[feat] Added num_gpu_blocks limit gpu blocks.
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114
tests/test_chunked_attention.py
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114
tests/test_chunked_attention.py
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"""
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Test chunked attention with small num_gpu_blocks to trigger CPU offload.
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For 8K tokens with block_size=256:
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- Total blocks needed: 8192 / 256 = 32 blocks
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- With num_gpu_blocks=10, 22 blocks go to CPU -> triggers chunked attention
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"""
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import os
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import sys
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# Enable debug logging before importing nanovllm
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os.environ["NANOVLLM_LOG_LEVEL"] = "DEBUG"
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from nanovllm import LLM, SamplingParams
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def test_chunked_prefill(num_gpu_blocks=10, input_len=8192, output_len=16):
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"""Test chunked prefill with limited GPU blocks."""
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path = os.path.expanduser("~/models/Qwen3-4B-Instruct-2507/")
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total_blocks = (input_len + 255) // 256
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print(f"=" * 60)
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print(f"Chunked Prefill Test")
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print(f"=" * 60)
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print(f" input_len: {input_len} tokens")
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print(f" total_blocks: {total_blocks}")
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print(f" num_gpu_blocks: {num_gpu_blocks}")
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print(f" blocks_on_cpu: {max(0, total_blocks - num_gpu_blocks)}")
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print()
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llm = LLM(
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path,
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enforce_eager=False,
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max_model_len=16 * 1024, # 16K is enough for 8K test
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max_num_batched_tokens=16 * 1024,
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enable_cpu_offload=True,
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cpu_memory_gb=4.0,
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num_gpu_blocks=num_gpu_blocks,
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)
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print(f"LLM initialized:")
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print(f" num_gpu_kvcache_blocks: {llm.model_runner.config.num_gpu_kvcache_blocks}")
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print(f" num_cpu_kvcache_blocks: {llm.model_runner.config.num_cpu_kvcache_blocks}")
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print()
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# Create prompt with approximate token count
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prompt = "Hello " * (input_len // 2)
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print(f"Running generation...")
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outputs = llm.generate(
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[prompt],
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SamplingParams(temperature=0.6, max_tokens=output_len),
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use_tqdm=True,
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)
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print()
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print(f"Output tokens: {len(outputs[0]['token_ids'])}")
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print(f"Output text (first 100 chars): {outputs[0]['text'][:100]}")
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print()
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return outputs
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def test_chunked_decode(num_gpu_blocks=10, input_len=8192, output_len=64):
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"""Test chunked decode with limited GPU blocks."""
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path = os.path.expanduser("~/models/Qwen3-4B-Instruct-2507/")
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total_blocks = (input_len + 255) // 256
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print(f"=" * 60)
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print(f"Chunked Decode Test")
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print(f"=" * 60)
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print(f" input_len: {input_len} tokens")
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print(f" output_len: {output_len} tokens")
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print(f" total_blocks: {total_blocks}")
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print(f" num_gpu_blocks: {num_gpu_blocks}")
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print()
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llm = LLM(
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path,
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enforce_eager=False,
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max_model_len=16 * 1024,
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max_num_batched_tokens=16 * 1024,
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enable_cpu_offload=True,
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cpu_memory_gb=4.0,
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num_gpu_blocks=num_gpu_blocks,
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)
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print(f"LLM initialized:")
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print(f" num_gpu_kvcache_blocks: {llm.model_runner.config.num_gpu_kvcache_blocks}")
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print(f" num_cpu_kvcache_blocks: {llm.model_runner.config.num_cpu_kvcache_blocks}")
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print()
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prompt = "Hello " * (input_len // 2)
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print(f"Running generation...")
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outputs = llm.generate(
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[prompt],
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SamplingParams(temperature=0.6, max_tokens=output_len),
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use_tqdm=True,
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)
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print()
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print(f"Output tokens: {len(outputs[0]['token_ids'])}")
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print(f"Output text (first 100 chars): {outputs[0]['text'][:100]}")
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print()
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return outputs
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if __name__ == "__main__":
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# Parse arguments
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num_gpu_blocks = int(sys.argv[1]) if len(sys.argv) > 1 else 10
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input_len = int(sys.argv[2]) if len(sys.argv) > 2 else 8192
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output_len = int(sys.argv[3]) if len(sys.argv) > 3 else 32
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test_chunked_prefill(num_gpu_blocks, input_len, output_len)
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