Full Go backend + Vue 3 frontend, OpenAI-compatible API, multi-provider account pools, billing/admin, Docker one-command deploy with auto HTTPS. Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
374 lines
11 KiB
Go
374 lines
11 KiB
Go
package handler
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import (
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"encoding/base64"
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"encoding/json"
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"errors"
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"fmt"
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"io"
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"net/http"
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"strconv"
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"strings"
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"backend/internal/service"
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"github.com/gin-gonic/gin"
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)
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type V1Handler struct {
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v1 *service.V1Service
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}
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func NewV1Handler(v1 *service.V1Service) *V1Handler {
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return &V1Handler{v1: v1}
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}
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func (h *V1Handler) Models(c *gin.Context) {
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principal, err := h.v1.Authenticate(c.Request.Context(), c.GetHeader("Authorization"))
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if err != nil {
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h.writeAuthError(c, err)
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return
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}
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_ = principal
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items, err := h.v1.ListModels(c.Request.Context())
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if err != nil {
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c.JSON(http.StatusInternalServerError, gin.H{"detail": "failed to load models"})
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return
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}
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c.JSON(http.StatusOK, gin.H{
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"object": "list",
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"data": items,
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})
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}
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// ImageGenerations — OpenAI POST /v1/images/generations (text-to-image only).
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// Accepts exactly OpenAI's fields; size→aspect ratio and quality→resolution tier
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// are mapped server-side. Returns {created, data:[{b64_json}]}.
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func (h *V1Handler) ImageGenerations(c *gin.Context) {
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principal, err := h.v1.Authenticate(c.Request.Context(), c.GetHeader("Authorization"))
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if err != nil {
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h.writeAuthError(c, err)
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return
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}
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var body struct {
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Model string `json:"model"`
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Prompt string `json:"prompt"`
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N int `json:"n"`
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Size string `json:"size"`
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Quality string `json:"quality"`
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ResponseFormat string `json:"response_format"`
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Background string `json:"background"`
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OutputFormat string `json:"output_format"`
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User string `json:"user"`
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}
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if err := c.ShouldBindJSON(&body); err != nil {
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c.JSON(http.StatusBadRequest, gin.H{"detail": "invalid request body"})
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return
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}
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resp, err := h.v1.PrepareImageRequest(c.Request.Context(), principal, service.V1ImageRequest{
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Model: body.Model,
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Prompt: body.Prompt,
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N: body.N,
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Size: body.Size,
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Quality: body.Quality,
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BaseURL: requestBaseURL(c),
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})
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if err != nil {
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h.writeV1Error(c, err, resp)
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return
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}
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c.JSON(http.StatusOK, openaiImageResponse(resp))
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}
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// ImageEdits — OpenAI POST /v1/images/edits (image-to-image). multipart/form-data
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// only: image / image[] file uploads (+ optional mask), prompt, model, n, size,
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// quality. Files become reference images. Returns {created, data:[{b64_json}]}.
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func (h *V1Handler) ImageEdits(c *gin.Context) {
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principal, err := h.v1.Authenticate(c.Request.Context(), c.GetHeader("Authorization"))
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if err != nil {
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h.writeAuthError(c, err)
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return
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}
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if !strings.HasPrefix(c.GetHeader("Content-Type"), "multipart/form-data") {
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c.JSON(http.StatusBadRequest, gin.H{"detail": "images/edits requires multipart/form-data"})
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return
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}
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if err := c.Request.ParseMultipartForm(64 << 20); err != nil {
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c.JSON(http.StatusBadRequest, gin.H{"detail": "invalid multipart form"})
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return
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}
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refs := readMultipartImages(c, "image", "image[]")
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if len(refs) == 0 {
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c.JSON(http.StatusBadRequest, gin.H{"detail": "images/edits requires at least one image file"})
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return
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}
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n, _ := strconv.Atoi(strings.TrimSpace(c.PostForm("n")))
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resp, err := h.v1.PrepareImageRequest(c.Request.Context(), principal, service.V1ImageRequest{
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Model: c.PostForm("model"),
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Prompt: c.PostForm("prompt"),
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N: n,
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Size: c.PostForm("size"),
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Quality: c.PostForm("quality"),
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ReferenceImages: refs,
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BaseURL: requestBaseURL(c),
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})
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if err != nil {
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h.writeV1Error(c, err, resp)
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return
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}
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c.JSON(http.StatusOK, openaiImageResponse(resp))
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}
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// CreateVideo — OpenAI POST /v1/videos. Creates an async job and returns the
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// video object immediately ({id, status:"queued"}). Accepts JSON {model, prompt,
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// seconds, size} or multipart (with an input_reference file). size→ratio+
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// resolution, seconds→duration.
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func (h *V1Handler) CreateVideo(c *gin.Context) {
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principal, err := h.v1.Authenticate(c.Request.Context(), c.GetHeader("Authorization"))
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if err != nil {
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h.writeAuthError(c, err)
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return
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}
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var modelID, prompt, seconds, size string
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var refs []string
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if strings.HasPrefix(c.GetHeader("Content-Type"), "multipart/form-data") {
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if err := c.Request.ParseMultipartForm(64 << 20); err != nil {
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c.JSON(http.StatusBadRequest, gin.H{"detail": "invalid multipart form"})
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return
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}
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modelID = c.PostForm("model")
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prompt = c.PostForm("prompt")
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seconds = c.PostForm("seconds")
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size = c.PostForm("size")
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refs = readMultipartImages(c, "input_reference", "input_reference[]")
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} else {
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var body struct {
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Model string `json:"model"`
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Prompt string `json:"prompt"`
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Seconds json.RawMessage `json:"seconds"`
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Size string `json:"size"`
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}
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if err := c.ShouldBindJSON(&body); err != nil {
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c.JSON(http.StatusBadRequest, gin.H{"detail": "invalid request body"})
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return
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}
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modelID, prompt, size = body.Model, body.Prompt, body.Size
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seconds = rawToString(body.Seconds)
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}
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duration := strings.TrimSpace(seconds)
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if duration != "" && !strings.HasSuffix(duration, "s") {
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duration += "s"
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}
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aspect, resolution := videoSizeToInternal(size)
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resp, err := h.v1.StartVideoJob(c.Request.Context(), principal, service.V1VideoRequest{
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Model: modelID,
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Prompt: prompt,
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Duration: duration,
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AspectRatio: aspect,
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Resolution: resolution,
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ReferenceImages: refs,
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BaseURL: requestBaseURL(c),
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})
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if err != nil {
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h.writeV1Error(c, err, nil)
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return
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}
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c.JSON(http.StatusOK, resp)
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}
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// GetVideo — OpenAI GET /v1/videos/{id}. Returns the job status object.
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func (h *V1Handler) GetVideo(c *gin.Context) {
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principal, err := h.v1.Authenticate(c.Request.Context(), c.GetHeader("Authorization"))
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if err != nil {
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h.writeAuthError(c, err)
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return
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}
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resp, err := h.v1.VideoJob(c.Request.Context(), principal, c.Param("id"))
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if err != nil {
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h.writeV1Error(c, err, nil)
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return
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}
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c.JSON(http.StatusOK, resp)
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}
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// GetVideoContent — OpenAI GET /v1/videos/{id}/content. Streams the rendered mp4
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// by proxying the stored upstream URL (downloaded on demand, never persisted).
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func (h *V1Handler) GetVideoContent(c *gin.Context) {
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principal, err := h.v1.Authenticate(c.Request.Context(), c.GetHeader("Authorization"))
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if err != nil {
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h.writeAuthError(c, err)
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return
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}
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body, contentType, err := h.v1.OpenVideoContent(c.Request.Context(), principal, c.Param("id"))
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if err != nil {
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h.writeV1Error(c, err, nil)
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return
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}
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defer body.Close()
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c.Header("Content-Type", contentType)
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c.Status(http.StatusOK)
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_, _ = io.Copy(c.Writer, body)
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}
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// readMultipartImages reads the given file fields and returns each as base64.
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func readMultipartImages(c *gin.Context, keys ...string) []string {
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var out []string
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form := c.Request.MultipartForm
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if form == nil {
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return out
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}
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for _, key := range keys {
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for _, fh := range form.File[key] {
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f, e := fh.Open()
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if e != nil {
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continue
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}
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b, _ := io.ReadAll(io.LimitReader(f, 8<<20+1))
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f.Close()
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if len(b) > 0 {
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out = append(out, base64.StdEncoding.EncodeToString(b))
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}
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}
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}
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return out
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}
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// rawToString accepts OpenAI's `seconds` whether sent as a JSON string or number.
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func rawToString(raw json.RawMessage) string {
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if len(raw) == 0 {
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return ""
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}
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var s string
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if json.Unmarshal(raw, &s) == nil {
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return s
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}
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var n json.Number
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if json.Unmarshal(raw, &n) == nil {
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return n.String()
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}
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return strings.Trim(string(raw), `"`)
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}
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// videoSizeToInternal maps OpenAI's "WxH" size to our aspect ratio + resolution
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// tier (height ≥1080 → 1080p, else 720p).
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func videoSizeToInternal(size string) (ratio, resolution string) {
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var w, h int
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if s := strings.TrimSpace(strings.ToLower(size)); s != "" {
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_, _ = fmt.Sscanf(s, "%dx%d", &w, &h)
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}
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if w == 0 || h == 0 {
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return "16:9", "720p"
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}
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long := w
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if h > long {
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long = h
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}
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resolution = "720p"
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if long >= 1080 {
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resolution = "1080p"
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}
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return guessRatioWH(w, h), resolution
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}
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func guessRatioWH(w, h int) string {
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if w == h {
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return "1:1"
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}
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r := float64(w) / float64(h)
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cands := []struct {
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name string
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v float64
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}{{"16:9", 16.0 / 9}, {"9:16", 9.0 / 16}, {"4:3", 4.0 / 3}, {"3:4", 3.0 / 4}, {"1:1", 1}}
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best, bestD := "16:9", 1e9
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for _, cd := range cands {
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d := r - cd.v
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if d < 0 {
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d = -d
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}
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if d < bestD {
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best, bestD = cd.name, d
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}
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}
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return best
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}
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// openaiImageResponse strips our rich internal map down to OpenAI's image shape.
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func openaiImageResponse(m map[string]any) gin.H {
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out := gin.H{"created": m["created"]}
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if d, ok := m["data"]; ok && d != nil {
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out["data"] = d
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} else {
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out["data"] = []any{}
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}
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return out
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}
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func (h *V1Handler) writeAuthError(c *gin.Context, err error) {
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switch {
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case errors.Is(err, service.ErrMissingAPIKey):
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c.JSON(http.StatusUnauthorized, gin.H{"detail": err.Error()})
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case errors.Is(err, service.ErrInvalidAPIKey):
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c.JSON(http.StatusUnauthorized, gin.H{"detail": err.Error()})
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default:
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c.JSON(http.StatusInternalServerError, gin.H{"detail": "failed to validate api key"})
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}
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}
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func (h *V1Handler) writeV1Error(c *gin.Context, err error, payload map[string]any) {
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switch {
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case errors.Is(err, service.ErrUnknownModel):
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c.JSON(http.StatusNotFound, gin.H{"detail": err.Error()})
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case errors.Is(err, service.ErrUnsupportedParams):
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c.JSON(http.StatusBadRequest, gin.H{"detail": err.Error()})
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case errors.Is(err, service.ErrInsufficientFunds):
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c.JSON(http.StatusPaymentRequired, gin.H{"detail": err.Error()})
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case errors.Is(err, service.ErrReferenceTooLarge):
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c.JSON(http.StatusRequestEntityTooLarge, gin.H{"detail": err.Error()})
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case errors.Is(err, service.ErrNoProviderAccount):
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c.JSON(http.StatusServiceUnavailable, gin.H{"detail": err.Error()})
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case errors.Is(err, service.ErrProviderAuth):
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c.JSON(http.StatusServiceUnavailable, gin.H{"detail": err.Error()})
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case errors.Is(err, service.ErrProviderQuota):
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// Match the Python contract: provider quota exhaustion maps to 401
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// (QuotaExhaustedError is handled alongside AuthError in routes.py).
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c.JSON(http.StatusUnauthorized, gin.H{"detail": err.Error()})
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case errors.Is(err, service.ErrProviderTemporary):
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c.JSON(http.StatusServiceUnavailable, gin.H{"detail": err.Error()})
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case errors.Is(err, service.ErrConcurrencyFull):
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c.JSON(http.StatusTooManyRequests, gin.H{"detail": err.Error()})
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case errors.Is(err, service.ErrVideoJobNotFound):
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c.JSON(http.StatusNotFound, gin.H{"detail": err.Error()})
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case errors.Is(err, service.ErrVideoNotReady):
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c.JSON(http.StatusConflict, gin.H{"detail": err.Error()})
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case errors.Is(err, service.ErrProviderUnsupported):
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c.JSON(http.StatusNotImplemented, gin.H{"detail": err.Error()})
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case errors.Is(err, service.ErrProviderExecution):
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c.JSON(http.StatusBadGateway, gin.H{"detail": err.Error()})
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case errors.Is(err, service.ErrGenerationPending):
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c.JSON(http.StatusNotImplemented, payload)
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default:
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c.JSON(http.StatusBadRequest, gin.H{"detail": err.Error()})
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}
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}
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// requestBaseURL derives the scheme+host of the inbound request so the service
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// layer can build absolute, directly-downloadable output URLs. Honors
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// X-Forwarded-Proto (reverse-proxy / TLS termination) before falling back to
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// the connection's TLS state. Returns "" when the host is unknown, which makes
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// the service fall back to a relative path.
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func requestBaseURL(c *gin.Context) string {
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host := c.Request.Host
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if host == "" {
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return ""
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}
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scheme := "http"
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if proto := strings.TrimSpace(c.GetHeader("X-Forwarded-Proto")); proto != "" {
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scheme = strings.ToLower(strings.Split(proto, ",")[0])
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} else if c.Request.TLS != nil {
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scheme = "https"
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}
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return scheme + "://" + host
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}
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