- Document ring buffer pipeline triggering nsys timestamp bug - Update profile_offload.sh to use test_ruler.py with options - Add reference to new doc in CLAUDE.md Root cause: 4-slot ring buffer pipeline (4 transfer streams + 1 compute stream) triggers event ordering bug in nsys < 2024.2 Co-Authored-By: Claude Opus 4.5 <noreply@anthropic.com>
211 lines
5.9 KiB
Markdown
211 lines
5.9 KiB
Markdown
# Nsys "Wrong Event Order" Bug 调试记录
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## 问题描述
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使用 `nsys profile` 对 nanovllm 的 CPU offload 模式进行性能分析时,无法生成 `.nsys-rep` 文件,报错:
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```
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Importer error status: Importation failed.
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Wrong event order has been detected when adding events to the collection:
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new event ={ StartNs=21569539222 StopNs=21569672388 ... Type=48 }
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last event ={ StartNs=22046804077 StopNs=22046805343 ... Type=48 }
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```
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## 环境信息
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- **nsys 版本**: 2023.4.4.54-234433681190v0
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- **CUDA**: 12.4
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- **问题状态**: nsys 已知 bug,2024.2+ 版本已修复
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## 调试过程
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### 阶段 1:确定触发条件
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使用 bisect 脚本 (`tests/test_nsys_bisect.py`) 逐步测试:
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| Stage | 描述 | 结果 |
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|-------|------|------|
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| 1 | CUDA init | ✅ |
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| 2 | Import nanovllm | ✅ |
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| 3 | Create LLM (offload) | ✅ |
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| 4 | 短 prompt 生成 | ✅ |
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| **5** | **长 prompt (~64K) prefill** | ❌ |
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**结论**:问题出在长 prompt 的 chunked prefill 流程。
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### 阶段 2:定位具体组件
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在 `_chunked_prefill_attention` 方法中逐步注释代码:
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| 组件 | 文件位置 | 结果 |
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|------|----------|------|
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| 整个方法 (return zeros) | `attention.py:167` | ✅ |
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| `select_blocks()` | `attention.py:217` | ✅ |
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| `offload_prefill_buffer_async()` | `attention.py:241-248` | ✅ |
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| `compute_chunked_prefill()` | `attention.py:225-235` | ❌ |
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**结论**:问题出在 `compute_chunked_prefill` 内部。
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### 阶段 3:定位 Ring Buffer Pipeline
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在 `full_policy.py` 中进一步定位:
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| 组件 | 代码行 | 结果 |
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|------|--------|------|
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| Current chunk attention | 191-198 | ✅ |
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| **Historical block loading (ring buffer)** | 133-189 | ❌ |
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**根因确认**:Ring buffer pipeline 的多 stream 操作触发了 nsys bug。
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## 根本原因
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### 触发 Bug 的代码
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```python
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# nanovllm/kvcache/sparse/full_policy.py:133-189
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# 多 slot pipeline 模式
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for block_idx in range(num_blocks):
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current_slot = load_slots[block_idx % num_slots]
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# 等待 slot 的 transfer stream 完成
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offload_engine.wait_slot_layer(current_slot)
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# 在 compute_stream 上执行 attention
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with torch.cuda.stream(compute_stream):
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prev_k, prev_v = offload_engine.get_kv_for_slot(current_slot)
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prev_o, prev_lse = flash_attn_with_lse(...)
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offload_engine.record_slot_compute_done(current_slot)
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# 异步发起下一个 block 的加载
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if next_block_idx < num_blocks:
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offload_engine.load_to_slot_layer(next_slot, layer_id, next_cpu_block_id)
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```
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### Stream 结构
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```
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slot_transfer_streams[0] ─┐
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slot_transfer_streams[1] ─┼─ 4 个 transfer streams
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slot_transfer_streams[2] ─┤
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slot_transfer_streams[3] ─┘
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│
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▼ wait/record 同步
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│
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compute_stream ───────────┘
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```
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这种 4+1 stream 的复杂同步模式导致 nsys 2023.4.4 版本的事件时间戳排序算法出错。
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### 为什么简单多 stream 测试无法复现
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我们尝试用简单的测试代码 (`tests/test_multistream_nsys.py`) 复现问题:
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- 4-8 streams, 2000+ iterations: ✅ 成功
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- 32 threads + multi-stream: ✅ 成功
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- >64k CUDA operations: ✅ 成功
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但都无法触发 bug。原因是实际代码中的 stream 同步模式更复杂:
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1. 跨 stream 的 event wait/record
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2. 与 FlashAttention kernel 的交互
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3. 长时间运行(~50 秒)累积大量事件
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## 解决方案
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### 方案 1:升级 nsys(推荐)
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```bash
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# 下载 nsys 2024.2+ 版本
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# https://developer.nvidia.com/nsight-systems
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```
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根据 [NVIDIA 论坛](https://forums.developer.nvidia.com/t/nsys-profiler-wrong-event-order/264881),此 bug 在 2024.2 版本已修复。
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### 方案 2:使用 .qdstrm 文件
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即使导入失败,`.qdstrm` 文件仍然生成:
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```bash
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# 生成的文件
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results/nsys/ruler_niah_single_1_sample0_offload_*.qdstrm
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# 尝试用 GUI 直接打开
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nsight-sys <file>.qdstrm
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```
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GUI 可能有更好的容错能力。
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### 方案 3:使用 PyTorch Profiler
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```python
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from torch.profiler import profile, ProfilerActivity
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with profile(activities=[ProfilerActivity.CPU, ProfilerActivity.CUDA]) as prof:
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# your code
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prof.export_chrome_trace("trace.json") # chrome://tracing 查看
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```
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### 方案 4:临时禁用 ring buffer pipeline
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在 `full_policy.py` 中临时使用单 slot 同步模式(仅用于调试):
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```python
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# 强制使用单 slot 模式
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if len(load_slots) == 1 or True: # 添加 "or True"
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# 同步模式,不会触发 nsys bug
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...
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```
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## 复现步骤
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### 环境准备
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```bash
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cd /home/zijie/Code/nano-vllm
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```
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### 运行 Bisect 脚本
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```bash
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# Stage 5 会触发 bug
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CUDA_VISIBLE_DEVICES=0 PYTHONPATH=$PWD:$PYTHONPATH \
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nsys profile --trace=cuda,nvtx,osrt --force-overwrite=true \
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-o /tmp/bisect python tests/test_nsys_bisect.py --stage 5
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```
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### 验证修复
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```bash
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# 临时在 full_policy.py 中跳过 historical block loading
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# 将第 133 行改为: if False and cpu_block_table:
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# 重新运行,应该成功
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CUDA_VISIBLE_DEVICES=0 PYTHONPATH=$PWD:$PYTHONPATH \
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nsys profile --trace=cuda,nvtx,osrt --force-overwrite=true \
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-o /tmp/bisect_fixed python tests/test_nsys_bisect.py --stage 5
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# 检查是否生成 .nsys-rep
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ls -la /tmp/bisect_fixed.nsys-rep
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```
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## 相关文件
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| 文件 | 用途 |
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|------|------|
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| `tests/test_nsys_bisect.py` | Bisect 调试脚本 |
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| `tests/test_multistream_nsys.py` | 简单多 stream 测试 |
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| `scripts/profile_offload.sh` | nsys profile 脚本 |
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| `nanovllm/layers/attention.py` | Attention 层 |
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| `nanovllm/kvcache/sparse/full_policy.py` | Ring buffer pipeline |
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## 参考资料
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- [Nsys Profiler- Wrong event order - NVIDIA Forums](https://forums.developer.nvidia.com/t/nsys-profiler-wrong-event-order/264881)
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- [Nsight Systems 2025.3 Release Notes](https://docs.nvidia.com/nsight-systems/2025.3/ReleaseNotes/index.html)
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- [Nsight Systems User Guide](https://docs.nvidia.com/nsight-systems/UserGuide/index.html)
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## 调试日期
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2026-01-24
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