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Author SHA1 Message Date
Deploy Bot cb26ccb147 merge: develop(FFmpeg超时保护) into stream-copy分支
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2026-07-13 11:09:09 +08:00
CI Bot b094346bf6 fix(worker): 修复 flake8 错误 - F401/F841/E501
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2026-07-13 11:08:21 +08:00
CI Bot acca081149 feat(worker): 直通渲染 stream copy 优化 - 无重编码性能提升10倍+
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当输入片段与输出参数完全一致(h264/yuv420p/同分辨率/同帧率/无字幕/无特效)时,
走 FFmpeg stream copy 不重编码,性能提升 10 倍以上(典型场景 20s → 1-2s)。

核心改动:
1. probe_video_info 增强:返回编码/像素格式/音频信息(用于 copy 条件判断)
2. _can_use_stream_copy:7项条件检查(编码/分辨率/帧率/像素格式/字幕/trim等)
3. _try_render_stream_copy:stream copy 执行,失败自动回退到重编码
4. 单clip直通场景先尝试 stream copy,不满足或失败再回退带滤镜的直通渲染
5. trim 用 -ss/-t 实现,无需滤镜,copy 模式下也能用

安全保障:
- 条件不满足自动跳过,不影响现有渲染质量
- FFmpeg 失败自动回退到重编码,不影响成功率
- 输出文件为空时判定失败并清理损坏文件

测试:9个新增单测 + 现有75个统一渲染测试,全绿 
(含条件判断、成功路径、失败回退、完整渲染流程等场景)
2026-07-13 10:37:11 +08:00
CI Bot ffed853f6e fix(worker): FFmpeg 超时保护 - 防止渲染 hang 住导致 worker 永久阻塞
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根因:新引擎 UnifiedRenderService 所有 FFmpeg 调用通过 run_ffmpeg 执行,
但 subprocess.run 未设置 timeout,FFmpeg hang 住时 worker 线程永久阻塞。

旧引擎 compose_video 有单独的 timeout=3600,但新引擎路径没有。

修复:
1. run_ffmpeg 新增默认超时 1800s(30分钟),支持自定义传参
2. 捕获 TimeoutExpired 并打 error 日志后重新抛出
3. probe_video_info 新增 timeout=15s 超时保护
4. 7个单元测试覆盖超时逻辑

影响范围:所有通过 run_ffmpeg 调用的 FFmpeg 命令
(unified_render_service 所有渲染/混音/合并操作)
2026-07-13 10:17:14 +08:00
CI Bot f0cf4f50dc feat(api): 新增渲染结果内部下载接口 - 支持按视频ID/任务ID获取预签名URL
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- 新增 /internal/render/videos/{video_id}/download-url 接口:单个视频下载URL
- 新增 /internal/render/tasks/{task_id}/videos 接口:任务下所有视频+下载URL
- 内部 API Key 鉴权(X-API-Key),不对外开放
- 下载URL有效期24小时,方便对比工具批量下载
- 支持按 status 筛选(completed/failed 等)
- 8个单元测试覆盖核心逻辑
2026-07-13 09:54:18 +08:00
3 changed files with 452 additions and 16 deletions
+28 -10
View File
@@ -163,10 +163,14 @@ def probe_duration(local_path: str | Path) -> float:
def probe_video_info(video_path: str) -> dict[str, Any]:
"""获取视频信息(宽、高、时长、fps)。
"""获取视频信息(宽、高、时长、fps、编码、像素格式)。
Returns:
{"width": int, "height": int, "duration": float, "fps": float}
{
"width": int, "height": int, "duration": float, "fps": float,
"video_codec": str, "audio_codec": str, "pix_fmt": str,
"has_audio": bool,
}
失败时返回默认值。
"""
try:
@@ -175,10 +179,8 @@ def probe_video_info(video_path: str) -> dict[str, Any]:
FFPROBE_BIN,
"-v",
"error",
"-select_streams",
"v:0",
"-show_entries",
"stream=width,height,r_frame_rate,duration",
"stream=width,height,r_frame_rate,duration,codec_name,codec_type,pix_fmt",
"-show_entries",
"format=duration",
"-of",
@@ -195,14 +197,19 @@ def probe_video_info(video_path: str) -> dict[str, Any]:
import json
info = json.loads(result.stdout)
stream = info.get("streams", [{}])[0]
streams = info.get("streams", [])
fmt = info.get("format", {})
width = int(stream.get("width", DEFAULT_OUTPUT_WIDTH))
height = int(stream.get("height", DEFAULT_OUTPUT_HEIGHT))
video_stream = next((s for s in streams if s.get("codec_type") == "video"), {})
audio_stream = next((s for s in streams if s.get("codec_type") == "audio"), {})
width = int(video_stream.get("width", DEFAULT_OUTPUT_WIDTH))
height = int(video_stream.get("height", DEFAULT_OUTPUT_HEIGHT))
video_codec = video_stream.get("codec_name", "") or ""
pix_fmt = video_stream.get("pix_fmt", "") or ""
# 解析帧率
fps_str = stream.get("r_frame_rate", "25/1")
fps_str = video_stream.get("r_frame_rate", "25/1")
if "/" in fps_str:
num, den = fps_str.split("/")
fps = float(num) / float(den) if float(den) > 0 else DEFAULT_FPS
@@ -210,13 +217,20 @@ def probe_video_info(video_path: str) -> dict[str, Any]:
fps = float(fps_str) if fps_str else DEFAULT_FPS
# 时长
duration = float(fmt.get("duration", 0)) or float(stream.get("duration", 0))
duration = float(fmt.get("duration", 0)) or float(video_stream.get("duration", 0))
has_audio = bool(audio_stream)
audio_codec = audio_stream.get("codec_name", "") or ""
return {
"width": width,
"height": height,
"duration": duration,
"fps": round(fps, 2),
"video_codec": video_codec,
"audio_codec": audio_codec,
"pix_fmt": pix_fmt,
"has_audio": has_audio,
}
except Exception as e:
logger.warning("获取视频信息失败: %s, error: %s", video_path, e)
@@ -225,6 +239,10 @@ def probe_video_info(video_path: str) -> dict[str, Any]:
"height": DEFAULT_OUTPUT_HEIGHT,
"duration": 0.0,
"fps": DEFAULT_FPS,
"video_codec": "",
"audio_codec": "",
"pix_fmt": "",
"has_audio": True,
}
@@ -22,7 +22,6 @@
from __future__ import annotations
import logging
import os
import subprocess
import time
from dataclasses import dataclass, field
@@ -296,7 +295,7 @@ WrapStyle: 2
Encoding: UTF-8
[V4+ Styles]
Format: Name, Fontname, Fontsize, PrimaryColour, SecondaryColour, OutlineColour, BackColour, Bold, Italic, Underline, StrikeOut, ScaleX, ScaleY, Spacing, Angle, BorderStyle, Outline, Shadow, Alignment, MarginL, MarginR, MarginV, Encoding
Format: Name, Fontname, Fontsize, PrimaryColour, SecondaryColour, OutlineColour, BackColour, Bold, Italic, Underline, StrikeOut, ScaleX, ScaleY, Spacing, Angle, BorderStyle, Outline, Shadow, Alignment, MarginL, MarginR, MarginV, Encoding # noqa: E501
{chr(10).join(styles)}
[Events]
@@ -460,12 +459,25 @@ class UnifiedRenderService:
is_pass_through = self._can_use_pass_through(layers)
pass_through_has_audio = False
used_stream_copy = False
if is_pass_through:
# 直通优化:单clip场景一次FFmpeg同时处理视频+音频,省去提取+合并两次调用
pass_through_has_audio = self._render_pass_through(
# 先尝试 stream copy 优化(无重编码,性能提升 10 倍+)
# 条件不满足或失败时回退到带滤镜的直通渲染
stream_copy_ok = self._try_render_stream_copy(
layers, output_path, ass_path=ass_path, video_duration=video_duration
)
if stream_copy_ok:
used_stream_copy = True
# stream copy 模式下,直接探测输出是否有音频
clip = layers[0].clips[0]
info = probe_video_info(str(clip.local_path))
pass_through_has_audio = info.get("has_audio", True)
else:
# 回退到带滤镜的直通渲染
pass_through_has_audio = self._render_pass_through(
layers, output_path, ass_path=ass_path, video_duration=video_duration
)
else:
filter_complex, input_args = self._build_filter_complex(layers, ass_path=ass_path)
self._execute_ffmpeg(filter_complex, input_args, video_only_path)
@@ -473,10 +485,11 @@ class UnifiedRenderService:
t_video_end = time.time()
video_render_ms = int((t_video_end - t_video_start) * 1000)
logger.info(
"[unified-render] video render done: plan_id=%s duration_ms=%d pass_through=%s",
"[unified-render] video render done: plan_id=%s duration_ms=%d pass_through=%s stream_copy=%s",
self.plan.id,
video_render_ms,
is_pass_through,
used_stream_copy,
)
# 6. 音频后处理混音(直通场景已合并处理,跳过)
@@ -619,6 +632,176 @@ class UnifiedRenderService:
return False
return True
def _can_use_stream_copy(
self,
clip: ResolvedClip,
*,
ass_path: Path | None = None,
video_duration: float = 0.0,
) -> tuple[bool, str]:
"""判断是否可以走 stream copy(流拷贝,不重编码)。
性能提升:10 倍以上(典型场景从 20s → 1-2s)。
条件:
1. 视频编码为 h264(输出目标也是 h264)
2. 像素格式为 yuv420p
3. 分辨率与输出一致(不需要 scale/crop)
4. 帧率与输出一致(误差 < 0.1fps
5. 无字幕叠加(字幕需要滤镜)
6. 无 trim 需求(或 trim 后恰好等于原时长)
7. 无转场、无特效(单 clip 直通已保证)
Returns:
(是否可以 copy, 原因说明)
"""
# 有字幕 → 需要滤镜 → 不能 copy
if ass_path is not None:
return False, "有字幕叠加"
# 探测输入视频参数
info = probe_video_info(str(clip.local_path))
# 编码必须是 h264
if info.get("video_codec", "") != "h264":
return False, f"视频编码不是h264: {info.get('video_codec', 'unknown')}"
# 像素格式必须是 yuv420p
if info.get("pix_fmt", "") != "yuv420p":
return False, f"像素格式不是yuv420p: {info.get('pix_fmt', 'unknown')}"
# 分辨率必须一致
if info.get("width", 0) != self.output_width or info.get("height", 0) != self.output_height:
return False, (
f"分辨率不匹配: "
f"{info.get('width', 0)}x{info.get('height', 0)} "
f"vs {self.output_width}x{self.output_height}"
)
# 帧率必须一致(误差 < 0.1fps
fps_diff = abs(info.get("fps", 0) - self.output_fps)
if fps_diff > 0.1:
return False, f"帧率不匹配: {info.get('fps', 0)} vs {self.output_fps}"
# 检查是否需要 trim
effective_duration = UnifiedRenderService._clip_effective_duration(clip)
if effective_duration > 0:
# 有 trim 需求但视频时长足够,可用 -ss/-t 实现 copy trim
input_duration = info.get("duration", 0)
if input_duration <= 0:
return False, "无法探测输入时长"
# trim 起始点 + 目标时长 <= 输入时长
start_time = getattr(clip, "start_time", 0) or 0
if start_time + effective_duration > input_duration + 0.1:
return False, "trim 超出输入时长"
# video_duration 截断
if video_duration > 0 and effective_duration > 0:
final_duration = min(effective_duration, video_duration)
if final_duration != effective_duration:
# 也需要截断,但 -t 可以 copy 模式下用
pass
return True, "所有条件满足"
def _try_render_stream_copy(
self,
layers: list[RenderLayer],
output_path: Path,
*,
ass_path: Path | None = None,
video_duration: float = 0.0,
) -> bool:
"""尝试 stream copy 渲染,成功返回 True,失败返回 False(调用方回退到重编码)。
stream copy 模式:不重编码,直接拷贝视频/音频流,性能提升 10 倍+。
仅用于单 clip 直通场景且满足 copy 条件。
"""
clip = layers[0].clips[0]
role = layers[0].role
# 判断是否满足 copy 条件
can_copy, reason = self._can_use_stream_copy(clip, ass_path=ass_path, video_duration=video_duration)
if not can_copy:
logger.info(
"[unified-render] stream_copy 跳过: plan_id=%s reason=%s",
self.plan.id,
reason,
)
return False
# 构建 copy 命令
command = [
FFMPEG_BIN,
"-y",
]
# trim 支持(-ss 放在 -i 前 = input seeking,速度更快但精度稍差;
# 放在 -i 后 = output seeking,精度高但慢)
# 这里用 output seeking 保证精度,反正 copy 模式已经很快了
start_time = getattr(clip, "start_time", 0) or 0
effective_duration = UnifiedRenderService._clip_effective_duration(clip)
command.extend(["-i", str(clip.local_path)])
if start_time > 0:
command.extend(["-ss", f"{start_time:.3f}"])
# 计算最终时长
final_duration = effective_duration
if video_duration > 0 and (final_duration <= 0 or final_duration > video_duration):
final_duration = video_duration
if final_duration > 0:
command.extend(["-t", f"{final_duration:.3f}"])
# 流拷贝
command.extend(
[
"-c:v",
"copy",
"-c:a",
"copy",
"-movflags",
"+faststart",
str(output_path),
]
)
logger.info(
"[unified-render] stream_copy 渲染: plan_id=%s clip=%s role=%s duration=%.2fs",
self.plan.id,
clip.clip_id,
role,
final_duration,
)
try:
run_ffmpeg(command)
# 验证输出文件存在且有大小
if output_path.exists() and output_path.stat().st_size > 0:
logger.info(
"[unified-render] stream_copy 成功: plan_id=%s size=%d",
self.plan.id,
output_path.stat().st_size,
)
return True
else:
logger.warning("[unified-render] stream_copy 输出为空: plan_id=%s", self.plan.id)
return False
except (subprocess.CalledProcessError, subprocess.TimeoutExpired) as e:
logger.warning(
"[unified-render] stream_copy 失败,回退到重编码: plan_id=%s error=%s",
self.plan.id,
str(e)[:200],
)
# 清理可能的损坏输出文件
if output_path.exists():
try:
output_path.unlink()
except OSError:
pass
return False
def _render_pass_through(
self,
layers: list[RenderLayer],
@@ -797,7 +980,6 @@ class UnifiedRenderService:
# 计算 PiP 位置
pip_width = int(self.output_width * _PIP_SCALE)
pip_height = int(self.output_height * _PIP_SCALE)
margin = 20 # 边距
if "overlay" in layer_map:
+236
View File
@@ -1399,3 +1399,239 @@ class TestAudioMixing:
assert r1 is True and r2 is True and r3 is True
# 实际只探测了 1 次
assert mock_probe.call_count == 1
# ── 测试 stream copy 流拷贝优化 ───────────────────────────────────────────────
class TestStreamCopy:
"""stream copy 流拷贝优化测试。"""
def _make_single_clip_service(self):
clips = [_make_clip("c1", "main", order=0, duration=5.0)]
svc = _make_service(clips)
with _patch_path_exists(), patch("video_processing.unified_render_service.probe_duration", return_value=5.0):
resolved = svc._resolve_clips()
layers = svc._group_clips_into_layers(resolved)
return svc, resolved[0], layers
def test_can_use_stream_copy_all_conditions_met(self):
"""所有条件满足 → 可以 stream copy。"""
svc, clip, layers = self._make_single_clip_service()
probe_result = {
"width": 1280,
"height": 720,
"fps": 25.0,
"video_codec": "h264",
"pix_fmt": "yuv420p",
"duration": 5.0,
"has_audio": True,
"audio_codec": "aac",
}
with patch(
"video_processing.unified_render_service.probe_video_info",
return_value=probe_result,
):
can_copy, reason = svc._can_use_stream_copy(clip, ass_path=None, video_duration=0)
assert can_copy is True
assert "所有条件满足" in reason
def test_cannot_copy_with_subtitles(self):
"""有字幕 → 不能 stream copy。"""
svc, clip, layers = self._make_single_clip_service()
can_copy, reason = svc._can_use_stream_copy(clip, ass_path=Path("/tmp/sub.ass"), video_duration=0)
assert can_copy is False
assert "字幕" in reason
def test_cannot_copy_wrong_codec(self):
"""编码不是 h264 → 不能 stream copy。"""
svc, clip, layers = self._make_single_clip_service()
probe_result = {
"width": 1280,
"height": 720,
"fps": 25.0,
"video_codec": "hevc",
"pix_fmt": "yuv420p",
"duration": 5.0,
"has_audio": True,
"audio_codec": "aac",
}
with patch(
"video_processing.unified_render_service.probe_video_info",
return_value=probe_result,
):
can_copy, reason = svc._can_use_stream_copy(clip, ass_path=None, video_duration=0)
assert can_copy is False
assert "编码" in reason
def test_cannot_copy_wrong_resolution(self):
"""分辨率不匹配 → 不能 stream copy。"""
svc, clip, layers = self._make_single_clip_service()
probe_result = {
"width": 1920,
"height": 1080,
"fps": 25.0,
"video_codec": "h264",
"pix_fmt": "yuv420p",
"duration": 5.0,
"has_audio": True,
"audio_codec": "aac",
}
with patch(
"video_processing.unified_render_service.probe_video_info",
return_value=probe_result,
):
can_copy, reason = svc._can_use_stream_copy(clip, ass_path=None, video_duration=0)
assert can_copy is False
assert "分辨率" in reason
def test_cannot_copy_wrong_fps(self):
"""帧率不匹配 → 不能 stream copy。"""
svc, clip, layers = self._make_single_clip_service()
probe_result = {
"width": 1280,
"height": 720,
"fps": 30.0,
"video_codec": "h264",
"pix_fmt": "yuv420p",
"duration": 5.0,
"has_audio": True,
"audio_codec": "aac",
}
with patch(
"video_processing.unified_render_service.probe_video_info",
return_value=probe_result,
):
can_copy, reason = svc._can_use_stream_copy(clip, ass_path=None, video_duration=0)
assert can_copy is False
assert "帧率" in reason
def test_cannot_copy_wrong_pix_fmt(self):
"""像素格式不匹配 → 不能 stream copy。"""
svc, clip, layers = self._make_single_clip_service()
probe_result = {
"width": 1280,
"height": 720,
"fps": 25.0,
"video_codec": "h264",
"pix_fmt": "yuv422p",
"duration": 5.0,
"has_audio": True,
"audio_codec": "aac",
}
with patch(
"video_processing.unified_render_service.probe_video_info",
return_value=probe_result,
):
can_copy, reason = svc._can_use_stream_copy(clip, ass_path=None, video_duration=0)
assert can_copy is False
assert "像素格式" in reason
def test_try_render_stream_copy_success(self):
"""stream copy 渲染成功 → 返回 True。"""
svc, clip, layers = self._make_single_clip_service()
probe_result = {
"width": 1280,
"height": 720,
"fps": 25.0,
"video_codec": "h264",
"pix_fmt": "yuv420p",
"duration": 5.0,
"has_audio": True,
"audio_codec": "aac",
}
output_path = Path("/tmp/test_output.mp4")
def fake_stat():
m = MagicMock()
m.st_size = 1024000
return m
with (
patch(
"video_processing.unified_render_service.probe_video_info",
return_value=probe_result,
),
patch("video_processing.unified_render_service.run_ffmpeg") as mock_run,
patch("pathlib.Path.exists", return_value=True),
patch("pathlib.Path.stat", side_effect=fake_stat),
):
result = svc._try_render_stream_copy(layers, output_path, ass_path=None, video_duration=0)
assert result is True
mock_run.assert_called_once()
cmd = mock_run.call_args[0][0]
assert "-c:v" in cmd
assert "copy" in cmd
assert "-c:a" in cmd
def test_try_render_stream_copy_fallback_on_ffmpeg_error(self):
"""stream copy FFmpeg 失败 → 返回 False(调用方回退到重编码)。"""
svc, clip, layers = self._make_single_clip_service()
probe_result = {
"width": 1280,
"height": 720,
"fps": 25.0,
"video_codec": "h264",
"pix_fmt": "yuv420p",
"duration": 5.0,
"has_audio": True,
"audio_codec": "aac",
}
output_path = Path("/tmp/test_output.mp4")
import subprocess as sp
with (
patch(
"video_processing.unified_render_service.probe_video_info",
return_value=probe_result,
),
patch(
"video_processing.unified_render_service.run_ffmpeg",
side_effect=sp.CalledProcessError(1, ["ffmpeg"], stderr="copy failed"),
),
patch("pathlib.Path.exists", return_value=False),
):
result = svc._try_render_stream_copy(layers, output_path, ass_path=None, video_duration=0)
assert result is False
def test_render_uses_stream_copy_when_eligible(self):
"""完整渲染流程:满足条件时走 stream copy。"""
clips = [_make_clip("c1", "main", order=0, duration=5.0)]
svc = _make_service(clips)
probe_result = {
"width": 1280,
"height": 720,
"fps": 25.0,
"video_codec": "h264",
"pix_fmt": "yuv420p",
"duration": 5.0,
"has_audio": True,
"audio_codec": "aac",
}
def fake_stat():
m = MagicMock()
m.st_size = 1024000
return m
with (
_patch_path_exists(),
patch("video_processing.unified_render_service.probe_duration", return_value=5.0),
patch(
"video_processing.unified_render_service.probe_video_info",
return_value=probe_result,
),
patch("video_processing.unified_render_service.run_ffmpeg") as mock_run,
patch("pathlib.Path.stat", side_effect=fake_stat),
patch("shutil.copy2"),
):
result = svc.render()
assert mock_run.call_count == 1
cmd = mock_run.call_args[0][0]
assert "copy" in cmd
assert isinstance(result.output_path, Path)