Files
image2api/backend/internal/provider/leonardo/video.go
T

413 lines
12 KiB
Go

package leonardo
import (
"context"
"encoding/binary"
"encoding/json"
"errors"
"fmt"
"strings"
"time"
)
// qGenerationVideos polls one video generation's status AND its produced clip in
// a single round-trip (motionMP4URL carries the mp4).
const qGenerationVideos = `query GenerationVideos($where: generations_bool_exp = {}) {
generations(where: $where) {
id
status
generated_images {
id
motionMP4URL
__typename
}
__typename
}
}`
// VideoAssets are the decoded reference assets a video request can carry:
// image references (strength MID), one audio track and video references. The
// caller enforces the per-type caps; durations are derived from the bytes here
// because Leonardo requires them for audio/video guidances.
type VideoAssets struct {
Images [][]byte
Audios [][]byte
Videos [][]byte
}
// GenerateVideo runs the Leonardo video pipeline (seedance-2.0 / -fast, hailuo) against
// one account cookie: upload every reference asset, submit the Generate mutation
// as a PRIVATE generation, poll until COMPLETE, then optionally download the mp4.
func (c *Client) GenerateVideo(ctx context.Context, cookie, model, prompt string, width, height, durationSeconds int, refs VideoAssets, downloadResult bool) ([]byte, map[string]any, error) {
sess, err := c.GetSession(ctx, cookie)
if err != nil {
return nil, nil, err
}
if strings.TrimSpace(model) == "" {
model = "seedance-2.0-fast"
}
guidances := map[string]any{}
var imageRefs []map[string]any
for _, img := range refs.Images {
if len(img) == 0 {
continue
}
uploadID, upErr := c.uploadInitImage(ctx, cookie, assetExtension(img, "png"), img)
if upErr != nil {
return nil, nil, upErr
}
imageRefs = append(imageRefs, map[string]any{
"image": map[string]any{"id": uploadID, "type": "UPLOADED"},
"strength": "MID",
})
}
if len(imageRefs) > 0 {
guidances["image_reference"] = imageRefs
}
var videoRefs []map[string]any
for _, vid := range refs.Videos {
if len(vid) == 0 {
continue
}
uploadID, upErr := c.uploadAsset(ctx, cookie, assetExtension(vid, "mp4"), vid)
if upErr != nil {
return nil, nil, upErr
}
video := map[string]any{"id": uploadID, "type": "UPLOADED"}
if secs := MediaDurationSeconds(vid); secs > 0 {
video["duration"] = secs
}
videoRefs = append(videoRefs, map[string]any{"video": video})
}
if len(videoRefs) > 0 {
guidances["video_reference_base"] = videoRefs
}
// Leonardo rejects an audio reference that isn't paired with an image or
// video reference (audio_reference_only_compatible_with_image_or_video_reference).
var audioRefs []map[string]any
for _, aud := range refs.Audios {
if len(aud) == 0 {
continue
}
if len(imageRefs) == 0 && len(videoRefs) == 0 {
return nil, nil, errors.New("leonardo: audio reference requires an image or video reference")
}
uploadID, upErr := c.uploadAsset(ctx, cookie, assetExtension(aud, "mp3"), aud)
if upErr != nil {
return nil, nil, upErr
}
audio := map[string]any{"id": uploadID, "type": "UPLOADED"}
if secs := MediaDurationSeconds(aud); secs > 0 {
audio["duration"] = secs
}
audioRefs = append(audioRefs, map[string]any{"audio": audio})
}
if len(audioRefs) > 0 {
guidances["audio_reference"] = audioRefs
}
parameters := map[string]any{
"height": height,
"width": width,
"duration": durationSeconds,
"motion_has_audio": true,
"quantity": 1,
"prompt": prompt,
"guidances": guidances,
}
// seedance 走随机种子;hailuo 的生成页 seedEnabled=false,请求里不带 seed。
if !strings.HasPrefix(model, "hailuo") {
parameters["seed"] = -1
}
genReq := map[string]any{
"operationName": "Generate",
"query": mGenerate,
"variables": map[string]any{
"request": map[string]any{
"model": model,
// 私有生成:不进公开 feed。
"public": false,
"parameters": parameters,
},
},
}
payload, _ := json.Marshal(genReq)
body, err := c.callGraphQL(ctx, cookie, payload, true, "generate-video")
if err != nil {
return nil, nil, err
}
var genResp struct {
Data struct {
Generate struct {
GenerationID string `json:"generationId"`
} `json:"generate"`
} `json:"data"`
}
if err := json.Unmarshal(body, &genResp); err != nil {
return nil, nil, fmt.Errorf("%w: generate non-json", ErrTemporaryUpstream)
}
genID := strings.TrimSpace(genResp.Data.Generate.GenerationID)
if genID == "" {
return nil, nil, fmt.Errorf("%w: no generationId: %s", ErrTemporaryUpstream, clip(body, 200))
}
videoURL, err := c.pollVideo(ctx, cookie, genID)
if err != nil {
return nil, nil, err
}
info := map[string]any{
"generation_id": genID,
"video_url": videoURL,
"user_id": sess.UserID,
}
if !downloadResult {
return nil, info, nil
}
data, err := c.downloadImage(ctx, videoURL)
if err != nil {
return nil, nil, err
}
return data, info, nil
}
// pollVideo polls one generation until COMPLETE (returning the mp4 url) or
// FAILED. Temporary upstream hiccups don't abort the wait — only ctx/deadline do.
func (c *Client) pollVideo(ctx context.Context, cookie, genID string) (string, error) {
payload, _ := json.Marshal(map[string]any{
"operationName": "GenerationVideos",
"query": qGenerationVideos,
"variables": map[string]any{
"where": map[string]any{"id": map[string]any{"_in": []string{genID}}},
},
})
ticker := time.NewTicker(5 * time.Second)
defer ticker.Stop()
deadline := time.Now().Add(10 * time.Minute)
if dl, ok := ctx.Deadline(); ok {
deadline = dl.Add(-60 * time.Second)
}
for {
body, err := c.callGraphQL(ctx, cookie, payload, false, "poll-video")
if errors.Is(err, ErrAuth) {
return "", err
}
if err == nil {
var pr struct {
Data struct {
Generations []struct {
Status string `json:"status"`
GeneratedImages []struct {
MotionMP4URL string `json:"motionMP4URL"`
} `json:"generated_images"`
} `json:"generations"`
} `json:"data"`
}
if err := json.Unmarshal(body, &pr); err == nil && len(pr.Data.Generations) > 0 {
g := pr.Data.Generations[0]
switch strings.ToUpper(g.Status) {
case "COMPLETE":
for _, img := range g.GeneratedImages {
if u := strings.TrimSpace(img.MotionMP4URL); u != "" {
return u, nil
}
}
return "", fmt.Errorf("%w: complete but no video url", ErrTemporaryUpstream)
case "FAILED":
return "", fmt.Errorf("%w: generation failed", ErrTemporaryUpstream)
}
}
}
if time.Now().After(deadline) {
return "", fmt.Errorf("%w: generation timed out", ErrTemporaryUpstream)
}
select {
case <-ctx.Done():
return "", ctx.Err()
case <-ticker.C:
}
}
}
// assetExtension sniffs the upload extension Leonardo expects for a reference
// asset; fallback is used when the bytes aren't recognized.
func assetExtension(data []byte, fallback string) string {
n := len(data)
switch {
case n >= 8 && string(data[1:4]) == "PNG":
return "png"
case n >= 3 && data[0] == 0xFF && data[1] == 0xD8 && data[2] == 0xFF:
return "jpg"
case n >= 12 && string(data[0:4]) == "RIFF" && string(data[8:12]) == "WEBP":
return "webp"
case n >= 12 && string(data[4:8]) == "ftyp":
if n >= 12 && strings.HasPrefix(string(data[8:12]), "qt") {
return "mov"
}
if n >= 12 && strings.HasPrefix(string(data[8:12]), "M4A") {
return "m4a"
}
return "mp4"
case n >= 4 && data[0] == 0x1A && data[1] == 0x45 && data[2] == 0xDF && data[3] == 0xA3:
return "webm"
case n >= 3 && string(data[0:3]) == "ID3":
return "mp3"
case n >= 2 && data[0] == 0xFF && (data[1]&0xE0) == 0xE0:
return "mp3"
case n >= 12 && string(data[0:4]) == "RIFF" && string(data[8:12]) == "WAVE":
return "wav"
}
return fallback
}
// MediaDurationSeconds returns a media asset's duration in seconds (0 when it
// can't be determined). Leonardo's audio_reference / video_reference_base
// guidances carry the duration, and the caller validates video lengths with it,
// so it's derived from the uploaded bytes: mp4/mov via the mvhd box, wav via the
// fmt byte rate, mp3 from the first frame's bitrate.
func MediaDurationSeconds(data []byte) float64 {
if secs := mp4Duration(data); secs > 0 {
return secs
}
if secs := wavDuration(data); secs > 0 {
return secs
}
return mp3Duration(data)
}
// mp4Duration walks the ISOBMFF box tree to moov/mvhd and reads timescale+duration.
func mp4Duration(data []byte) float64 {
if len(data) < 12 || string(data[4:8]) != "ftyp" {
return 0
}
moov := findBox(data, "moov")
if moov == nil {
return 0
}
mvhd := findBox(moov, "mvhd")
if len(mvhd) < 20 {
return 0
}
version := mvhd[0]
if version == 1 {
if len(mvhd) < 32 {
return 0
}
timescale := binary.BigEndian.Uint32(mvhd[20:24])
duration := binary.BigEndian.Uint64(mvhd[24:32])
if timescale == 0 {
return 0
}
return float64(duration) / float64(timescale)
}
timescale := binary.BigEndian.Uint32(mvhd[12:16])
duration := binary.BigEndian.Uint32(mvhd[16:20])
if timescale == 0 {
return 0
}
return float64(duration) / float64(timescale)
}
// findBox returns the payload of the first box named typ among data's boxes
// (callers descend one level at a time by passing a parent's payload back in).
func findBox(data []byte, typ string) []byte {
for off := 0; off+8 <= len(data); {
size := int(binary.BigEndian.Uint32(data[off : off+4]))
name := string(data[off+4 : off+8])
header := 8
if size == 1 { // 64-bit size
if off+16 > len(data) {
return nil
}
size = int(binary.BigEndian.Uint64(data[off+8 : off+16]))
header = 16
} else if size == 0 {
size = len(data) - off
}
if size < header || off+size > len(data) {
return nil
}
if name == typ {
return data[off+header : off+size]
}
off += size
}
return nil
}
// wavDuration reads the RIFF fmt chunk's byte rate and the data chunk size.
func wavDuration(data []byte) float64 {
if len(data) < 44 || string(data[0:4]) != "RIFF" || string(data[8:12]) != "WAVE" {
return 0
}
byteRate := 0
dataSize := 0
for off := 12; off+8 <= len(data); {
name := string(data[off : off+4])
size := int(binary.LittleEndian.Uint32(data[off+4 : off+8]))
body := off + 8
if size < 0 || body > len(data) {
break
}
switch name {
case "fmt ":
if body+16 <= len(data) {
byteRate = int(binary.LittleEndian.Uint32(data[body+8 : body+12]))
}
case "data":
dataSize = size
if body+size > len(data) {
dataSize = len(data) - body
}
}
off = body + size + size%2
}
if byteRate <= 0 || dataSize <= 0 {
return 0
}
return float64(dataSize) / float64(byteRate)
}
// mp3Bitrates are the Layer III bitrate tables (kbps) indexed by the frame
// header's bitrate index: 1 = MPEG1, 2 = MPEG2/2.5.
var mp3Bitrates = map[int][]int{
1: {0, 32, 40, 48, 56, 64, 80, 96, 112, 128, 160, 192, 224, 256, 320, 0},
2: {0, 8, 16, 24, 32, 40, 48, 56, 64, 80, 96, 112, 128, 144, 160, 0},
}
// mp3Duration estimates the duration from the first frame header's bitrate
// (constant-bitrate assumption — good enough for the guidance duration field).
func mp3Duration(data []byte) float64 {
off := 0
if len(data) >= 10 && string(data[0:3]) == "ID3" {
// syncsafe int: 7 bits per byte
tagSize := int(data[6]&0x7F)<<21 | int(data[7]&0x7F)<<14 | int(data[8]&0x7F)<<7 | int(data[9]&0x7F)
off = 10 + tagSize
}
for ; off+4 <= len(data); off++ {
if data[off] != 0xFF || data[off+1]&0xE0 != 0xE0 {
continue
}
versionBits := (data[off+1] >> 3) & 0x03
layerBits := (data[off+1] >> 1) & 0x03
if layerBits != 0x01 { // Layer III only
continue
}
table := 1
if versionBits != 0x03 { // MPEG2 / 2.5
table = 2
}
idx := int((data[off+2] >> 4) & 0x0F)
rates := mp3Bitrates[table]
if idx <= 0 || idx >= len(rates) || rates[idx] == 0 {
continue
}
kbps := rates[idx]
return float64(len(data)-off) * 8 / float64(kbps*1000)
}
return 0
}