whitelist_rules": out})
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})
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r.DELETE("/users/:id/whitelist-rules/:ruleId", func(c *gin.Context) {
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userID, ok := parseUintParam(c, "id")
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if !ok {
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return
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}
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ruleID, ok := parseUintParam(c, "ruleId")
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if !ok {
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return
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}
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var rule WhitelistRule
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if err := db.Where("id = ? AND user_id = ?", ruleID, userID).First(&rule).Error; err != nil {
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c.JSON(http.StatusNotFound, gin.H{"detail": "whitelist rule not found"})
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return
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}
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db.Delete(&rule)
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c.JSON(http.StatusOK, gin.H{"deleted": true})
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})
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r.DELETE("/users/:id", func(c *gin.Context) {
|
|
userID, ok := parseUintParam(c, "id")
|
|
if !ok {
|
|
return
|
|
}
|
|
|
|
var user User
|
|
if err := db.First(&user, userID).Error; err != nil {
|
|
c.JSON(http.StatusNotFound, gin.H{"detail": "user not found"})
|
|
return
|
|
}
|
|
|
|
// Right-to-erasure ("사용자가 언제든 초기화 가능", tech-design.md §5):
|
|
// wipes every row this user's ID appears on. Real chat history lives
|
|
// on-device first (tech-design.md §2/§5) -- the server only ever held
|
|
// a minimal relay copy, so deleting it here is not a partial erasure.
|
|
var messagesDeleted, escalationLogsDeleted int64
|
|
err := db.Transaction(func(tx *gorm.DB) error {
|
|
if res := tx.Model(&InviteCode{}).Where("used_by_user_id = ?", userID).Update("used_by_user_id", nil); res.Error != nil {
|
|
return res.Error
|
|
}
|
|
if res := tx.Where("user_id = ?", userID).Delete(&TwinSettings{}); res.Error != nil {
|
|
return res.Error
|
|
}
|
|
if res := tx.Where("user_id = ?", userID).Delete(&WhitelistRule{}); res.Error != nil {
|
|
return res.Error
|
|
}
|
|
if res := tx.Where("owner_user_id = ?", userID).Delete(&Contact{}); res.Error != nil {
|
|
return res.Error
|
|
}
|
|
if res := tx.Where("user_id = ?", userID).Delete(&ConversationParticipant{}); res.Error != nil {
|
|
return res.Error
|
|
}
|
|
res := tx.Where("sender_id = ?", userID).Delete(&Message{})
|
|
if res.Error != nil {
|
|
return res.Error
|
|
}
|
|
messagesDeleted = res.RowsAffected
|
|
res = tx.Where("user_id = ?", userID).Delete(&EscalationLog{})
|
|
if res.Error != nil {
|
|
return res.Error
|
|
}
|
|
escalationLogsDeleted = res.RowsAffected
|
|
return tx.Delete(&user).Error
|
|
})
|
|
if err != nil {
|
|
c.JSON(http.StatusInternalServerError, gin.H{"detail": err.Error()})
|
|
return
|
|
}
|
|
|
|
c.JSON(http.StatusOK, gin.H{
|
|
"deleted_user_id": userID,
|
|
"messages_deleted": messagesDeleted,
|
|
"escalation_logs_deleted": escalationLogsDeleted,
|
|
})
|
|
})
|
|
|
|
r.GET("/ws/conversations/:id", func(c *gin.Context) {
|
|
convID, ok := parseUintParam(c, "id")
|
|
if !ok {
|
|
return
|
|
}
|
|
|
|
conn, err := upgrader.Upgrade(c.Writer, c.Request, nil)
|
|
if err != nil {
|
|
return
|
|
}
|
|
defer conn.Close()
|
|
|
|
relay.add(convID, conn)
|
|
defer relay.remove(convID, conn)
|
|
|
|
for {
|
|
if _, _, err := conn.ReadMessage(); err != nil {
|
|
break
|
|
}
|
|
}
|
|
})
|
|
|
|
return r
|
|
}
|
|
|
|
// whitelistMatches is a v1-minimal check: any of the user's WhitelistRule
|
|
// keywords appearing as a substring of the message text counts as a match.
|
|
// It intentionally ignores WhitelistRule.ContactID (per-counterpart
|
|
// whitelisting) because conversations aren't yet linked to a Contact row --
|
|
// that link needs its own design pass once the client's contact model
|
|
// exists, so this only supports the "any counterpart" case for now.
|
|
func whitelistMatches(db *gorm.DB, userID uint, text string) bool {
|
|
var rules []WhitelistRule
|
|
db.Where("user_id = ?", userID).Find(&rules)
|
|
for _, rule := range rules {
|
|
if strings.Contains(text, rule.TopicKeyword) {
|
|
return true
|
|
}
|
|
}
|
|
return false
|
|
}
|
|
|
|
func generateInviteCode() (string, error) {
|
|
buf := make([]byte, 5)
|
|
if _, err := rand.Read(buf); err != nil {
|
|
return "", err
|
|
}
|
|
return hex.EncodeToString(buf), nil
|
|
}
|
|
|
|
func parseUintParam(c *gin.Context, name string) (uint, bool) {
|
|
id, err := strconv.ParseUint(c.Param(name), 10, 64)
|
|
if err != nil {
|
|
c.JSON(http.StatusBadRequest, gin.H{"detail": name + " must be a positive integer"})
|
|
return 0, false
|
|
}
|
|
return uint(id), true
|
|
}
|
|
|
|
func main() {
|
|
db := openDB()
|
|
relay := newConnectionManager()
|
|
ai := newAIServiceClient()
|
|
r := setupRouter(db, relay, ai)
|
|
r.Run(":8080")
|
|
}
|