* feat(dev): seed linked tracing and spend fixtures * chore(dev): use OpenAI model in tracing config * chore(dev): align tracing credentials with UI E2E * fix(dev): update fixture seeder query scope * feat(dev): seed linked tracing and spend fixtures * chore(dev): use OpenAI model in tracing config * chore(dev): align tracing credentials with UI E2E * fix(dev): update fixture seeder query scope * wip * wip * wip * chore(trace): checkpoint ongoing Rust migration * refactor(trace): group Python bridge under trace package * refactor(traces): read span conventions through a Convention trait Each span format (Claude Code, LangSmith, OpenInference, gen_ai) now lives under normalize/convention/ as a unit struct implementing Convention, owning both its detection and its extraction. Precedence is one ordered registry instead of an if-chain in mod.rs that reached into each module differently. The modules now share one way to read attributes: present() for the first non-empty key and Payload for a text that also reports the key it consumed, replacing three different idioms and the &mut Vec threaded through payload readers. Instrumentation::adjust returns a new Extraction instead of mutating one, with each SDK rule as its own function, and the LangChain middleware suffix list exists once. * feat(trace): export Rust-owned wire schemas and enforce contract bounds * fix(trace): bound quoted counts in ClickHouse wire schemas * feat(trace): generate Python wire contracts with datamodel-code-generator * test(trace): validate migrated callers and generated contracts at the native boundary * refactor(traces): rename normalization convention to format * fix(traces): reconcile spend evidence and preserve unknown costs * feat(traces): normalize additional telemetry formats * test(traces): cover captured normalization fixtures * refactor(traces): isolate SDK normalization rules * feat(tracing): seed all trace exports for local dashboard * fix(clickhouse): preserve custom LiteLLM request metadata * docs(traces): define normalization module boundaries * docs(traces): define resolution and OTLP boundaries * fix(ui): normalize nullable trace message names * refactor(traces): split resolver modules and cover resolution behavior * test(traces): replace normalization snapshots with behavior assertions * fix(ui): align dashboard API contracts with generated types * refactor(traces): type normalization and storage boundaries * fix(traces): seed captured SDK spend and preserve provider identities * wip * test(traces): verify guide discovery and content ordering --------- Co-authored-by: Yujong Lee <yujong@berri.ai> Co-authored-by: Devin AI <158243242+devin-ai-integration[bot]@users.noreply.github.com> |
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| .. | ||
| schemas | ||
| templates | ||
| config.json | ||
| README.md | ||
Run uv run scripts/generate_trace_types.py from the repository root to export Rust schemas and regenerate the Python trace contracts. Run the same command with --check to compare fresh output with the committed schemas and Python files
The script pins datamodel-code-generator in its inline dependency metadata. Rust uses the workspace's locked Schemars version through each owning crate's optional schema feature. Neither tool is a Python runtime dependency
Each crate exports its own roots using JSON Schema 2020-12. Request parameters use Schemars' deserialization contract. Trace views and query help use its serialization contract. Lens rows use their ClickHouse deserialization schemas, including quoted numbers and numeric boolean flags
The templates preserve tuple conversion, immutable tuple defaults, and bounded ReadOnly TypedDict fields. Pydantic models use the generator's frozen-model option and each schema's extra-field policy. ClickHouse numeric schemas select bounded, normalized Python scalar types through schema metadata consumed by the model template
Edit the owning Rust contract, schema annotation, or generation configuration, then regenerate. Never edit litellm/rust_bridge/trace/generated/ manually. The SQL response envelope remains handwritten in queries.py