mirror of
https://github.com/headroomlabs-ai/headroom.git
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74 lines
2.6 KiB
Python
74 lines
2.6 KiB
Python
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"""Phase 3 (#1171) byte-identity + off-path data flow.
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The off-path design's correctness argument is: forwarding the uncompressed
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messages on turn N and the compressed form on turn N+1 does NOT corrupt the
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upstream prefix cache, because ``apply_cached`` swaps in the stored compressed
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bytes verbatim (one-time miss, then stable). These tests pin that claim and the
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end-to-end enqueue -> drain -> store -> cache-hit flow the handler gate relies
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on, without standing up the full Anthropic handler.
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"""
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from __future__ import annotations
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import asyncio
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from headroom.cache.compression_cache import CompressionCache
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from headroom.proxy.background_compression import BackgroundCompressor
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def _tool(content: str) -> dict:
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return {"role": "tool", "content": content}
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def test_apply_cached_is_byte_identical_and_stable():
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cache = CompressionCache()
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originals = [_tool("x " * 10000)] # a large tool result
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compressed = [_tool("COMPRESSED")]
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cache.update_from_result(originals, compressed)
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# One-time miss already paid; from here the swap is verbatim AND stable
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# across repeated turns (no every-turn thrash).
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out1 = cache.apply_cached(originals)
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out2 = cache.apply_cached(originals)
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assert out1[0]["content"] == "COMPRESSED"
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assert out1 == out2
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# apply_cached never mutates its input.
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assert originals[0]["content"] == "x " * 10000
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def test_unchanged_content_is_not_swapped():
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cache = CompressionCache()
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originals = [_tool("same bytes")]
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# Pipeline returned identical content (nothing to compress) -> no mapping.
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cache.update_from_result(originals, [_tool("same bytes")])
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assert cache.apply_cached(originals)[0]["content"] == "same bytes"
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def test_offpath_enqueue_drain_store_then_cache_hit():
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async def main():
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cache = CompressionCache()
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originals = [_tool("x " * 10000)]
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async def run(fn): # trivial in-loop executor stand-in
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return fn()
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bc = BackgroundCompressor(run)
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await bc.start()
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# Exactly the two lambdas the deferral gate passes: compress -> produce
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# the compressed messages; store -> fold them into the session cache.
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bc.enqueue(
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"sess:42",
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lambda: [_tool("COMPRESSED")],
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lambda result: cache.update_from_result(originals, result),
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)
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await bc._queue.join()
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await bc.stop()
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return cache.apply_cached(originals), bc.stats()
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out, stats = asyncio.run(main())
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# After the background job ran, the next turn is a byte-identical cache hit.
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assert out[0]["content"] == "COMPRESSED"
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assert stats["processed"] == 1
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assert stats["errors"] == 0
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