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3 Commits
Author SHA1 Message Date
Nicolò Boschi 05952769fc fix(test): update daemon health check port from 8889 to 8888
The test was checking port 8889 but we changed the daemon to use port 8888.
2026-01-31 16:43:59 +01:00
Nicolò Boschi a07f9132f1 docs(openclaw): streamline docs and add config inspection
- Remove duplicate/verbose sections (468 → 216 lines)
- Add section showing how to check ~/.hindsight/embed config file
- Add daemon status checking commands
- Keep only essential configuration examples
- Consolidate troubleshooting sections
2026-01-31 16:34:39 +01:00
Nicolò Boschi b404ca2cee feat(hindsight-embed): external API support + OpenClaw fixes
Adds comprehensive external API support and fixes critical OpenClaw plugin issues.

**External API Support:**
- Add HINDSIGHT_EMBED_API_URL to connect to external Hindsight API servers
- Add HINDSIGHT_EMBED_API_TOKEN for Bearer token authentication
- Add HINDSIGHT_EMBED_API_DATABASE_URL for custom PostgreSQL databases
- Skip daemon startup when external API URL is configured
- Add 10 comprehensive unit tests for external API scenarios

**OpenClaw Plugin Fixes:**
- Fix #263: Port mismatch (DEFAULT_PORT 8888 → 8889)
- Fix #264: Add daemon recovery after OpenClaw SIGUSR1 restarts
- Fix OpenRouter support: Pass HINDSIGHT_API_LLM_BASE_URL to daemon
- Fix macOS crashes: Auto-set FORCE_CPU flags for MPS/Metal issues

**LLM Configuration Refactor:**
- Auto-detect provider from standard env vars (OPENAI_API_KEY, etc.)
- Support explicit override via HINDSIGHT_API_LLM_* env vars
- Update model defaults (gemini-2.5-flash, openai/gpt-oss-20b)
- Remove provider-specific base URL support (only HINDSIGHT_API_LLM_BASE_URL)

**Documentation Updates:**
- Rewrite OpenClaw integration docs with crystal clear examples
- Add external API usage examples
- Add OpenRouter free model examples
- Update Quick Start with simplified provider setup

Closes #263, Closes #264
2026-01-31 16:31:41 +01:00
383 changed files with 4784 additions and 47679 deletions
-15
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@@ -50,18 +50,3 @@ HINDSIGHT_API_LOG_LEVEL=info
# HINDSIGHT_API_RERANKER_LOCAL_MODEL=cross-encoder/ms-marco-MiniLM-L-6-v2
# For TEI provider:
# HINDSIGHT_API_RERANKER_TEI_URL=http://localhost:8081
# Observability & Tracing (Optional - disabled by default)
# Enable OpenTelemetry tracing for LLM calls (GenAI semantic conventions)
# HINDSIGHT_API_OTEL_TRACES_ENABLED=true
#
# Local development with Grafana LGTM stack (recommended - see scripts/dev/grafana/README.md)
# HINDSIGHT_API_OTEL_EXPORTER_OTLP_ENDPOINT=http://localhost:4318
#
# Cloud backends (Grafana Cloud, Langfuse, DataDog, etc.)
# HINDSIGHT_API_OTEL_EXPORTER_OTLP_ENDPOINT=https://your-backend-url
# HINDSIGHT_API_OTEL_EXPORTER_OTLP_HEADERS="Authorization=Bearer your-token"
#
# Custom service name and environment (optional, defaults: hindsight-api, development)
# HINDSIGHT_API_OTEL_SERVICE_NAME=hindsight-production
# HINDSIGHT_API_OTEL_DEPLOYMENT_ENVIRONMENT=production
+2 -82
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@@ -188,55 +188,6 @@ jobs:
path: hindsight-integrations/openclaw/*.tgz
retention-days: 1
release-ai-sdk-integration:
runs-on: ubuntu-latest
environment: npm
steps:
- uses: actions/checkout@v4
- name: Set up Node.js
uses: actions/setup-node@v4
with:
node-version: '22'
registry-url: 'https://registry.npmjs.org'
- name: Install dependencies
working-directory: ./hindsight-integrations/ai-sdk
run: npm ci
- name: Build
working-directory: ./hindsight-integrations/ai-sdk
run: npm run build
- name: Publish to npm
working-directory: ./hindsight-integrations/ai-sdk
run: |
set +e
OUTPUT=$(npm publish --access public 2>&1)
EXIT_CODE=$?
echo "$OUTPUT"
if [ $EXIT_CODE -ne 0 ]; then
if echo "$OUTPUT" | grep -q "cannot publish over"; then
echo "Package version already published, skipping..."
exit 0
fi
exit $EXIT_CODE
fi
env:
NODE_AUTH_TOKEN: ${{ secrets.NPM_TOKEN }}
- name: Pack for GitHub release
working-directory: ./hindsight-integrations/ai-sdk
run: npm pack
- name: Upload artifacts
uses: actions/upload-artifact@v4
with:
name: ai-sdk-integration
path: hindsight-integrations/ai-sdk/*.tgz
retention-days: 1
release-control-plane:
runs-on: ubuntu-latest
environment: npm
@@ -340,7 +291,6 @@ jobs:
retention-days: 1
release-docker-images:
name: Release Docker (${{ matrix.image_name }}${{ matrix.tag_suffix }})
runs-on: ubuntu-latest
permissions:
contents: read
@@ -350,28 +300,10 @@ jobs:
include:
- target: api-only
image_name: hindsight-api
tag_suffix: ""
build_args: ""
- target: api-only
image_name: hindsight-api
tag_suffix: "-slim"
build_args: |
INCLUDE_LOCAL_MODELS=false
PRELOAD_ML_MODELS=false
- target: cp-only
image_name: hindsight-control-plane
tag_suffix: ""
build_args: ""
- target: standalone
image_name: hindsight
tag_suffix: ""
build_args: ""
- target: standalone
image_name: hindsight
tag_suffix: "-slim"
build_args: |
INCLUDE_LOCAL_MODELS=false
PRELOAD_ML_MODELS=false
steps:
- uses: actions/checkout@v4
@@ -409,9 +341,6 @@ jobs:
uses: docker/metadata-action@v5
with:
images: ghcr.io/${{ github.repository_owner }}/${{ matrix.image_name }}
flavor: |
latest=auto
suffix=${{ matrix.tag_suffix }}
tags: |
type=semver,pattern={{version}},value=${{ steps.get_version.outputs.VERSION }}
type=semver,pattern={{major}}.{{minor}},value=${{ steps.get_version.outputs.VERSION }}
@@ -437,7 +366,7 @@ jobs:
# - name: Smoke test - verify container starts
# env:
# GROQ_API_KEY: ${{ secrets.GROQ_API_KEY }}
# run: ./docker/test-image.sh "${{ matrix.image_name }}:test" "${{ matrix.target }}"
# run: ./scripts/docker-smoke-test.sh "${{ matrix.image_name }}:test" "${{ matrix.target }}"
# Build multi-platform and push to release tags
- name: Build and push release images
@@ -446,7 +375,6 @@ jobs:
context: .
file: docker/standalone/Dockerfile
target: ${{ matrix.target }}
build-args: ${{ matrix.build_args }}
push: true
platforms: linux/amd64,linux/arm64
tags: ${{ steps.meta.outputs.tags }}
@@ -487,7 +415,7 @@ jobs:
create-github-release:
runs-on: ubuntu-latest
needs: [release-python-packages, release-typescript-client, release-openclaw-integration, release-ai-sdk-integration, release-control-plane, release-rust-cli, release-docker-images, release-helm-chart]
needs: [release-python-packages, release-typescript-client, release-openclaw-integration, release-control-plane, release-rust-cli, release-docker-images, release-helm-chart]
permissions:
contents: write
@@ -516,12 +444,6 @@ jobs:
name: openclaw-integration
path: ./artifacts/openclaw-integration
- name: Download AI SDK Integration
uses: actions/download-artifact@v4
with:
name: ai-sdk-integration
path: ./artifacts/ai-sdk-integration
- name: Download Control Plane
uses: actions/download-artifact@v4
with:
@@ -565,8 +487,6 @@ jobs:
cp artifacts/typescript-client/*.tgz release-assets/ || true
# OpenClaw Integration
cp artifacts/openclaw-integration/*.tgz release-assets/ || true
# AI SDK Integration
cp artifacts/ai-sdk-integration/*.tgz release-assets/ || true
# Control Plane
cp artifacts/control-plane/*.tgz release-assets/ || true
# Rust CLI binaries
+43 -177
View File
@@ -9,11 +9,42 @@ concurrency:
cancel-in-progress: true
jobs:
build-python-packages:
runs-on: ubuntu-latest
strategy:
matrix:
include:
- name: hindsight-all
path: hindsight
- name: hindsight-api
path: hindsight-api
- name: hindsight-client
path: hindsight-clients/python
- name: hindsight-embed
path: hindsight-embed
steps:
- uses: actions/checkout@v4
- name: Install uv
uses: astral-sh/setup-uv@v5
with:
enable-cache: true
- name: Set up Python
uses: actions/setup-python@v5
with:
python-version-file: ".python-version"
- name: Build ${{ matrix.name }}
working-directory: ./${{ matrix.path }}
run: uv build
build-api-python-versions:
runs-on: ubuntu-latest
strategy:
matrix:
python-version: ['3.11', '3.12', '3.13', '3.14']
python-version: ['3.11', '3.12', '3.13']
steps:
- uses: actions/checkout@v4
@@ -74,29 +105,6 @@ jobs:
working-directory: ./hindsight-integrations/openclaw
run: npm run build
build-ai-sdk-integration:
runs-on: ubuntu-latest
steps:
- uses: actions/checkout@v4
- name: Set up Node.js
uses: actions/setup-node@v4
with:
node-version: '22'
- name: Install dependencies
working-directory: ./hindsight-integrations/ai-sdk
run: npm ci
- name: Run tests
working-directory: ./hindsight-integrations/ai-sdk
run: npm test
- name: Build
working-directory: ./hindsight-integrations/ai-sdk
run: npm run build
build-control-plane:
runs-on: ubuntu-latest
@@ -277,35 +285,16 @@ jobs:
run: helm lint helm/hindsight
build-docker-images:
name: Build Docker (${{ matrix.name }})
runs-on: ubuntu-latest
strategy:
matrix:
include:
- target: api-only
name: api
variant: full
build_args: ""
- target: api-only
name: api-slim
variant: slim
build_args: |
INCLUDE_LOCAL_MODELS=false
PRELOAD_ML_MODELS=false
- target: cp-only
name: control-plane
variant: full
build_args: ""
- target: standalone
name: standalone
variant: full
build_args: ""
- target: standalone
name: standalone-slim
variant: slim
build_args: |
INCLUDE_LOCAL_MODELS=false
PRELOAD_ML_MODELS=false
steps:
- uses: actions/checkout@v4
@@ -324,31 +313,20 @@ jobs:
- name: Set up Docker Buildx
uses: docker/setup-buildx-action@v3
- name: Build ${{ matrix.name }} image (${{ matrix.variant }})
- name: Build ${{ matrix.name }} image
uses: docker/build-push-action@v6
with:
context: .
file: docker/standalone/Dockerfile
target: ${{ matrix.target }}
build-args: ${{ matrix.build_args }}
push: false
load: ${{ matrix.variant == 'slim' }}
tags: hindsight-${{ matrix.name }}:test
# Removed GitHub Actions cache (type=gha) - it frequently returns 502 errors
# causing buildx to fail with "failed to parse error response 502"
# Build will be slower but more reliable
load: false
# Only test slim variants to save disk space (they're much smaller)
# Slim variants require external embedding providers
- name: Smoke test - verify container starts
if: matrix.variant == 'slim'
env:
GROQ_API_KEY: ${{ secrets.GROQ_API_KEY }}
HINDSIGHT_API_EMBEDDINGS_PROVIDER: openai
HINDSIGHT_API_EMBEDDINGS_OPENAI_API_KEY: ${{ secrets.OPENAI_API_KEY }}
HINDSIGHT_API_RERANKER_PROVIDER: cohere
HINDSIGHT_API_COHERE_API_KEY: ${{ secrets.COHERE_API_KEY }}
run: ./docker/test-image.sh "hindsight-${{ matrix.name }}:test" "${{ matrix.target }}"
# TODO: Re-enable smoke test when disk space issue is resolved
# - name: Smoke test - verify container starts
# env:
# GROQ_API_KEY: ${{ secrets.GROQ_API_KEY }}
# run: ./scripts/docker-smoke-test.sh "hindsight-${{ matrix.name }}:test" "${{ matrix.target }}"
test-api:
runs-on: ubuntu-latest
@@ -771,9 +749,9 @@ jobs:
test-embed:
runs-on: ubuntu-latest
env:
HINDSIGHT_API_LLM_PROVIDER: groq
HINDSIGHT_API_LLM_API_KEY: ${{ secrets.GROQ_API_KEY }}
HINDSIGHT_API_LLM_MODEL: openai/gpt-oss-20b
HINDSIGHT_EMBED_LLM_PROVIDER: groq
HINDSIGHT_EMBED_LLM_API_KEY: ${{ secrets.GROQ_API_KEY }}
HINDSIGHT_EMBED_LLM_MODEL: openai/gpt-oss-20b
# Prefer CPU-only PyTorch in CI
UV_INDEX: pytorch=https://download.pytorch.org/whl/cpu
@@ -804,62 +782,10 @@ jobs:
${{ runner.os }}-huggingface-embed-
${{ runner.os }}-huggingface-
- name: Run unit and integration tests
working-directory: ./hindsight-embed
run: uv run pytest tests/ -v
- name: Run smoke test
working-directory: ./hindsight-embed
run: ./test.sh
test-hindsight-all:
runs-on: ubuntu-latest
env:
HINDSIGHT_API_LLM_PROVIDER: groq
HINDSIGHT_API_LLM_API_KEY: ${{ secrets.GROQ_API_KEY }}
HINDSIGHT_API_LLM_MODEL: openai/gpt-oss-20b
# For test_server_integration.py compatibility
HINDSIGHT_LLM_PROVIDER: groq
HINDSIGHT_LLM_API_KEY: ${{ secrets.GROQ_API_KEY }}
HINDSIGHT_LLM_MODEL: openai/gpt-oss-20b
# Prefer CPU-only PyTorch in CI
UV_INDEX: pytorch=https://download.pytorch.org/whl/cpu
steps:
- uses: actions/checkout@v4
- name: Install uv
uses: astral-sh/setup-uv@v5
with:
enable-cache: true
prune-cache: false
- name: Set up Python
uses: actions/setup-python@v5
with:
python-version-file: ".python-version"
- name: Build hindsight-all
working-directory: ./hindsight
run: uv build
- name: Install dependencies
working-directory: ./hindsight
run: uv sync --frozen --extra test --index-strategy unsafe-best-match
- name: Cache HuggingFace models
uses: actions/cache@v4
with:
path: ~/.cache/huggingface
key: ${{ runner.os }}-huggingface-all-${{ hashFiles('hindsight/pyproject.toml') }}
restore-keys: |
${{ runner.os }}-huggingface-all-
${{ runner.os }}-huggingface-
- name: Run unit tests
working-directory: ./hindsight
run: uv run pytest tests/ -v
test-doc-examples:
runs-on: ubuntu-latest
needs: test-rust-cli
@@ -1032,18 +958,6 @@ jobs:
working-directory: ./hindsight-dev
run: uv run pytest upgrade_tests/ -v --tb=short
- name: Show upgrade test logs
if: always()
run: |
echo "=== Upgrade Test Server Logs ==="
for log in /tmp/upgrade-test-*.log; do
if [ -f "$log" ]; then
echo ""
echo "--- $log ---"
tail -500 "$log"
fi
done
verify-generated-files:
runs-on: ubuntu-latest
env:
@@ -1114,52 +1028,4 @@ jobs:
git diff --stat
exit 1
fi
echo "✓ All generated files are up to date"
check-openapi-compatibility:
runs-on: ubuntu-latest
env:
UV_INDEX: pytorch=https://download.pytorch.org/whl/cpu
steps:
- uses: actions/checkout@v4
with:
fetch-depth: 0 # Fetch full git history to access base branch
- name: Install uv
uses: astral-sh/setup-uv@v5
with:
enable-cache: true
- name: Set up Python
uses: actions/setup-python@v5
with:
python-version-file: ".python-version"
- name: Install hindsight-dev dependencies
run: |
cd hindsight-dev && uv sync --frozen --index-strategy unsafe-best-match
- name: Check OpenAPI compatibility with base branch
run: |
# Get the base branch (usually main)
BASE_BRANCH="${{ github.base_ref }}"
if [ -z "$BASE_BRANCH" ]; then
echo "⚠️ Warning: No base branch found (not a PR?). Skipping compatibility check."
exit 0
fi
echo "Checking OpenAPI compatibility against base branch: $BASE_BRANCH"
# Extract the old OpenAPI spec from base branch
git show "origin/$BASE_BRANCH:hindsight-docs/static/openapi.json" > /tmp/old-openapi.json
if [ ! -s /tmp/old-openapi.json ]; then
echo "⚠️ Warning: Could not find OpenAPI spec in base branch. Skipping compatibility check."
exit 0
fi
# Check compatibility using our tool
cd hindsight-dev
uv run check-openapi-compatibility /tmp/old-openapi.json ../hindsight-docs/static/openapi.json
echo "✓ All generated files are up to date"
+1 -3
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@@ -53,6 +53,4 @@ hindsight-clients/rust/target
whats-next.md
TASK.md
# Changelog is now tracked in hindsight-docs/src/pages/changelog.md
# CHANGELOG.md
blog-post*
# CHANGELOG.md
-1
View File
@@ -45,7 +45,6 @@ cd hindsight-control-plane && npm run dev
./scripts/dev/start-docs.sh
```
### Generating Clients/OpenAPI
```bash
# Regenerate OpenAPI spec after API changes (REQUIRED after changing endpoints)
+21 -53
View File
@@ -42,51 +42,27 @@ If you need more control over how and when your agent stores and recalls memorie
![Hindsight Banner](./hindsight-docs/static/img/migration-code.png)
---
> 🤖 **Using a coding agent?** Install the Hindsight documentation skill for instant access to docs while you code:
> ```bash
> npx skills add https://github.com/vectorize-io/hindsight --skill hindsight-docs
> ```
> Works with Claude Code, Cursor, and other AI coding assistants.
---
## Quick Start
### Docker (recommended)
```bash
export OPENAI_API_KEY=sk-xxx
export OPENAI_API_KEY=your-key
docker run --rm -it --pull always -p 8888:8888 -p 9999:9999 \
-e HINDSIGHT_API_LLM_API_KEY=$OPENAI_API_KEY \
-e HINDSIGHT_API_LLM_MODEL=o3-mini \
-v $HOME/.hindsight-docker:/home/hindsight/.pg0 \
ghcr.io/vectorize-io/hindsight:latest
```
>API: http://localhost:8888
>UI: http://localhost:9999
You can modify the LLM provider by setting `HINDSIGHT_API_LLM_PROVIDER`. Valid options are `openai`, `anthropic`, `gemini`, `groq`, `ollama`, and `lmstudio`. The documentation provides more details on [supported models](https://hindsight.vectorize.io/developer/models).
API: http://localhost:8888
UI: http://localhost:9999
### Docker (external PostgreSQL)
```bash
export OPENAI_API_KEY=sk-xxx
export HINDSIGHT_DB_PASSWORD=choose-a-password
cd docker/docker-compose
docker compose up
```
>API: http://localhost:8888
>UI: http://localhost:9999
### Client
Install client:
```bash
pip install hindsight-client -U
@@ -94,7 +70,7 @@ pip install hindsight-client -U
npm install @vectorize-io/hindsight-client
```
#### Python
Python example:
```python
from hindsight_client import Hindsight
@@ -111,29 +87,7 @@ client.recall(bank_id="my-bank", query="What does Alice do?")
client.reflect(bank_id="my-bank", query="Tell me about Alice")
```
#### Node.js / TypeScript
```bash
npm install @vectorize-io/hindsight-client
```
```javascript
const { HindsightClient } = require('@vectorize-io/hindsight-client');
const main = async () => {
const client = new HindsightClient({ baseUrl: 'http://localhost:8888' });
await client.retain('my-bank', 'Alice loves hiking in Yosemite');
const results = await client.recall('my-bank', 'What does Alice like?');
console.log(results);
}
main();
```
### Python Embedded (no server required)
### Python (embedded, no Docker)
```bash
pip install hindsight-all -U
@@ -153,6 +107,20 @@ with HindsightServer(
results = client.recall(bank_id="my-bank", query="Where does Alice work?")
```
### Node.js / TypeScript
```bash
npm install @vectorize-io/hindsight-client
```
```javascript
const { HindsightClient } = require('@vectorize-io/hindsight-client');
const client = new HindsightClient({ baseUrl: 'http://localhost:8888' });
await client.retain('my-bank', 'Alice loves hiking in Yosemite');
await client.recall('my-bank', 'What does Alice like?');
```
---
-54
View File
@@ -1,54 +0,0 @@
# Docker Compose file for Hindsight with PostgreSQL and pgvector
#
# Make sure to set the required environment variables before running:
# - HINDSIGHT_DB_PASSWORD: Password for the PostgreSQL user
# - Configure LLM provider variables as needed (see below in the hindsight service)
#
# Usage:
# docker compose up -d
#
# Optional environment variables with defaults:
# - HINDSIGHT_VERSION: Hindsight application version (default: latest)
# - HINDSIGHT_DB_USER: PostgreSQL user (default: hindsight_user)
# - HINDSIGHT_DB_NAME: PostgreSQL database name (default: hindsight_db)
# - HINDSIGHT_DB_VERSION: PostgreSQL version (default: 18)
services:
db:
# Use a PostgreSQL-Image with pgvector extension pre-installed
# see https://hub.docker.com/r/pgvector/pgvector
image: pgvector/pgvector:pg${HINDSIGHT_DB_VERSION:-18}
container_name: hindsight-db
restart: always
# Expose PostgreSQL port
# ports:
# - "5432:5432"
environment:
POSTGRES_USER: ${HINDSIGHT_DB_USER:-hindsight_user}
POSTGRES_PASSWORD: ${HINDSIGHT_DB_PASSWORD:?Please set the HINDSIGHT_DB_PASSWORD env variable}
POSTGRES_DB: ${HINDSIGHT_DB_NAME:-hindsight_db}
volumes:
- pg_data:/var/lib/postgresql/${HINDSIGHT_DB_VERSION:-18}/docker
networks:
- hindsight-net
hindsight:
image: ghcr.io/vectorize-io/hindsight:${HINDSIGHT_VERSION:-latest}
container_name: hindsight-app
ports:
- "8888:8888"
- "9999:9999"
environment:
- HINDSIGHT_API_LLM_API_KEY=${OPENAI_API_KEY?Please set the OPENAI_API_KEY env variable}
- HINDSIGHT_API_DATABASE_URL=postgresql://${HINDSIGHT_DB_USER:-hindsight_user}:${HINDSIGHT_DB_PASSWORD:?Please set the HINDSIGHT_DB_PASSWORD env variable}@db:5432/${HINDSIGHT_DB_NAME:-hindsight_db}
depends_on:
- db
networks:
- hindsight-net
networks:
hindsight-net:
driver: bridge
volumes:
pg_data:
+2 -53
View File
@@ -8,7 +8,6 @@
# Set to false when using external providers (TEI, OpenAI, Cohere)
# PRELOAD_ML_MODELS=true/false - Pre-download ML models during build (default: true)
# Only effective when INCLUDE_LOCAL_MODELS=true
# NOTE: tiktoken encodings are ALWAYS preloaded (required for air-gapped deployments)
#
# Examples:
# docker build -t hindsight . # Both (standalone)
@@ -168,28 +167,6 @@ USER hindsight
ENV PATH="/app/api/.venv/bin:${PATH}"
# Pre-download tiktoken encoding (ALWAYS - required for token counting even in air-gapped envs)
# Tiktoken is a core runtime dependency, not an optional ML model
RUN MAX_RETRIES=3; \
RETRY_DELAY=5; \
for i in $(seq 1 $MAX_RETRIES); do \
echo "Attempt $i/$MAX_RETRIES: Downloading tiktoken encoding..."; \
/app/api/.venv/bin/python -c "\
import tiktoken; \
print('Downloading cl100k_base encoding...'); \
tiktoken.get_encoding('cl100k_base'); \
print('Tiktoken encoding cached successfully')" && break; \
if [ $i -lt $MAX_RETRIES ]; then \
echo "Attempt $i failed, retrying in ${RETRY_DELAY}s..."; \
sleep $RETRY_DELAY; \
RETRY_DELAY=$((RETRY_DELAY * 2)); \
fi; \
done; \
if [ $i -eq $MAX_RETRIES ]; then \
echo "ERROR: Failed to download tiktoken encoding after $MAX_RETRIES attempts"; \
exit 1; \
fi
# Pre-download ML models to avoid runtime download (conditional)
# Only runs if both PRELOAD_ML_MODELS=true AND INCLUDE_LOCAL_MODELS=true
# Includes retry logic with exponential backoff for transient network failures
@@ -208,6 +185,7 @@ print('Downloading embedding model...'); \
SentenceTransformer('BAAI/bge-small-en-v1.5'); \
print('Downloading cross-encoder model...'); \
CrossEncoder('cross-encoder/ms-marco-MiniLM-L-6-v2'); \
print('Downloading tiktoken encoding...'); import tiktoken; tiktoken.get_encoding('cl100k_base'); \
print('Models cached successfully')" && break; \
if [ $i -lt $MAX_RETRIES ]; then \
echo "Attempt $i failed, retrying in ${RETRY_DELAY}s..."; \
@@ -230,10 +208,6 @@ ENV HINDSIGHT_API_LOG_LEVEL=info
ENV HINDSIGHT_ENABLE_API=true
ENV HINDSIGHT_ENABLE_CP=false
ENV PYTHONUNBUFFERED=1
# Suppress verbose transformers/HuggingFace model loading warnings
ENV TRANSFORMERS_VERBOSITY=error
ENV HF_HUB_VERBOSITY=error
ENV TOKENIZERS_PARALLELISM=false
CMD ["/app/start-all.sh"]
@@ -319,28 +293,6 @@ USER hindsight
ENV PATH="/app/api/.venv/bin:${PATH}"
# Pre-download tiktoken encoding (ALWAYS - required for token counting even in air-gapped envs)
# Tiktoken is a core runtime dependency, not an optional ML model
RUN MAX_RETRIES=3; \
RETRY_DELAY=5; \
for i in $(seq 1 $MAX_RETRIES); do \
echo "Attempt $i/$MAX_RETRIES: Downloading tiktoken encoding..."; \
/app/api/.venv/bin/python -c "\
import tiktoken; \
print('Downloading cl100k_base encoding...'); \
tiktoken.get_encoding('cl100k_base'); \
print('Tiktoken encoding cached successfully')" && break; \
if [ $i -lt $MAX_RETRIES ]; then \
echo "Attempt $i failed, retrying in ${RETRY_DELAY}s..."; \
sleep $RETRY_DELAY; \
RETRY_DELAY=$((RETRY_DELAY * 2)); \
fi; \
done; \
if [ $i -eq $MAX_RETRIES ]; then \
echo "ERROR: Failed to download tiktoken encoding after $MAX_RETRIES attempts"; \
exit 1; \
fi
# Pre-download ML models to avoid runtime download (conditional)
# Only runs if both PRELOAD_ML_MODELS=true AND INCLUDE_LOCAL_MODELS=true
# Includes retry logic with exponential backoff for transient network failures
@@ -359,6 +311,7 @@ print('Downloading embedding model...'); \
SentenceTransformer('BAAI/bge-small-en-v1.5'); \
print('Downloading cross-encoder model...'); \
CrossEncoder('cross-encoder/ms-marco-MiniLM-L-6-v2'); \
print('Downloading tiktoken encoding...'); import tiktoken; tiktoken.get_encoding('cl100k_base'); \
print('Models cached successfully')" && break; \
if [ $i -lt $MAX_RETRIES ]; then \
echo "Attempt $i failed, retrying in ${RETRY_DELAY}s..."; \
@@ -383,10 +336,6 @@ ENV HINDSIGHT_CP_DATAPLANE_API_URL=http://localhost:8888
ENV HINDSIGHT_ENABLE_API=true
ENV HINDSIGHT_ENABLE_CP=true
ENV PYTHONUNBUFFERED=1
# Suppress verbose transformers/HuggingFace model loading warnings
ENV TRANSFORMERS_VERBOSITY=error
ENV HF_HUB_VERBOSITY=error
ENV TOKENIZERS_PARALLELISM=false
CMD ["/app/start-all.sh"]
-51
View File
@@ -1,51 +0,0 @@
#!/bin/bash
#
# Local Test Script for Slim Docker Images
#
# This script makes it easy to test slim images locally with external providers.
# It expects API keys to be set in environment variables.
#
# Usage:
# export GROQ_API_KEY=gsk_xxx
# export OPENAI_API_KEY=sk-xxx
# export COHERE_API_KEY=xxx
# ./docker/test-slim-local.sh
#
# Or inline:
# GROQ_API_KEY=gsk_xxx OPENAI_API_KEY=sk_xxx COHERE_API_KEY=xxx ./docker/test-slim-local.sh
#
set -euo pipefail
# Check for required API keys
if [ -z "${GROQ_API_KEY:-}" ]; then
echo "❌ Error: GROQ_API_KEY environment variable is required"
echo "Set it with: export GROQ_API_KEY=gsk_xxx"
exit 1
fi
if [ -z "${OPENAI_API_KEY:-}" ]; then
echo "❌ Error: OPENAI_API_KEY environment variable is required"
echo "Set it with: export OPENAI_API_KEY=sk-xxx"
exit 1
fi
if [ -z "${COHERE_API_KEY:-}" ]; then
echo "❌ Error: COHERE_API_KEY environment variable is required"
echo "Set it with: export COHERE_API_KEY=xxx"
exit 1
fi
# Configuration
IMAGE="${1:-hindsight-slim:test}"
echo "Testing image: $IMAGE"
echo ""
# Set up external providers
export HINDSIGHT_API_EMBEDDINGS_PROVIDER=openai
export HINDSIGHT_API_EMBEDDINGS_OPENAI_API_KEY=$OPENAI_API_KEY
export HINDSIGHT_API_RERANKER_PROVIDER=cohere
export HINDSIGHT_API_COHERE_API_KEY=$COHERE_API_KEY
# Run the test
exec "$(dirname "$0")/test-image.sh" "$IMAGE" standalone
+2 -2
View File
@@ -2,8 +2,8 @@ apiVersion: v2
name: hindsight
description: Hindsight helm chart
type: application
version: 0.4.10
appVersion: "0.4.10"
version: 0.4.6
appVersion: "0.4.6"
keywords:
- ai
- memory
-32
View File
@@ -127,38 +127,6 @@ API URL for control plane
{{- printf "http://%s-api:%d" (include "hindsight.fullname" .) (.Values.api.service.port | int) }}
{{- end }}
{{/*
TEI reranker labels
*/}}
{{- define "hindsight.tei.reranker.labels" -}}
{{ include "hindsight.labels" . }}
app.kubernetes.io/component: tei-reranker
{{- end }}
{{/*
TEI reranker selector labels
*/}}
{{- define "hindsight.tei.reranker.selectorLabels" -}}
{{ include "hindsight.selectorLabels" . }}
app.kubernetes.io/component: tei-reranker
{{- end }}
{{/*
TEI embedding labels
*/}}
{{- define "hindsight.tei.embedding.labels" -}}
{{ include "hindsight.labels" . }}
app.kubernetes.io/component: tei-embedding
{{- end }}
{{/*
TEI embedding selector labels
*/}}
{{- define "hindsight.tei.embedding.selectorLabels" -}}
{{ include "hindsight.selectorLabels" . }}
app.kubernetes.io/component: tei-embedding
{{- end }}
{{/*
Get the name of the secret to use
*/}}
+2 -17
View File
@@ -33,7 +33,7 @@ spec:
- name: api
securityContext:
{{- toYaml .Values.securityContext | nindent 10 }}
image: "{{ .Values.api.image.repository }}:{{ .Values.api.image.tag | default .Values.version | default .Chart.AppVersion }}"
image: "{{ .Values.api.image.repository }}:{{ .Values.api.image.tag | default .Values.version }}"
imagePullPolicy: {{ .Values.api.image.pullPolicy }}
ports:
- name: http
@@ -60,25 +60,10 @@ spec:
- name: HINDSIGHT_API_WORKER_ENABLED
value: "false"
{{- end }}
{{- /* Explicitly set port to override K8s service discovery env var (HINDSIGHT_API_PORT) */}}
- name: HINDSIGHT_API_PORT
value: {{ .Values.api.service.targetPort | quote }}
{{- range $key, $value := .Values.api.env }}
- name: {{ $key }}
value: {{ $value | quote }}
{{- end }}
{{- if .Values.tei.reranker.enabled }}
- name: HINDSIGHT_API_RERANKER_PROVIDER
value: "tei"
- name: HINDSIGHT_API_RERANKER_TEI_URL
value: "http://{{ include "hindsight.fullname" . }}-tei-reranker:{{ .Values.tei.reranker.port }}"
{{- end }}
{{- if .Values.tei.embedding.enabled }}
- name: HINDSIGHT_API_EMBEDDINGS_PROVIDER
value: "tei"
- name: HINDSIGHT_API_EMBEDDINGS_TEI_URL
value: "http://{{ include "hindsight.fullname" . }}-tei-embedding:{{ .Values.tei.embedding.port }}"
{{- end }}
{{- /* Only use api.secrets when not using existingSecret (for chart-managed secrets) */}}
{{- if not .Values.existingSecret }}
{{- range $key, $value := .Values.api.secrets }}
@@ -99,7 +84,7 @@ spec:
nodeSelector:
{{- toYaml . | nindent 8 }}
{{- end }}
{{- with (.Values.api.affinity | default .Values.affinity) }}
{{- with .Values.affinity }}
affinity:
{{- toYaml . | nindent 8 }}
{{- end }}
@@ -33,7 +33,7 @@ spec:
- name: control-plane
securityContext:
{{- toYaml .Values.securityContext | nindent 10 }}
image: "{{ .Values.controlPlane.image.repository }}:{{ .Values.controlPlane.image.tag | default .Values.version | default .Chart.AppVersion }}"
image: "{{ .Values.controlPlane.image.repository }}:{{ .Values.controlPlane.image.tag | default .Values.version }}"
imagePullPolicy: {{ .Values.controlPlane.image.pullPolicy }}
ports:
- name: http
@@ -71,7 +71,7 @@ spec:
nodeSelector:
{{- toYaml . | nindent 8 }}
{{- end }}
{{- with (.Values.controlPlane.affinity | default .Values.affinity) }}
{{- with .Values.affinity }}
affinity:
{{- toYaml . | nindent 8 }}
{{- end }}
-56
View File
@@ -1,56 +0,0 @@
{{- if and .Values.api.enabled .Values.api.podDisruptionBudget.enabled }}
apiVersion: policy/v1
kind: PodDisruptionBudget
metadata:
name: {{ include "hindsight.fullname" . }}-api
labels:
{{- include "hindsight.api.labels" . | nindent 4 }}
spec:
{{- if .Values.api.podDisruptionBudget.minAvailable }}
minAvailable: {{ .Values.api.podDisruptionBudget.minAvailable }}
{{- end }}
{{- if .Values.api.podDisruptionBudget.maxUnavailable }}
maxUnavailable: {{ .Values.api.podDisruptionBudget.maxUnavailable }}
{{- end }}
selector:
matchLabels:
{{- include "hindsight.api.selectorLabels" . | nindent 6 }}
{{- end }}
---
{{- if and .Values.controlPlane.enabled .Values.controlPlane.podDisruptionBudget.enabled }}
apiVersion: policy/v1
kind: PodDisruptionBudget
metadata:
name: {{ include "hindsight.fullname" . }}-control-plane
labels:
{{- include "hindsight.controlPlane.labels" . | nindent 4 }}
spec:
{{- if .Values.controlPlane.podDisruptionBudget.minAvailable }}
minAvailable: {{ .Values.controlPlane.podDisruptionBudget.minAvailable }}
{{- end }}
{{- if .Values.controlPlane.podDisruptionBudget.maxUnavailable }}
maxUnavailable: {{ .Values.controlPlane.podDisruptionBudget.maxUnavailable }}
{{- end }}
selector:
matchLabels:
{{- include "hindsight.controlPlane.selectorLabels" . | nindent 6 }}
{{- end }}
---
{{- if and .Values.worker.enabled .Values.worker.podDisruptionBudget.enabled }}
apiVersion: policy/v1
kind: PodDisruptionBudget
metadata:
name: {{ include "hindsight.fullname" . }}-worker
labels:
{{- include "hindsight.worker.labels" . | nindent 4 }}
spec:
{{- if .Values.worker.podDisruptionBudget.minAvailable }}
minAvailable: {{ .Values.worker.podDisruptionBudget.minAvailable }}
{{- end }}
{{- if .Values.worker.podDisruptionBudget.maxUnavailable }}
maxUnavailable: {{ .Values.worker.podDisruptionBudget.maxUnavailable }}
{{- end }}
selector:
matchLabels:
{{- include "hindsight.worker.selectorLabels" . | nindent 6 }}
{{- end }}
@@ -1,76 +0,0 @@
{{- if .Values.tei.embedding.enabled }}
apiVersion: apps/v1
kind: Deployment
metadata:
name: {{ include "hindsight.fullname" . }}-tei-embedding
labels:
{{- include "hindsight.tei.embedding.labels" . | nindent 4 }}
spec:
replicas: {{ .Values.tei.embedding.replicaCount }}
selector:
matchLabels:
{{- include "hindsight.tei.embedding.selectorLabels" . | nindent 6 }}
template:
metadata:
{{- with .Values.podAnnotations }}
annotations:
{{- toYaml . | nindent 8 }}
{{- end }}
labels:
{{- include "hindsight.tei.embedding.selectorLabels" . | nindent 8 }}
spec:
{{- if .Values.serviceAccount.create }}
serviceAccountName: {{ include "hindsight.serviceAccountName" . }}
{{- end }}
securityContext:
{{- toYaml .Values.podSecurityContext | nindent 8 }}
containers:
- name: tei-embedding
securityContext:
{{- toYaml .Values.securityContext | nindent 10 }}
image: "{{ .Values.tei.embedding.image.repository }}:{{ .Values.tei.embedding.image.tag }}"
imagePullPolicy: {{ .Values.tei.embedding.image.pullPolicy }}
args:
- "--model-id"
- {{ .Values.tei.embedding.model | quote }}
- "--hostname"
- "0.0.0.0"
{{- range .Values.tei.embedding.args }}
- {{ . | quote }}
{{- end }}
ports:
- name: http
containerPort: {{ .Values.tei.embedding.port }}
protocol: TCP
env:
- name: PORT
value: {{ .Values.tei.embedding.port | quote }}
{{- range $key, $value := .Values.tei.embedding.env }}
- name: {{ $key }}
value: {{ $value | quote }}
{{- end }}
livenessProbe:
{{- toYaml .Values.tei.embedding.livenessProbe | nindent 10 }}
readinessProbe:
{{- toYaml .Values.tei.embedding.readinessProbe | nindent 10 }}
resources:
{{- toYaml .Values.tei.embedding.resources | nindent 10 }}
volumeMounts:
- name: model-cache
mountPath: /data
volumes:
- name: model-cache
emptyDir: {}
{{- with .Values.nodeSelector }}
nodeSelector:
{{- toYaml . | nindent 8 }}
{{- end }}
{{- with .Values.affinity }}
affinity:
{{- toYaml . | nindent 8 }}
{{- end }}
{{- with .Values.tolerations }}
tolerations:
{{- toYaml . | nindent 8 }}
{{- end }}
{{- end }}
@@ -1,17 +0,0 @@
{{- if .Values.tei.embedding.enabled }}
apiVersion: v1
kind: Service
metadata:
name: {{ include "hindsight.fullname" . }}-tei-embedding
labels:
{{- include "hindsight.tei.embedding.labels" . | nindent 4 }}
spec:
type: ClusterIP
ports:
- port: {{ .Values.tei.embedding.port }}
targetPort: http
protocol: TCP
name: http
selector:
{{- include "hindsight.tei.embedding.selectorLabels" . | nindent 4 }}
{{- end }}
@@ -1,76 +0,0 @@
{{- if .Values.tei.reranker.enabled }}
apiVersion: apps/v1
kind: Deployment
metadata:
name: {{ include "hindsight.fullname" . }}-tei-reranker
labels:
{{- include "hindsight.tei.reranker.labels" . | nindent 4 }}
spec:
replicas: {{ .Values.tei.reranker.replicaCount }}
selector:
matchLabels:
{{- include "hindsight.tei.reranker.selectorLabels" . | nindent 6 }}
template:
metadata:
{{- with .Values.podAnnotations }}
annotations:
{{- toYaml . | nindent 8 }}
{{- end }}
labels:
{{- include "hindsight.tei.reranker.selectorLabels" . | nindent 8 }}
spec:
{{- if .Values.serviceAccount.create }}
serviceAccountName: {{ include "hindsight.serviceAccountName" . }}
{{- end }}
securityContext:
{{- toYaml .Values.podSecurityContext | nindent 8 }}
containers:
- name: tei-reranker
securityContext:
{{- toYaml .Values.securityContext | nindent 10 }}
image: "{{ .Values.tei.reranker.image.repository }}:{{ .Values.tei.reranker.image.tag }}"
imagePullPolicy: {{ .Values.tei.reranker.image.pullPolicy }}
args:
- "--model-id"
- {{ .Values.tei.reranker.model | quote }}
- "--hostname"
- "0.0.0.0"
{{- range .Values.tei.reranker.args }}
- {{ . | quote }}
{{- end }}
ports:
- name: http
containerPort: {{ .Values.tei.reranker.port }}
protocol: TCP
env:
- name: PORT
value: {{ .Values.tei.reranker.port | quote }}
{{- range $key, $value := .Values.tei.reranker.env }}
- name: {{ $key }}
value: {{ $value | quote }}
{{- end }}
livenessProbe:
{{- toYaml .Values.tei.reranker.livenessProbe | nindent 10 }}
readinessProbe:
{{- toYaml .Values.tei.reranker.readinessProbe | nindent 10 }}
resources:
{{- toYaml .Values.tei.reranker.resources | nindent 10 }}
volumeMounts:
- name: model-cache
mountPath: /data
volumes:
- name: model-cache
emptyDir: {}
{{- with .Values.nodeSelector }}
nodeSelector:
{{- toYaml . | nindent 8 }}
{{- end }}
{{- with .Values.affinity }}
affinity:
{{- toYaml . | nindent 8 }}
{{- end }}
{{- with .Values.tolerations }}
tolerations:
{{- toYaml . | nindent 8 }}
{{- end }}
{{- end }}
@@ -1,17 +0,0 @@
{{- if .Values.tei.reranker.enabled }}
apiVersion: v1
kind: Service
metadata:
name: {{ include "hindsight.fullname" . }}-tei-reranker
labels:
{{- include "hindsight.tei.reranker.labels" . | nindent 4 }}
spec:
type: ClusterIP
ports:
- port: {{ .Values.tei.reranker.port }}
targetPort: http
protocol: TCP
name: http
selector:
{{- include "hindsight.tei.reranker.selectorLabels" . | nindent 4 }}
{{- end }}
@@ -32,7 +32,7 @@ spec:
- name: worker
securityContext:
{{- toYaml .Values.securityContext | nindent 10 }}
image: "{{ .Values.worker.image.repository }}:{{ .Values.worker.image.tag | default .Values.version | default .Chart.AppVersion }}"
image: "{{ .Values.worker.image.repository }}:{{ .Values.worker.image.tag | default .Values.version }}"
imagePullPolicy: {{ .Values.worker.image.pullPolicy }}
command: ["hindsight-worker"]
ports:
@@ -99,7 +99,7 @@ spec:
nodeSelector:
{{- toYaml . | nindent 8 }}
{{- end }}
{{- with (.Values.worker.affinity | default .Values.affinity) }}
{{- with .Values.affinity }}
affinity:
{{- toYaml . | nindent 8 }}
{{- end }}
+4 -110
View File
@@ -1,8 +1,7 @@
# Default values for hindsight
# Global version override - use this to set a consistent image tag across all components
# If not set, defaults to Chart.appVersion from Chart.yaml
# version: ""
# Chart version - use this to set a consistent image tag across all components
version: "0.1.1"
# Use an existing secret instead of creating one from values
# When set, all keys from this secret are injected as environment variables via envFrom
@@ -58,15 +57,6 @@ api:
timeoutSeconds: 3
failureThreshold: 3
# Pod disruption budget
podDisruptionBudget:
enabled: false
minAvailable: 1
# maxUnavailable: 1
# Pod affinity/anti-affinity (overrides global affinity for this component)
# affinity: {}
# Environment variables
env:
#HINDSIGHT_API_LLM_PROVIDER: "groq"
@@ -85,7 +75,7 @@ worker:
image:
repository: ghcr.io/vectorize-io/hindsight-api
pullPolicy: IfNotPresent
# tag: "" # defaults to .Values.version, then Chart.appVersion if not specified
# tag defaults to .Values.version if not specified
service:
# Service for metrics scraping (headless for StatefulSet)
@@ -131,15 +121,6 @@ worker:
# HTTP port for metrics/health (matches service.targetPort)
HINDSIGHT_API_WORKER_HTTP_PORT: "8889"
# Pod disruption budget
podDisruptionBudget:
enabled: false
minAvailable: 1
# maxUnavailable: 1
# Pod affinity/anti-affinity (overrides global affinity for this component)
# affinity: {}
# Secret environment variables (inherited from api.secrets if not specified)
secrets: {}
@@ -183,15 +164,6 @@ controlPlane:
timeoutSeconds: 3
failureThreshold: 3
# Pod disruption budget
podDisruptionBudget:
enabled: false
minAvailable: 1
# maxUnavailable: 1
# Pod affinity/anti-affinity (overrides global affinity for this component)
# affinity: {}
# Environment variables
env:
NODE_ENV: "production"
@@ -290,87 +262,9 @@ nodeSelector: {}
# Tolerations
tolerations: []
# Affinity (applied to all components unless overridden per-component)
# Affinity
affinity: {}
# TEI (Text Embeddings Inference) - optional standalone deployments
# for reranking and/or embedding models
tei:
reranker:
enabled: false
replicaCount: 1
image:
repository: ghcr.io/huggingface/text-embeddings-inference
tag: cpu-1.8.3
pullPolicy: IfNotPresent
model: "cross-encoder/ms-marco-MiniLM-L-6-v2"
port: 8090
args:
- "--auto-truncate"
env:
PAYLOAD_LIMIT: "10000000"
MAX_CLIENT_BATCH_SIZE: "256"
resources:
limits:
cpu: 2000m
memory: 2Gi
requests:
cpu: 500m
memory: 1Gi
livenessProbe:
httpGet:
path: /health
port: 8090
initialDelaySeconds: 30
periodSeconds: 10
timeoutSeconds: 5
failureThreshold: 6
readinessProbe:
httpGet:
path: /health
port: 8090
initialDelaySeconds: 15
periodSeconds: 5
timeoutSeconds: 3
failureThreshold: 3
embedding:
enabled: false
replicaCount: 1
image:
repository: ghcr.io/huggingface/text-embeddings-inference
tag: cpu-1.8.3
pullPolicy: IfNotPresent
model: "sentence-transformers/all-MiniLM-L6-v2"
port: 8091
args: []
env:
PAYLOAD_LIMIT: "10000000"
MAX_CLIENT_BATCH_SIZE: "256"
resources:
limits:
cpu: 2000m
memory: 2Gi
requests:
cpu: 500m
memory: 1Gi
livenessProbe:
httpGet:
path: /health
port: 8091
initialDelaySeconds: 30
periodSeconds: 10
timeoutSeconds: 5
failureThreshold: 6
readinessProbe:
httpGet:
path: /health
port: 8091
initialDelaySeconds: 15
periodSeconds: 5
timeoutSeconds: 3
failureThreshold: 3
# Autoscaling
autoscaling:
enabled: false
+1 -1
View File
@@ -46,4 +46,4 @@ __all__ = [
"RemoteTEICrossEncoder",
"LLMConfig",
]
__version__ = "0.4.10"
__version__ = "0.4.6"
@@ -11,7 +11,6 @@ from collections.abc import Sequence
import sqlalchemy as sa
from alembic import op
from pgvector.sqlalchemy import Vector
from sqlalchemy import text
from sqlalchemy.dialects import postgresql
# revision identifiers, used by Alembic.
@@ -24,21 +23,8 @@ depends_on: str | Sequence[str] | None = None
def upgrade() -> None:
"""Upgrade schema - create all tables from scratch."""
# Note: pgvector extension is installed globally BEFORE migrations run
# See migrations.py:run_migrations() - this ensures the extension is available
# to all schemas, not just the one being migrated
# We keep this here as a fallback for backwards compatibility
# This may fail if user lacks permissions, which is fine if extension already exists
try:
op.execute("CREATE EXTENSION IF NOT EXISTS vector")
except Exception:
# Extension might already exist or user lacks permissions - verify it exists
conn = op.get_bind()
result = conn.execute(text("SELECT 1 FROM pg_extension WHERE extname = 'vector'")).fetchone()
if not result:
# Extension truly doesn't exist - re-raise the error
raise
# Enable required extensions
op.execute("CREATE EXTENSION IF NOT EXISTS vector")
# Create banks table
op.create_table(
@@ -1,60 +0,0 @@
"""Fix mental_models primary key to be scoped per bank
Revision ID: w8r9s0t1u2v3
Revises: v7q8r9s0t1u2
Create Date: 2026-02-05
This migration fixes a critical bank isolation bug where mental_models.id was
globally unique across all banks instead of being scoped per bank. This caused
conflicts when different banks tried to use the same custom ID.
CRITICAL FIX: Changes primary key from (id) to (bank_id, id) to ensure proper isolation.
"""
from collections.abc import Sequence
from alembic import context, op
revision: str = "w8r9s0t1u2v3"
down_revision: str | Sequence[str] | None = "v7q8r9s0t1u2"
branch_labels: str | Sequence[str] | None = None
depends_on: str | Sequence[str] | None = None
def _get_schema_prefix() -> str:
"""Get schema prefix for table names (required for multi-tenant support)."""
schema = context.config.get_main_option("target_schema")
return f'"{schema}".' if schema else ""
def upgrade() -> None:
"""Change mental_models primary key from (id) to (bank_id, id) for proper bank isolation."""
schema = _get_schema_prefix()
# Drop the old primary key constraint (just id)
# Note: The constraint might be named differently on different DBs
# Try both old names (pinned_reflections_pkey from original, mental_models_pkey from rename)
op.execute(f"ALTER TABLE {schema}mental_models DROP CONSTRAINT IF EXISTS pinned_reflections_pkey")
op.execute(f"ALTER TABLE {schema}mental_models DROP CONSTRAINT IF EXISTS mental_models_pkey")
# Create the new composite primary key (bank_id, id)
# This ensures IDs are scoped per bank, not globally
op.execute(f"""
ALTER TABLE {schema}mental_models
ADD CONSTRAINT mental_models_pkey PRIMARY KEY (bank_id, id)
""")
def downgrade() -> None:
"""Revert mental_models primary key from (bank_id, id) to (id)."""
schema = _get_schema_prefix()
# Drop the composite primary key
op.execute(f"ALTER TABLE {schema}mental_models DROP CONSTRAINT IF EXISTS mental_models_pkey")
# Restore the old primary key (just id)
# WARNING: This downgrade will fail if there are duplicate IDs across banks
op.execute(f"""
ALTER TABLE {schema}mental_models
ADD CONSTRAINT mental_models_pkey PRIMARY KEY (id)
""")
+19 -29
View File
@@ -6,6 +6,7 @@ Provides both HTTP REST API and MCP (Model Context Protocol) server.
import logging
from contextlib import asynccontextmanager
from typing import Optional
from fastapi import FastAPI
@@ -45,14 +46,14 @@ def create_app(
# Both HTTP and MCP
app = create_app(memory, mcp_api_enabled=True)
"""
mcp_servers = None
mcp_app = None
# Create MCP servers first if enabled (we need their lifespans for chaining)
# Create MCP app first if enabled (we need its lifespan for chaining)
if mcp_api_enabled:
try:
from .mcp import MCPMiddleware, create_mcp_servers
from .mcp import create_mcp_app
mcp_servers = create_mcp_servers(memory=memory)
mcp_app = create_mcp_app(memory=memory)
except ImportError as e:
logger.error(f"MCP server requested but dependencies not available: {e}")
logger.error("Install with: pip install hindsight-api[mcp]")
@@ -69,41 +70,30 @@ def create_app(
app = FastAPI(title="Hindsight API", version="0.0.7")
logger.info("HTTP REST API disabled")
# Add MCP middleware and chain its lifespan if enabled
if mcp_servers is not None:
multi_bank_server, single_bank_server, multi_bank_starlette_app, single_bank_starlette_app = mcp_servers
# Mount MCP server and chain its lifespan if enabled
if mcp_app is not None:
# Get the MCP app's underlying Starlette app for lifespan access
mcp_starlette_app = mcp_app.mcp_app
# Store the original lifespan
original_lifespan = app.router.lifespan_context
@asynccontextmanager
async def chained_lifespan(app_instance: FastAPI):
"""Chain both MCP lifespans with the main app lifespan."""
# Start both MCP lifespans (multi-bank and single-bank)
async with multi_bank_starlette_app.router.lifespan_context(multi_bank_starlette_app):
async with single_bank_starlette_app.router.lifespan_context(single_bank_starlette_app):
logger.info("MCP lifespans started (multi-bank and single-bank)")
# Then start the original app lifespan
async with original_lifespan(app_instance):
yield
logger.info("MCP lifespans stopped")
"""Chain the MCP lifespan with the main app lifespan."""
# Start MCP lifespan first
async with mcp_starlette_app.router.lifespan_context(mcp_starlette_app):
logger.info("MCP lifespan started")
# Then start the original app lifespan
async with original_lifespan(app_instance):
yield
logger.info("MCP lifespan stopped")
# Replace the app's lifespan with the chained version
app.router.lifespan_context = chained_lifespan
# Add MCP as a wrapping middleware — intercepts /mcp* requests directly,
# passes everything else through to the FastAPI app. No Starlette Mount
# means no 307 redirect for /mcp (no trailing slash).
app.add_middleware(
MCPMiddleware,
memory=memory,
prefix=mcp_mount_path,
multi_bank_app=multi_bank_starlette_app,
single_bank_app=single_bank_starlette_app,
multi_bank_server=multi_bank_server,
single_bank_server=single_bank_server,
)
# Mount the MCP middleware
app.mount(mcp_mount_path, mcp_app)
logger.info(f"MCP server enabled at {mcp_mount_path}/")
return app
+30 -135
View File
@@ -5,7 +5,6 @@ This module provides the create_app function to create and configure
the FastAPI application with all API endpoints.
"""
import asyncio
import json
import logging
import uuid
@@ -32,46 +31,11 @@ def _parse_metadata(metadata: Any) -> dict[str, Any]:
return {}
from typing import Callable
from pydantic import BaseModel, ConfigDict, Field, field_validator
from hindsight_api import MemoryEngine
def FieldWithDefault(default_factory: Callable, **kwargs) -> Any:
"""
Field wrapper that ensures default_factory values appear in OpenAPI schema.
Pydantic doesn't include default_factory in OpenAPI schemas, causing OpenAPI
Generator to make fields Optional with default=None instead of non-optional
with the correct default value.
This wrapper adds json_schema_extra to include the default in the schema.
"""
# Determine the default value for the schema based on the factory
if default_factory is list:
schema_default = []
elif default_factory is dict:
schema_default = {}
else:
# For custom factories (like IncludeOptions), use empty dict as placeholder
schema_default = {}
# Add or merge json_schema_extra
json_extra = kwargs.pop("json_schema_extra", {})
if isinstance(json_extra, dict):
json_extra["default"] = schema_default
else:
# If json_schema_extra was a function, we can't merge easily
# Fall back to just setting default
json_extra = {"default": schema_default}
return Field(default_factory=default_factory, json_schema_extra=json_extra, **kwargs)
from hindsight_api.engine.db_utils import acquire_with_retry
from hindsight_api.engine.memory_engine import Budget, _get_tiktoken_encoding, fq_table
from hindsight_api.engine.memory_engine import Budget, fq_table
from hindsight_api.engine.reflect.observations import Observation
from hindsight_api.engine.response_models import VALID_RECALL_FACT_TYPES, TokenUsage
from hindsight_api.engine.search.tags import TagsMatch
@@ -81,8 +45,6 @@ from hindsight_api.models import RequestContext
logger = logging.getLogger(__name__)
MAX_QUERY_TOKENS = 500 # Maximum tokens allowed in recall query
class EntityIncludeOptions(BaseModel):
"""Options for including entity observations in recall results."""
@@ -138,8 +100,8 @@ class RecallRequest(BaseModel):
query_timestamp: str | None = Field(
default=None, description="ISO format date string (e.g., '2023-05-30T23:40:00')"
)
include: IncludeOptions = FieldWithDefault(
IncludeOptions,
include: IncludeOptions = Field(
default_factory=IncludeOptions,
description="Options for including additional data (entities are included by default)",
)
tags: list[str] | None = Field(
@@ -558,9 +520,7 @@ class ReflectFact(BaseModel):
)
id: str | None = None
text: str = Field(
description="Fact text. When type='observation', this contains markdown-formatted consolidated knowledge"
)
text: str
type: str | None = None # fact type: world, experience, observation
context: str | None = None
occurred_start: str | None = None
@@ -605,16 +565,18 @@ class ReflectLLMCall(BaseModel):
class ReflectBasedOn(BaseModel):
"""Evidence the response is based on: memories, mental models, and directives."""
memories: list[ReflectFact] = FieldWithDefault(list, description="Memory facts used to generate the response")
mental_models: list[ReflectMentalModel] = FieldWithDefault(list, description="Mental models used during reflection")
directives: list[ReflectDirective] = FieldWithDefault(list, description="Directives applied during reflection")
memories: list[ReflectFact] = Field(default_factory=list, description="Memory facts used to generate the response")
mental_models: list[ReflectMentalModel] = Field(
default_factory=list, description="Mental models used during reflection"
)
directives: list[ReflectDirective] = Field(default_factory=list, description="Directives applied during reflection")
class ReflectTrace(BaseModel):
"""Execution trace of LLM and tool calls during reflection."""
tool_calls: list[ReflectToolCall] = FieldWithDefault(list, description="Tool calls made during reflection")
llm_calls: list[ReflectLLMCall] = FieldWithDefault(list, description="LLM calls made during reflection")
tool_calls: list[ReflectToolCall] = Field(default_factory=list, description="Tool calls made during reflection")
llm_calls: list[ReflectLLMCall] = Field(default_factory=list, description="LLM calls made during reflection")
class ReflectResponse(BaseModel):
@@ -623,7 +585,7 @@ class ReflectResponse(BaseModel):
model_config = ConfigDict(
json_schema_extra={
"example": {
"text": "## AI Overview\n\nBased on my understanding, AI is a **transformative technology**:\n\n- Used extensively in healthcare\n- Discussed in recent conversations\n- Continues to evolve rapidly",
"text": "Based on my understanding, AI is a transformative technology...",
"based_on": {
"memories": [
{"id": "123", "text": "AI is used in healthcare", "type": "world"},
@@ -651,9 +613,7 @@ class ReflectResponse(BaseModel):
}
)
text: str = Field(
description="The reflect response as well-formatted markdown (headers, lists, bold/italic, code blocks, etc.)"
)
text: str
based_on: ReflectBasedOn | None = Field(
default=None,
description="Evidence used to generate the response. Only present when include.facts is set.",
@@ -903,7 +863,6 @@ class ListDocumentsResponse(BaseModel):
"updated_at": "2024-01-15T10:30:00Z",
"text_length": 5420,
"memory_unit_count": 15,
"tags": ["user_a", "session_123"],
}
],
"total": 50,
@@ -975,7 +934,7 @@ class DocumentResponse(BaseModel):
created_at: str
updated_at: str
memory_unit_count: int
tags: list[str] = FieldWithDefault(list, description="Tags associated with this document")
tags: list[str] = Field(default_factory=list, description="Tags associated with this document")
class DeleteDocumentResponse(BaseModel):
@@ -1099,7 +1058,7 @@ class DirectiveResponse(BaseModel):
content: str
priority: int = 0
is_active: bool = True
tags: list[str] = FieldWithDefault(list)
tags: list[str] = Field(default_factory=list)
created_at: str | None = None
updated_at: str | None = None
@@ -1117,7 +1076,7 @@ class CreateDirectiveRequest(BaseModel):
content: str = Field(description="The directive text to inject into prompts")
priority: int = Field(default=0, description="Higher priority directives are injected first")
is_active: bool = Field(default=True, description="Whether this directive is active")
tags: list[str] = FieldWithDefault(list, description="Tags for filtering")
tags: list[str] = Field(default_factory=list, description="Tags for filtering")
class UpdateDirectiveRequest(BaseModel):
@@ -1151,12 +1110,10 @@ class MentalModelResponse(BaseModel):
bank_id: str
name: str
source_query: str
content: str = Field(
description="The mental model content as well-formatted markdown (auto-generated from reflect endpoint)"
)
tags: list[str] = FieldWithDefault(list)
content: str
tags: list[str] = Field(default_factory=list)
max_tokens: int = Field(default=2048)
trigger: MentalModelTrigger = FieldWithDefault(MentalModelTrigger)
trigger: MentalModelTrigger = Field(default_factory=MentalModelTrigger)
last_refreshed_at: str | None = None
created_at: str | None = None
reflect_response: dict | None = Field(
@@ -1177,7 +1134,6 @@ class CreateMentalModelRequest(BaseModel):
model_config = ConfigDict(
json_schema_extra={
"example": {
"id": "team-communication",
"name": "Team Communication Preferences",
"source_query": "How does the team prefer to communicate?",
"tags": ["team"],
@@ -1187,21 +1143,17 @@ class CreateMentalModelRequest(BaseModel):
}
)
id: str | None = Field(
None, description="Optional custom ID for the mental model (alphanumeric lowercase with hyphens)"
)
name: str = Field(description="Human-readable name for the mental model")
source_query: str = Field(description="The query to run to generate content")
tags: list[str] = FieldWithDefault(list, description="Tags for scoped visibility")
tags: list[str] = Field(default_factory=list, description="Tags for scoped visibility")
max_tokens: int = Field(default=2048, ge=256, le=8192, description="Maximum tokens for generated content")
trigger: MentalModelTrigger = FieldWithDefault(MentalModelTrigger, description="Trigger settings")
trigger: MentalModelTrigger = Field(default_factory=MentalModelTrigger, description="Trigger settings")
class CreateMentalModelResponse(BaseModel):
"""Response model for mental model creation."""
mental_model_id: str | None = Field(None, description="ID of the created mental model")
operation_id: str = Field(description="Operation ID to track refresh progress")
operation_id: str = Field(description="Operation ID to track progress")
class UpdateMentalModelRequest(BaseModel):
@@ -1433,26 +1385,6 @@ def create_app(
app.state.prometheus_reader = None
# Metrics collector is already initialized as no-op by default
# Initialize OpenTelemetry tracing if enabled
if config.otel_traces_enabled:
if not config.otel_exporter_otlp_endpoint:
logging.warning("OTEL tracing enabled but no endpoint configured. Tracing disabled.")
else:
from hindsight_api.tracing import create_span_recorder, initialize_tracing
try:
initialize_tracing(
service_name=config.otel_service_name,
endpoint=config.otel_exporter_otlp_endpoint,
headers=config.otel_exporter_otlp_headers,
deployment_environment=config.otel_deployment_environment,
)
create_span_recorder()
logging.info("OpenTelemetry tracing enabled and configured")
except Exception as e:
logging.error(f"Failed to initialize tracing: {e}")
logging.warning("Continuing without tracing")
# Startup: Initialize database and memory system (migrations run inside initialize if enabled)
if initialize_memory:
await memory.initialize()
@@ -1478,19 +1410,13 @@ def create_app(
poll_interval_ms=config.worker_poll_interval_ms,
max_retries=config.worker_max_retries,
schema=schema,
tenant_extension=memory._tenant_extension,
tenant_extension=getattr(memory, "_tenant_extension", None),
max_slots=config.worker_max_slots,
consolidation_max_slots=config.worker_consolidation_max_slots,
)
poller_task = asyncio.create_task(poller.run())
logging.info(f"Worker poller started (worker_id={worker_id})")
# Call tenant extension startup hook (e.g. JWKS fetch for Supabase)
tenant_extension = memory.tenant_extension
if tenant_extension:
await tenant_extension.on_startup()
logging.info("Tenant extension started")
# Call HTTP extension startup hook
if http_extension:
await http_extension.on_startup()
@@ -1509,11 +1435,6 @@ def create_app(
pass
logging.info("Worker poller stopped")
# Call tenant extension shutdown hook
if tenant_extension:
await tenant_extension.on_shutdown()
logging.info("Tenant extension stopped")
# Call HTTP extension shutdown hook
if http_extension:
await http_extension.on_shutdown()
@@ -1797,15 +1718,6 @@ def _register_routes(app: FastAPI):
handler_start = time.time()
metrics = get_metrics_collector()
# Validate query length to prevent expensive operations on oversized queries
encoding = _get_tiktoken_encoding()
query_tokens = len(encoding.encode(request.query))
if query_tokens > MAX_QUERY_TOKENS:
raise HTTPException(
status_code=400,
detail=f"Query too long: {query_tokens} tokens exceeds maximum of {MAX_QUERY_TOKENS}. Please shorten your query.",
)
try:
# Default to world and experience if not specified (exclude observation)
fact_types = request.types if request.types else list(VALID_RECALL_FACT_TYPES)
@@ -1920,15 +1832,6 @@ def _register_routes(app: FastAPI):
raise HTTPException(status_code=e.status_code, detail=e.reason)
except (AuthenticationError, HTTPException):
raise
except (asyncio.TimeoutError, TimeoutError):
handler_duration = time.time() - handler_start
logger.error(
f"[RECALL TIMEOUT] bank={bank_id} handler_duration={handler_duration:.3f}s - database query timed out"
)
raise HTTPException(
status_code=504,
detail="Request timed out while searching memories. Try a shorter or more specific query.",
)
except Exception as e:
import traceback
@@ -1986,17 +1889,17 @@ def _register_routes(app: FastAPI):
directives = []
for fact_type, facts in core_result.based_on.items():
if fact_type == "directives":
# Directives are dicts with id, name, content (not MemoryFact objects)
# Directives have different structure (id, name, content)
for directive in facts:
directives.append(
ReflectDirective(
id=directive["id"],
name=directive["name"],
content=directive["content"],
id=directive.id,
name=directive.name,
content=directive.content,
)
)
elif fact_type == "mental-models":
# Mental models are MemoryFact with type "mental-models" (note: hyphen, not underscore)
elif fact_type == "mental_models":
# Mental models are MemoryFact with type "mental_models"
for fact in facts:
mental_models.append(
ReflectMentalModel(
@@ -2394,12 +2297,9 @@ def _register_routes(app: FastAPI):
)
if mental_model is None:
raise HTTPException(status_code=404, detail=f"Mental model '{mental_model_id}' not found")
return MentalModelResponse(**mental_model)
except (AuthenticationError, HTTPException):
raise
except OperationValidationError as e:
raise HTTPException(status_code=e.status_code, detail=e.reason)
except Exception as e:
import traceback
@@ -2430,7 +2330,6 @@ def _register_routes(app: FastAPI):
name=body.name,
source_query=body.source_query,
content="Generating content...",
mental_model_id=body.id if body.id else None,
tags=body.tags if body.tags else None,
max_tokens=body.max_tokens,
trigger=body.trigger.model_dump() if body.trigger else None,
@@ -2442,13 +2341,11 @@ def _register_routes(app: FastAPI):
mental_model_id=mental_model["id"],
request_context=request_context,
)
return CreateMentalModelResponse(mental_model_id=mental_model["id"], operation_id=result["operation_id"])
return CreateMentalModelResponse(operation_id=result["operation_id"])
except ValueError as e:
raise HTTPException(status_code=400, detail=str(e))
except (AuthenticationError, HTTPException):
raise
except OperationValidationError as e:
raise HTTPException(status_code=e.status_code, detail=e.reason)
except Exception as e:
import traceback
@@ -2481,8 +2378,6 @@ def _register_routes(app: FastAPI):
raise HTTPException(status_code=404, detail=str(e))
except (AuthenticationError, HTTPException):
raise
except OperationValidationError as e:
raise HTTPException(status_code=e.status_code, detail=e.reason)
except Exception as e:
import traceback
+56 -173
View File
@@ -8,11 +8,7 @@ from contextvars import ContextVar
from fastmcp import FastMCP
from hindsight_api import MemoryEngine
from hindsight_api.engine.memory_engine import _current_schema
from hindsight_api.extensions import MCPExtension, load_extension
from hindsight_api.extensions.tenant import AuthenticationError
from hindsight_api.mcp_tools import MCPToolsConfig, register_mcp_tools
from hindsight_api.models import RequestContext
# Configure logging from HINDSIGHT_API_LOG_LEVEL environment variable
_log_level_str = os.environ.get("HINDSIGHT_API_LOG_LEVEL", "info").lower()
@@ -33,8 +29,7 @@ logger = logging.getLogger(__name__)
# Default bank_id from environment variable
DEFAULT_BANK_ID = os.environ.get("HINDSIGHT_MCP_BANK_ID", "default")
# Legacy MCP authentication token (for backwards compatibility)
# If set, this token is checked first before TenantExtension auth
# MCP authentication token (optional - if set, Bearer token auth is required)
MCP_AUTH_TOKEN = os.environ.get("HINDSIGHT_API_MCP_AUTH_TOKEN")
# Context variable to hold the current bank_id
@@ -43,10 +38,6 @@ _current_bank_id: ContextVar[str | None] = ContextVar("current_bank_id", default
# Context variable to hold the current API key (for tenant auth propagation)
_current_api_key: ContextVar[str | None] = ContextVar("current_api_key", default=None)
# Context variables for tenant_id and api_key_id (set by authenticate, used by usage metering)
_current_tenant_id: ContextVar[str | None] = ContextVar("current_tenant_id", default=None)
_current_api_key_id: ContextVar[str | None] = ContextVar("current_api_key_id", default=None)
def get_current_bank_id() -> str | None:
"""Get the current bank_id from context."""
@@ -58,24 +49,12 @@ def get_current_api_key() -> str | None:
return _current_api_key.get()
def get_current_tenant_id() -> str | None:
"""Get the current tenant_id from context."""
return _current_tenant_id.get()
def get_current_api_key_id() -> str | None:
"""Get the current api_key_id from context."""
return _current_api_key_id.get()
def create_mcp_server(memory: MemoryEngine, multi_bank: bool = True) -> FastMCP:
def create_mcp_server(memory: MemoryEngine) -> FastMCP:
"""
Create and configure the Hindsight MCP server.
Args:
memory: MemoryEngine instance (required)
multi_bank: If True, expose all tools with bank_id parameters (default).
If False, only expose bank-scoped tools without bank_id parameters.
Returns:
Configured FastMCP server instance with stateless_http enabled
@@ -87,98 +66,40 @@ def create_mcp_server(memory: MemoryEngine, multi_bank: bool = True) -> FastMCP:
config = MCPToolsConfig(
bank_id_resolver=get_current_bank_id,
api_key_resolver=get_current_api_key, # Propagate API key for tenant auth
tenant_id_resolver=get_current_tenant_id, # Propagate tenant_id for usage metering
api_key_id_resolver=get_current_api_key_id, # Propagate api_key_id for usage metering
include_bank_id_param=multi_bank,
tools=None
if multi_bank
else {
"retain",
"recall",
"reflect",
"list_mental_models",
"get_mental_model",
"create_mental_model",
"update_mental_model",
"delete_mental_model",
"refresh_mental_model",
}, # Scoped tools for single-bank mode (excludes bank management: list_banks, create_bank)
include_bank_id_param=True, # HTTP MCP supports multi-bank via parameter
tools=None, # All tools
retain_fire_and_forget=False, # HTTP MCP supports sync/async modes
)
register_mcp_tools(mcp, memory, config)
# Load and register additional tools from MCP extension if configured
mcp_extension = load_extension("MCP", MCPExtension)
if mcp_extension:
logger.info(f"Loading MCP extension: {mcp_extension.__class__.__name__}")
mcp_extension.register_tools(mcp, memory)
return mcp
class MCPMiddleware:
"""ASGI middleware that intercepts MCP requests and routes to appropriate MCP server.
This middleware wraps the main FastAPI app and intercepts requests matching the
configured prefix (default: /mcp). Non-MCP requests pass through to the inner app.
"""ASGI middleware that handles authentication and extracts bank_id from header or path.
Authentication:
1. If HINDSIGHT_API_MCP_AUTH_TOKEN is set (legacy), validates against that token
2. Otherwise, uses TenantExtension.authenticate_mcp() from the MemoryEngine
- DefaultTenantExtension: no auth required (local dev)
- ApiKeyTenantExtension: validates against env var
If HINDSIGHT_API_MCP_AUTH_TOKEN is set, all requests must include a valid
Authorization header with Bearer token or direct token matching the configured value.
Two modes based on URL structure:
Bank ID can be provided via:
1. X-Bank-Id header (recommended for Claude Code)
2. URL path: /mcp/{bank_id}/
3. Environment variable HINDSIGHT_MCP_BANK_ID (fallback default)
1. Multi-bank mode (for /mcp/ root endpoint):
- Exposes all tools: retain, recall, reflect, list_banks, create_bank
- All tools include optional bank_id parameter for cross-bank operations
- Bank ID from: X-Bank-Id header or HINDSIGHT_MCP_BANK_ID env var
2. Single-bank mode (for /mcp/{bank_id}/ endpoints):
- Exposes bank-scoped tools only: retain, recall, reflect
- No bank_id parameter (comes from URL)
- No bank management tools (list_banks, create_bank)
- Recommended for agent isolation
Examples:
# Single-bank mode (recommended for agent isolation)
claude mcp add --transport http my-agent http://localhost:8888/mcp/my-agent-bank/ \\
--header "Authorization: Bearer <token>"
# Multi-bank mode (for cross-bank operations)
For Claude Code, configure with:
claude mcp add --transport http hindsight http://localhost:8888/mcp \\
--header "X-Bank-Id: my-bank" --header "Authorization: Bearer <token>"
"""
def __init__(
self,
app,
memory: MemoryEngine,
prefix: str = "/mcp",
multi_bank_app=None,
single_bank_app=None,
multi_bank_server=None,
single_bank_server=None,
):
def __init__(self, app, memory: MemoryEngine):
self.app = app
self.prefix = prefix
self.memory = memory
self.tenant_extension = memory._tenant_extension
if multi_bank_app and single_bank_app:
# Pre-created servers (used when called via add_middleware from create_app)
self.multi_bank_app = multi_bank_app
self.single_bank_app = single_bank_app
self.multi_bank_server = multi_bank_server
self.single_bank_server = single_bank_server
else:
# Create servers internally (for direct construction / tests)
self.multi_bank_server = create_mcp_server(memory, multi_bank=True)
self.multi_bank_app = self.multi_bank_server.http_app(path="/")
self.single_bank_server = create_mcp_server(memory, multi_bank=False)
self.single_bank_app = self.single_bank_server.http_app(path="/")
self.mcp_server = create_mcp_server(memory)
self.mcp_app = self.mcp_server.http_app(path="/")
# Expose the lifespan for the parent app to chain
self.lifespan = self.mcp_app.lifespan_handler if hasattr(self.mcp_app, "lifespan_handler") else None
def _get_header(self, scope: dict, name: str) -> str | None:
"""Extract a header value from ASGI scope."""
@@ -190,20 +111,9 @@ class MCPMiddleware:
async def __call__(self, scope, receive, send):
if scope["type"] != "http":
await self.app(scope, receive, send)
await self.mcp_app(scope, receive, send)
return
path = scope.get("path", "")
# Check if this is an MCP request (matches prefix)
if not (path == self.prefix or path.startswith(self.prefix + "/")):
# Not an MCP request — pass through to the inner app
await self.app(scope, receive, send)
return
# Strip prefix from path
path = path[len(self.prefix) :] or "/"
# Extract auth token from header (for tenant auth propagation)
auth_header = self._get_header(scope, "Authorization")
auth_token: str | None = None
@@ -211,49 +121,42 @@ class MCPMiddleware:
# Support both "Bearer <token>" and direct token
auth_token = auth_header[7:].strip() if auth_header.startswith("Bearer ") else auth_header.strip()
# Authenticate: check legacy MCP_AUTH_TOKEN first, then TenantExtension
tenant_context = None
auth_tenant_id: str | None = None
auth_api_key_id: str | None = None
# Authenticate if MCP_AUTH_TOKEN is configured
if MCP_AUTH_TOKEN:
# Legacy authentication mode - validate against static token
if not auth_token:
await self._send_error(send, 401, "Authorization header required")
return
if auth_token != MCP_AUTH_TOKEN:
await self._send_error(send, 401, "Invalid authentication token")
return
# Legacy mode doesn't use tenant schemas
tenant_context = None
else:
# Use TenantExtension.authenticate_mcp() for auth
try:
auth_context = RequestContext(api_key=auth_token)
tenant_context = await self.tenant_extension.authenticate_mcp(auth_context)
# Capture tenant_id and api_key_id set by authenticate() for usage metering
auth_tenant_id = auth_context.tenant_id
auth_api_key_id = auth_context.api_key_id
except AuthenticationError as e:
await self._send_error(send, 401, str(e))
return
# Set schema from tenant context so downstream DB queries use the correct schema
schema_token = (
_current_schema.set(tenant_context.schema_name) if tenant_context and tenant_context.schema_name else None
)
path = scope.get("path", "")
# Strip any mount prefix (e.g., /mcp) that FastAPI might not have stripped
root_path = scope.get("root_path", "")
if root_path and path.startswith(root_path):
path = path[len(root_path) :] or "/"
# Also handle case where mount path wasn't stripped (e.g., /mcp/...)
if path.startswith("/mcp/"):
path = path[4:] # Remove /mcp prefix
elif path == "/mcp":
path = "/"
# Try to get bank_id from header first (for Claude Code compatibility)
bank_id = self._get_header(scope, "X-Bank-Id")
bank_id_from_path = False
# MCP endpoint paths that should not be treated as bank_ids
MCP_ENDPOINTS = {"sse", "messages"}
# If no header, try to extract from path: /{bank_id}/...
new_path = path
if not bank_id and path.startswith("/") and len(path) > 1:
parts = path[1:].split("/", 1)
if parts[0]:
# Don't treat MCP endpoints as bank_ids
if parts[0] and parts[0] not in MCP_ENDPOINTS:
# First segment looks like a bank_id
bank_id = parts[0]
bank_id_from_path = True
new_path = "/" + parts[1] if len(parts) > 1 else "/"
# Fall back to default bank_id
@@ -261,37 +164,19 @@ class MCPMiddleware:
bank_id = DEFAULT_BANK_ID
logger.debug(f"Using default bank_id: {bank_id}")
# Select the appropriate MCP app based on how bank_id was provided:
# - Path-based bank_id → single-bank app (no bank_id param, scoped tools)
# - Header/env bank_id → multi-bank app (bank_id param, all tools)
target_app = self.single_bank_app if bank_id_from_path else self.multi_bank_app
# Set bank_id, api_key, tenant_id, and api_key_id context
# Set bank_id and api_key context
bank_id_token = _current_bank_id.set(bank_id)
# Store the auth token for tenant extension to validate
api_key_token = _current_api_key.set(auth_token) if auth_token else None
# Store tenant_id and api_key_id from authentication for usage metering
tenant_id_token = _current_tenant_id.set(auth_tenant_id) if auth_tenant_id else None
api_key_id_token = _current_api_key_id.set(auth_api_key_id) if auth_api_key_id else None
try:
new_scope = scope.copy()
new_scope["path"] = new_path
# Clear root_path since we're passing directly to the app
new_scope["root_path"] = ""
# Wrap send to rewrite the SSE endpoint URL to include bank_id if using path-based routing.
# Only rewrite SSE (text/event-stream) responses to avoid corrupting tool results
# that might contain the literal string "data: /messages".
is_sse_response = False
# Wrap send to rewrite the SSE endpoint URL to include bank_id if using path-based routing
async def send_wrapper(message):
nonlocal is_sse_response
if message["type"] == "http.response.start":
for header_name, header_value in message.get("headers", []):
if header_name == b"content-type" and b"text/event-stream" in header_value:
is_sse_response = True
break
if message["type"] == "http.response.body" and bank_id_from_path and is_sse_response:
if message["type"] == "http.response.body":
body = message.get("body", b"")
if body and b"/messages" in body:
# Rewrite /messages to /{bank_id}/messages in SSE endpoint event
@@ -299,17 +184,11 @@ class MCPMiddleware:
message = {**message, "body": body}
await send(message)
await target_app(new_scope, receive, send_wrapper)
await self.mcp_app(new_scope, receive, send_wrapper)
finally:
_current_bank_id.reset(bank_id_token)
if api_key_token is not None:
_current_api_key.reset(api_key_token)
if tenant_id_token is not None:
_current_tenant_id.reset(tenant_id_token)
if api_key_id_token is not None:
_current_api_key_id.reset(api_key_id_token)
if schema_token is not None:
_current_schema.reset(schema_token)
async def _send_error(self, send, status: int, message: str):
"""Send an error response."""
@@ -329,19 +208,23 @@ class MCPMiddleware:
)
def create_mcp_servers(memory: MemoryEngine):
"""Create multi-bank and single-bank MCP servers and their Starlette apps.
def create_mcp_app(memory: MemoryEngine):
"""
Create an ASGI app that handles MCP requests.
Returns the servers and apps separately so lifespans can be chained before
the middleware wraps the main app.
Authentication:
Set HINDSIGHT_API_MCP_AUTH_TOKEN to require Bearer token authentication.
If not set, MCP endpoint is open (for local development).
Bank ID can be provided via:
1. X-Bank-Id header: claude mcp add --transport http hindsight http://localhost:8888/mcp --header "X-Bank-Id: my-bank"
2. URL path: /mcp/{bank_id}/
3. Environment variable HINDSIGHT_MCP_BANK_ID (fallback, default: "default")
Args:
memory: MemoryEngine instance
Returns:
Tuple of (multi_bank_server, single_bank_server, multi_bank_app, single_bank_app)
ASGI application
"""
multi_bank_server = create_mcp_server(memory, multi_bank=True)
multi_bank_app = multi_bank_server.http_app(path="/")
single_bank_server = create_mcp_server(memory, multi_bank=False)
single_bank_app = single_bank_server.http_app(path="/")
return multi_bank_server, single_bank_server, multi_bank_app, single_bank_app
return MCPMiddleware(None, memory)
+1 -6
View File
@@ -4,8 +4,6 @@ Banner display for Hindsight API startup.
Shows the logo and tagline with gradient colors.
"""
from .utils import mask_network_location
# Gradient colors: #0074d9 -> #009296
GRADIENT_START = (0, 116, 217) # #0074d9
GRADIENT_END = (0, 146, 150) # #009296
@@ -85,14 +83,11 @@ def print_startup_info(
embeddings_provider: str,
reranker_provider: str,
mcp_enabled: bool = False,
version: str | None = None,
):
"""Print styled startup information."""
print(color_start("Starting Hindsight API..."))
if version:
print(f" {dim('Version:')} {color(f'v{version}', 0.1)}")
print(f" {dim('URL:')} {color(f'http://{host}:{port}', 0.2)}")
print(f" {dim('Database:')} {color(mask_network_location(database_url), 0.4)}")
print(f" {dim('Database:')} {color(database_url, 0.4)}")
print(f" {dim('LLM:')} {color(f'{llm_provider} / {llm_model}', 0.6)}")
print(f" {dim('Embeddings:')} {color(embeddings_provider, 0.8)}")
print(f" {dim('Reranker:')} {color(reranker_provider, 1.0)}")
+11 -146
View File
@@ -66,40 +66,27 @@ ENV_CONSOLIDATION_LLM_TIMEOUT = "HINDSIGHT_API_CONSOLIDATION_LLM_TIMEOUT"
ENV_EMBEDDINGS_PROVIDER = "HINDSIGHT_API_EMBEDDINGS_PROVIDER"
ENV_EMBEDDINGS_LOCAL_MODEL = "HINDSIGHT_API_EMBEDDINGS_LOCAL_MODEL"
ENV_EMBEDDINGS_LOCAL_FORCE_CPU = "HINDSIGHT_API_EMBEDDINGS_LOCAL_FORCE_CPU"
ENV_EMBEDDINGS_LOCAL_TRUST_REMOTE_CODE = "HINDSIGHT_API_EMBEDDINGS_LOCAL_TRUST_REMOTE_CODE"
ENV_EMBEDDINGS_TEI_URL = "HINDSIGHT_API_EMBEDDINGS_TEI_URL"
ENV_EMBEDDINGS_OPENAI_API_KEY = "HINDSIGHT_API_EMBEDDINGS_OPENAI_API_KEY"
ENV_EMBEDDINGS_OPENAI_MODEL = "HINDSIGHT_API_EMBEDDINGS_OPENAI_MODEL"
ENV_EMBEDDINGS_OPENAI_BASE_URL = "HINDSIGHT_API_EMBEDDINGS_OPENAI_BASE_URL"
# Cohere configuration (separate for embeddings and reranker)
ENV_EMBEDDINGS_COHERE_API_KEY = "HINDSIGHT_API_EMBEDDINGS_COHERE_API_KEY"
ENV_COHERE_API_KEY = "HINDSIGHT_API_COHERE_API_KEY"
ENV_EMBEDDINGS_COHERE_MODEL = "HINDSIGHT_API_EMBEDDINGS_COHERE_MODEL"
ENV_EMBEDDINGS_COHERE_BASE_URL = "HINDSIGHT_API_EMBEDDINGS_COHERE_BASE_URL"
ENV_RERANKER_COHERE_API_KEY = "HINDSIGHT_API_RERANKER_COHERE_API_KEY"
ENV_RERANKER_COHERE_MODEL = "HINDSIGHT_API_RERANKER_COHERE_MODEL"
ENV_RERANKER_COHERE_BASE_URL = "HINDSIGHT_API_RERANKER_COHERE_BASE_URL"
# Deprecated: Legacy shared Cohere API key (for backward compatibility)
ENV_COHERE_API_KEY = "HINDSIGHT_API_COHERE_API_KEY"
# LiteLLM configuration (separate for embeddings and reranker)
ENV_EMBEDDINGS_LITELLM_API_BASE = "HINDSIGHT_API_EMBEDDINGS_LITELLM_API_BASE"
ENV_EMBEDDINGS_LITELLM_API_KEY = "HINDSIGHT_API_EMBEDDINGS_LITELLM_API_KEY"
ENV_EMBEDDINGS_LITELLM_MODEL = "HINDSIGHT_API_EMBEDDINGS_LITELLM_MODEL"
ENV_RERANKER_LITELLM_API_BASE = "HINDSIGHT_API_RERANKER_LITELLM_API_BASE"
ENV_RERANKER_LITELLM_API_KEY = "HINDSIGHT_API_RERANKER_LITELLM_API_KEY"
ENV_RERANKER_LITELLM_MODEL = "HINDSIGHT_API_RERANKER_LITELLM_MODEL"
# Deprecated: Legacy shared LiteLLM config (for backward compatibility)
# LiteLLM gateway configuration (for embeddings and reranker via LiteLLM proxy)
ENV_LITELLM_API_BASE = "HINDSIGHT_API_LITELLM_API_BASE"
ENV_LITELLM_API_KEY = "HINDSIGHT_API_LITELLM_API_KEY"
ENV_EMBEDDINGS_LITELLM_MODEL = "HINDSIGHT_API_EMBEDDINGS_LITELLM_MODEL"
ENV_RERANKER_LITELLM_MODEL = "HINDSIGHT_API_RERANKER_LITELLM_MODEL"
ENV_RERANKER_PROVIDER = "HINDSIGHT_API_RERANKER_PROVIDER"
ENV_RERANKER_LOCAL_MODEL = "HINDSIGHT_API_RERANKER_LOCAL_MODEL"
ENV_RERANKER_LOCAL_FORCE_CPU = "HINDSIGHT_API_RERANKER_LOCAL_FORCE_CPU"
ENV_RERANKER_LOCAL_MAX_CONCURRENT = "HINDSIGHT_API_RERANKER_LOCAL_MAX_CONCURRENT"
ENV_RERANKER_LOCAL_TRUST_REMOTE_CODE = "HINDSIGHT_API_RERANKER_LOCAL_TRUST_REMOTE_CODE"
ENV_RERANKER_TEI_URL = "HINDSIGHT_API_RERANKER_TEI_URL"
ENV_RERANKER_TEI_BATCH_SIZE = "HINDSIGHT_API_RERANKER_TEI_BATCH_SIZE"
ENV_RERANKER_TEI_MAX_CONCURRENT = "HINDSIGHT_API_RERANKER_TEI_MAX_CONCURRENT"
@@ -121,13 +108,6 @@ ENV_MCP_LOCAL_BANK_ID = "HINDSIGHT_API_MCP_LOCAL_BANK_ID"
ENV_MCP_INSTRUCTIONS = "HINDSIGHT_API_MCP_INSTRUCTIONS"
ENV_MENTAL_MODEL_REFRESH_CONCURRENCY = "HINDSIGHT_API_MENTAL_MODEL_REFRESH_CONCURRENCY"
# OpenTelemetry tracing configuration
ENV_OTEL_TRACES_ENABLED = "HINDSIGHT_API_OTEL_TRACES_ENABLED"
ENV_OTEL_EXPORTER_OTLP_ENDPOINT = "HINDSIGHT_API_OTEL_EXPORTER_OTLP_ENDPOINT"
ENV_OTEL_EXPORTER_OTLP_HEADERS = "HINDSIGHT_API_OTEL_EXPORTER_OTLP_HEADERS"
ENV_OTEL_SERVICE_NAME = "HINDSIGHT_API_OTEL_SERVICE_NAME"
ENV_OTEL_DEPLOYMENT_ENVIRONMENT = "HINDSIGHT_API_OTEL_DEPLOYMENT_ENVIRONMENT"
# Vertex AI configuration
ENV_LLM_VERTEXAI_PROJECT_ID = "HINDSIGHT_API_LLM_VERTEXAI_PROJECT_ID"
ENV_LLM_VERTEXAI_REGION = "HINDSIGHT_API_LLM_VERTEXAI_REGION"
@@ -174,21 +154,7 @@ ENV_REFLECT_MAX_ITERATIONS = "HINDSIGHT_API_REFLECT_MAX_ITERATIONS"
DEFAULT_DATABASE_URL = "pg0"
DEFAULT_DATABASE_SCHEMA = "public"
DEFAULT_LLM_PROVIDER = "openai"
# Provider-specific default models
PROVIDER_DEFAULT_MODELS = {
"openai": "o3-mini",
"anthropic": "claude-haiku-4-5-20251001",
"gemini": "gemini-2.5-flash",
"groq": "openai/gpt-oss-120b",
"ollama": "gemma3:12b",
"lmstudio": "local-model",
"vertexai": "gemini-2.0-flash-001",
"openai-codex": "gpt-5.2-codex",
"claude-code": "claude-sonnet-4-5-20250929",
"mock": "mock-model",
}
DEFAULT_LLM_MODEL = "o3-mini" # Fallback if provider not in table
DEFAULT_LLM_MODEL = "gpt-5-mini"
DEFAULT_LLM_MAX_CONCURRENT = 32
DEFAULT_LLM_MAX_RETRIES = 10 # Max retry attempts for LLM API calls
DEFAULT_LLM_INITIAL_BACKOFF = 1.0 # Initial backoff in seconds for retry exponential backoff
@@ -203,7 +169,6 @@ DEFAULT_LLM_VERTEXAI_SERVICE_ACCOUNT_KEY = None # Optional, uses ADC if not set
DEFAULT_EMBEDDINGS_PROVIDER = "local"
DEFAULT_EMBEDDINGS_LOCAL_MODEL = "BAAI/bge-small-en-v1.5"
DEFAULT_EMBEDDINGS_LOCAL_FORCE_CPU = False # Force CPU mode for local embeddings (avoids MPS/XPC issues on macOS)
DEFAULT_EMBEDDINGS_LOCAL_TRUST_REMOTE_CODE = False # Security: disabled by default, required for some models
DEFAULT_EMBEDDINGS_OPENAI_MODEL = "text-embedding-3-small"
DEFAULT_EMBEDDING_DIMENSION = 384
@@ -211,9 +176,6 @@ DEFAULT_RERANKER_PROVIDER = "local"
DEFAULT_RERANKER_LOCAL_MODEL = "cross-encoder/ms-marco-MiniLM-L-6-v2"
DEFAULT_RERANKER_LOCAL_FORCE_CPU = False # Force CPU mode for local reranker (avoids MPS/XPC issues on macOS)
DEFAULT_RERANKER_LOCAL_MAX_CONCURRENT = 4 # Limit concurrent CPU-bound reranking to prevent thrashing
DEFAULT_RERANKER_LOCAL_TRUST_REMOTE_CODE = (
False # Security: disabled by default, required for some models like jina-reranker-v2
)
DEFAULT_RERANKER_TEI_BATCH_SIZE = 128
DEFAULT_RERANKER_TEI_MAX_CONCURRENT = 8
DEFAULT_RERANKER_MAX_CANDIDATES = 300
@@ -275,11 +237,6 @@ DEFAULT_WORKER_CONSOLIDATION_MAX_SLOTS = 2 # Max concurrent consolidation tasks
# Reflect agent settings
DEFAULT_REFLECT_MAX_ITERATIONS = 10 # Max tool call iterations before forcing response
# OpenTelemetry tracing configuration
DEFAULT_OTEL_TRACES_ENABLED = False # Disabled by default for backward compatibility
DEFAULT_OTEL_SERVICE_NAME = "hindsight-api"
DEFAULT_OTEL_DEPLOYMENT_ENVIRONMENT = "development"
# Default MCP tool descriptions (can be customized via env vars)
DEFAULT_MCP_RETAIN_DESCRIPTION = """Store important information to long-term memory.
@@ -346,11 +303,6 @@ def _validate_extraction_mode(mode: str) -> str:
return mode_lower
def _get_default_model_for_provider(provider: str) -> str:
"""Get the default model for a given provider."""
return PROVIDER_DEFAULT_MODELS.get(provider.lower(), DEFAULT_LLM_MODEL)
@dataclass
class HindsightConfig:
"""Configuration container for Hindsight API."""
@@ -410,32 +362,20 @@ class HindsightConfig:
embeddings_provider: str
embeddings_local_model: str
embeddings_local_force_cpu: bool
embeddings_local_trust_remote_code: bool
embeddings_tei_url: str | None
embeddings_openai_base_url: str | None
embeddings_cohere_api_key: str | None
embeddings_cohere_model: str
embeddings_cohere_base_url: str | None
embeddings_litellm_api_base: str
embeddings_litellm_api_key: str | None
embeddings_litellm_model: str
# Reranker
reranker_provider: str
reranker_local_model: str
reranker_local_force_cpu: bool
reranker_local_max_concurrent: int
reranker_local_trust_remote_code: bool
reranker_tei_url: str | None
reranker_tei_batch_size: int
reranker_tei_max_concurrent: int
reranker_max_candidates: int
reranker_cohere_api_key: str | None
reranker_cohere_model: str
reranker_cohere_base_url: str | None
reranker_litellm_api_base: str
reranker_litellm_api_key: str | None
reranker_litellm_model: str
# Server
host: str
@@ -488,44 +428,17 @@ class HindsightConfig:
# Reflect agent settings
reflect_max_iterations: int
# OpenTelemetry tracing configuration
otel_traces_enabled: bool
otel_exporter_otlp_endpoint: str | None
otel_exporter_otlp_headers: str | None
otel_service_name: str
otel_deployment_environment: str
def validate(self) -> None:
"""Validate configuration values and raise errors for invalid combinations."""
# RETAIN_MAX_COMPLETION_TOKENS must be greater than RETAIN_CHUNK_SIZE
# to ensure the LLM has enough output capacity to extract facts from chunks
if self.retain_max_completion_tokens <= self.retain_chunk_size:
raise ValueError(
f"Invalid configuration: HINDSIGHT_API_RETAIN_MAX_COMPLETION_TOKENS "
f"({self.retain_max_completion_tokens}) must be greater than "
f"HINDSIGHT_API_RETAIN_CHUNK_SIZE ({self.retain_chunk_size}). "
f"\n\nYou have two options to fix this:"
f"\n 1. Increase HINDSIGHT_API_RETAIN_MAX_COMPLETION_TOKENS to a value > {self.retain_chunk_size}"
f"\n 2. Use a model that supports at least {self.retain_max_completion_tokens} output tokens"
f"\n (current model: {self.retain_llm_model or self.llm_model}, "
f"provider: {self.retain_llm_provider or self.llm_provider})"
)
@classmethod
def from_env(cls) -> "HindsightConfig":
"""Create configuration from environment variables."""
# Get provider first to determine default model
llm_provider = os.getenv(ENV_LLM_PROVIDER, DEFAULT_LLM_PROVIDER)
llm_model = os.getenv(ENV_LLM_MODEL) or _get_default_model_for_provider(llm_provider)
config = cls(
return cls(
# Database
database_url=os.getenv(ENV_DATABASE_URL, DEFAULT_DATABASE_URL),
database_schema=os.getenv(ENV_DATABASE_SCHEMA, DEFAULT_DATABASE_SCHEMA),
# LLM
llm_provider=llm_provider,
llm_provider=os.getenv(ENV_LLM_PROVIDER, DEFAULT_LLM_PROVIDER),
llm_api_key=os.getenv(ENV_LLM_API_KEY),
llm_model=llm_model,
llm_model=os.getenv(ENV_LLM_MODEL, DEFAULT_LLM_MODEL),
llm_base_url=os.getenv(ENV_LLM_BASE_URL) or None,
llm_max_concurrent=int(os.getenv(ENV_LLM_MAX_CONCURRENT, str(DEFAULT_LLM_MAX_CONCURRENT))),
llm_max_retries=int(os.getenv(ENV_LLM_MAX_RETRIES, str(DEFAULT_LLM_MAX_RETRIES))),
@@ -540,12 +453,7 @@ class HindsightConfig:
# Per-operation LLM config (None = use default)
retain_llm_provider=os.getenv(ENV_RETAIN_LLM_PROVIDER) or None,
retain_llm_api_key=os.getenv(ENV_RETAIN_LLM_API_KEY) or None,
retain_llm_model=os.getenv(ENV_RETAIN_LLM_MODEL)
or (
_get_default_model_for_provider(os.getenv(ENV_RETAIN_LLM_PROVIDER))
if os.getenv(ENV_RETAIN_LLM_PROVIDER)
else None
),
retain_llm_model=os.getenv(ENV_RETAIN_LLM_MODEL) or None,
retain_llm_base_url=os.getenv(ENV_RETAIN_LLM_BASE_URL) or None,
retain_llm_max_concurrent=int(os.getenv(ENV_RETAIN_LLM_MAX_CONCURRENT))
if os.getenv(ENV_RETAIN_LLM_MAX_CONCURRENT)
@@ -562,12 +470,7 @@ class HindsightConfig:
retain_llm_timeout=float(os.getenv(ENV_RETAIN_LLM_TIMEOUT)) if os.getenv(ENV_RETAIN_LLM_TIMEOUT) else None,
reflect_llm_provider=os.getenv(ENV_REFLECT_LLM_PROVIDER) or None,
reflect_llm_api_key=os.getenv(ENV_REFLECT_LLM_API_KEY) or None,
reflect_llm_model=os.getenv(ENV_REFLECT_LLM_MODEL)
or (
_get_default_model_for_provider(os.getenv(ENV_REFLECT_LLM_PROVIDER))
if os.getenv(ENV_REFLECT_LLM_PROVIDER)
else None
),
reflect_llm_model=os.getenv(ENV_REFLECT_LLM_MODEL) or None,
reflect_llm_base_url=os.getenv(ENV_REFLECT_LLM_BASE_URL) or None,
reflect_llm_max_concurrent=int(os.getenv(ENV_REFLECT_LLM_MAX_CONCURRENT))
if os.getenv(ENV_REFLECT_LLM_MAX_CONCURRENT)
@@ -586,12 +489,7 @@ class HindsightConfig:
else None,
consolidation_llm_provider=os.getenv(ENV_CONSOLIDATION_LLM_PROVIDER) or None,
consolidation_llm_api_key=os.getenv(ENV_CONSOLIDATION_LLM_API_KEY) or None,
consolidation_llm_model=os.getenv(ENV_CONSOLIDATION_LLM_MODEL)
or (
_get_default_model_for_provider(os.getenv(ENV_CONSOLIDATION_LLM_PROVIDER))
if os.getenv(ENV_CONSOLIDATION_LLM_PROVIDER)
else None
),
consolidation_llm_model=os.getenv(ENV_CONSOLIDATION_LLM_MODEL) or None,
consolidation_llm_base_url=os.getenv(ENV_CONSOLIDATION_LLM_BASE_URL) or None,
consolidation_llm_max_concurrent=int(os.getenv(ENV_CONSOLIDATION_LLM_MAX_CONCURRENT))
if os.getenv(ENV_CONSOLIDATION_LLM_MAX_CONCURRENT)
@@ -615,21 +513,9 @@ class HindsightConfig:
ENV_EMBEDDINGS_LOCAL_FORCE_CPU, str(DEFAULT_EMBEDDINGS_LOCAL_FORCE_CPU)
).lower()
in ("true", "1"),
embeddings_local_trust_remote_code=os.getenv(
ENV_EMBEDDINGS_LOCAL_TRUST_REMOTE_CODE, str(DEFAULT_EMBEDDINGS_LOCAL_TRUST_REMOTE_CODE)
).lower()
in ("true", "1"),
embeddings_tei_url=os.getenv(ENV_EMBEDDINGS_TEI_URL),
embeddings_openai_base_url=os.getenv(ENV_EMBEDDINGS_OPENAI_BASE_URL) or None,
# Cohere embeddings (with backward-compatible fallback to shared API key)
embeddings_cohere_api_key=os.getenv(ENV_EMBEDDINGS_COHERE_API_KEY) or os.getenv(ENV_COHERE_API_KEY),
embeddings_cohere_model=os.getenv(ENV_EMBEDDINGS_COHERE_MODEL, DEFAULT_EMBEDDINGS_COHERE_MODEL),
embeddings_cohere_base_url=os.getenv(ENV_EMBEDDINGS_COHERE_BASE_URL) or None,
# LiteLLM embeddings (with backward-compatible fallback to shared config)
embeddings_litellm_api_base=os.getenv(ENV_EMBEDDINGS_LITELLM_API_BASE)
or os.getenv(ENV_LITELLM_API_BASE, DEFAULT_LITELLM_API_BASE),
embeddings_litellm_api_key=os.getenv(ENV_EMBEDDINGS_LITELLM_API_KEY) or os.getenv(ENV_LITELLM_API_KEY),
embeddings_litellm_model=os.getenv(ENV_EMBEDDINGS_LITELLM_MODEL, DEFAULT_EMBEDDINGS_LITELLM_MODEL),
# Reranker
reranker_provider=os.getenv(ENV_RERANKER_PROVIDER, DEFAULT_RERANKER_PROVIDER),
reranker_local_model=os.getenv(ENV_RERANKER_LOCAL_MODEL, DEFAULT_RERANKER_LOCAL_MODEL),
@@ -640,25 +526,13 @@ class HindsightConfig:
reranker_local_max_concurrent=int(
os.getenv(ENV_RERANKER_LOCAL_MAX_CONCURRENT, str(DEFAULT_RERANKER_LOCAL_MAX_CONCURRENT))
),
reranker_local_trust_remote_code=os.getenv(
ENV_RERANKER_LOCAL_TRUST_REMOTE_CODE, str(DEFAULT_RERANKER_LOCAL_TRUST_REMOTE_CODE)
).lower()
in ("true", "1"),
reranker_tei_url=os.getenv(ENV_RERANKER_TEI_URL),
reranker_tei_batch_size=int(os.getenv(ENV_RERANKER_TEI_BATCH_SIZE, str(DEFAULT_RERANKER_TEI_BATCH_SIZE))),
reranker_tei_max_concurrent=int(
os.getenv(ENV_RERANKER_TEI_MAX_CONCURRENT, str(DEFAULT_RERANKER_TEI_MAX_CONCURRENT))
),
reranker_max_candidates=int(os.getenv(ENV_RERANKER_MAX_CANDIDATES, str(DEFAULT_RERANKER_MAX_CANDIDATES))),
# Cohere reranker (with backward-compatible fallback to shared API key)
reranker_cohere_api_key=os.getenv(ENV_RERANKER_COHERE_API_KEY) or os.getenv(ENV_COHERE_API_KEY),
reranker_cohere_model=os.getenv(ENV_RERANKER_COHERE_MODEL, DEFAULT_RERANKER_COHERE_MODEL),
reranker_cohere_base_url=os.getenv(ENV_RERANKER_COHERE_BASE_URL) or None,
# LiteLLM reranker (with backward-compatible fallback to shared config)
reranker_litellm_api_base=os.getenv(ENV_RERANKER_LITELLM_API_BASE)
or os.getenv(ENV_LITELLM_API_BASE, DEFAULT_LITELLM_API_BASE),
reranker_litellm_api_key=os.getenv(ENV_RERANKER_LITELLM_API_KEY) or os.getenv(ENV_LITELLM_API_KEY),
reranker_litellm_model=os.getenv(ENV_RERANKER_LITELLM_MODEL, DEFAULT_RERANKER_LITELLM_MODEL),
# Server
host=os.getenv(ENV_HOST, DEFAULT_HOST),
port=int(os.getenv(ENV_PORT, DEFAULT_PORT)),
@@ -718,16 +592,7 @@ class HindsightConfig:
),
# Reflect agent settings
reflect_max_iterations=int(os.getenv(ENV_REFLECT_MAX_ITERATIONS, str(DEFAULT_REFLECT_MAX_ITERATIONS))),
# OpenTelemetry tracing configuration
otel_traces_enabled=os.getenv(ENV_OTEL_TRACES_ENABLED, str(DEFAULT_OTEL_TRACES_ENABLED)).lower()
in ("true", "1", "yes"),
otel_exporter_otlp_endpoint=os.getenv(ENV_OTEL_EXPORTER_OTLP_ENDPOINT) or None,
otel_exporter_otlp_headers=os.getenv(ENV_OTEL_EXPORTER_OTLP_HEADERS) or None,
otel_service_name=os.getenv(ENV_OTEL_SERVICE_NAME, DEFAULT_OTEL_SERVICE_NAME),
otel_deployment_environment=os.getenv(ENV_OTEL_DEPLOYMENT_ENVIRONMENT, DEFAULT_OTEL_DEPLOYMENT_ENVIRONMENT),
)
config.validate()
return config
def get_llm_base_url(self) -> str:
"""Get the LLM base URL, with provider-specific defaults."""
+110 -16
View File
@@ -1,10 +1,11 @@
"""
Daemon mode support for Hindsight API.
Provides idle timeout for running as a background daemon.
Provides idle timeout and lockfile management for running as a background daemon.
"""
import asyncio
import fcntl
import logging
import os
import sys
@@ -16,9 +17,8 @@ logger = logging.getLogger(__name__)
# Default daemon configuration
DEFAULT_DAEMON_PORT = 8888
DEFAULT_IDLE_TIMEOUT = 0 # 0 = no auto-exit (hindsight-embed passes its own timeout)
# Allow override via environment variable for profile-specific logs
DAEMON_LOG_PATH = Path(os.getenv("HINDSIGHT_API_DAEMON_LOG", str(Path.home() / ".hindsight" / "daemon.log")))
LOCKFILE_PATH = Path.home() / ".hindsight" / "daemon.lock"
DAEMON_LOG_PATH = Path.home() / ".hindsight" / "daemon.log"
class IdleTimeoutMiddleware:
@@ -58,27 +58,97 @@ class IdleTimeoutMiddleware:
os.kill(os.getpid(), signal.SIGTERM)
class DaemonLock:
"""
File-based lock to prevent multiple daemon instances.
Uses fcntl.flock for atomic locking on Unix systems.
"""
def __init__(self, lockfile: Path = LOCKFILE_PATH):
self.lockfile = lockfile
self._fd = None
def acquire(self) -> bool:
"""
Try to acquire the daemon lock.
Returns True if lock acquired, False if another daemon is running.
"""
self.lockfile.parent.mkdir(parents=True, exist_ok=True)
try:
self._fd = open(self.lockfile, "w")
fcntl.flock(self._fd.fileno(), fcntl.LOCK_EX | fcntl.LOCK_NB)
# Write PID for debugging
self._fd.write(str(os.getpid()))
self._fd.flush()
return True
except (IOError, OSError):
# Lock is held by another process
if self._fd:
self._fd.close()
self._fd = None
return False
def release(self):
"""Release the daemon lock."""
if self._fd:
try:
fcntl.flock(self._fd.fileno(), fcntl.LOCK_UN)
self._fd.close()
except Exception:
pass
finally:
self._fd = None
# Remove lockfile
try:
self.lockfile.unlink()
except Exception:
pass
def is_locked(self) -> bool:
"""Check if the lock is held by another process."""
if not self.lockfile.exists():
return False
try:
fd = open(self.lockfile, "r")
fcntl.flock(fd.fileno(), fcntl.LOCK_EX | fcntl.LOCK_NB)
# We got the lock, so no one else has it
fcntl.flock(fd.fileno(), fcntl.LOCK_UN)
fd.close()
return False
except (IOError, OSError):
return True
def get_pid(self) -> int | None:
"""Get the PID of the daemon holding the lock."""
if not self.lockfile.exists():
return None
try:
with open(self.lockfile, "r") as f:
return int(f.read().strip())
except (ValueError, IOError):
return None
def daemonize():
"""
Fork the current process into a background daemon.
Uses double-fork technique to properly detach from terminal.
"""
# First fork - detach from parent
try:
pid = os.fork()
if pid > 0:
sys.exit(0)
except OSError as e:
sys.stderr.write(f"fork #1 failed: {e}\n")
sys.exit(1)
# First fork
pid = os.fork()
if pid > 0:
# Parent exits
sys.exit(0)
# Decouple from parent environment
os.chdir("/")
# Create new session
os.setsid()
os.umask(0)
# Second fork - prevent zombie
# Second fork to prevent zombie processes
pid = os.fork()
if pid > 0:
sys.exit(0)
@@ -111,3 +181,27 @@ def check_daemon_running(port: int = DEFAULT_DAEMON_PORT) -> bool:
return result == 0
except Exception:
return False
def stop_daemon(port: int = DEFAULT_DAEMON_PORT) -> bool:
"""Stop a running daemon by sending SIGTERM to the process."""
lock = DaemonLock()
pid = lock.get_pid()
if pid is None:
return False
try:
import signal
os.kill(pid, signal.SIGTERM)
# Wait for process to exit
for _ in range(50): # Wait up to 5 seconds
time.sleep(0.1)
try:
os.kill(pid, 0) # Check if process exists
except OSError:
return True # Process exited
return False
except OSError:
return False
@@ -143,9 +143,6 @@ async def run_consolidation_job(
"skipped": 0,
}
# Track all unique tags from consolidated memories for mental model refresh filtering
consolidated_tags: set[str] = set()
batch_num = 0
last_progress_timings = {} # Track timings at last progress log
while True:
@@ -179,11 +176,6 @@ async def run_consolidation_job(
for memory in memories:
mem_start = time.time()
# Track tags from this memory for mental model refresh filtering
memory_tags = memory.get("tags") or []
if memory_tags:
consolidated_tags.update(memory_tags)
# Process the memory (uses its own connection internally)
async with pool.acquire() as conn:
result = await _process_memory(
@@ -292,12 +284,10 @@ async def run_consolidation_job(
perf.log(f"[4] Timing breakdown: {', '.join(timing_parts)}")
# Trigger mental model refreshes for models with refresh_after_consolidation=true
# SECURITY: Only refresh mental models with matching tags (or all if no tags were consolidated)
mental_models_refreshed = await _trigger_mental_model_refreshes(
memory_engine=memory_engine,
bank_id=bank_id,
request_context=request_context,
consolidated_tags=list(consolidated_tags) if consolidated_tags else None,
perf=perf,
)
stats["mental_models_refreshed"] = mental_models_refreshed
@@ -311,20 +301,15 @@ async def _trigger_mental_model_refreshes(
memory_engine: "MemoryEngine",
bank_id: str,
request_context: "RequestContext",
consolidated_tags: list[str] | None = None,
perf: ConsolidationPerfLog | None = None,
) -> int:
"""
Trigger refreshes for mental models with refresh_after_consolidation=true.
SECURITY: Only triggers refresh for mental models whose tags overlap with the
consolidated memory tags, preventing unnecessary refreshes across security boundaries.
Args:
memory_engine: MemoryEngine instance
bank_id: Bank identifier
request_context: Request context for authentication
consolidated_tags: Tags from memories that were consolidated (None = refresh all)
perf: Performance logging
Returns:
@@ -333,52 +318,22 @@ async def _trigger_mental_model_refreshes(
pool = memory_engine._pool
# Find mental models with refresh_after_consolidation=true
# SECURITY: Control which mental models get refreshed based on tags
async with pool.acquire() as conn:
if consolidated_tags:
# Tagged memories were consolidated - refresh:
# 1. Mental models with overlapping tags (security boundary)
# 2. Untagged mental models (they're "global" and available to all contexts)
# DO NOT refresh mental models with different tags
rows = await conn.fetch(
f"""
SELECT id, name, tags
FROM {fq_table("mental_models")}
WHERE bank_id = $1
AND (trigger->>'refresh_after_consolidation')::boolean = true
AND (
(tags IS NOT NULL AND tags != '{{}}' AND tags && $2::varchar[])
OR (tags IS NULL OR tags = '{{}}')
)
""",
bank_id,
consolidated_tags,
)
else:
# Untagged memories were consolidated - only refresh untagged mental models
# SECURITY: Tagged mental models are NOT refreshed when untagged memories are consolidated
rows = await conn.fetch(
f"""
SELECT id, name, tags
FROM {fq_table("mental_models")}
WHERE bank_id = $1
AND (trigger->>'refresh_after_consolidation')::boolean = true
AND (tags IS NULL OR tags = '{{}}')
""",
bank_id,
)
rows = await conn.fetch(
f"""
SELECT id, name
FROM {fq_table("mental_models")}
WHERE bank_id = $1
AND (trigger->>'refresh_after_consolidation')::boolean = true
""",
bank_id,
)
if not rows:
return 0
if perf:
if consolidated_tags:
perf.log(
f"[5] Triggering refresh for {len(rows)} mental models with refresh_after_consolidation=true "
f"(filtered by tags: {consolidated_tags})"
)
else:
perf.log(f"[5] Triggering refresh for {len(rows)} mental models with refresh_after_consolidation=true")
perf.log(f"[5] Triggering refresh for {len(rows)} mental models with refresh_after_consolidation=true")
# Submit refresh tasks for each mental model
refreshed_count = 0
@@ -426,109 +381,92 @@ async def _process_memory(
Returns:
Dict with action summary: created/updated/merged counts
"""
from ...tracing import get_tracer, is_tracing_enabled
fact_text = memory["text"]
memory_id = memory["id"]
fact_tags = memory.get("tags") or []
# Create parent span for this memory's consolidation
tracer = get_tracer()
if is_tracing_enabled():
consolidation_span = tracer.start_span("hindsight.consolidation")
consolidation_span.set_attribute("hindsight.memory_id", str(memory_id))
consolidation_span.set_attribute("hindsight.bank_id", bank_id)
else:
consolidation_span = None
# Find related observations using the full recall system (NO tag filtering)
t0 = time.time()
related_observations = await _find_related_observations(
conn=conn,
memory_engine=memory_engine,
bank_id=bank_id,
query=fact_text,
request_context=request_context,
)
if perf:
perf.record_timing("recall", time.time() - t0)
try:
# Find related observations using the full recall system
# SECURITY: Pass tags to ensure observations don't leak across security boundaries
t0 = time.time()
related_observations = await _find_related_observations(
conn=conn,
memory_engine=memory_engine,
bank_id=bank_id,
query=fact_text,
request_context=request_context,
tags=fact_tags, # Pass source memory's tags for security
)
if perf:
perf.record_timing("recall", time.time() - t0)
# Single LLM call handles ALL cases (with or without existing observations)
# Note: Tags are NOT passed to LLM - they are handled algorithmically
t0 = time.time()
actions = await _consolidate_with_llm(
memory_engine=memory_engine,
fact_text=fact_text,
observations=related_observations, # Can be empty list
mission=mission,
)
if perf:
perf.record_timing("llm", time.time() - t0)
# Single LLM call handles ALL cases (with or without existing observations)
# Note: Tags are NOT passed to LLM - they are handled algorithmically
t0 = time.time()
actions = await _consolidate_with_llm(
memory_engine=memory_engine,
fact_text=fact_text,
observations=related_observations, # Can be empty list
mission=mission,
)
if perf:
perf.record_timing("llm", time.time() - t0)
if not actions:
# LLM returned empty array - fact is purely ephemeral, skip
return {"action": "skipped", "reason": "no_durable_knowledge"}
if not actions:
# LLM returned empty array - fact is purely ephemeral, skip
return {"action": "skipped", "reason": "no_durable_knowledge"}
# Execute all actions and collect results
results = []
for action in actions:
action_type = action.get("action")
if action_type == "update":
result = await _execute_update_action(
conn=conn,
memory_engine=memory_engine,
bank_id=bank_id,
memory_id=memory_id,
action=action,
observations=related_observations,
source_fact_tags=fact_tags, # Pass source fact's tags for security
source_occurred_start=memory.get("occurred_start"),
source_occurred_end=memory.get("occurred_end"),
source_mentioned_at=memory.get("mentioned_at"),
perf=perf,
)
results.append(result)
elif action_type == "create":
result = await _execute_create_action(
conn=conn,
memory_engine=memory_engine,
bank_id=bank_id,
memory_id=memory_id,
action=action,
source_fact_tags=fact_tags, # Pass source fact's tags for security
event_date=memory.get("event_date"),
occurred_start=memory.get("occurred_start"),
occurred_end=memory.get("occurred_end"),
mentioned_at=memory.get("mentioned_at"),
perf=perf,
)
results.append(result)
# Execute all actions and collect results
results = []
for action in actions:
action_type = action.get("action")
if action_type == "update":
result = await _execute_update_action(
conn=conn,
memory_engine=memory_engine,
bank_id=bank_id,
memory_id=memory_id,
action=action,
observations=related_observations,
source_fact_tags=fact_tags, # Pass source fact's tags for security
source_occurred_start=memory.get("occurred_start"),
source_occurred_end=memory.get("occurred_end"),
source_mentioned_at=memory.get("mentioned_at"),
perf=perf,
)
results.append(result)
elif action_type == "create":
result = await _execute_create_action(
conn=conn,
memory_engine=memory_engine,
bank_id=bank_id,
memory_id=memory_id,
action=action,
source_fact_tags=fact_tags, # Pass source fact's tags for security
event_date=memory.get("event_date"),
occurred_start=memory.get("occurred_start"),
occurred_end=memory.get("occurred_end"),
mentioned_at=memory.get("mentioned_at"),
perf=perf,
)
results.append(result)
if not results:
# No valid actions executed
return {"action": "skipped", "reason": "no_valid_actions"}
if not results:
# No valid actions executed
return {"action": "skipped", "reason": "no_valid_actions"}
# Summarize results
created = sum(1 for r in results if r.get("action") == "created")
updated = sum(1 for r in results if r.get("action") == "updated")
merged = sum(1 for r in results if r.get("action") == "merged")
# Summarize results
created = sum(1 for r in results if r.get("action") == "created")
updated = sum(1 for r in results if r.get("action") == "updated")
merged = sum(1 for r in results if r.get("action") == "merged")
if len(results) == 1:
return results[0]
if len(results) == 1:
return results[0]
return {
"action": "multiple",
"created": created,
"updated": updated,
"merged": merged,
"total_actions": len(results),
}
finally:
if consolidation_span:
consolidation_span.end()
return {
"action": "multiple",
"created": created,
"updated": updated,
"merged": merged,
"total_actions": len(results),
}
async def _execute_update_action(
@@ -728,57 +666,34 @@ async def _find_related_observations(
bank_id: str,
query: str,
request_context: "RequestContext",
tags: list[str] | None = None,
) -> list[dict[str, Any]]:
"""
Find observations related to the given query using optimized recall.
SECURITY: Filters by tags using all_strict matching to prevent cross-tenant/cross-user
information leakage. Observations are only consolidated within the same tag scope.
IMPORTANT: We do NOT filter by tags here. Consolidation needs to see ALL
potentially related observations regardless of scope, so the LLM can
decide on tag routing (same scope update vs cross-scope create).
Uses max_tokens to naturally limit observations (no artificial count limit).
Includes source memories with dates for LLM context.
Args:
tags: Optional tags to filter observations (uses all_strict matching for security)
Returns:
List of related observations with their tags, source memories, and dates
"""
# Use recall to find related observations with token budget
# max_tokens naturally limits how many observations are returned
from ...config import get_config
from ...tracing import get_tracer, is_tracing_enabled
config = get_config()
# SECURITY: Use all_strict matching if tags provided to prevent cross-scope consolidation
tags_match = "all_strict" if tags else "any"
# Create span for recall operation within consolidation
tracer = get_tracer()
if is_tracing_enabled():
recall_span = tracer.start_span("hindsight.consolidation_recall")
recall_span.set_attribute("hindsight.bank_id", bank_id)
recall_span.set_attribute("hindsight.query", query[:100]) # Truncate for brevity
recall_span.set_attribute("hindsight.fact_type", "observation")
else:
recall_span = None
try:
recall_result = await memory_engine.recall_async(
bank_id=bank_id,
query=query,
max_tokens=config.consolidation_max_tokens, # Token budget for observations (configurable)
fact_type=["observation"], # Only retrieve observations
request_context=request_context,
tags=tags, # Filter by source memory's tags
tags_match=tags_match, # Use strict matching for security
_quiet=True, # Suppress logging
)
finally:
if recall_span:
recall_span.end()
recall_result = await memory_engine.recall_async(
bank_id=bank_id,
query=query,
max_tokens=config.consolidation_max_tokens, # Token budget for observations (configurable)
fact_type=["observation"], # Only retrieve observations
request_context=request_context,
_quiet=True, # Suppress logging
# NO tags parameter - intentionally get ALL observations
)
# If no observations returned, return empty list
if not recall_result.results:
@@ -2,7 +2,7 @@
CONSOLIDATION_SYSTEM_PROMPT = """You are a memory consolidation system. Your job is to convert facts into durable knowledge (observations) and merge with existing knowledge when appropriate.
You must output ONLY valid JSON with no markdown code blocks or additional text. However, the "text" field within each observation should use markdown formatting (headers, lists, bold, etc.) for clarity and readability.
You must output ONLY valid JSON with no markdown formatting, no code blocks, and no additional text.
## EXTRACT DURABLE KNOWLEDGE, NOT EPHEMERAL STATE
Facts often describe events or actions. Extract the DURABLE KNOWLEDGE implied by the fact, not the transient state.
@@ -32,16 +32,13 @@ BAD examples:
## MERGE RULES (when comparing to existing observations):
1. REDUNDANT: Same information worded differently → update existing
2. CONTRADICTION: Opposite information about same topic → update with temporal markers showing change
Example: "Alex used to love pizza but now hates it" OR "Alex's pizza preference changed from love to hate"
3. UPDATE: New state replacing old state → update showing the transition with "used to", "now", "changed from X to Y"
2. CONTRADICTION: Opposite information about same topic → update with history (e.g., "used to X, now Y")
3. UPDATE: New state replacing old state → update with history
## CRITICAL RULES:
- NEVER merge facts about DIFFERENT people
- NEVER merge unrelated topics (food preferences vs work vs hobbies)
- When merging contradictions, the "text" field MUST capture BOTH states with temporal markers:
* Use "used to X, now Y" OR "changed from X to Y" OR "X but now Y"
* DO NOT just state the new fact - you MUST show the change
- When merging contradictions, capture the CHANGE (before → after)
- Keep observations focused on ONE specific topic per person
- The "text" field MUST contain durable knowledge, not ephemeral state
- Do NOT include "tags" in output - tags are handled automatically"""
@@ -71,15 +68,10 @@ Instructions:
- New topic → CREATE new observation
- Purely ephemeral → return []
Output JSON array of actions (the "text" field should use markdown formatting for structure):
Output JSON array of actions:
[
{{"action": "update", "learning_id": "uuid-from-observations", "text": "## Updated Knowledge\n\n**Key point**: details here\n\n- Supporting detail 1\n- Supporting detail 2", "reason": "..."}},
{{"action": "create", "text": "## New Durable Knowledge\n\nDescription with **emphasis** and proper structure", "reason": "..."}}
{{"action": "update", "learning_id": "uuid-from-observations", "text": "updated knowledge", "reason": "..."}},
{{"action": "create", "text": "new durable knowledge", "reason": "..."}}
]
Return [] if fact contains no durable knowledge.
IMPORTANT: Format the "text" field with markdown for better readability:
- Use headers, lists, bold/italic, tables where appropriate
- CRITICAL: Add blank lines before and after block elements (tables, code blocks, lists)
- Ensure proper spacing for markdown to render correctly"""
Return [] if fact contains no durable knowledge."""
@@ -9,7 +9,6 @@ Configuration via environment variables - see hindsight_api.config for all env v
import asyncio
import logging
import os
import warnings
from abc import ABC, abstractmethod
from concurrent.futures import ThreadPoolExecutor
@@ -24,18 +23,20 @@ from ..config import (
DEFAULT_RERANKER_LOCAL_FORCE_CPU,
DEFAULT_RERANKER_LOCAL_MAX_CONCURRENT,
DEFAULT_RERANKER_LOCAL_MODEL,
DEFAULT_RERANKER_LOCAL_TRUST_REMOTE_CODE,
DEFAULT_RERANKER_PROVIDER,
DEFAULT_RERANKER_TEI_BATCH_SIZE,
DEFAULT_RERANKER_TEI_MAX_CONCURRENT,
ENV_RERANKER_COHERE_API_KEY,
ENV_COHERE_API_KEY,
ENV_LITELLM_API_BASE,
ENV_LITELLM_API_KEY,
ENV_RERANKER_COHERE_BASE_URL,
ENV_RERANKER_COHERE_MODEL,
ENV_RERANKER_FLASHRANK_CACHE_DIR,
ENV_RERANKER_FLASHRANK_MODEL,
ENV_RERANKER_LITELLM_MODEL,
ENV_RERANKER_LOCAL_FORCE_CPU,
ENV_RERANKER_LOCAL_MAX_CONCURRENT,
ENV_RERANKER_LOCAL_MODEL,
ENV_RERANKER_LOCAL_TRUST_REMOTE_CODE,
ENV_RERANKER_PROVIDER,
ENV_RERANKER_TEI_BATCH_SIZE,
ENV_RERANKER_TEI_MAX_CONCURRENT,
@@ -100,13 +101,7 @@ class LocalSTCrossEncoder(CrossEncoderModel):
_executor: ThreadPoolExecutor | None = None
_max_concurrent: int = 4 # Limit concurrent CPU-bound reranking calls
def __init__(
self,
model_name: str | None = None,
max_concurrent: int = 4,
force_cpu: bool = False,
trust_remote_code: bool = False,
):
def __init__(self, model_name: str | None = None, max_concurrent: int = 4, force_cpu: bool = False):
"""
Initialize local SentenceTransformers cross-encoder.
@@ -117,13 +112,9 @@ class LocalSTCrossEncoder(CrossEncoderModel):
Higher values may cause CPU thrashing under load.
force_cpu: Force CPU mode (avoids MPS/XPC issues on macOS in daemon mode).
Default: False
trust_remote_code: Allow loading models with custom code (security risk).
Required for some models like jina-reranker-v2-base-multilingual.
Default: False (disabled for security)
"""
self.model_name = model_name or DEFAULT_RERANKER_LOCAL_MODEL
self.force_cpu = force_cpu
self.trust_remote_code = trust_remote_code
self._model = None
LocalSTCrossEncoder._max_concurrent = max_concurrent
@@ -171,29 +162,11 @@ class LocalSTCrossEncoder(CrossEncoderModel):
except Exception as e:
logger.warning(f"Failed to detect GPU/MPS, falling back to CPU: {e}")
# Suppress verbose transformers warnings during model loading
# This suppresses the "UNEXPECTED" warnings from CrossEncoder which are harmless
# but look alarming to users (e.g., "embeddings.position_ids | UNEXPECTED")
with warnings.catch_warnings():
warnings.filterwarnings("ignore", category=UserWarning)
warnings.filterwarnings("ignore", message=".*was not found in model state dict.*")
warnings.filterwarnings("ignore", message=".*UNEXPECTED.*")
# Also suppress transformers library logging temporarily
transformers_logger = logging.getLogger("transformers")
original_level = transformers_logger.level
transformers_logger.setLevel(logging.ERROR)
try:
self._model = CrossEncoder(
self.model_name,
device=device,
model_kwargs={"low_cpu_mem_usage": False},
trust_remote_code=self.trust_remote_code,
)
finally:
# Restore original logging level
transformers_logger.setLevel(original_level)
self._model = CrossEncoder(
self.model_name,
device=device,
model_kwargs={"low_cpu_mem_usage": False},
)
# Initialize shared executor (limited workers naturally limits concurrency)
if LocalSTCrossEncoder._executor is None:
@@ -856,27 +829,23 @@ def create_cross_encoder_from_env() -> CrossEncoderModel:
model_name=config.reranker_local_model,
max_concurrent=config.reranker_local_max_concurrent,
force_cpu=config.reranker_local_force_cpu,
trust_remote_code=config.reranker_local_trust_remote_code,
)
elif provider == "cohere":
api_key = config.reranker_cohere_api_key
api_key = os.environ.get(ENV_COHERE_API_KEY)
if not api_key:
raise ValueError(f"{ENV_RERANKER_COHERE_API_KEY} is required when {ENV_RERANKER_PROVIDER} is 'cohere'")
return CohereCrossEncoder(
api_key=api_key,
model=config.reranker_cohere_model,
base_url=config.reranker_cohere_base_url,
)
raise ValueError(f"{ENV_COHERE_API_KEY} is required when {ENV_RERANKER_PROVIDER} is 'cohere'")
model = os.environ.get(ENV_RERANKER_COHERE_MODEL, DEFAULT_RERANKER_COHERE_MODEL)
base_url = os.environ.get(ENV_RERANKER_COHERE_BASE_URL) or None
return CohereCrossEncoder(api_key=api_key, model=model, base_url=base_url)
elif provider == "flashrank":
model = os.environ.get(ENV_RERANKER_FLASHRANK_MODEL, DEFAULT_RERANKER_FLASHRANK_MODEL)
cache_dir = os.environ.get(ENV_RERANKER_FLASHRANK_CACHE_DIR, DEFAULT_RERANKER_FLASHRANK_CACHE_DIR)
return FlashRankCrossEncoder(model_name=model, cache_dir=cache_dir)
elif provider == "litellm":
return LiteLLMCrossEncoder(
api_base=config.reranker_litellm_api_base,
api_key=config.reranker_litellm_api_key,
model=config.reranker_litellm_model,
)
api_base = os.environ.get(ENV_LITELLM_API_BASE, DEFAULT_LITELLM_API_BASE)
api_key = os.environ.get(ENV_LITELLM_API_KEY)
model = os.environ.get(ENV_RERANKER_LITELLM_MODEL, DEFAULT_RERANKER_LITELLM_MODEL)
return LiteLLMCrossEncoder(api_base=api_base, api_key=api_key, model=model)
elif provider == "rrf":
return RRFPassthroughCrossEncoder()
else:
@@ -11,7 +11,6 @@ Configuration via environment variables - see hindsight_api.config for all env v
import logging
import os
import warnings
from abc import ABC, abstractmethod
import httpx
@@ -21,19 +20,22 @@ from ..config import (
DEFAULT_EMBEDDINGS_LITELLM_MODEL,
DEFAULT_EMBEDDINGS_LOCAL_FORCE_CPU,
DEFAULT_EMBEDDINGS_LOCAL_MODEL,
DEFAULT_EMBEDDINGS_LOCAL_TRUST_REMOTE_CODE,
DEFAULT_EMBEDDINGS_OPENAI_MODEL,
DEFAULT_EMBEDDINGS_PROVIDER,
DEFAULT_LITELLM_API_BASE,
ENV_EMBEDDINGS_COHERE_API_KEY,
ENV_COHERE_API_KEY,
ENV_EMBEDDINGS_COHERE_BASE_URL,
ENV_EMBEDDINGS_COHERE_MODEL,
ENV_EMBEDDINGS_LITELLM_MODEL,
ENV_EMBEDDINGS_LOCAL_FORCE_CPU,
ENV_EMBEDDINGS_LOCAL_MODEL,
ENV_EMBEDDINGS_LOCAL_TRUST_REMOTE_CODE,
ENV_EMBEDDINGS_OPENAI_API_KEY,
ENV_EMBEDDINGS_OPENAI_BASE_URL,
ENV_EMBEDDINGS_OPENAI_MODEL,
ENV_EMBEDDINGS_PROVIDER,
ENV_EMBEDDINGS_TEI_URL,
ENV_LITELLM_API_BASE,
ENV_LITELLM_API_KEY,
ENV_LLM_API_KEY,
)
@@ -92,7 +94,7 @@ class LocalSTEmbeddings(Embeddings):
The embedding dimension is auto-detected from the model.
"""
def __init__(self, model_name: str | None = None, force_cpu: bool = False, trust_remote_code: bool = False):
def __init__(self, model_name: str | None = None, force_cpu: bool = False):
"""
Initialize local SentenceTransformers embeddings.
@@ -101,13 +103,9 @@ class LocalSTEmbeddings(Embeddings):
Default: BAAI/bge-small-en-v1.5
force_cpu: Force CPU mode (avoids MPS/XPC issues on macOS in daemon mode).
Default: False
trust_remote_code: Allow loading models with custom code (security risk).
Required for some models with custom architectures.
Default: False (disabled for security)
"""
self.model_name = model_name or DEFAULT_EMBEDDINGS_LOCAL_MODEL
self.force_cpu = force_cpu
self.trust_remote_code = trust_remote_code
self._model = None
self._dimension: int | None = None
@@ -159,29 +157,11 @@ class LocalSTEmbeddings(Embeddings):
except Exception as e:
logger.warning(f"Failed to detect GPU/MPS, falling back to CPU: {e}")
# Suppress verbose transformers warnings during model loading
# This suppresses the "UNEXPECTED" warnings from BertModel which are harmless
# but look alarming to users (e.g., "embeddings.position_ids | UNEXPECTED")
with warnings.catch_warnings():
warnings.filterwarnings("ignore", category=UserWarning)
warnings.filterwarnings("ignore", message=".*was not found in model state dict.*")
warnings.filterwarnings("ignore", message=".*UNEXPECTED.*")
# Also suppress transformers library logging temporarily
transformers_logger = logging.getLogger("transformers")
original_level = transformers_logger.level
transformers_logger.setLevel(logging.ERROR)
try:
self._model = SentenceTransformer(
self.model_name,
device=device,
model_kwargs={"low_cpu_mem_usage": False},
trust_remote_code=self.trust_remote_code,
)
finally:
# Restore original logging level
transformers_logger.setLevel(original_level)
self._model = SentenceTransformer(
self.model_name,
device=device,
model_kwargs={"low_cpu_mem_usage": False},
)
self._dimension = self._model.get_sentence_embedding_dimension()
logger.info(f"Embeddings: local provider initialized (dim: {self._dimension})")
@@ -743,7 +723,6 @@ def create_embeddings_from_env() -> Embeddings:
return LocalSTEmbeddings(
model_name=config.embeddings_local_model,
force_cpu=config.embeddings_local_force_cpu,
trust_remote_code=config.embeddings_local_trust_remote_code,
)
elif provider == "openai":
# Use dedicated embeddings API key, or fall back to LLM API key
@@ -757,20 +736,17 @@ def create_embeddings_from_env() -> Embeddings:
base_url = os.environ.get(ENV_EMBEDDINGS_OPENAI_BASE_URL) or None
return OpenAIEmbeddings(api_key=api_key, model=model, base_url=base_url)
elif provider == "cohere":
api_key = config.embeddings_cohere_api_key
api_key = os.environ.get(ENV_COHERE_API_KEY)
if not api_key:
raise ValueError(f"{ENV_EMBEDDINGS_COHERE_API_KEY} is required when {ENV_EMBEDDINGS_PROVIDER} is 'cohere'")
return CohereEmbeddings(
api_key=api_key,
model=config.embeddings_cohere_model,
base_url=config.embeddings_cohere_base_url,
)
raise ValueError(f"{ENV_COHERE_API_KEY} is required when {ENV_EMBEDDINGS_PROVIDER} is 'cohere'")
model = os.environ.get(ENV_EMBEDDINGS_COHERE_MODEL, DEFAULT_EMBEDDINGS_COHERE_MODEL)
base_url = os.environ.get(ENV_EMBEDDINGS_COHERE_BASE_URL) or None
return CohereEmbeddings(api_key=api_key, model=model, base_url=base_url)
elif provider == "litellm":
return LiteLLMEmbeddings(
api_base=config.embeddings_litellm_api_base,
api_key=config.embeddings_litellm_api_key,
model=config.embeddings_litellm_model,
)
api_base = os.environ.get(ENV_LITELLM_API_BASE, DEFAULT_LITELLM_API_BASE)
api_key = os.environ.get(ENV_LITELLM_API_KEY)
model = os.environ.get(ENV_EMBEDDINGS_LITELLM_MODEL, DEFAULT_EMBEDDINGS_LITELLM_MODEL)
return LiteLLMEmbeddings(api_base=api_base, api_key=api_key, model=model)
else:
raise ValueError(
f"Unknown embeddings provider: {provider}. Supported: 'local', 'tei', 'openai', 'cohere', 'litellm'"
@@ -1,146 +0,0 @@
"""
Abstract interface for LLM providers.
This module defines the interface that all LLM providers must implement,
enabling support for multiple LLM backends (OpenAI, Anthropic, Gemini, Codex, etc.)
"""
from abc import ABC, abstractmethod
from typing import Any
from .response_models import LLMToolCallResult, TokenUsage
class LLMInterface(ABC):
"""
Abstract interface for LLM providers.
All LLM provider implementations must inherit from this class and implement
the required methods.
"""
def __init__(
self,
provider: str,
api_key: str,
base_url: str,
model: str,
reasoning_effort: str = "low",
**kwargs: Any,
):
"""
Initialize LLM provider.
Args:
provider: Provider name (e.g., "openai", "codex", "anthropic", "gemini").
api_key: API key or authentication token.
base_url: Base URL for the API.
model: Model name.
reasoning_effort: Reasoning effort level for supported providers.
**kwargs: Additional provider-specific parameters.
"""
self.provider = provider.lower()
self.api_key = api_key
self.base_url = base_url
self.model = model
self.reasoning_effort = reasoning_effort
@abstractmethod
async def verify_connection(self) -> None:
"""
Verify that the LLM provider is configured correctly by making a simple test call.
Raises:
RuntimeError: If the connection test fails.
"""
pass
@abstractmethod
async def call(
self,
messages: list[dict[str, str]],
response_format: Any | None = None,
max_completion_tokens: int | None = None,
temperature: float | None = None,
scope: str = "memory",
max_retries: int = 10,
initial_backoff: float = 1.0,
max_backoff: float = 60.0,
skip_validation: bool = False,
strict_schema: bool = False,
return_usage: bool = False,
) -> Any:
"""
Make an LLM API call with retry logic.
Args:
messages: List of message dicts with 'role' and 'content'.
response_format: Optional Pydantic model for structured output.
max_completion_tokens: Maximum tokens in response.
temperature: Sampling temperature (0.0-2.0).
scope: Scope identifier for tracking.
max_retries: Maximum retry attempts.
initial_backoff: Initial backoff time in seconds.
max_backoff: Maximum backoff time in seconds.
skip_validation: Return raw JSON without Pydantic validation.
strict_schema: Use strict JSON schema enforcement (OpenAI only).
return_usage: If True, return tuple (result, TokenUsage) instead of just result.
Returns:
If return_usage=False: Parsed response if response_format is provided, otherwise text content.
If return_usage=True: Tuple of (result, TokenUsage) with token counts.
Raises:
OutputTooLongError: If output exceeds token limits.
Exception: Re-raises API errors after retries exhausted.
"""
pass
@abstractmethod
async def call_with_tools(
self,
messages: list[dict[str, Any]],
tools: list[dict[str, Any]],
max_completion_tokens: int | None = None,
temperature: float | None = None,
scope: str = "tools",
max_retries: int = 5,
initial_backoff: float = 1.0,
max_backoff: float = 30.0,
tool_choice: str | dict[str, Any] = "auto",
) -> LLMToolCallResult:
"""
Make an LLM API call with tool/function calling support.
Args:
messages: List of message dicts. Can include tool results with role='tool'.
tools: List of tool definitions in OpenAI format.
max_completion_tokens: Maximum tokens in response.
temperature: Sampling temperature (0.0-2.0).
scope: Scope identifier for tracking.
max_retries: Maximum retry attempts.
initial_backoff: Initial backoff time in seconds.
max_backoff: Maximum backoff time in seconds.
tool_choice: How to choose tools - "auto", "none", "required", or specific function.
Returns:
LLMToolCallResult with content and/or tool_calls.
"""
pass
@abstractmethod
async def cleanup(self) -> None:
"""Clean up resources (close connections, etc.)."""
pass
class OutputTooLongError(Exception):
"""
Bridge exception raised when LLM output exceeds token limits.
This wraps provider-specific errors (e.g., OpenAI's LengthFinishReasonError)
to allow callers to handle output length issues without depending on
provider-specific implementations.
"""
pass
File diff suppressed because it is too large Load Diff
File diff suppressed because it is too large Load Diff
@@ -1,14 +0,0 @@
"""
LLM provider implementations.
This package contains concrete implementations of the LLMInterface for various providers.
"""
from .anthropic_llm import AnthropicLLM
from .claude_code_llm import ClaudeCodeLLM
from .codex_llm import CodexLLM
from .gemini_llm import GeminiLLM
from .mock_llm import MockLLM
from .openai_compatible_llm import OpenAICompatibleLLM
__all__ = ["AnthropicLLM", "ClaudeCodeLLM", "CodexLLM", "GeminiLLM", "MockLLM", "OpenAICompatibleLLM"]
@@ -1,477 +0,0 @@
"""
Anthropic LLM provider using the Anthropic Python SDK.
This provider enables using Claude models from Anthropic with support for:
- Structured JSON output
- Tool/function calling with proper format conversion
- Extended thinking mode
- Retry logic with exponential backoff
"""
import asyncio
import json
import logging
import time
from typing import Any
from hindsight_api.engine.llm_interface import LLMInterface, OutputTooLongError
from hindsight_api.engine.response_models import LLMToolCall, LLMToolCallResult, TokenUsage
from hindsight_api.metrics import get_metrics_collector
logger = logging.getLogger(__name__)
class AnthropicLLM(LLMInterface):
"""
LLM provider using Anthropic's Claude models.
Supports structured output, tool calling, and extended thinking mode.
Handles format conversion between OpenAI-style messages and Anthropic's format.
"""
def __init__(
self,
provider: str,
api_key: str,
base_url: str,
model: str,
reasoning_effort: str = "low",
timeout: float = 300.0,
**kwargs: Any,
):
"""
Initialize Anthropic LLM provider.
Args:
provider: Provider name (should be "anthropic").
api_key: Anthropic API key.
base_url: Base URL for the API (optional, uses Anthropic default if empty).
model: Model name (e.g., "claude-sonnet-4-20250514").
reasoning_effort: Reasoning effort level (not used by Anthropic).
timeout: Request timeout in seconds.
**kwargs: Additional provider-specific parameters.
"""
super().__init__(provider, api_key, base_url, model, reasoning_effort, **kwargs)
if not self.api_key:
raise ValueError("API key is required for Anthropic provider")
# Import and initialize Anthropic client
try:
from anthropic import AsyncAnthropic
client_kwargs: dict[str, Any] = {"api_key": self.api_key}
if self.base_url:
client_kwargs["base_url"] = self.base_url
if timeout:
client_kwargs["timeout"] = timeout
self._client = AsyncAnthropic(**client_kwargs)
logger.info(f"Anthropic client initialized for model: {self.model}")
except ImportError as e:
raise RuntimeError("Anthropic SDK not installed. Run: uv add anthropic or pip install anthropic") from e
async def verify_connection(self) -> None:
"""
Verify that the Anthropic provider is configured correctly by making a simple test call.
Raises:
RuntimeError: If the connection test fails.
"""
try:
test_messages = [{"role": "user", "content": "test"}]
await self.call(
messages=test_messages,
max_completion_tokens=10,
temperature=0.0,
scope="verification",
max_retries=0,
)
logger.info("Anthropic connection verified successfully")
except Exception as e:
logger.error(f"Anthropic connection verification failed: {e}")
raise RuntimeError(f"Failed to verify Anthropic connection: {e}") from e
async def call(
self,
messages: list[dict[str, str]],
response_format: Any | None = None,
max_completion_tokens: int | None = None,
temperature: float | None = None,
scope: str = "memory",
max_retries: int = 10,
initial_backoff: float = 1.0,
max_backoff: float = 60.0,
skip_validation: bool = False,
strict_schema: bool = False,
return_usage: bool = False,
) -> Any:
"""
Make an LLM API call with retry logic.
Args:
messages: List of message dicts with 'role' and 'content'.
response_format: Optional Pydantic model for structured output.
max_completion_tokens: Maximum tokens in response.
temperature: Sampling temperature (0.0-2.0).
scope: Scope identifier for tracking.
max_retries: Maximum retry attempts.
initial_backoff: Initial backoff time in seconds.
max_backoff: Maximum backoff time in seconds.
skip_validation: Return raw JSON without Pydantic validation.
strict_schema: Use strict JSON schema enforcement (not supported by Anthropic).
return_usage: If True, return tuple (result, TokenUsage) instead of just result.
Returns:
If return_usage=False: Parsed response if response_format is provided, otherwise text content.
If return_usage=True: Tuple of (result, TokenUsage) with token counts.
Raises:
OutputTooLongError: If output exceeds token limits.
Exception: Re-raises API errors after retries exhausted.
"""
from anthropic import APIConnectionError, APIStatusError, RateLimitError
start_time = time.time()
# Convert OpenAI-style messages to Anthropic format
system_prompt = None
anthropic_messages = []
for msg in messages:
role = msg.get("role", "user")
content = msg.get("content", "")
if role == "system":
if system_prompt:
system_prompt += "\n\n" + content
else:
system_prompt = content
else:
anthropic_messages.append({"role": role, "content": content})
# Add JSON schema instruction if response_format is provided
if response_format is not None and hasattr(response_format, "model_json_schema"):
schema = response_format.model_json_schema()
schema_msg = f"\n\nYou must respond with valid JSON matching this schema:\n{json.dumps(schema, indent=2)}"
if system_prompt:
system_prompt += schema_msg
else:
system_prompt = schema_msg
# Prepare parameters
call_params: dict[str, Any] = {
"model": self.model,
"messages": anthropic_messages,
"max_tokens": max_completion_tokens if max_completion_tokens is not None else 4096,
}
if system_prompt:
call_params["system"] = system_prompt
if temperature is not None:
call_params["temperature"] = temperature
last_exception = None
for attempt in range(max_retries + 1):
try:
response = await self._client.messages.create(**call_params)
# Anthropic response content is a list of blocks
content = ""
for block in response.content:
if block.type == "text":
content += block.text
if response_format is not None:
# Models may wrap JSON in markdown code blocks
clean_content = content
if "```json" in content:
clean_content = content.split("```json")[1].split("```")[0].strip()
elif "```" in content:
clean_content = content.split("```")[1].split("```")[0].strip()
try:
json_data = json.loads(clean_content)
except json.JSONDecodeError:
# Fallback to parsing raw content if markdown stripping failed
json_data = json.loads(content)
if skip_validation:
result = json_data
else:
result = response_format.model_validate(json_data)
else:
result = content
# Record metrics and log slow calls
duration = time.time() - start_time
input_tokens = response.usage.input_tokens or 0 if response.usage else 0
output_tokens = response.usage.output_tokens or 0 if response.usage else 0
total_tokens = input_tokens + output_tokens
# Record LLM metrics
metrics = get_metrics_collector()
metrics.record_llm_call(
provider=self.provider,
model=self.model,
scope=scope,
duration=duration,
input_tokens=input_tokens,
output_tokens=output_tokens,
success=True,
)
# Record trace span
from hindsight_api.tracing import _serialize_for_span, get_span_recorder
finish_reason = response.stop_reason if hasattr(response, "stop_reason") else None
span_recorder = get_span_recorder()
span_recorder.record_llm_call(
provider=self.provider,
model=self.model,
scope=scope,
messages=messages,
response_content=_serialize_for_span(result),
input_tokens=input_tokens,
output_tokens=output_tokens,
duration=duration,
finish_reason=finish_reason,
error=None,
)
# Log slow calls
if duration > 10.0:
logger.info(
f"slow llm call: scope={scope}, model={self.provider}/{self.model}, "
f"input_tokens={input_tokens}, output_tokens={output_tokens}, "
f"time={duration:.3f}s"
)
if return_usage:
token_usage = TokenUsage(
input_tokens=input_tokens,
output_tokens=output_tokens,
total_tokens=total_tokens,
)
return result, token_usage
return result
except json.JSONDecodeError as e:
last_exception = e
if attempt < max_retries:
logger.warning("Anthropic returned invalid JSON, retrying...")
backoff = min(initial_backoff * (2**attempt), max_backoff)
await asyncio.sleep(backoff)
continue
else:
logger.error(f"Anthropic returned invalid JSON after {max_retries + 1} attempts")
raise
except (APIConnectionError, RateLimitError, APIStatusError) as e:
# Fast fail on 401/403
if isinstance(e, APIStatusError) and e.status_code in (401, 403):
logger.error(f"Anthropic auth error (HTTP {e.status_code}), not retrying: {str(e)}")
raise
last_exception = e
if attempt < max_retries:
# Check if it's a rate limit or server error
should_retry = isinstance(e, (APIConnectionError, RateLimitError)) or (
isinstance(e, APIStatusError) and e.status_code >= 500
)
if should_retry:
backoff = min(initial_backoff * (2**attempt), max_backoff)
jitter = backoff * 0.2 * (2 * (time.time() % 1) - 1)
await asyncio.sleep(backoff + jitter)
continue
logger.error(f"Anthropic API error after {max_retries + 1} attempts: {str(e)}")
raise
except Exception as e:
logger.error(f"Unexpected error during Anthropic call: {type(e).__name__}: {str(e)}")
raise
if last_exception:
raise last_exception
raise RuntimeError("Anthropic call failed after all retries")
async def call_with_tools(
self,
messages: list[dict[str, Any]],
tools: list[dict[str, Any]],
max_completion_tokens: int | None = None,
temperature: float | None = None,
scope: str = "tools",
max_retries: int = 5,
initial_backoff: float = 1.0,
max_backoff: float = 30.0,
tool_choice: str | dict[str, Any] = "auto",
) -> LLMToolCallResult:
"""
Make an LLM API call with tool/function calling support.
Args:
messages: List of message dicts. Can include tool results with role='tool'.
tools: List of tool definitions in OpenAI format.
max_completion_tokens: Maximum tokens in response.
temperature: Sampling temperature (0.0-2.0).
scope: Scope identifier for tracking.
max_retries: Maximum retry attempts.
initial_backoff: Initial backoff time in seconds.
max_backoff: Maximum backoff time in seconds.
tool_choice: How to choose tools - "auto", "none", "required", or specific function.
Returns:
LLMToolCallResult with content and/or tool_calls.
"""
from anthropic import APIConnectionError, APIStatusError
start_time = time.time()
# Convert OpenAI tool format to Anthropic format
anthropic_tools = []
for tool in tools:
func = tool.get("function", {})
anthropic_tools.append(
{
"name": func.get("name", ""),
"description": func.get("description", ""),
"input_schema": func.get("parameters", {"type": "object", "properties": {}}),
}
)
# Convert messages - handle tool results
system_prompt = None
anthropic_messages = []
for msg in messages:
role = msg.get("role", "user")
content = msg.get("content", "")
if role == "system":
system_prompt = (system_prompt + "\n\n" + content) if system_prompt else content
elif role == "tool":
# Anthropic uses tool_result blocks
anthropic_messages.append(
{
"role": "user",
"content": [
{"type": "tool_result", "tool_use_id": msg.get("tool_call_id", ""), "content": content}
],
}
)
elif role == "assistant" and msg.get("tool_calls"):
# Convert assistant tool calls
tool_use_blocks = []
for tc in msg["tool_calls"]:
tool_use_blocks.append(
{
"type": "tool_use",
"id": tc.get("id", ""),
"name": tc.get("function", {}).get("name", ""),
"input": json.loads(tc.get("function", {}).get("arguments", "{}")),
}
)
anthropic_messages.append({"role": "assistant", "content": tool_use_blocks})
else:
anthropic_messages.append({"role": role, "content": content})
call_params: dict[str, Any] = {
"model": self.model,
"messages": anthropic_messages,
"tools": anthropic_tools,
"max_tokens": max_completion_tokens or 4096,
}
if system_prompt:
call_params["system"] = system_prompt
if temperature is not None:
call_params["temperature"] = temperature
last_exception = None
for attempt in range(max_retries + 1):
try:
response = await self._client.messages.create(**call_params)
# Extract content and tool calls
content_parts = []
tool_calls: list[LLMToolCall] = []
for block in response.content:
if block.type == "text":
content_parts.append(block.text)
elif block.type == "tool_use":
tool_calls.append(LLMToolCall(id=block.id, name=block.name, arguments=block.input or {}))
content = "".join(content_parts) if content_parts else None
finish_reason = "tool_calls" if tool_calls else "stop"
# Extract token usage
input_tokens = response.usage.input_tokens or 0
output_tokens = response.usage.output_tokens or 0
# Record metrics
metrics = get_metrics_collector()
duration = time.time() - start_time
metrics.record_llm_call(
provider=self.provider,
model=self.model,
scope=scope,
duration=duration,
input_tokens=input_tokens,
output_tokens=output_tokens,
success=True,
)
# Record OpenTelemetry span
from hindsight_api.tracing import get_span_recorder
span_recorder = get_span_recorder()
# Convert LLMToolCall objects to dicts for span recording
tool_calls_dict = (
[{"id": tc.id, "name": tc.name, "arguments": tc.arguments} for tc in tool_calls]
if tool_calls
else None
)
span_recorder.record_llm_call(
provider=self.provider,
model=self.model,
scope=scope,
messages=messages,
response_content=content,
input_tokens=input_tokens,
output_tokens=output_tokens,
duration=duration,
finish_reason=finish_reason,
error=None,
tool_calls=tool_calls_dict,
)
return LLMToolCallResult(
content=content,
tool_calls=tool_calls,
finish_reason=finish_reason,
input_tokens=input_tokens,
output_tokens=output_tokens,
)
except (APIConnectionError, APIStatusError) as e:
if isinstance(e, APIStatusError) and e.status_code in (401, 403):
raise
last_exception = e
if attempt < max_retries:
await asyncio.sleep(min(initial_backoff * (2**attempt), max_backoff))
continue
raise
if last_exception:
raise last_exception
raise RuntimeError("Anthropic tool call failed")
async def cleanup(self) -> None:
"""Clean up resources (close Anthropic client connections)."""
if hasattr(self, "_client") and self._client:
await self._client.close()
@@ -1,510 +0,0 @@
"""
Claude Code LLM provider using Claude Agent SDK.
This provider enables using Claude Pro/Max subscriptions for API calls
via the Claude CLI authentication. It uses the Claude Agent SDK which
automatically handles authentication via `claude auth login` credentials.
"""
import asyncio
import json
import logging
import time
from typing import Any
from hindsight_api.engine.llm_interface import LLMInterface, OutputTooLongError
from hindsight_api.engine.response_models import LLMToolCall, LLMToolCallResult, TokenUsage
from hindsight_api.metrics import get_metrics_collector
logger = logging.getLogger(__name__)
class ClaudeCodeLLM(LLMInterface):
"""
LLM provider using Claude Code authentication.
Authenticates using Claude Pro/Max credentials via `claude auth login`
and makes API calls through the Claude Agent SDK.
"""
def __init__(
self,
provider: str,
api_key: str, # Will be ignored, uses CLI auth
base_url: str,
model: str,
reasoning_effort: str = "low",
**kwargs: Any,
):
"""Initialize Claude Code LLM provider."""
super().__init__(provider, api_key, base_url, model, reasoning_effort, **kwargs)
# Verify Claude Agent SDK is available
try:
self._verify_claude_code_available()
logger.info("Claude Code: Using Claude Agent SDK (authentication via claude auth login)")
except Exception as e:
raise RuntimeError(
f"Failed to initialize Claude Code provider: {e}\n\n"
"To set up Claude Code authentication:\n"
"1. Install Claude Code CLI: npm install -g @anthropics/claude-code\n"
"2. Login with your Pro/Max plan: claude auth login\n"
"3. Verify authentication: claude --version\n\n"
"Or use a different provider (anthropic, openai, gemini) with API keys."
) from e
# Metrics collector is imported at module level
def _verify_claude_code_available(self) -> None:
"""
Verify that Claude Agent SDK can be imported and is properly configured.
Raises:
ImportError: If Claude Agent SDK is not installed.
RuntimeError: If Claude Code is not authenticated.
"""
try:
# Import Claude Agent SDK
# Reduce Claude Agent SDK logging verbosity
import logging as sdk_logging
from claude_agent_sdk import query # noqa: F401
sdk_logging.getLogger("claude_agent_sdk").setLevel(sdk_logging.WARNING)
sdk_logging.getLogger("claude_agent_sdk._internal").setLevel(sdk_logging.WARNING)
logger.debug("Claude Agent SDK imported successfully")
except ImportError as e:
raise ImportError(
"Claude Agent SDK not installed. Run: uv add claude-agent-sdk or pip install claude-agent-sdk"
) from e
# SDK will automatically check for authentication when first used
# No need to verify here - let it fail gracefully on first call with helpful error
async def verify_connection(self) -> None:
"""
Verify that the Claude Code provider is configured correctly by making a simple test call.
Raises:
RuntimeError: If the connection test fails.
"""
try:
test_messages = [{"role": "user", "content": "test"}]
await self.call(
messages=test_messages,
max_completion_tokens=10,
temperature=0.0,
scope="verification",
max_retries=0,
)
logger.info("Claude Code connection verified successfully")
except Exception as e:
logger.error(f"Claude Code connection verification failed: {e}")
raise RuntimeError(f"Failed to verify Claude Code connection: {e}") from e
async def call(
self,
messages: list[dict[str, str]],
response_format: Any | None = None,
max_completion_tokens: int | None = None,
temperature: float | None = None,
scope: str = "memory",
max_retries: int = 10,
initial_backoff: float = 1.0,
max_backoff: float = 60.0,
skip_validation: bool = False,
strict_schema: bool = False,
return_usage: bool = False,
) -> Any:
"""
Make an LLM API call with retry logic.
Args:
messages: List of message dicts with 'role' and 'content'.
response_format: Optional Pydantic model for structured output.
max_completion_tokens: Maximum tokens in response (ignored by Claude Agent SDK).
temperature: Sampling temperature (ignored by Claude Agent SDK).
scope: Scope identifier for tracking.
max_retries: Maximum retry attempts.
initial_backoff: Initial backoff time in seconds.
max_backoff: Maximum backoff time in seconds.
skip_validation: Return raw JSON without Pydantic validation.
strict_schema: Use strict JSON schema enforcement (not supported).
return_usage: If True, return tuple (result, TokenUsage) instead of just result.
Returns:
If return_usage=False: Parsed response if response_format is provided, otherwise text content.
If return_usage=True: Tuple of (result, TokenUsage) with estimated token counts.
Raises:
OutputTooLongError: If output exceeds token limits (not supported by Claude Agent SDK).
Exception: Re-raises API errors after retries exhausted.
"""
from claude_agent_sdk import AssistantMessage, ClaudeAgentOptions, TextBlock, query
start_time = time.time()
# Build system prompt
system_prompt = ""
user_content = ""
for msg in messages:
role = msg.get("role", "user")
content = msg.get("content", "")
if role == "system":
system_prompt += ("\n\n" + content) if system_prompt else content
elif role == "user":
user_content += ("\n\n" + content) if user_content else content
elif role == "assistant":
# Claude Agent SDK doesn't support multi-turn easily in query()
# For now, prepend assistant messages to user content
user_content += f"\n\n[Previous assistant response: {content}]"
# Add JSON schema instruction if response_format is provided
if response_format is not None and hasattr(response_format, "model_json_schema"):
schema = response_format.model_json_schema()
schema_instruction = (
f"\n\nYou must respond with valid JSON matching this schema:\n{json.dumps(schema, indent=2)}\n\n"
"Respond with ONLY the JSON, no markdown formatting."
)
user_content += schema_instruction
# Configure SDK options
options = ClaudeAgentOptions(
system_prompt=system_prompt if system_prompt else None,
max_turns=1, # Single-turn for API-style interactions
allowed_tools=[], # Disable tools for standard LLM calls
)
# Call Claude Agent SDK
last_exception = None
for attempt in range(max_retries + 1):
try:
# Collect streaming response
full_text = ""
async for message in query(prompt=user_content, options=options):
if isinstance(message, AssistantMessage):
for block in message.content:
if isinstance(block, TextBlock):
full_text += block.text
# Handle structured output
if response_format is not None:
# Models may wrap JSON in markdown
clean_text = full_text
if "```json" in full_text:
clean_text = full_text.split("```json")[1].split("```")[0].strip()
elif "```" in full_text:
clean_text = full_text.split("```")[1].split("```")[0].strip()
try:
json_data = json.loads(clean_text)
except json.JSONDecodeError as e:
logger.warning(f"Claude Code JSON parse error (attempt {attempt + 1}/{max_retries + 1}): {e}")
if attempt < max_retries:
backoff = min(initial_backoff * (2**attempt), max_backoff)
await asyncio.sleep(backoff)
last_exception = e
continue
raise
if skip_validation:
result = json_data
else:
result = response_format.model_validate(json_data)
else:
result = full_text
# Record metrics
duration = time.time() - start_time
metrics = get_metrics_collector()
# Estimate token usage (Claude Agent SDK doesn't report exact counts)
# Use character count / 4 as rough estimate (1 token ≈ 4 characters)
estimated_input = sum(len(m.get("content", "")) for m in messages) // 4
estimated_output = len(full_text) // 4
metrics.record_llm_call(
provider=self.provider,
model=self.model,
scope=scope,
duration=duration,
input_tokens=estimated_input,
output_tokens=estimated_output,
success=True,
)
# Record trace span
from hindsight_api.tracing import get_span_recorder
span_recorder = get_span_recorder()
span_recorder.record_llm_call(
provider=self.provider,
model=self.model,
scope=scope,
messages=messages,
response_content=result if isinstance(result, str) else json.dumps(result),
input_tokens=estimated_input,
output_tokens=estimated_output,
duration=duration,
finish_reason=None,
error=None,
)
# Log slow calls
if duration > 10.0:
logger.info(
f"slow llm call: scope={scope}, model={self.provider}/{self.model}, time={duration:.3f}s"
)
if return_usage:
token_usage = TokenUsage(
input_tokens=estimated_input,
output_tokens=estimated_output,
total_tokens=estimated_input + estimated_output,
)
return result, token_usage
return result
except Exception as e:
last_exception = e
# Check for authentication errors
error_str = str(e).lower()
if "auth" in error_str or "login" in error_str or "credential" in error_str:
logger.error(f"Claude Code authentication error: {e}")
raise RuntimeError(
f"Claude Code authentication failed: {e}\n\n"
"Run 'claude auth login' to authenticate with Claude Pro/Max."
) from e
if attempt < max_retries:
backoff = min(initial_backoff * (2**attempt), max_backoff)
logger.warning(f"Claude Code error (attempt {attempt + 1}/{max_retries + 1}): {e}")
await asyncio.sleep(backoff)
continue
else:
logger.error(f"Claude Code error after {max_retries + 1} attempts: {e}")
raise
if last_exception:
raise last_exception
raise RuntimeError("Claude Code call failed after all retries")
async def call_with_tools(
self,
messages: list[dict[str, Any]],
tools: list[dict[str, Any]],
max_completion_tokens: int | None = None,
temperature: float | None = None,
scope: str = "tools",
max_retries: int = 5,
initial_backoff: float = 1.0,
max_backoff: float = 30.0,
tool_choice: str | dict[str, Any] = "auto",
) -> LLMToolCallResult:
"""
Make an LLM API call with tool/function calling support using Claude Agent SDK.
This implementation uses ClaudeSDKClient (not query()) because custom tools via
SDK MCP servers are only supported with the client. Tools are converted from OpenAI
format to SDK MCP tools, and tool names are formatted as mcp__hindsight_tools__{name}.
Args:
messages: List of message dicts. Can include tool results with role='tool'.
tools: List of tool definitions in OpenAI format.
max_completion_tokens: Maximum tokens in response (not used by Claude Agent SDK).
temperature: Sampling temperature (not used by Claude Agent SDK).
scope: Scope identifier for tracking.
max_retries: Maximum retry attempts.
initial_backoff: Initial backoff time in seconds.
max_backoff: Maximum backoff time in seconds.
tool_choice: How to choose tools (not used by Claude Agent SDK).
Returns:
LLMToolCallResult with content and/or tool_calls.
"""
from claude_agent_sdk import (
AssistantMessage,
ClaudeAgentOptions,
ClaudeSDKClient,
SdkMcpTool,
TextBlock,
ToolUseBlock,
create_sdk_mcp_server,
)
start_time = time.time()
# Convert OpenAI tool format to Claude Agent SDK SdkMcpTool format
sdk_tools: list[SdkMcpTool] = []
tool_names: list[str] = []
for tool in tools:
func = tool.get("function", {})
tool_name = func.get("name", "")
tool_description = func.get("description", "")
parameters = func.get("parameters", {})
# Create a handler with proper closure to avoid transport issues
def make_handler(name: str):
async def handler(args: dict[str, Any]) -> dict[str, Any]:
# Return immediately with success - tool execution happens externally
return {
"content": [
{
"type": "text",
"text": f"[Tool {name} called successfully]",
}
]
}
return handler
sdk_tools.append(
SdkMcpTool(
name=tool_name,
description=tool_description,
input_schema=parameters,
handler=make_handler(tool_name),
)
)
tool_names.append(tool_name)
# Create an MCP server with the tools
mcp_server = create_sdk_mcp_server(
name="hindsight_tools",
version="1.0.0",
tools=sdk_tools if sdk_tools else None,
)
# Build system prompt and user content from messages
system_prompt = ""
user_content = ""
for msg in messages:
role = msg.get("role", "user")
content = msg.get("content", "")
if role == "system":
system_prompt += ("\n\n" + content) if system_prompt else content
elif role == "user":
user_content += ("\n\n" + content) if user_content else content
elif role == "assistant":
# Include previous assistant messages as context
user_content += f"\n\n[Previous assistant response: {content}]"
elif role == "tool":
# Tool results are already in tool_results_map, append to user context
tool_call_id = msg.get("tool_call_id", "")
user_content += f"\n\n[Tool result for {tool_call_id}: {content}]"
# Format tool names for SDK MCP servers: mcp__{server_name}__{tool_name}
# This is required by the Claude Agent SDK for MCP server tools
allowed_tool_names = [f"mcp__hindsight_tools__{name}" for name in tool_names]
# Configure SDK options with MCP server
options = ClaudeAgentOptions(
system_prompt=system_prompt if system_prompt else None,
max_turns=1, # Single-turn for API-style interactions
mcp_servers={"hindsight_tools": mcp_server} if sdk_tools else {},
allowed_tools=allowed_tool_names if allowed_tool_names else [],
)
# Call Claude Agent SDK with retry logic
last_exception = None
for attempt in range(max_retries + 1):
try:
full_text = ""
tool_calls: list[LLMToolCall] = []
# Use ClaudeSDKClient for tool calling support
# Note: query() does NOT support custom tools, only ClaudeSDKClient does
async with ClaudeSDKClient(options=options) as client:
# Send the query
await client.query(user_content)
# Receive response
async for message in client.receive_response():
if isinstance(message, AssistantMessage):
for block in message.content:
if isinstance(block, TextBlock):
full_text += block.text
elif isinstance(block, ToolUseBlock):
# SDK returns tool names with MCP prefix (mcp__hindsight_tools__{name})
# Strip the prefix to return original tool name expected by caller
tool_name = block.name
if tool_name.startswith("mcp__hindsight_tools__"):
tool_name = tool_name.replace("mcp__hindsight_tools__", "", 1)
tool_calls.append(
LLMToolCall(
id=block.id,
name=tool_name,
arguments=block.input,
)
)
# Record metrics
duration = time.time() - start_time
metrics = get_metrics_collector()
# Estimate token usage (Claude Agent SDK doesn't report exact counts)
estimated_input = sum(len(m.get("content", "")) for m in messages) // 4
estimated_output = len(full_text) // 4
metrics.record_llm_call(
provider=self.provider,
model=self.model,
scope=scope,
duration=duration,
input_tokens=estimated_input,
output_tokens=estimated_output,
success=True,
)
# Log slow calls
if duration > 10.0:
logger.info(
f"slow llm call: scope={scope}, model={self.provider}/{self.model}, time={duration:.3f}s"
)
return LLMToolCallResult(
content=full_text if full_text else None,
tool_calls=tool_calls,
finish_reason="tool_calls" if tool_calls else "stop",
input_tokens=estimated_input,
output_tokens=estimated_output,
)
except Exception as e:
last_exception = e
# Check for authentication errors
error_str = str(e).lower()
if "auth" in error_str or "login" in error_str or "credential" in error_str:
logger.error(f"Claude Code authentication error: {e}")
raise RuntimeError(
f"Claude Code authentication failed: {e}\n\n"
"Run 'claude auth login' to authenticate with Claude Pro/Max."
) from e
if attempt < max_retries:
backoff = min(initial_backoff * (2**attempt), max_backoff)
logger.warning(f"Claude Code tool call error (attempt {attempt + 1}/{max_retries + 1}): {e}")
await asyncio.sleep(backoff)
continue
else:
logger.error(f"Claude Code tool call error after {max_retries + 1} attempts: {e}")
raise
if last_exception:
raise last_exception
raise RuntimeError("Claude Code tool call failed after all retries")
async def cleanup(self) -> None:
"""Clean up resources (no HTTP client to close for Claude Agent SDK)."""
pass
@@ -1,621 +0,0 @@
"""
OpenAI Codex LLM provider using ChatGPT Plus/Pro OAuth authentication.
This provider enables using ChatGPT Plus/Pro subscriptions for API calls
without separate OpenAI Platform API credits. It uses OAuth tokens from
~/.codex/auth.json and communicates with the ChatGPT backend API.
"""
import asyncio
import json
import logging
import os
import time
import uuid
from pathlib import Path
from typing import Any
import httpx
from hindsight_api.engine.llm_interface import LLMInterface, OutputTooLongError
from hindsight_api.engine.response_models import LLMToolCall, LLMToolCallResult, TokenUsage
from hindsight_api.metrics import get_metrics_collector
logger = logging.getLogger(__name__)
class CodexLLM(LLMInterface):
"""
LLM provider using OpenAI Codex OAuth authentication.
Authenticates using ChatGPT Plus/Pro credentials stored in ~/.codex/auth.json
and makes API calls to chatgpt.com/backend-api/codex/responses.
"""
def __init__(
self,
provider: str,
api_key: str, # Will be ignored, reads from ~/.codex/auth.json
base_url: str,
model: str,
reasoning_effort: str = "low",
**kwargs: Any,
):
"""Initialize Codex LLM provider."""
super().__init__(provider, api_key, base_url, model, reasoning_effort, **kwargs)
# Load Codex OAuth credentials
try:
self.access_token, self.account_id = self._load_codex_auth()
logger.info(f"Loaded Codex OAuth credentials for account: {self.account_id}")
except Exception as e:
raise RuntimeError(
f"Failed to load Codex OAuth credentials from ~/.codex/auth.json: {e}\n\n"
"To set up Codex authentication:\n"
"1. Install Codex CLI: npm install -g @openai/codex\n"
"2. Login: codex auth login\n"
"3. Verify: ls ~/.codex/auth.json\n\n"
"Or use a different provider (openai, anthropic, gemini) with API keys."
) from e
# Use ChatGPT backend API endpoint
if not self.base_url:
self.base_url = "https://chatgpt.com/backend-api"
# Normalize model name (strip openai/ prefix if present)
if self.model.startswith("openai/"):
self.model = self.model[len("openai/") :]
# Map reasoning effort to Codex reasoning summary format
# Codex supports: "auto", "concise", "detailed"
self.reasoning_summary = self._map_reasoning_effort(reasoning_effort)
# HTTP client for SSE streaming
self._client = httpx.AsyncClient(timeout=120.0)
def _load_codex_auth(self) -> tuple[str, str]:
"""
Load OAuth credentials from ~/.codex/auth.json.
Returns:
Tuple of (access_token, account_id).
Raises:
FileNotFoundError: If auth file doesn't exist.
ValueError: If auth file is invalid.
"""
auth_file = Path.home() / ".codex" / "auth.json"
if not auth_file.exists():
raise FileNotFoundError(
f"Codex auth file not found: {auth_file}\nRun 'codex auth login' to authenticate with ChatGPT Plus/Pro."
)
with open(auth_file) as f:
data = json.load(f)
# Validate auth structure
auth_mode = data.get("auth_mode")
if auth_mode != "chatgpt":
raise ValueError(f"Expected auth_mode='chatgpt', got: {auth_mode}")
tokens = data.get("tokens", {})
access_token = tokens.get("access_token")
account_id = tokens.get("account_id")
if not access_token:
raise ValueError("No access_token found in Codex auth file. Run 'codex auth login' again.")
return access_token, account_id
def _map_reasoning_effort(self, effort: str) -> str:
"""
Map standard reasoning effort to Codex reasoning summary format.
Args:
effort: Standard effort level ("low", "medium", "high", "xhigh").
Returns:
Codex reasoning summary: "concise", "detailed", or "auto".
"""
mapping = {
"low": "concise",
"medium": "auto",
"high": "detailed",
"xhigh": "detailed",
}
return mapping.get(effort.lower(), "auto")
async def verify_connection(self) -> None:
"""Verify Codex connection by making a simple test call."""
try:
logger.info(f"Verifying Codex LLM: model={self.model}, account={self.account_id}...")
await self.call(
messages=[{"role": "user", "content": "Say 'ok'"}],
max_completion_tokens=10,
max_retries=2,
initial_backoff=0.5,
max_backoff=2.0,
scope="verification",
)
logger.info(f"Codex LLM verified: {self.model}")
except Exception as e:
raise RuntimeError(f"Codex LLM connection verification failed for {self.model}: {e}") from e
async def call(
self,
messages: list[dict[str, str]],
response_format: Any | None = None,
max_completion_tokens: int | None = None,
temperature: float | None = None,
scope: str = "memory",
max_retries: int = 10,
initial_backoff: float = 1.0,
max_backoff: float = 60.0,
skip_validation: bool = False,
strict_schema: bool = False,
return_usage: bool = False,
) -> Any:
"""Make API call to Codex backend with SSE streaming."""
start_time = time.time()
# Prepare system instructions
system_instruction = ""
user_messages = []
for msg in messages:
role = msg.get("role", "user")
content = msg.get("content", "")
if role == "system":
system_instruction += ("\n\n" + content) if system_instruction else content
else:
user_messages.append(msg)
# Add JSON schema instruction if response_format is provided
if response_format is not None and hasattr(response_format, "model_json_schema"):
schema = response_format.model_json_schema()
schema_msg = f"\n\nYou must respond with valid JSON matching this schema:\n{json.dumps(schema, indent=2)}"
system_instruction += schema_msg
# gpt-5.2-codex only supports "detailed" reasoning summary
reasoning_summary = "detailed" if "5.2" in self.model else self.reasoning_summary
# Build Codex request payload
payload = {
"model": self.model,
"instructions": system_instruction,
"input": [
{
"type": "message",
"role": msg.get("role", "user"),
"content": msg.get("content", ""),
}
for msg in user_messages
],
"tools": [],
"tool_choice": "auto",
"parallel_tool_calls": True,
"reasoning": {"summary": reasoning_summary},
"store": False, # Codex uses stateless mode
"stream": True, # SSE streaming
"include": ["reasoning.encrypted_content"],
"prompt_cache_key": str(uuid.uuid4()),
}
headers = {
"Authorization": f"Bearer {self.access_token}",
"Content-Type": "application/json",
"OpenAI-Account-ID": self.account_id,
"User-Agent": "Mozilla/5.0 (Macintosh; Intel Mac OS X 10_15_7)",
"Origin": "https://chatgpt.com",
}
url = f"{self.base_url}/codex/responses"
last_exception = None
for attempt in range(max_retries + 1):
try:
response = await self._client.post(url, json=payload, headers=headers, timeout=120.0)
response.raise_for_status()
# Parse SSE stream
content = await self._parse_sse_stream(response)
# Handle structured output
if response_format is not None:
# Models may wrap JSON in markdown
clean_content = content
if "```json" in content:
clean_content = content.split("```json")[1].split("```")[0].strip()
elif "```" in content:
clean_content = content.split("```")[1].split("```")[0].strip()
try:
json_data = json.loads(clean_content)
except json.JSONDecodeError as e:
logger.warning(f"Codex JSON parse error (attempt {attempt + 1}/{max_retries + 1}): {e}")
if attempt < max_retries:
backoff = min(initial_backoff * (2**attempt), max_backoff)
await asyncio.sleep(backoff)
last_exception = e
continue
raise
if skip_validation:
result = json_data
else:
result = response_format.model_validate(json_data)
else:
result = content
# Record metrics
duration = time.time() - start_time
metrics = get_metrics_collector()
metrics.record_llm_call(
provider=self.provider,
model=self.model,
scope=scope,
duration=duration,
input_tokens=0, # Codex doesn't report token counts in SSE
output_tokens=0,
success=True,
)
# Record trace span
from hindsight_api.tracing import get_span_recorder
# Estimate tokens for tracing
estimated_input = sum(len(m.get("content", "")) for m in messages) // 4
estimated_output = len(content) // 4
span_recorder = get_span_recorder()
span_recorder.record_llm_call(
provider=self.provider,
model=self.model,
scope=scope,
messages=messages,
response_content=result if isinstance(result, str) else json.dumps(result),
input_tokens=estimated_input,
output_tokens=estimated_output,
duration=duration,
finish_reason=None,
error=None,
)
if return_usage:
# Codex doesn't provide token counts, estimate based on content
estimated_input = sum(len(m.get("content", "")) for m in messages) // 4
estimated_output = len(content) // 4
token_usage = TokenUsage(
input_tokens=estimated_input,
output_tokens=estimated_output,
total_tokens=estimated_input + estimated_output,
)
return result, token_usage
return result
except httpx.HTTPStatusError as e:
last_exception = e
status_code = e.response.status_code
# Fast fail on auth errors
if status_code in (401, 403):
logger.error(f"Codex auth error (HTTP {status_code}): {e.response.text[:200]}")
raise RuntimeError(
"Codex authentication failed. Your OAuth token may have expired.\n"
"Run 'codex auth login' to re-authenticate."
) from e
# Log the actual error message from the API
error_detail = e.response.text[:500] if hasattr(e.response, "text") else str(e)
if attempt < max_retries:
backoff = min(initial_backoff * (2**attempt), max_backoff)
logger.warning(
f"Codex HTTP error {status_code} (attempt {attempt + 1}/{max_retries + 1}): {error_detail}"
)
await asyncio.sleep(backoff)
continue
else:
logger.error(
f"Codex HTTP error after {max_retries + 1} attempts: Status {status_code}, Detail: {error_detail}"
)
raise
except httpx.RequestError as e:
last_exception = e
if attempt < max_retries:
backoff = min(initial_backoff * (2**attempt), max_backoff)
logger.warning(f"Codex connection error (attempt {attempt + 1}/{max_retries + 1}): {e}")
await asyncio.sleep(backoff)
continue
else:
logger.error(f"Codex connection error after {max_retries + 1} attempts: {e}")
raise
except Exception as e:
logger.error(f"Unexpected Codex error: {type(e).__name__}: {e}")
raise
if last_exception:
raise last_exception
raise RuntimeError("Codex call failed after all retries")
async def _parse_sse_stream(self, response: httpx.Response) -> str:
"""
Parse Server-Sent Events (SSE) stream from Codex API.
Args:
response: HTTP response with SSE stream.
Returns:
Extracted text content from stream.
"""
full_text = ""
event_type = None
async for line in response.aiter_lines():
if not line:
continue
# Track event type
if line.startswith("event: "):
event_type = line[7:]
# Parse data
elif line.startswith("data: "):
data_str = line[6:]
if data_str == "[DONE]":
break
try:
data = json.loads(data_str)
# Extract content based on event type
if event_type == "response.text.delta" and "delta" in data:
full_text += data["delta"]
elif event_type == "response.content_part.delta" and "delta" in data:
full_text += data["delta"]
# Check for item content
elif "item" in data:
item = data["item"]
if "content" in item:
content = item["content"]
if isinstance(content, list):
for part in content:
if isinstance(part, dict) and "text" in part:
full_text += part["text"]
elif isinstance(content, str):
full_text += content
except json.JSONDecodeError:
# Skip malformed JSON events
pass
return full_text
async def call_with_tools(
self,
messages: list[dict[str, Any]],
tools: list[dict[str, Any]],
max_completion_tokens: int | None = None,
temperature: float | None = None,
scope: str = "tools",
max_retries: int = 5,
initial_backoff: float = 1.0,
max_backoff: float = 30.0,
tool_choice: str | dict[str, Any] = "auto",
) -> LLMToolCallResult:
"""
Make API call with tool calling support.
Parses Codex SSE stream to extract tool calls from response.output_item.done events.
Tools are converted from OpenAI format to Codex format (flat structure at top level).
Args:
messages: List of message dicts. Can include tool results with role='tool'.
tools: List of tool definitions in OpenAI format.
max_completion_tokens: Maximum tokens in response.
temperature: Sampling temperature.
scope: Scope identifier for tracking.
max_retries: Maximum retry attempts.
initial_backoff: Initial backoff time in seconds.
max_backoff: Maximum backoff time in seconds.
tool_choice: How to choose tools - "auto", "none", "required", or specific function.
Returns:
LLMToolCallResult with content and/or tool_calls.
"""
start_time = time.time()
# Prepare system instructions
system_instruction = ""
user_messages = []
for msg in messages:
role = msg.get("role", "user")
content = msg.get("content", "")
if role == "system":
system_instruction += ("\n\n" + content) if system_instruction else content
elif role == "tool":
# Handle tool results
user_messages.append(
{
"type": "message",
"role": "user",
"content": f"Tool result: {content}",
}
)
else:
user_messages.append(
{
"type": "message",
"role": role,
"content": content,
}
)
# Convert tools to Codex format
# Codex expects tools with type and name/description/parameters at top level
codex_tools = []
for tool in tools:
func = tool.get("function", {})
codex_tools.append(
{
"type": "function",
"name": func.get("name", ""),
"description": func.get("description", ""),
"parameters": func.get("parameters", {}),
}
)
# gpt-5.2-codex only supports "detailed" reasoning summary
reasoning_summary = "detailed" if "5.2" in self.model else self.reasoning_summary
payload = {
"model": self.model,
"instructions": system_instruction,
"input": user_messages,
"tools": codex_tools,
"tool_choice": tool_choice,
"parallel_tool_calls": True,
"reasoning": {"summary": reasoning_summary},
"store": False,
"stream": True,
"include": ["reasoning.encrypted_content"],
"prompt_cache_key": str(uuid.uuid4()),
}
headers = {
"Authorization": f"Bearer {self.access_token}",
"Content-Type": "application/json",
"OpenAI-Account-ID": self.account_id,
"User-Agent": "Mozilla/5.0 (Macintosh; Intel Mac OS X 10_15_7)",
"Origin": "https://chatgpt.com",
}
url = f"{self.base_url}/codex/responses"
# Debug logging for troubleshooting
logger.debug(f"Codex tool call request: url={url}, model={payload['model']}, tools={len(codex_tools)}")
try:
response = await self._client.post(url, json=payload, headers=headers, timeout=120.0)
# Log response details on error
if response.status_code != 200:
logger.error(f"Codex API error {response.status_code}: {response.text[:500]}")
response.raise_for_status()
# Parse SSE for tool calls and content
content, tool_calls = await self._parse_sse_tool_stream(response)
duration = time.time() - start_time
metrics = get_metrics_collector()
metrics.record_llm_call(
provider=self.provider,
model=self.model,
scope=scope,
duration=duration,
input_tokens=0,
output_tokens=0,
success=True,
)
# Record OpenTelemetry span
from hindsight_api.tracing import get_span_recorder
span_recorder = get_span_recorder()
# Convert LLMToolCall objects to dicts for span recording
tool_calls_dict = (
[{"id": tc.id, "name": tc.name, "arguments": tc.arguments} for tc in tool_calls] if tool_calls else None
)
span_recorder.record_llm_call(
provider=self.provider,
model=self.model,
scope=scope,
messages=messages,
response_content=content,
input_tokens=0, # Codex doesn't provide token counts
output_tokens=0,
duration=duration,
finish_reason="tool_calls" if tool_calls else "stop",
error=None,
tool_calls=tool_calls_dict,
)
return LLMToolCallResult(
content=content,
tool_calls=tool_calls,
finish_reason="tool_calls" if tool_calls else "stop",
input_tokens=0,
output_tokens=0,
)
except Exception as e:
logger.error(f"Codex tool call error: {e}")
raise
async def _parse_sse_tool_stream(self, response: httpx.Response) -> tuple[str | None, list[LLMToolCall]]:
"""
Parse SSE stream for tool calls and content.
Returns:
Tuple of (content, tool_calls).
"""
content = ""
tool_calls: list[LLMToolCall] = []
event_type = None
async for line in response.aiter_lines():
if not line:
continue
if line.startswith("event: "):
event_type = line[7:]
elif line.startswith("data: "):
data_str = line[6:]
if data_str == "[DONE]":
break
try:
data = json.loads(data_str)
# Extract text content
if event_type == "response.text.delta" and "delta" in data:
content += data["delta"]
# Extract completed tool calls from response.output_item.done
elif event_type == "response.output_item.done":
item = data.get("item", {})
if item.get("type") == "function_call" and item.get("status") == "completed":
tool_name = item.get("name", "")
arguments_str = item.get("arguments", "{}")
call_id = item.get("call_id", "")
try:
arguments = json.loads(arguments_str)
except json.JSONDecodeError:
logger.warning(f"Failed to parse tool arguments: {arguments_str}")
arguments = {}
tool_calls.append(
LLMToolCall(
id=call_id,
name=tool_name,
arguments=arguments,
)
)
except json.JSONDecodeError as e:
logger.warning(f"Failed to parse SSE data: {e}, data_str: {data_str[:200]}")
return content if content else None, tool_calls
async def cleanup(self) -> None:
"""Clean up HTTP client."""
await self._client.aclose()
@@ -1,550 +0,0 @@
"""
Google Gemini/VertexAI LLM provider.
This provider supports both:
1. Gemini API (api.generativeai.google.com) with API key authentication
2. Vertex AI with service account or Application Default Credentials (ADC)
"""
import asyncio
import json
import logging
import os
import time
from typing import Any
from google import genai
from google.genai import errors as genai_errors
from google.genai import types as genai_types
from hindsight_api.engine.llm_interface import LLMInterface, OutputTooLongError
from hindsight_api.engine.response_models import LLMToolCall, LLMToolCallResult, TokenUsage
from hindsight_api.metrics import get_metrics_collector
logger = logging.getLogger(__name__)
# Vertex AI imports (optional)
try:
import google.auth
from google.oauth2 import service_account
VERTEXAI_AVAILABLE = True
except ImportError:
VERTEXAI_AVAILABLE = False
class GeminiLLM(LLMInterface):
"""
LLM provider for Google Gemini and Vertex AI.
Supports:
- Gemini API: provider="gemini", requires api_key
- Vertex AI: provider="vertexai", requires project_id and region, uses ADC or service account
"""
def __init__(
self,
provider: str,
api_key: str,
base_url: str,
model: str,
reasoning_effort: str = "low",
**kwargs: Any,
):
"""Initialize Gemini/VertexAI LLM provider."""
super().__init__(provider, api_key, base_url, model, reasoning_effort, **kwargs)
self._client = None
self._is_vertexai = self.provider == "vertexai"
if self._is_vertexai:
self._init_vertexai(**kwargs)
else:
self._init_gemini()
def _init_gemini(self) -> None:
"""Initialize Gemini API client."""
if not self.api_key:
raise ValueError("Gemini provider requires api_key")
self._client = genai.Client(api_key=self.api_key)
logger.info(f"Gemini API: model={self.model}")
def _init_vertexai(self, **kwargs: Any) -> None:
"""Initialize Vertex AI client with project, region, and credentials."""
# Extract Vertex AI config from kwargs
project_id = kwargs.get("vertexai_project_id")
region = kwargs.get("vertexai_region", "us-central1")
service_account_key = kwargs.get("vertexai_service_account_key")
credentials = kwargs.get("vertexai_credentials") # Pre-loaded credentials object
if not project_id:
raise ValueError(
"HINDSIGHT_API_LLM_VERTEXAI_PROJECT_ID is required for Vertex AI provider. "
"Set it to your GCP project ID."
)
auth_method = "ADC"
# Use pre-loaded credentials if provided (passed from LLMProvider)
if credentials is not None:
auth_method = "service_account"
# Otherwise, load explicit service account credentials if path provided
elif service_account_key:
if not VERTEXAI_AVAILABLE:
raise ValueError(
"Vertex AI service account auth requires 'google-auth' package. "
"Install with: pip install google-auth"
)
credentials = service_account.Credentials.from_service_account_file(
service_account_key,
scopes=["https://www.googleapis.com/auth/cloud-platform"],
)
auth_method = "service_account"
logger.info(f"Vertex AI: Using service account key: {service_account_key}")
# Strip google/ prefix from model name — native SDK uses bare names
# e.g. "google/gemini-2.0-flash-lite-001" -> "gemini-2.0-flash-lite-001"
if self.model.startswith("google/"):
self.model = self.model[len("google/") :]
# Create Vertex AI client
client_kwargs: dict[str, Any] = {
"vertexai": True,
"project": project_id,
"location": region,
}
if credentials is not None:
client_kwargs["credentials"] = credentials
self._client = genai.Client(**client_kwargs)
logger.info(f"Vertex AI: project={project_id}, region={region}, model={self.model}, auth={auth_method}")
async def verify_connection(self) -> None:
"""
Verify that the Gemini/VertexAI provider is configured correctly.
Raises:
RuntimeError: If the connection test fails.
"""
try:
logger.info(f"Verifying {self.provider.upper()}: model={self.model}...")
await self.call(
messages=[{"role": "user", "content": "Say 'ok'"}],
max_completion_tokens=100,
max_retries=2,
initial_backoff=0.5,
max_backoff=2.0,
scope="verification",
)
logger.info(f"{self.provider.upper()} connection verified successfully")
except Exception as e:
raise RuntimeError(f"Failed to verify {self.provider.upper()} connection: {e}") from e
async def call(
self,
messages: list[dict[str, str]],
response_format: Any | None = None,
max_completion_tokens: int | None = None,
temperature: float | None = None,
scope: str = "memory",
max_retries: int = 10,
initial_backoff: float = 1.0,
max_backoff: float = 60.0,
skip_validation: bool = False,
strict_schema: bool = False,
return_usage: bool = False,
) -> Any:
"""
Make a Gemini/VertexAI API call with retry logic.
Args:
messages: List of message dicts with 'role' and 'content'.
response_format: Optional Pydantic model for structured output.
max_completion_tokens: Maximum tokens in response (not supported by Gemini).
temperature: Sampling temperature (0.0-2.0).
scope: Scope identifier for tracking.
max_retries: Maximum retry attempts.
initial_backoff: Initial backoff time in seconds.
max_backoff: Maximum backoff time in seconds.
skip_validation: Return raw JSON without Pydantic validation.
strict_schema: Use strict JSON schema enforcement (not supported by Gemini).
return_usage: If True, return tuple (result, TokenUsage).
Returns:
If return_usage=False: Parsed response if response_format provided, else text.
If return_usage=True: Tuple of (result, TokenUsage).
"""
start_time = time.time()
# Convert OpenAI-style messages to Gemini format
system_instruction = None
gemini_contents = []
for msg in messages:
role = msg.get("role", "user")
content = msg.get("content", "")
if role == "system":
if system_instruction:
system_instruction += "\n\n" + content
else:
system_instruction = content
elif role == "assistant":
gemini_contents.append(genai_types.Content(role="model", parts=[genai_types.Part(text=content)]))
else:
gemini_contents.append(genai_types.Content(role="user", parts=[genai_types.Part(text=content)]))
# Add JSON schema instruction if response_format is provided
if response_format is not None and hasattr(response_format, "model_json_schema"):
schema = response_format.model_json_schema()
schema_msg = f"\n\nYou must respond with valid JSON matching this schema:\n{json.dumps(schema, indent=2)}"
if system_instruction:
system_instruction += schema_msg
else:
system_instruction = schema_msg
# Build generation config
config_kwargs: dict[str, Any] = {}
if system_instruction:
config_kwargs["system_instruction"] = system_instruction
if response_format is not None:
config_kwargs["response_mime_type"] = "application/json"
config_kwargs["response_schema"] = response_format
if temperature is not None:
config_kwargs["temperature"] = temperature
generation_config = genai_types.GenerateContentConfig(**config_kwargs) if config_kwargs else None
last_exception = None
for attempt in range(max_retries + 1):
try:
response = await self._client.aio.models.generate_content(
model=self.model,
contents=gemini_contents,
config=generation_config,
)
content = response.text
# Handle empty response
if content is None:
block_reason = None
if hasattr(response, "candidates") and response.candidates:
candidate = response.candidates[0]
if hasattr(candidate, "finish_reason"):
block_reason = candidate.finish_reason
if attempt < max_retries:
logger.warning(f"Gemini returned empty response (reason: {block_reason}), retrying...")
backoff = min(initial_backoff * (2**attempt), max_backoff)
await asyncio.sleep(backoff)
continue
else:
raise RuntimeError(f"Gemini returned empty response after {max_retries + 1} attempts")
# Parse structured output if requested
if response_format is not None:
json_data = json.loads(content)
if skip_validation:
result = json_data
else:
result = response_format.model_validate(json_data)
else:
result = content
# Extract token usage
input_tokens = 0
output_tokens = 0
if hasattr(response, "usage_metadata") and response.usage_metadata:
usage = response.usage_metadata
input_tokens = usage.prompt_token_count or 0
output_tokens = usage.candidates_token_count or 0
# Record metrics
duration = time.time() - start_time
metrics = get_metrics_collector()
metrics.record_llm_call(
provider=self.provider,
model=self.model,
scope=scope,
duration=duration,
input_tokens=input_tokens,
output_tokens=output_tokens,
success=True,
)
# Record trace span
from hindsight_api.tracing import get_span_recorder
finish_reason = None
if hasattr(response, "candidates") and response.candidates:
if hasattr(response.candidates[0], "finish_reason"):
finish_reason = str(response.candidates[0].finish_reason)
span_recorder = get_span_recorder()
from hindsight_api.tracing import _serialize_for_span
span_recorder.record_llm_call(
provider=self.provider,
model=self.model,
scope=scope,
messages=messages,
response_content=_serialize_for_span(result),
input_tokens=input_tokens,
output_tokens=output_tokens,
duration=duration,
finish_reason=finish_reason,
error=None,
)
# Log slow calls
if duration > 10.0 and input_tokens > 0:
logger.info(
f"slow llm call: scope={scope}, model={self.provider}/{self.model}, "
f"input_tokens={input_tokens}, output_tokens={output_tokens}, "
f"time={duration:.3f}s"
)
if return_usage:
token_usage = TokenUsage(
input_tokens=input_tokens,
output_tokens=output_tokens,
total_tokens=input_tokens + output_tokens,
)
return result, token_usage
return result
except json.JSONDecodeError as e:
last_exception = e
if attempt < max_retries:
logger.warning("Gemini returned invalid JSON, retrying...")
backoff = min(initial_backoff * (2**attempt), max_backoff)
await asyncio.sleep(backoff)
continue
else:
logger.error(f"Gemini returned invalid JSON after {max_retries + 1} attempts")
raise
except genai_errors.APIError as e:
# Fast fail on auth errors - these won't recover with retries
if e.code in (401, 403):
logger.error(f"Gemini auth error (HTTP {e.code}), not retrying: {str(e)}")
raise
# Retry on retryable errors (rate limits, server errors, client errors)
if e.code in (400, 429, 500, 502, 503, 504) or (e.code and e.code >= 500):
last_exception = e
if attempt < max_retries:
backoff = min(initial_backoff * (2**attempt), max_backoff)
jitter = backoff * 0.2 * (2 * (time.time() % 1) - 1)
await asyncio.sleep(backoff + jitter)
else:
logger.error(f"Gemini API error after {max_retries + 1} attempts: {str(e)}")
raise
else:
logger.error(f"Gemini API error: {type(e).__name__}: {str(e)}")
raise
except Exception as e:
logger.error(f"Unexpected error during Gemini call: {type(e).__name__}: {str(e)}")
raise
if last_exception:
raise last_exception
raise RuntimeError("Gemini call failed after all retries")
async def call_with_tools(
self,
messages: list[dict[str, Any]],
tools: list[dict[str, Any]],
max_completion_tokens: int | None = None,
temperature: float | None = None,
scope: str = "tools",
max_retries: int = 5,
initial_backoff: float = 1.0,
max_backoff: float = 30.0,
tool_choice: str | dict[str, Any] = "auto",
) -> LLMToolCallResult:
"""
Make a Gemini/VertexAI API call with tool/function calling support.
Args:
messages: List of message dicts. Can include tool results with role='tool'.
tools: List of tool definitions in OpenAI format.
max_completion_tokens: Maximum tokens (not supported by Gemini).
temperature: Sampling temperature.
scope: Scope identifier for tracking.
max_retries: Maximum retry attempts.
initial_backoff: Initial backoff time in seconds.
max_backoff: Maximum backoff time in seconds.
tool_choice: How to choose tools (Gemini uses "auto" only).
Returns:
LLMToolCallResult with content and/or tool_calls.
"""
start_time = time.time()
# Convert tools to Gemini format
gemini_tools = []
for tool in tools:
func = tool.get("function", {})
gemini_tools.append(
genai_types.Tool(
function_declarations=[
genai_types.FunctionDeclaration(
name=func.get("name", ""),
description=func.get("description", ""),
parameters=func.get("parameters"),
)
]
)
)
# Convert messages
system_instruction = None
gemini_contents = []
for msg in messages:
role = msg.get("role", "user")
content = msg.get("content", "")
if role == "system":
system_instruction = (system_instruction + "\n\n" + content) if system_instruction else content
elif role == "tool":
# Gemini uses function_response
gemini_contents.append(
genai_types.Content(
role="user",
parts=[
genai_types.Part(
function_response=genai_types.FunctionResponse(
name=msg.get("name", ""),
response={"result": content},
)
)
],
)
)
elif role == "assistant":
gemini_contents.append(genai_types.Content(role="model", parts=[genai_types.Part(text=content)]))
else:
gemini_contents.append(genai_types.Content(role="user", parts=[genai_types.Part(text=content)]))
config_kwargs: dict[str, Any] = {"tools": gemini_tools}
if system_instruction:
config_kwargs["system_instruction"] = system_instruction
if temperature is not None:
config_kwargs["temperature"] = temperature
config = genai_types.GenerateContentConfig(**config_kwargs)
last_exception = None
for attempt in range(max_retries + 1):
try:
response = await self._client.aio.models.generate_content(
model=self.model,
contents=gemini_contents,
config=config,
)
# Extract content and tool calls
content = None
tool_calls: list[LLMToolCall] = []
if response.candidates and response.candidates[0].content:
parts = response.candidates[0].content.parts
if parts:
for part in parts:
if hasattr(part, "text") and part.text:
content = part.text
if hasattr(part, "function_call") and part.function_call:
fc = part.function_call
tool_calls.append(
LLMToolCall(
id=f"gemini_{len(tool_calls)}",
name=fc.name,
arguments=dict(fc.args) if fc.args else {},
)
)
finish_reason = "tool_calls" if tool_calls else "stop"
# Extract token usage
input_tokens = 0
output_tokens = 0
if response.usage_metadata:
input_tokens = response.usage_metadata.prompt_token_count or 0
output_tokens = response.usage_metadata.candidates_token_count or 0
# Record metrics
duration = time.time() - start_time
metrics = get_metrics_collector()
metrics.record_llm_call(
provider=self.provider,
model=self.model,
scope=scope,
duration=duration,
input_tokens=input_tokens,
output_tokens=output_tokens,
success=True,
)
# Record OpenTelemetry span
from hindsight_api.tracing import get_span_recorder
span_recorder = get_span_recorder()
# Convert LLMToolCall objects to dicts for span recording
tool_calls_dict = (
[{"id": tc.id, "name": tc.name, "arguments": tc.arguments} for tc in tool_calls]
if tool_calls
else None
)
span_recorder.record_llm_call(
provider=self.provider,
model=self.model,
scope=scope,
messages=messages,
response_content=content,
input_tokens=input_tokens,
output_tokens=output_tokens,
duration=duration,
finish_reason=finish_reason,
error=None,
tool_calls=tool_calls_dict,
)
return LLMToolCallResult(
content=content,
tool_calls=tool_calls,
finish_reason=finish_reason,
input_tokens=input_tokens,
output_tokens=output_tokens,
)
except genai_errors.APIError as e:
# Fast fail on auth errors
if e.code in (401, 403):
logger.error(f"Gemini auth error (HTTP {e.code}), not retrying: {str(e)}")
raise
# Retry on retryable errors
last_exception = e
if attempt < max_retries:
backoff = min(initial_backoff * (2**attempt), max_backoff)
await asyncio.sleep(backoff)
continue
raise
except Exception as e:
logger.error(f"Unexpected error during Gemini tool call: {type(e).__name__}: {str(e)}")
raise
if last_exception:
raise last_exception
raise RuntimeError("Gemini tool call failed")
async def cleanup(self) -> None:
"""Clean up resources (close connections, etc.)."""
# Gemini client doesn't require explicit cleanup
pass
@@ -1,301 +0,0 @@
"""
Mock LLM provider for testing.
This provider allows tests to record LLM calls and return configurable mock responses
without making actual API calls to external LLM services.
"""
import logging
from typing import Any
from ..llm_interface import LLMInterface
from ..response_models import LLMToolCall, LLMToolCallResult, TokenUsage
logger = logging.getLogger(__name__)
class MockLLM(LLMInterface):
"""
Mock LLM provider for testing.
This provider records all calls and returns configurable mock responses,
enabling tests to verify LLM interactions without making real API calls.
Example:
# Create mock provider
mock_llm = MockLLM(provider="mock", api_key="", base_url="", model="mock-model")
# Set mock response
mock_llm.set_mock_response({"answer": "test"})
# Make calls
result = await mock_llm.call(
messages=[{"role": "user", "content": "test"}],
response_format=MyResponseModel
)
# Verify calls
calls = mock_llm.get_mock_calls()
assert len(calls) == 1
assert calls[0]["scope"] == "memory"
"""
def __init__(
self,
provider: str,
api_key: str,
base_url: str,
model: str,
reasoning_effort: str = "low",
**kwargs: Any,
):
"""
Initialize mock LLM provider.
Args:
provider: Provider name (should be "mock").
api_key: Not used for mock provider.
base_url: Not used for mock provider.
model: Model name for tracking.
reasoning_effort: Not used for mock provider.
**kwargs: Additional parameters (not used).
"""
super().__init__(provider, api_key, base_url, model, reasoning_effort, **kwargs)
# Storage for test verification
self._mock_calls: list[dict] = []
self._mock_response: Any = None
self._mock_exception: Exception | None = None
async def verify_connection(self) -> None:
"""
Verify mock provider (always succeeds).
Mock provider doesn't need connection verification since it doesn't
make real API calls.
"""
logger.debug("Mock LLM: connection verification (always succeeds)")
async def call(
self,
messages: list[dict[str, str]],
response_format: Any | None = None,
max_completion_tokens: int | None = None,
temperature: float | None = None,
scope: str = "memory",
max_retries: int = 10,
initial_backoff: float = 1.0,
max_backoff: float = 60.0,
skip_validation: bool = False,
strict_schema: bool = False,
return_usage: bool = False,
) -> Any:
"""
Make a mock LLM API call.
Records the call for test verification and returns the configured mock response.
Args:
messages: List of message dicts with 'role' and 'content'.
response_format: Optional Pydantic model for structured output.
max_completion_tokens: Not used in mock.
temperature: Not used in mock.
scope: Scope identifier for tracking.
max_retries: Not used in mock.
initial_backoff: Not used in mock.
max_backoff: Not used in mock.
skip_validation: Return raw JSON without Pydantic validation.
strict_schema: Not used in mock.
return_usage: If True, return tuple (result, TokenUsage) instead of just result.
Returns:
If return_usage=False: Parsed response if response_format is provided, otherwise text content.
If return_usage=True: Tuple of (result, TokenUsage) with mock token counts.
"""
# Record the call for test verification
call_record = {
"provider": self.provider,
"model": self.model,
"messages": messages,
"response_format": response_format.__name__
if response_format and hasattr(response_format, "__name__")
else str(response_format),
"scope": scope,
}
self._mock_calls.append(call_record)
logger.debug(f"Mock LLM call recorded: scope={scope}, model={self.model}")
# Raise mock exception if configured
if self._mock_exception is not None:
raise self._mock_exception
# Record trace span (minimal for mock provider)
from hindsight_api.tracing import get_span_recorder
span_recorder = get_span_recorder()
span_recorder.record_llm_call(
provider=self.provider,
model=self.model,
scope=scope,
messages=messages,
response_content="mock response",
input_tokens=10,
output_tokens=5,
duration=0.001, # Mock calls are instant
finish_reason="stop",
error=None,
)
# Return mock response
if self._mock_response is not None:
result = self._mock_response
elif response_format is not None:
# Try to create a minimal valid instance of the response format
try:
# For Pydantic models, try to create with minimal valid data
result = {"mock": True}
except Exception:
result = {"mock": True}
else:
result = "mock response"
if return_usage:
token_usage = TokenUsage(input_tokens=10, output_tokens=5, total_tokens=15)
return result, token_usage
return result
async def call_with_tools(
self,
messages: list[dict[str, Any]],
tools: list[dict[str, Any]],
max_completion_tokens: int | None = None,
temperature: float | None = None,
scope: str = "tools",
max_retries: int = 5,
initial_backoff: float = 1.0,
max_backoff: float = 30.0,
tool_choice: str | dict[str, Any] = "auto",
) -> LLMToolCallResult:
"""
Make a mock LLM API call with tool/function calling support.
Records the call for test verification and returns the configured mock response.
Args:
messages: List of message dicts. Can include tool results with role='tool'.
tools: List of tool definitions in OpenAI format.
max_completion_tokens: Not used in mock.
temperature: Not used in mock.
scope: Scope identifier for tracking.
max_retries: Not used in mock.
initial_backoff: Not used in mock.
max_backoff: Not used in mock.
tool_choice: Not used in mock.
Returns:
LLMToolCallResult with content and/or tool_calls.
"""
# Record the call for test verification
call_record = {
"provider": self.provider,
"model": self.model,
"messages": messages,
"tools": [t.get("function", {}).get("name") for t in tools],
"scope": scope,
}
self._mock_calls.append(call_record)
# Raise mock exception if configured
if self._mock_exception is not None:
raise self._mock_exception
# Record OpenTelemetry span
from hindsight_api.tracing import get_span_recorder
span_recorder = get_span_recorder()
if self._mock_response is not None:
if isinstance(self._mock_response, LLMToolCallResult):
result = self._mock_response
elif isinstance(self._mock_response, list):
# Allow setting just tool calls as a list
result = LLMToolCallResult(
tool_calls=[
LLMToolCall(id=f"mock_{i}", name=tc["name"], arguments=tc.get("arguments", {}))
for i, tc in enumerate(self._mock_response)
],
finish_reason="tool_calls",
)
else:
result = LLMToolCallResult(content="mock response", finish_reason="stop")
else:
result = LLMToolCallResult(content="mock response", finish_reason="stop")
# Record span with mock values
# Convert LLMToolCall objects to dicts for span recording
tool_calls_dict = (
[{"id": tc.id, "name": tc.name, "arguments": tc.arguments} for tc in result.tool_calls]
if result.tool_calls
else None
)
span_recorder.record_llm_call(
provider=self.provider,
model=self.model,
scope=scope,
messages=messages,
response_content=result.content,
input_tokens=10, # Mock value
output_tokens=5, # Mock value
duration=0.1, # Mock value
finish_reason=result.finish_reason,
error=None,
tool_calls=tool_calls_dict,
)
return result
async def cleanup(self) -> None:
"""Clean up resources (no-op for mock provider)."""
pass
def set_mock_response(self, response: Any) -> None:
"""
Set the response to return from mock calls.
Args:
response: The response to return. Can be:
- A dict/Pydantic model for regular calls
- An LLMToolCallResult for tool calls
- A list of tool call dicts for tool calls
- Any other value to return as-is
"""
self._mock_response = response
def set_mock_exception(self, exception: Exception) -> None:
"""
Set an exception to raise from mock calls.
Args:
exception: The exception to raise on the next call.
After raising, the exception is cleared.
"""
self._mock_exception = exception
def get_mock_calls(self) -> list[dict]:
"""
Get the list of recorded mock calls.
Returns:
List of call records, each containing:
- provider: Provider name
- model: Model name
- messages: Messages sent
- response_format/tools: Format or tools used
- scope: Call scope
"""
return self._mock_calls
def clear_mock_calls(self) -> None:
"""Clear the recorded mock calls and any set exception."""
self._mock_calls = []
self._mock_exception = None
@@ -1,788 +0,0 @@
"""
OpenAI-compatible LLM provider supporting OpenAI, Groq, Ollama, and LMStudio.
This provider handles all OpenAI API-compatible models including:
- OpenAI: GPT-4, GPT-4o, GPT-5, o1, o3 (reasoning models)
- Groq: Fast inference with seed control and service tiers
- Ollama: Local models with native streaming API support
- LMStudio: Local models with OpenAI-compatible API
Features:
- Reasoning models with extended thinking (o1, o3, GPT-5 families)
- Strict JSON schema enforcement (OpenAI)
- Provider-specific parameters (Groq seed, service tier)
- Native Ollama streaming for better structured output
- Automatic token limit handling per model family
"""
import asyncio
import json
import logging
import os
import re
import time
from typing import Any
import httpx
from openai import APIConnectionError, APIStatusError, AsyncOpenAI, LengthFinishReasonError
from hindsight_api.config import DEFAULT_LLM_TIMEOUT, ENV_LLM_TIMEOUT
from hindsight_api.engine.llm_interface import LLMInterface, OutputTooLongError
from hindsight_api.engine.response_models import LLMToolCall, LLMToolCallResult, TokenUsage
from hindsight_api.metrics import get_metrics_collector
logger = logging.getLogger(__name__)
# Seed applied to every Groq request for deterministic behavior
DEFAULT_LLM_SEED = 4242
class OpenAICompatibleLLM(LLMInterface):
"""
LLM provider for OpenAI-compatible APIs.
Supports:
- OpenAI: Standard models (GPT-4, GPT-4o) and reasoning models (o1, o3, GPT-5)
- Groq: Fast inference with seed control and service tiers
- Ollama: Local models with native streaming API for better structured output
- LMStudio: Local models with OpenAI-compatible API
"""
def __init__(
self,
provider: str,
api_key: str,
base_url: str,
model: str,
reasoning_effort: str = "low",
timeout: float | None = None,
groq_service_tier: str | None = None,
**kwargs: Any,
):
"""
Initialize OpenAI-compatible LLM provider.
Args:
provider: Provider name ("openai", "groq", "ollama", "lmstudio").
api_key: API key (optional for ollama/lmstudio).
base_url: Base URL for the API (uses defaults for groq/ollama/lmstudio if empty).
model: Model name.
reasoning_effort: Reasoning effort level for supported models ("low", "medium", "high").
timeout: Request timeout in seconds (uses env var or 300s default).
groq_service_tier: Groq service tier ("on_demand", "flex", "auto").
**kwargs: Additional provider-specific parameters.
"""
super().__init__(provider, api_key, base_url, model, reasoning_effort, **kwargs)
# Validate provider
valid_providers = ["openai", "groq", "ollama", "lmstudio"]
if self.provider not in valid_providers:
raise ValueError(f"OpenAICompatibleLLM only supports: {', '.join(valid_providers)}. Got: {self.provider}")
# Set default base URLs
if not self.base_url:
if self.provider == "groq":
self.base_url = "https://api.groq.com/openai/v1"
elif self.provider == "ollama":
self.base_url = "http://localhost:11434/v1"
elif self.provider == "lmstudio":
self.base_url = "http://localhost:1234/v1"
# For ollama/lmstudio, use dummy key if not provided
if self.provider in ("ollama", "lmstudio") and not self.api_key:
self.api_key = "local"
# Validate API key for cloud providers
if self.provider in ("openai", "groq") and not self.api_key:
raise ValueError(f"API key is required for {self.provider}")
# Groq service tier configuration
self.groq_service_tier = groq_service_tier or os.getenv("HINDSIGHT_API_LLM_GROQ_SERVICE_TIER", "auto")
# Get timeout config
self.timeout = timeout or float(os.getenv(ENV_LLM_TIMEOUT, str(DEFAULT_LLM_TIMEOUT)))
# Create OpenAI client
client_kwargs: dict[str, Any] = {"api_key": self.api_key, "max_retries": 0}
if self.base_url:
client_kwargs["base_url"] = self.base_url
if self.timeout:
client_kwargs["timeout"] = self.timeout
self._client = AsyncOpenAI(**client_kwargs)
logger.info(
f"OpenAI-compatible client initialized: provider={self.provider}, model={self.model}, "
f"base_url={self.base_url or 'default'}"
)
async def verify_connection(self) -> None:
"""
Verify that the provider is configured correctly by making a simple test call.
Raises:
RuntimeError: If the connection test fails.
"""
try:
logger.info(f"Verifying connection: {self.provider}/{self.model}")
await self.call(
messages=[{"role": "user", "content": "Say 'ok'"}],
max_completion_tokens=100,
max_retries=2,
initial_backoff=0.5,
max_backoff=2.0,
scope="verification",
)
logger.info(f"Connection verified: {self.provider}/{self.model}")
except Exception as e:
raise RuntimeError(f"Connection verification failed for {self.provider}/{self.model}: {e}") from e
def _supports_reasoning_model(self) -> bool:
"""Check if the current model is a reasoning model (o1, o3, GPT-5, DeepSeek)."""
model_lower = self.model.lower()
return any(x in model_lower for x in ["gpt-5", "o1", "o3", "deepseek"])
def _get_max_reasoning_tokens(self) -> int | None:
"""Get max reasoning tokens for reasoning models."""
model_lower = self.model.lower()
# GPT-4 and GPT-4.1 models have different caps
if any(x in model_lower for x in ["gpt-4.1", "gpt-4-"]):
return 32000
elif "gpt-4o" in model_lower:
return 16384
return None
async def call(
self,
messages: list[dict[str, str]],
response_format: Any | None = None,
max_completion_tokens: int | None = None,
temperature: float | None = None,
scope: str = "memory",
max_retries: int = 10,
initial_backoff: float = 1.0,
max_backoff: float = 60.0,
skip_validation: bool = False,
strict_schema: bool = False,
return_usage: bool = False,
) -> Any:
"""
Make an LLM API call with retry logic.
Args:
messages: List of message dicts with 'role' and 'content'.
response_format: Optional Pydantic model for structured output.
max_completion_tokens: Maximum tokens in response.
temperature: Sampling temperature (0.0-2.0).
scope: Scope identifier for tracking.
max_retries: Maximum retry attempts.
initial_backoff: Initial backoff time in seconds.
max_backoff: Maximum backoff time in seconds.
skip_validation: Return raw JSON without Pydantic validation.
strict_schema: Use strict JSON schema enforcement (OpenAI only).
return_usage: If True, return tuple (result, TokenUsage) instead of just result.
Returns:
If return_usage=False: Parsed response if response_format is provided, otherwise text content.
If return_usage=True: Tuple of (result, TokenUsage) with token counts.
Raises:
OutputTooLongError: If output exceeds token limits.
Exception: Re-raises API errors after retries exhausted.
"""
# Handle Ollama with native API for structured output (better schema enforcement)
if self.provider == "ollama" and response_format is not None:
return await self._call_ollama_native(
messages=messages,
response_format=response_format,
max_completion_tokens=max_completion_tokens,
temperature=temperature,
max_retries=max_retries,
initial_backoff=initial_backoff,
max_backoff=max_backoff,
skip_validation=skip_validation,
scope=scope,
return_usage=return_usage,
)
start_time = time.time()
# Build call parameters
call_params: dict[str, Any] = {
"model": self.model,
"messages": messages,
}
# Check if model supports reasoning parameter
is_reasoning_model = self._supports_reasoning_model()
# Apply model-specific token limits
if max_completion_tokens is not None:
max_tokens_cap = self._get_max_reasoning_tokens()
if max_tokens_cap and max_completion_tokens > max_tokens_cap:
max_completion_tokens = max_tokens_cap
# For reasoning models, enforce minimum to ensure space for reasoning + output
if is_reasoning_model and max_completion_tokens < 16000:
max_completion_tokens = 16000
call_params["max_completion_tokens"] = max_completion_tokens
# Temperature - reasoning models don't support custom temperature
if temperature is not None and not is_reasoning_model:
call_params["temperature"] = temperature
# Set reasoning_effort for reasoning models
if is_reasoning_model:
call_params["reasoning_effort"] = self.reasoning_effort
# Provider-specific parameters
if self.provider == "groq":
call_params["seed"] = DEFAULT_LLM_SEED
extra_body: dict[str, Any] = {}
# Add service_tier if configured
if self.groq_service_tier:
extra_body["service_tier"] = self.groq_service_tier
# Add reasoning parameters for reasoning models
if is_reasoning_model:
extra_body["include_reasoning"] = False
if extra_body:
call_params["extra_body"] = extra_body
# Prepare response format ONCE before retry loop
if response_format is not None:
schema = None
if hasattr(response_format, "model_json_schema"):
schema = response_format.model_json_schema()
if strict_schema and schema is not None:
# Use OpenAI's strict JSON schema enforcement
call_params["response_format"] = {
"type": "json_schema",
"json_schema": {
"name": "response",
"strict": True,
"schema": schema,
},
}
else:
# Soft enforcement: add schema to prompt and use json_object mode
if schema is not None:
schema_msg = (
f"\n\nYou must respond with valid JSON matching this schema:\n{json.dumps(schema, indent=2)}"
)
if call_params["messages"] and call_params["messages"][0].get("role") == "system":
first_msg = call_params["messages"][0]
if isinstance(first_msg, dict) and isinstance(first_msg.get("content"), str):
first_msg["content"] += schema_msg
elif call_params["messages"]:
first_msg = call_params["messages"][0]
if isinstance(first_msg, dict) and isinstance(first_msg.get("content"), str):
first_msg["content"] = schema_msg + "\n\n" + first_msg["content"]
if self.provider not in ("lmstudio", "ollama"):
# LM Studio and Ollama don't support json_object response format reliably
call_params["response_format"] = {"type": "json_object"}
last_exception = None
for attempt in range(max_retries + 1):
try:
if response_format is not None:
response = await self._client.chat.completions.create(**call_params)
content = response.choices[0].message.content
# Strip reasoning model thinking tags
# Supports: <think>, <thinking>, <reasoning>, |startthink|/|endthink|
if content:
original_len = len(content)
content = re.sub(r"<think>.*?</think>", "", content, flags=re.DOTALL)
content = re.sub(r"<thinking>.*?</thinking>", "", content, flags=re.DOTALL)
content = re.sub(r"<reasoning>.*?</reasoning>", "", content, flags=re.DOTALL)
content = re.sub(r"\|startthink\|.*?\|endthink\|", "", content, flags=re.DOTALL)
content = content.strip()
if len(content) < original_len:
logger.debug(f"Stripped {original_len - len(content)} chars of reasoning tokens")
# For local models, they may wrap JSON in markdown code blocks
if self.provider in ("lmstudio", "ollama"):
clean_content = content
if "```json" in content:
clean_content = content.split("```json")[1].split("```")[0].strip()
elif "```" in content:
clean_content = content.split("```")[1].split("```")[0].strip()
try:
json_data = json.loads(clean_content)
except json.JSONDecodeError:
# Fallback to parsing raw content
json_data = json.loads(content)
else:
# Log raw LLM response for debugging JSON parse issues
try:
json_data = json.loads(content)
except json.JSONDecodeError as json_err:
# Truncate content for logging
content_preview = content[:500] if content else "<empty>"
if content and len(content) > 700:
content_preview = f"{content[:500]}...TRUNCATED...{content[-200:]}"
logger.warning(
f"JSON parse error from LLM response (attempt {attempt + 1}/{max_retries + 1}): {json_err}\n"
f" Model: {self.provider}/{self.model}\n"
f" Content length: {len(content) if content else 0} chars\n"
f" Content preview: {content_preview!r}\n"
f" Finish reason: {response.choices[0].finish_reason if response.choices else 'unknown'}"
)
# Retry on JSON parse errors
if attempt < max_retries:
backoff = min(initial_backoff * (2**attempt), max_backoff)
await asyncio.sleep(backoff)
last_exception = json_err
continue
else:
logger.error(f"JSON parse error after {max_retries + 1} attempts, giving up")
raise
if skip_validation:
result = json_data
else:
result = response_format.model_validate(json_data)
else:
response = await self._client.chat.completions.create(**call_params)
result = response.choices[0].message.content
# Record token usage metrics
duration = time.time() - start_time
usage = response.usage
input_tokens = usage.prompt_tokens or 0 if usage else 0
output_tokens = usage.completion_tokens or 0 if usage else 0
total_tokens = usage.total_tokens or 0 if usage else 0
# Record LLM metrics
metrics = get_metrics_collector()
metrics.record_llm_call(
provider=self.provider,
model=self.model,
scope=scope,
duration=duration,
input_tokens=input_tokens,
output_tokens=output_tokens,
success=True,
)
# Record trace span
from hindsight_api.tracing import _serialize_for_span, get_span_recorder
finish_reason = response.choices[0].finish_reason if response.choices else None
span_recorder = get_span_recorder()
span_recorder.record_llm_call(
provider=self.provider,
model=self.model,
scope=scope,
messages=messages,
response_content=_serialize_for_span(result),
input_tokens=input_tokens,
output_tokens=output_tokens,
duration=duration,
finish_reason=finish_reason,
error=None,
)
# Log slow calls
if duration > 10.0 and usage:
ratio = max(1, output_tokens) / max(1, input_tokens)
cached_tokens = 0
if hasattr(usage, "prompt_tokens_details") and usage.prompt_tokens_details:
cached_tokens = getattr(usage.prompt_tokens_details, "cached_tokens", 0) or 0
cache_info = f", cached_tokens={cached_tokens}" if cached_tokens > 0 else ""
logger.info(
f"slow llm call: scope={scope}, model={self.provider}/{self.model}, "
f"input_tokens={input_tokens}, output_tokens={output_tokens}, "
f"total_tokens={total_tokens}{cache_info}, time={duration:.3f}s, ratio out/in={ratio:.2f}"
)
if return_usage:
token_usage = TokenUsage(
input_tokens=input_tokens,
output_tokens=output_tokens,
total_tokens=total_tokens,
)
return result, token_usage
return result
except LengthFinishReasonError as e:
logger.warning(f"LLM output exceeded token limits: {str(e)}")
raise OutputTooLongError(
"LLM output exceeded token limits. Input may need to be split into smaller chunks."
) from e
except APIConnectionError as e:
last_exception = e
status_code = getattr(e, "status_code", None) or getattr(
getattr(e, "response", None), "status_code", None
)
logger.warning(f"APIConnectionError (HTTP {status_code}), attempt {attempt + 1}: {str(e)[:200]}")
if attempt < max_retries:
backoff = min(initial_backoff * (2**attempt), max_backoff)
await asyncio.sleep(backoff)
continue
else:
logger.error(f"Connection error after {max_retries + 1} attempts: {str(e)}")
raise
except APIStatusError as e:
# Fast fail only on 401 (unauthorized) and 403 (forbidden)
if e.status_code in (401, 403):
logger.error(f"Auth error (HTTP {e.status_code}), not retrying: {str(e)}")
raise
# Handle tool_use_failed error - model outputted in tool call format
if e.status_code == 400 and response_format is not None:
try:
error_body = e.body if hasattr(e, "body") else {}
if isinstance(error_body, dict):
error_info: dict[str, Any] = error_body.get("error") or {}
if error_info.get("code") == "tool_use_failed":
failed_gen = error_info.get("failed_generation", "")
if failed_gen:
# Parse tool call format and convert to expected format
tool_call = json.loads(failed_gen)
tool_name = tool_call.get("name", "")
tool_args = tool_call.get("arguments", {})
converted = {"actions": [{"tool": tool_name, **tool_args}]}
if skip_validation:
result = converted
else:
result = response_format.model_validate(converted)
# Record metrics
duration = time.time() - start_time
metrics = get_metrics_collector()
metrics.record_llm_call(
provider=self.provider,
model=self.model,
scope=scope,
duration=duration,
input_tokens=0,
output_tokens=0,
success=True,
)
if return_usage:
return result, TokenUsage(input_tokens=0, output_tokens=0, total_tokens=0)
return result
except (json.JSONDecodeError, KeyError, TypeError):
pass # Failed to parse tool_use_failed, continue with normal retry
last_exception = e
if attempt < max_retries:
backoff = min(initial_backoff * (2**attempt), max_backoff)
jitter = backoff * 0.2 * (2 * (time.time() % 1) - 1)
sleep_time = backoff + jitter
await asyncio.sleep(sleep_time)
else:
logger.error(f"API error after {max_retries + 1} attempts: {str(e)}")
raise
except Exception:
raise
if last_exception:
raise last_exception
raise RuntimeError("LLM call failed after all retries with no exception captured")
async def call_with_tools(
self,
messages: list[dict[str, Any]],
tools: list[dict[str, Any]],
max_completion_tokens: int | None = None,
temperature: float | None = None,
scope: str = "tools",
max_retries: int = 5,
initial_backoff: float = 1.0,
max_backoff: float = 30.0,
tool_choice: str | dict[str, Any] = "auto",
) -> LLMToolCallResult:
"""
Make an LLM API call with tool/function calling support.
Args:
messages: List of message dicts. Can include tool results with role='tool'.
tools: List of tool definitions in OpenAI format.
max_completion_tokens: Maximum tokens in response.
temperature: Sampling temperature (0.0-2.0).
scope: Scope identifier for tracking.
max_retries: Maximum retry attempts.
initial_backoff: Initial backoff time in seconds.
max_backoff: Maximum backoff time in seconds.
tool_choice: How to choose tools - "auto", "none", "required", or specific function.
Returns:
LLMToolCallResult with content and/or tool_calls.
"""
start_time = time.time()
# Build call parameters
call_params: dict[str, Any] = {
"model": self.model,
"messages": messages,
"tools": tools,
"tool_choice": tool_choice,
}
if max_completion_tokens is not None:
call_params["max_completion_tokens"] = max_completion_tokens
if temperature is not None:
call_params["temperature"] = temperature
# Provider-specific parameters
if self.provider == "groq":
call_params["seed"] = DEFAULT_LLM_SEED
last_exception = None
for attempt in range(max_retries + 1):
try:
response = await self._client.chat.completions.create(**call_params)
message = response.choices[0].message
finish_reason = response.choices[0].finish_reason
# Extract tool calls if present
tool_calls: list[LLMToolCall] = []
if message.tool_calls:
for tc in message.tool_calls:
try:
args = json.loads(tc.function.arguments) if tc.function.arguments else {}
except json.JSONDecodeError:
args = {"_raw": tc.function.arguments}
tool_calls.append(LLMToolCall(id=tc.id, name=tc.function.name, arguments=args))
content = message.content
# Record metrics
duration = time.time() - start_time
usage = response.usage
input_tokens = usage.prompt_tokens or 0 if usage else 0
output_tokens = usage.completion_tokens or 0 if usage else 0
metrics = get_metrics_collector()
metrics.record_llm_call(
provider=self.provider,
model=self.model,
scope=scope,
duration=duration,
input_tokens=input_tokens,
output_tokens=output_tokens,
success=True,
)
# Record OpenTelemetry span
from hindsight_api.tracing import get_span_recorder
span_recorder = get_span_recorder()
# Convert LLMToolCall objects to dicts for span recording
tool_calls_dict = (
[{"id": tc.id, "name": tc.name, "arguments": tc.arguments} for tc in tool_calls]
if tool_calls
else None
)
span_recorder.record_llm_call(
provider=self.provider,
model=self.model,
scope=scope,
messages=messages,
response_content=content,
input_tokens=input_tokens,
output_tokens=output_tokens,
duration=duration,
finish_reason=finish_reason,
error=None,
tool_calls=tool_calls_dict,
)
return LLMToolCallResult(
content=content,
tool_calls=tool_calls,
finish_reason=finish_reason,
input_tokens=input_tokens,
output_tokens=output_tokens,
)
except APIConnectionError as e:
last_exception = e
if attempt < max_retries:
await asyncio.sleep(min(initial_backoff * (2**attempt), max_backoff))
continue
raise
except APIStatusError as e:
if e.status_code in (401, 403):
raise
last_exception = e
if attempt < max_retries:
await asyncio.sleep(min(initial_backoff * (2**attempt), max_backoff))
continue
raise
except Exception:
raise
if last_exception:
raise last_exception
raise RuntimeError("Tool call failed after all retries")
async def _call_ollama_native(
self,
messages: list[dict[str, str]],
response_format: Any,
max_completion_tokens: int | None,
temperature: float | None,
max_retries: int,
initial_backoff: float,
max_backoff: float,
skip_validation: bool,
scope: str = "memory",
return_usage: bool = False,
) -> Any:
"""
Call Ollama using native API with JSON schema enforcement.
Ollama's native API supports passing a full JSON schema in the 'format' parameter,
which provides better structured output control than the OpenAI-compatible API.
"""
start_time = time.time()
# Get the JSON schema from the Pydantic model
schema = response_format.model_json_schema() if hasattr(response_format, "model_json_schema") else None
# Build the base URL for Ollama's native API
# Default OpenAI-compatible URL is http://localhost:11434/v1
# Native API is at http://localhost:11434/api/chat
base_url = self.base_url or "http://localhost:11434/v1"
if base_url.endswith("/v1"):
native_url = base_url[:-3] + "/api/chat"
else:
native_url = base_url.rstrip("/") + "/api/chat"
# Build request payload
payload: dict[str, Any] = {
"model": self.model,
"messages": messages,
"stream": False,
}
# Add schema as format parameter for structured output
if schema:
payload["format"] = schema
# Add optional parameters with optimized defaults for Ollama
options: dict[str, Any] = {
"num_ctx": 16384, # 16k context window for larger prompts
"num_batch": 512, # Optimal batch size for prompt processing
}
if max_completion_tokens:
options["num_predict"] = max_completion_tokens
if temperature is not None:
options["temperature"] = temperature
payload["options"] = options
last_exception = None
async with httpx.AsyncClient(timeout=300.0) as client:
for attempt in range(max_retries + 1):
try:
response = await client.post(native_url, json=payload)
response.raise_for_status()
result = response.json()
content = result.get("message", {}).get("content", "")
# Parse JSON response
try:
json_data = json.loads(content)
except json.JSONDecodeError as json_err:
content_preview = content[:500] if content else "<empty>"
if content and len(content) > 700:
content_preview = f"{content[:500]}...TRUNCATED...{content[-200:]}"
logger.warning(
f"Ollama JSON parse error (attempt {attempt + 1}/{max_retries + 1}): {json_err}\n"
f" Model: ollama/{self.model}\n"
f" Content length: {len(content) if content else 0} chars\n"
f" Content preview: {content_preview!r}"
)
if attempt < max_retries:
backoff = min(initial_backoff * (2**attempt), max_backoff)
await asyncio.sleep(backoff)
last_exception = json_err
continue
else:
raise
# Extract token usage from Ollama response
duration = time.time() - start_time
input_tokens = result.get("prompt_eval_count", 0) or 0
output_tokens = result.get("eval_count", 0) or 0
total_tokens = input_tokens + output_tokens
# Record LLM metrics
metrics = get_metrics_collector()
metrics.record_llm_call(
provider=self.provider,
model=self.model,
scope=scope,
duration=duration,
input_tokens=input_tokens,
output_tokens=output_tokens,
success=True,
)
# Validate against Pydantic model or return raw JSON
if skip_validation:
validated_result = json_data
else:
validated_result = response_format.model_validate(json_data)
if return_usage:
token_usage = TokenUsage(
input_tokens=input_tokens,
output_tokens=output_tokens,
total_tokens=total_tokens,
)
return validated_result, token_usage
return validated_result
except httpx.HTTPStatusError as e:
last_exception = e
if attempt < max_retries:
logger.warning(
f"Ollama HTTP error (attempt {attempt + 1}/{max_retries + 1}): {e.response.status_code}"
)
backoff = min(initial_backoff * (2**attempt), max_backoff)
await asyncio.sleep(backoff)
continue
else:
logger.error(f"Ollama HTTP error after {max_retries + 1} attempts: {e}")
raise
except httpx.RequestError as e:
last_exception = e
if attempt < max_retries:
logger.warning(f"Ollama connection error (attempt {attempt + 1}/{max_retries + 1}): {e}")
backoff = min(initial_backoff * (2**attempt), max_backoff)
await asyncio.sleep(backoff)
continue
else:
logger.error(f"Ollama connection error after {max_retries + 1} attempts: {e}")
raise
except Exception as e:
logger.error(f"Unexpected error during Ollama call: {type(e).__name__}: {e}")
raise
if last_exception:
raise last_exception
raise RuntimeError("Ollama call failed after all retries")
async def cleanup(self) -> None:
"""Clean up resources (close OpenAI client connections)."""
if hasattr(self, "_client") and self._client:
await self._client.close()
@@ -402,7 +402,7 @@ async def run_reflect_agent(
{"role": "system", "content": FINAL_SYSTEM_PROMPT},
{"role": "user", "content": prompt},
],
scope="reflect",
scope="reflect_agent_final",
max_completion_tokens=max_tokens,
return_usage=True,
)
@@ -447,7 +447,7 @@ async def run_reflect_agent(
result = await llm_config.call_with_tools(
messages=messages,
tools=tools,
scope="reflect_tool_call",
scope="reflect_agent",
tool_choice="required" if iteration == 0 else "auto", # Force tool use on first iteration
)
llm_duration = int((time.time() - llm_start) * 1000)
@@ -479,7 +479,7 @@ async def run_reflect_agent(
{"role": "system", "content": FINAL_SYSTEM_PROMPT},
{"role": "user", "content": prompt},
],
scope="reflect",
scope="reflect_agent_final",
max_completion_tokens=max_tokens,
return_usage=True,
)
@@ -550,7 +550,7 @@ async def run_reflect_agent(
{"role": "system", "content": FINAL_SYSTEM_PROMPT},
{"role": "user", "content": prompt},
],
scope="reflect",
scope="reflect_agent_final",
max_completion_tokens=max_tokens,
return_usage=True,
)
@@ -617,30 +617,23 @@ async def run_reflect_agent(
)
continue
# Process done tool - wrap with tool call span
from hindsight_api.tracing import get_tracer
tracer = get_tracer()
span_name = "hindsight.reflect_tool_call"
with tracer.start_as_current_span(span_name) as span:
span.set_attribute("hindsight.scope", "reflect_tool_call")
span.set_attribute("hindsight.operation", "reflect_tool_call")
return await _process_done_tool(
done_call,
available_memory_ids,
available_mental_model_ids,
available_observation_ids,
iteration + 1,
total_tools_called,
tool_trace,
_get_llm_trace(),
_get_usage(),
_log_completion,
reflect_id,
directives_applied=directives_applied,
llm_config=llm_config,
response_schema=response_schema,
)
# Process done tool
return await _process_done_tool(
done_call,
available_memory_ids,
available_mental_model_ids,
available_observation_ids,
iteration + 1,
total_tools_called,
tool_trace,
_get_llm_trace(),
_get_usage(),
_log_completion,
reflect_id,
directives_applied=directives_applied,
llm_config=llm_config,
response_schema=response_schema,
)
# Execute other tools in parallel (exclude done tool in all its format variants)
other_tools = [tc for tc in result.tool_calls if not _is_done_tool(tc.name)]
@@ -849,67 +842,17 @@ async def _execute_tool_with_timing(
expand_fn: Callable[[list[str], str], Awaitable[dict[str, Any]]],
) -> tuple[dict[str, Any], int]:
"""Execute a tool call and return result with timing."""
from hindsight_api.tracing import get_tracer
start_time = time.time()
# Create span for tool execution
tracer = get_tracer()
# Normalize tool name for span
normalized_name = _normalize_tool_name(tc.name)
span_name = f"hindsight.reflect_tool_exec.{normalized_name}"
# Calculate timestamps
start_time_ns = time.time_ns()
with tracer.start_as_current_span(
span_name,
start_time=start_time_ns,
end_on_exit=False,
) as span:
# Set attributes
span.set_attribute("hindsight.tool.name", normalized_name)
span.set_attribute("hindsight.tool.id", tc.id)
span.set_attribute("hindsight.tool.arguments", json.dumps(tc.arguments))
try:
result = await _execute_tool(
tc.name,
tc.arguments,
search_mental_models_fn,
search_observations_fn,
recall_fn,
expand_fn,
)
# Set success attributes
if isinstance(result, dict) and "error" in result:
from opentelemetry.trace import Status, StatusCode
span.set_status(Status(StatusCode.ERROR, result["error"]))
else:
from opentelemetry.trace import Status, StatusCode
span.set_status(Status(StatusCode.OK))
duration_ms = int((time.time() - start_time) * 1000)
span.set_attribute("hindsight.tool.duration_ms", duration_ms)
# End span with correct timestamp
end_time_ns = time.time_ns()
span.end(end_time=end_time_ns)
return result, duration_ms
except Exception as e:
from opentelemetry.trace import Status, StatusCode
span.set_status(Status(StatusCode.ERROR, str(e)))
span.record_exception(e)
duration_ms = int((time.time() - start_time) * 1000)
span.set_attribute("hindsight.tool.duration_ms", duration_ms)
end_time_ns = time.time_ns()
span.end(end_time=end_time_ns)
raise
start = time.time()
result = await _execute_tool(
tc.name,
tc.arguments,
search_mental_models_fn,
search_observations_fn,
recall_fn,
expand_fn,
)
duration_ms = int((time.time() - start) * 1000)
return result, duration_ms
async def _execute_tool(
@@ -928,21 +871,21 @@ async def _execute_tool(
query = args.get("query")
if not query:
return {"error": "search_mental_models requires a query parameter"}
max_results = int(args.get("max_results") or 5)
max_results = args.get("max_results") or 5
return await search_mental_models_fn(query, max_results)
elif tool_name == "search_observations":
query = args.get("query")
if not query:
return {"error": "search_observations requires a query parameter"}
max_tokens = max(int(args.get("max_tokens") or 5000), 1000) # Default 5000, min 1000
max_tokens = max(args.get("max_tokens") or 5000, 1000) # Default 5000, min 1000
return await search_observations_fn(query, max_tokens)
elif tool_name == "recall":
query = args.get("query")
if not query:
return {"error": "recall requires a query parameter"}
max_tokens = max(int(args.get("max_tokens") or 2048), 1000) # Default 2048, min 1000
max_tokens = max(args.get("max_tokens") or 2048, 1000) # Default 2048, min 1000
return await recall_fn(query, max_tokens)
elif tool_name == "expand":
@@ -961,18 +904,18 @@ def _summarize_input(tool_name: str, args: dict[str, Any]) -> str:
if tool_name == "search_mental_models":
query = args.get("query", "")
query_preview = f"'{query[:30]}...'" if len(query) > 30 else f"'{query}'"
max_results = int(args.get("max_results") or 5)
max_results = args.get("max_results") or 5
return f"(query={query_preview}, max_results={max_results})"
elif tool_name == "search_observations":
query = args.get("query", "")
query_preview = f"'{query[:30]}...'" if len(query) > 30 else f"'{query}'"
max_tokens = max(int(args.get("max_tokens") or 5000), 1000)
max_tokens = max(args.get("max_tokens") or 5000, 1000)
return f"(query={query_preview}, max_tokens={max_tokens})"
elif tool_name == "recall":
query = args.get("query", "")
query_preview = f"'{query[:30]}...'" if len(query) > 30 else f"'{query}'"
# Show actual value used (default 2048, min 1000)
max_tokens = max(int(args.get("max_tokens") or 2048), 1000)
max_tokens = max(args.get("max_tokens") or 2048, 1000)
return f"(query={query_preview}, max_tokens={max_tokens})"
elif tool_name == "expand":
memory_ids = args.get("memory_ids", [])
@@ -31,7 +31,7 @@ class ReflectAction(BaseModel):
default=None, description="Observation sections for done action (when output_mode=observations)"
)
# Plain text answer fields (for output_mode=answer)
answer: str | None = Field(default=None, description="Well-formatted markdown answer for done action")
answer: str | None = Field(default=None, description="Plain text answer for done action (no markdown)")
answer_memory_ids: list[str] | None = Field(
default=None, description="Memory IDs supporting the answer", alias="memory_ids"
)
@@ -148,15 +148,7 @@ def build_system_prompt_for_tools(
parts = []
# Anti-hallucination rule at the very top
parts.extend(
[
"CRITICAL: You MUST ONLY use information from retrieved tool results. NEVER make up names, people, events, or entities.",
"",
]
)
# Inject directives after anti-hallucination rule
# Inject directives at the VERY START for maximum prominence
if directives:
parts.append(build_directives_section(directives))
@@ -170,7 +162,7 @@ def build_system_prompt_for_tools(
parts.extend(
[
"## CRITICAL RULES",
"- ONLY use information from tool results - no external knowledge or guessing",
"- You must NEVER fabricate information that has no basis in retrieved data",
"- You SHOULD synthesize, infer, and reason from the retrieved memories",
"- You MUST search before saying you don't have information",
"",
@@ -308,11 +300,9 @@ def build_system_prompt_for_tools(
parts.extend(
[
"",
"## Output Format: Well-Formatted Markdown Answer",
"Call done() with a well-formatted markdown 'answer' field.",
"- USE markdown formatting for structure (headers, lists, bold, italic, code blocks, tables, etc.)",
"- CRITICAL: Add blank lines before and after block elements (tables, code blocks, lists)",
"- Format for clarity and readability with proper spacing and hierarchy",
"## Output Format: Plain Text Answer",
"Call done() with a plain text 'answer' field.",
"- Do NOT use markdown formatting",
"- NEVER include memory IDs, UUIDs, or 'Memory references' in the answer text",
"- Put IDs ONLY in the memory_ids/mental_model_ids/observation_ids arrays, not in the answer",
]
@@ -473,41 +463,21 @@ def build_final_prompt(
parts.append(
"\n## Instructions\n"
"Provide a thoughtful answer by synthesizing and reasoning from the retrieved data above. "
"You can make reasonable inferences from the memories, but don't completely fabricate information. "
"You can make reasonable inferences from the memories, but don't completely fabricate information."
"If the exact answer isn't stated, use what IS stated to give the best possible answer. "
"Only say 'I don't have information' if the retrieved data is truly unrelated to the question.\n\n"
"IMPORTANT: Output ONLY the final answer. Do NOT include meta-commentary like "
'"I\'ll search..." or "Let me analyze...". Do NOT explain your reasoning process. '
"Just provide the direct synthesized answer."
"Only say 'I don't have information' if the retrieved data is truly unrelated to the question."
)
return "\n".join(parts)
FINAL_SYSTEM_PROMPT = """CRITICAL: You MUST ONLY use information from retrieved tool results. NEVER make up names, people, events, or entities.
You are a thoughtful assistant that synthesizes answers from retrieved memories.
FINAL_SYSTEM_PROMPT = """You are a thoughtful assistant that synthesizes answers from retrieved memories.
Your approach:
- Reason over the retrieved memories to answer the question
- Make reasonable inferences when the exact answer isn't explicitly stated
- Connect related memories to form a complete picture
- Be helpful - if you have related information, use it to give the best possible answer
- ONLY use information from tool results - no external knowledge or guessing
Only say "I don't have information" if the retrieved data is truly unrelated to the question.
FORMATTING: Use proper markdown formatting in your answer:
- Headers (##, ###) for sections
- Lists (bullet or numbered) for enumerations
- Bold/italic for emphasis
- Tables with proper syntax (ensure blank line before and after)
- Code blocks where appropriate
- CRITICAL: Always add blank lines before and after block elements (tables, code blocks, lists)
- Proper spacing between sections
CRITICAL: Output ONLY the final synthesized answer. Do NOT include:
- Meta-commentary about what you're doing ("I'll search...", "Let me analyze...")
- Explanations of your reasoning process
- Descriptions of your approach
Just provide the direct answer with proper markdown formatting."""
Do NOT fabricate information that has no basis in the retrieved data."""
@@ -54,18 +54,19 @@ async def tool_search_mental_models(
Dict with matching mental models including content and freshness info
"""
from ..memory_engine import fq_table
from ..search.tags import build_tags_where_clause
# Build filters dynamically
filters = ""
params: list[Any] = [bank_id, str(query_embedding), max_results]
next_param = 4
# Use the centralized tag filtering logic
if tags:
tag_clause, tag_params, next_param = build_tags_where_clause(tags, param_offset=next_param, match=tags_match)
filters += f" {tag_clause}"
params.extend(tag_params)
if tags_match == "all":
filters += f" AND tags @> ${next_param}::varchar[]"
else:
filters += f" AND (tags && ${next_param}::varchar[] OR tags IS NULL OR tags = '{{}}')"
params.append(tags)
next_param += 1
if exclude_ids:
filters += f" AND id != ALL(${next_param}::text[])"
@@ -139,7 +139,7 @@ TOOL_DONE_ANSWER = {
"properties": {
"answer": {
"type": "string",
"description": "Your response as well-formatted markdown. Use headers, lists, bold/italic, and code blocks for clarity. NEVER include memory IDs, UUIDs, or 'Memory references' in this text - put IDs only in memory_ids array.",
"description": "Your response as plain text. Do NOT use markdown formatting. NEVER include memory IDs, UUIDs, or 'Memory references' in this text - put IDs only in memory_ids array.",
},
"memory_ids": {
"type": "array",
@@ -190,7 +190,7 @@ def _build_done_tool_with_directives(directive_rules: list[str]) -> dict:
"properties": {
"answer": {
"type": "string",
"description": "Your response as well-formatted markdown. Use headers, lists, bold/italic, and code blocks for clarity. NEVER include memory IDs, UUIDs, or 'Memory references' in this text - put IDs only in memory_ids array.",
"description": "Your response as plain text. Do NOT use markdown formatting. NEVER include memory IDs, UUIDs, or 'Memory references' in this text - put IDs only in memory_ids array.",
},
"memory_ids": {
"type": "array",
@@ -542,12 +542,7 @@ Output: ONLY 2 facts (skip coffee preference - too trivial):
QUALITY OVER QUANTITY
══════════════════════════════════════════════════════════════════════════
Ask: "Would this be useful to recall in 6 months?" If no, skip it.
IMPORTANT: Sensory/emotional details and observations that provide meaningful context
about experiences ARE important to remember, even if they seem small (e.g., how food
tasted, how someone looked, how loud music was). Extract these if they characterize
an experience or person."""
Ask: "Would this be useful to recall in 6 months?" If no, skip it."""
# Assembled concise prompt (backward compatible - exact same output as before)
CONCISE_FACT_EXTRACTION_PROMPT = _BASE_FACT_EXTRACTION_PROMPT.format(
@@ -646,7 +641,6 @@ For EVENTS (fact_kind="event") - MUST SET BOTH occurred_start AND occurred_end:
- Convert relative dates → absolute using Event Date as reference
- If Event Date is "Saturday, March 15, 2020", then "yesterday" = Friday, March 14, 2020
- Dates mentioned in text (e.g., "in March 2020") should use THAT year, not current year
- CRITICAL: If the content mentions an absolute date (e.g., "March 15, 2024", "2024-03-15"), you MUST extract it and set occurred_start in ISO format
- Always include the day name (Monday, Tuesday, etc.) in the 'when' field
- Set occurred_start AND occurred_end to WHEN IT HAPPENED (not when mentioned)
- For single-day/point events: set occurred_end = occurred_start (same timestamp)
@@ -802,7 +796,7 @@ Text:
extraction_response_json, call_usage = await llm_config.call(
messages=[{"role": "system", "content": prompt}, {"role": "user", "content": user_message}],
response_format=response_schema,
scope="retain_extract_facts",
scope="memory_extract_facts",
temperature=0.1,
max_completion_tokens=config.retain_max_completion_tokens,
max_retries=max_retries,
@@ -1011,29 +1005,6 @@ Text:
except BadRequestError as e:
last_error = e
error_str = str(e).lower()
# Check if error is related to max_tokens/completion_tokens not being supported
if any(
keyword in error_str
for keyword in [
"max_tokens",
"max_completion_tokens",
"maximum context",
"token limit",
"context length",
]
):
# Provide helpful error message with configuration suggestions
raise ValueError(
f"Model does not support the required output token limit.\n\n"
f"The model '{llm_config.model}' (provider: {llm_config.provider}) failed with: {e}\n\n"
f"You have two options to fix this:\n"
f" 1. Use a different model that supports at least {config.retain_max_completion_tokens} output tokens\n"
f" 2. Decrease HINDSIGHT_API_RETAIN_MAX_COMPLETION_TOKENS to a value your model supports\n"
f" (current value: {config.retain_max_completion_tokens}, must be > RETAIN_CHUNK_SIZE={config.retain_chunk_size})"
) from e
if "json_validate_failed" in str(e):
logger.warning(
f" [1.3.{chunk_index + 1}] Attempt {attempt + 1}/{max_retries} failed with JSON validation error: {e}"
@@ -1376,21 +1347,28 @@ def _convert_causal_relations(relations_from_llm, fact_start_idx: int) -> list[C
def _add_temporal_offsets(facts: list[ExtractedFactType], contents: list[RetainContent]) -> None:
"""
Add time offsets to preserve fact ordering across all contents.
Add time offsets to preserve fact ordering within each content.
This allows retrieval to distinguish between facts from different documents/conversations
even when they have the same base event_date, and also between facts within the same
conversation.
Uses absolute position across all facts to ensure unique timestamps.
This allows retrieval to distinguish between facts that happened earlier vs later
in the same conversation, even when the base event_date is the same.
Modifies facts in place.
"""
from .orchestrator import parse_datetime_flexible
# Group facts by content_index
current_content_idx = 0
content_fact_start = 0
for i, fact in enumerate(facts):
# Use absolute position across all facts to ensure uniqueness across different contents
offset = timedelta(seconds=i * SECONDS_PER_FACT)
if fact.content_index != current_content_idx:
# Moved to next content
current_content_idx = fact.content_index
content_fact_start = i
# Calculate position within this content
fact_position = i - content_fact_start
offset = timedelta(seconds=fact_position * SECONDS_PER_FACT)
# Apply offset to all temporal fields (handle both datetime objects and ISO strings)
if fact.occurred_start:
@@ -158,13 +158,6 @@ async def retain_batch(
# Handle document tracking even with no facts
if document_id:
combined_content = "\n".join([c.get("content", "") for c in contents_dicts])
# Collect tags from all content items and merge with document_tags
all_tags = set(document_tags or [])
for item in contents_dicts:
item_tags = item.get("tags", []) or []
all_tags.update(item_tags)
merged_tags = list(all_tags)
retain_params = {}
if contents_dicts:
first_item = contents_dicts[0]
@@ -179,7 +172,7 @@ async def retain_batch(
if first_item.get("metadata"):
retain_params["metadata"] = first_item["metadata"]
await fact_storage.handle_document_tracking(
conn, bank_id, document_id, combined_content, is_first_batch, retain_params, merged_tags
conn, bank_id, document_id, combined_content, is_first_batch, retain_params, document_tags
)
else:
# Check for per-item document_ids
@@ -193,13 +186,6 @@ async def retain_batch(
for doc_id, doc_contents in contents_by_doc.items():
combined_content = "\n".join([c.get("content", "") for _, c in doc_contents])
# Collect tags from all content items for this document and merge with document_tags
all_tags = set(document_tags or [])
for _, item in doc_contents:
item_tags = item.get("tags", []) or []
all_tags.update(item_tags)
merged_tags = list(all_tags)
retain_params = {}
if doc_contents:
first_item = doc_contents[0][1]
@@ -214,7 +200,7 @@ async def retain_batch(
if first_item.get("metadata"):
retain_params["metadata"] = first_item["metadata"]
await fact_storage.handle_document_tracking(
conn, bank_id, doc_id, combined_content, is_first_batch, retain_params, merged_tags
conn, bank_id, doc_id, combined_content, is_first_batch, retain_params, document_tags
)
total_time = time.time() - start_time
@@ -266,13 +252,6 @@ async def retain_batch(
# Legacy: single document_id parameter
combined_content = "\n".join([c.get("content", "") for c in contents_dicts])
retain_params = {}
# Collect tags from all content items and merge with document_tags
all_tags = set(document_tags or [])
for item in contents_dicts:
item_tags = item.get("tags", []) or []
all_tags.update(item_tags)
merged_tags = list(all_tags)
if contents_dicts:
first_item = contents_dicts[0]
if first_item.get("context"):
@@ -287,7 +266,7 @@ async def retain_batch(
retain_params["metadata"] = first_item["metadata"]
await fact_storage.handle_document_tracking(
conn, bank_id, document_id, combined_content, is_first_batch, retain_params, merged_tags
conn, bank_id, document_id, combined_content, is_first_batch, retain_params, document_tags
)
document_ids_added.append(document_id)
doc_id_mapping[None] = document_id # For backwards compatibility
@@ -315,13 +294,6 @@ async def retain_batch(
# Combine content for this document
combined_content = "\n".join([c.get("content", "") for _, c in doc_contents])
# Collect tags from all content items for this document and merge with document_tags
all_tags = set(document_tags or [])
for _, item in doc_contents:
item_tags = item.get("tags", []) or []
all_tags.update(item_tags)
merged_tags = list(all_tags)
# Extract retain params from first content item
retain_params = {}
if doc_contents:
@@ -344,7 +316,7 @@ async def retain_batch(
combined_content,
is_first_batch,
retain_params,
merged_tags,
document_tags,
)
document_ids_added.append(actual_doc_id)
@@ -188,7 +188,7 @@ def get_system_message(disposition: DispositionTraits) -> str:
" ".join(instructions) if instructions else "Balance your disposition traits when interpreting information."
)
return f"You are a person with your own thoughts, experiences, opinions, and disposition. When asked a question, respond naturally like a human would - share what you genuinely think based on what you know and have experienced. {disposition_instruction} Be direct, express your views confidently, and use 'I think', 'I believe', 'in my view', etc. Respond in plain text without markdown formatting. CRITICAL: ONLY use the facts and information provided in the prompt - do not make up names, events, or information that weren't mentioned. If you don't have enough information to answer, say so. IMPORTANT: Detect the language of the question and respond in the SAME language. Do not translate to English if the question is in another language."
return f"You are a person with your own thoughts, experiences, opinions, and disposition. When asked a question, respond naturally like a human would - share what you genuinely think based on what you know and have experienced. {disposition_instruction} Be direct, express your views confidently, and use 'I think', 'I believe', 'in my view', etc. Respond in plain text without markdown formatting. IMPORTANT: Detect the language of the question and respond in the SAME language. Do not translate to English if the question is in another language."
async def reflect(
@@ -16,20 +16,14 @@ with the system (e.g., running migrations for tenant schemas).
"""
from hindsight_api.extensions.base import Extension
from hindsight_api.extensions.builtin import ApiKeyTenantExtension, SupabaseTenantExtension
from hindsight_api.extensions.builtin import ApiKeyTenantExtension
from hindsight_api.extensions.context import DefaultExtensionContext, ExtensionContext
from hindsight_api.extensions.http import HttpExtension
from hindsight_api.extensions.loader import load_extension
from hindsight_api.extensions.mcp import MCPExtension
from hindsight_api.extensions.operation_validator import (
# Consolidation operation
ConsolidateContext,
ConsolidateResult,
# Mental Model operations
MentalModelGetContext,
MentalModelGetResult,
MentalModelRefreshContext,
MentalModelRefreshResult,
# Core operations
OperationValidationError,
OperationValidatorExtension,
@@ -58,8 +52,6 @@ __all__ = [
"DefaultExtensionContext",
# HTTP Extension
"HttpExtension",
# MCP Extension
"MCPExtension",
# Operation Validator - Core
"OperationValidationError",
"OperationValidatorExtension",
@@ -73,14 +65,8 @@ __all__ = [
# Operation Validator - Consolidation
"ConsolidateContext",
"ConsolidateResult",
# Operation Validator - Mental Model
"MentalModelGetContext",
"MentalModelGetResult",
"MentalModelRefreshContext",
"MentalModelRefreshResult",
# Tenant/Auth
"ApiKeyTenantExtension",
"SupabaseTenantExtension",
"AuthenticationError",
"RequestContext",
"Tenant",
@@ -6,17 +6,13 @@ They can be used directly or serve as examples for custom implementations.
Available built-in extensions:
- ApiKeyTenantExtension: Simple API key validation with public schema
- SupabaseTenantExtension: Supabase JWT validation with per-user schema isolation
Example usage:
HINDSIGHT_API_TENANT_EXTENSION=hindsight_api.extensions.builtin.tenant:ApiKeyTenantExtension
HINDSIGHT_API_TENANT_EXTENSION=hindsight_api.extensions.builtin.supabase_tenant:SupabaseTenantExtension
"""
from hindsight_api.extensions.builtin.supabase_tenant import SupabaseTenantExtension
from hindsight_api.extensions.builtin.tenant import ApiKeyTenantExtension
__all__ = [
"ApiKeyTenantExtension",
"SupabaseTenantExtension",
]
@@ -1,433 +0,0 @@
"""
Supabase Tenant Extension for Hindsight
Validates Supabase JWTs and maps authenticated users to isolated memory banks.
Each user gets their own PostgreSQL schema based on their Supabase user ID.
This extension enables multi-tenant memory isolation for applications using
Supabase Auth - each authenticated user's memories are stored in a separate
schema, ensuring complete data isolation.
Features:
- Local JWT Verification: Validates tokens locally using JWKS public keys
(no network call per request)
- Automatic Schema Isolation: Each user gets {prefix}_{user_id} schema
- Zero User Management: Leverages your existing Supabase Auth setup
- Production Ready: Includes health checks, timeouts, key rotation handling,
and error handling
- Built-in: Ships with Hindsight, no extra installation needed
- Legacy Support: Falls back to /auth/v1/user endpoint for HS256 projects
JWT Verification Strategy:
By default, JWTs are verified locally using public keys from the Supabase
JWKS endpoint (/auth/v1/.well-known/jwks.json). This is the Supabase-recommended
approach: no network call per request, fast, and secure.
If JWKS keys are unavailable (e.g., legacy HS256 projects), the extension
falls back to calling /auth/v1/user per request for validation. This requires
the service_role key to be configured.
Configuration via environment variables:
HINDSIGHT_API_TENANT_EXTENSION=hindsight_api.extensions.builtin.supabase_tenant:SupabaseTenantExtension
HINDSIGHT_API_TENANT_SUPABASE_URL=https://your-project.supabase.co
# Optional - only required for legacy HS256 projects or health checks
HINDSIGHT_API_TENANT_SUPABASE_SERVICE_KEY=your-service-role-key
# Optional
HINDSIGHT_API_TENANT_SCHEMA_PREFIX=user # Default: "user" (creates user_<uuid> schemas)
Usage:
Clients pass their Supabase JWT in the Authorization header:
curl -H "Authorization: Bearer <supabase_jwt>" \\
https://your-hindsight-server/v1/default/banks/my-bank/memories/recall
Author: BrighterBalance (https://brighterbalance.app)
License: MIT
"""
from __future__ import annotations
import logging
import re
import time
import httpx
import jwt as pyjwt
from jwt import PyJWK
from hindsight_api.extensions.tenant import AuthenticationError, Tenant, TenantContext, TenantExtension
from hindsight_api.models import RequestContext
logger = logging.getLogger(__name__)
__all__ = ["SupabaseTenantExtension"]
# Minimum expected JWT length (JWTs are typically 100+ characters)
MIN_TOKEN_LENGTH = 20
# Timeout for Supabase API calls
REQUEST_TIMEOUT_SECONDS = 10.0
# JWKS cache TTL — Supabase Edge caches JWKS for 10 minutes, so we match that
JWKS_CACHE_TTL_SECONDS = 600
# Minimum interval between JWKS refreshes to avoid hammering the endpoint
JWKS_MIN_REFRESH_INTERVAL_SECONDS = 30
# Algorithms supported by Supabase Auth for asymmetric JWT signing
SUPPORTED_ALGORITHMS = ["RS256", "ES256"]
# Supabase user IDs are UUIDs — validate before using in schema names
_UUID_RE = re.compile(r"^[0-9a-f]{8}-[0-9a-f]{4}-[0-9a-f]{4}-[0-9a-f]{4}-[0-9a-f]{12}$", re.IGNORECASE)
# Schema prefix must be a valid Postgres identifier component (letters, digits, underscores)
_SCHEMA_PREFIX_RE = re.compile(r"^[a-zA-Z_][a-zA-Z0-9_]*$")
class SupabaseTenantExtension(TenantExtension):
"""
TenantExtension that validates Supabase JWTs for multi-tenant isolation.
Each authenticated user gets their own PostgreSQL schema, ensuring complete
memory isolation between users. The schema name is derived from the user's
Supabase user ID (the ``sub`` claim in the JWT).
JWT verification uses JWKS (local, no network call per request) when
asymmetric keys are configured in Supabase, and falls back to the
``/auth/v1/user`` endpoint for legacy HS256 projects.
Example:
User with ID "a1b2c3d4-e5f6-7890-abcd-ef1234567890"
gets schema "user_a1b2c3d4_e5f6_7890_abcd_ef1234567890"
"""
def __init__(self, config: dict[str, str]) -> None:
"""
Initialize with configuration from environment variables.
Config keys are derived from HINDSIGHT_API_TENANT_* env vars:
- HINDSIGHT_API_TENANT_SUPABASE_URL -> config["supabase_url"] (required)
- HINDSIGHT_API_TENANT_SUPABASE_SERVICE_KEY -> config["supabase_service_key"] (optional)
- HINDSIGHT_API_TENANT_SCHEMA_PREFIX -> config["schema_prefix"] (optional)
Args:
config: Dictionary of configuration values from environment
Raises:
ValueError: If required configuration is missing
"""
super().__init__(config)
self.supabase_url = (config.get("supabase_url") or "").rstrip("/")
self.supabase_service_key = config.get("supabase_service_key")
self.schema_prefix = config.get("schema_prefix", "user")
# Track initialized schemas to avoid redundant migrations
self._initialized_schemas: set[str] = set()
# Reusable HTTP client (created on startup)
self._http_client: httpx.AsyncClient | None = None
# JWKS state
self._jwks_keys: dict[str, PyJWK] = {}
self._jwks_last_fetched: float = 0
self._use_jwks: bool = False
if not self.supabase_url:
raise ValueError(
"HINDSIGHT_API_TENANT_SUPABASE_URL is required. "
"Set it to your Supabase project URL (e.g., https://xxx.supabase.co)"
)
if not _SCHEMA_PREFIX_RE.match(self.schema_prefix):
raise ValueError(
f"Invalid schema_prefix '{self.schema_prefix}'. "
"Must be a valid Postgres identifier (letters, digits, underscores, starting with a letter or underscore)."
)
# ------------------------------------------------------------------
# Lifecycle
# ------------------------------------------------------------------
async def on_startup(self) -> None:
"""
Called when Hindsight starts.
Creates a reusable HTTP client, fetches JWKS for local JWT verification,
and optionally verifies connectivity to Supabase.
"""
logger.info("Initializing Supabase tenant extension")
logger.info("Supabase URL: %s", self.supabase_url)
logger.info("Schema prefix: %s_", self.schema_prefix)
self._http_client = httpx.AsyncClient(timeout=REQUEST_TIMEOUT_SECONDS)
# Attempt to fetch JWKS for fast local JWT verification
await self._try_init_jwks()
# Optional health check using service key
if self.supabase_service_key:
await self._health_check()
async def on_shutdown(self) -> None:
"""Called when Hindsight shuts down. Closes the HTTP client."""
logger.info("Shutting down Supabase tenant extension")
if self._http_client:
await self._http_client.aclose()
self._http_client = None
# ------------------------------------------------------------------
# JWKS management
# ------------------------------------------------------------------
async def _try_init_jwks(self) -> None:
"""Fetch JWKS and decide verification mode (local JWKS vs legacy endpoint)."""
try:
await self._fetch_jwks()
if self._jwks_keys:
self._use_jwks = True
logger.info(
"JWKS loaded — using local JWT verification with %d key(s)",
len(self._jwks_keys),
)
return
# JWKS endpoint returned no keys — project likely uses legacy HS256
logger.warning(
"JWKS endpoint returned no signing keys. "
"Falling back to /auth/v1/user endpoint for JWT verification. "
"For better performance, enable asymmetric JWT signing in your "
"Supabase dashboard (Project Settings → Auth → JWT Algorithm)."
)
except Exception as e:
logger.warning(
"Could not fetch JWKS (%s). Falling back to /auth/v1/user endpoint for JWT verification.",
e,
)
# Legacy mode requires service key
if not self.supabase_service_key:
raise ValueError(
"HINDSIGHT_API_TENANT_SUPABASE_SERVICE_KEY is required when JWKS "
"is not available. Either enable asymmetric JWT signing in your "
"Supabase project or provide the service_role key."
)
self._use_jwks = False
async def _fetch_jwks(self) -> None:
"""Fetch public signing keys from the Supabase JWKS endpoint."""
if self._http_client is None:
raise RuntimeError("HTTP client not initialized")
url = f"{self.supabase_url}/auth/v1/.well-known/jwks.json"
response = await self._http_client.get(url)
response.raise_for_status()
jwks_data = response.json()
keys: dict[str, PyJWK] = {}
for key_data in jwks_data.get("keys", []):
kid = key_data.get("kid")
if kid:
keys[kid] = PyJWK(key_data)
self._jwks_keys = keys
self._jwks_last_fetched = time.monotonic()
async def _get_signing_key(self, token: str) -> PyJWK:
"""
Resolve the signing key for a token from the JWKS cache.
If the key ID (``kid``) is not in the cache, triggers one JWKS refresh
to handle key rotation before raising an error.
"""
header = pyjwt.get_unverified_header(token)
kid = header.get("kid")
if not kid:
raise AuthenticationError("Token missing key ID (kid) header")
# Refresh cache if stale
now = time.monotonic()
if now - self._jwks_last_fetched > JWKS_CACHE_TTL_SECONDS:
logger.debug("JWKS cache expired, refreshing")
await self._fetch_jwks()
if kid in self._jwks_keys:
return self._jwks_keys[kid]
# Key not found — try one forced refresh to handle key rotation,
# but only if we haven't just refreshed
if now - self._jwks_last_fetched > JWKS_MIN_REFRESH_INTERVAL_SECONDS:
logger.info("Signing key %s not in cache, refreshing JWKS for possible key rotation", kid)
await self._fetch_jwks()
if kid in self._jwks_keys:
return self._jwks_keys[kid]
raise AuthenticationError("Unable to find signing key for token")
# ------------------------------------------------------------------
# Authentication
# ------------------------------------------------------------------
async def authenticate(self, context: RequestContext) -> TenantContext:
"""
Validate a Supabase JWT and return tenant context.
Uses local JWKS verification when available (no network call per
request), falling back to the ``/auth/v1/user`` endpoint for legacy
HS256 projects.
Args:
context: Request context containing the API key (JWT)
Returns:
TenantContext with schema_name set to ``{prefix}_{user_uuid}``
Raises:
AuthenticationError: If token is missing, invalid, or expired
"""
token = context.api_key
if not token:
raise AuthenticationError("Missing Authorization header. Expected: Bearer <supabase_jwt>")
if len(token) < MIN_TOKEN_LENGTH:
raise AuthenticationError("Invalid token format")
if self._http_client is None:
raise AuthenticationError("Extension not initialized")
# Verify the JWT and extract user ID
if self._use_jwks:
user_id = await self._verify_token_jwks(token)
else:
user_id = await self._verify_token_legacy(token)
# Validate user ID format before using in schema name
if not _UUID_RE.match(user_id):
raise AuthenticationError("Invalid user ID format in token")
# Build isolated schema name — hyphens to underscores for Postgres compatibility
safe_user_id = user_id.replace("-", "_")
schema_name = f"{self.schema_prefix}_{safe_user_id}"
# Initialize schema on first access
if schema_name not in self._initialized_schemas:
await self._initialize_schema(schema_name)
return TenantContext(schema_name=schema_name)
async def _verify_token_jwks(self, token: str) -> str:
"""
Verify a JWT locally using cached JWKS public keys.
Validates signature, expiration, issuer, and audience. Returns the
user ID from the ``sub`` claim.
Raises:
AuthenticationError: If the token is invalid or expired.
"""
try:
signing_key = await self._get_signing_key(token)
payload = pyjwt.decode(
token,
signing_key.key,
algorithms=SUPPORTED_ALGORITHMS,
audience="authenticated",
issuer=f"{self.supabase_url}/auth/v1",
)
except pyjwt.ExpiredSignatureError:
raise AuthenticationError("Token has expired")
except pyjwt.InvalidAudienceError:
raise AuthenticationError("Invalid token audience")
except pyjwt.InvalidIssuerError:
raise AuthenticationError("Invalid token issuer")
except pyjwt.DecodeError:
raise AuthenticationError("Invalid token")
except AuthenticationError:
raise
except Exception as e:
raise AuthenticationError(f"Token verification failed: {e!s}")
user_id = payload.get("sub")
if not user_id:
raise AuthenticationError("Token valid but missing subject (sub) claim")
return user_id
async def _verify_token_legacy(self, token: str) -> str:
"""
Verify a JWT by calling the Supabase ``/auth/v1/user`` endpoint.
This is the fallback for projects using legacy HS256 JWT signing.
Adds a network round-trip per request.
Raises:
AuthenticationError: If the token is invalid or the request fails.
"""
try:
response = await self._http_client.get(
f"{self.supabase_url}/auth/v1/user",
headers={
"Authorization": f"Bearer {token}",
"apikey": self.supabase_service_key,
},
)
if response.status_code == 401:
raise AuthenticationError("Invalid or expired token")
if response.status_code != 200:
raise AuthenticationError(f"Authentication failed: {response.status_code}")
user_data = response.json()
user_id = user_data.get("id")
if not user_id:
raise AuthenticationError("Token valid but no user ID found")
return user_id
except AuthenticationError:
raise
except httpx.TimeoutException:
raise AuthenticationError("Authentication timeout - please retry")
except httpx.RequestError as e:
raise AuthenticationError(f"Connection error: {e!s}")
# ------------------------------------------------------------------
# Schema management
# ------------------------------------------------------------------
async def _initialize_schema(self, schema_name: str) -> None:
"""Run migrations for a new tenant schema and cache the result."""
logger.info("Initializing schema: %s", schema_name)
try:
await self.context.run_migration(schema_name)
self._initialized_schemas.add(schema_name)
logger.info("Schema ready: %s", schema_name)
except Exception as e:
logger.error("Schema initialization failed for %s: %s", schema_name, e)
raise AuthenticationError(f"Failed to initialize tenant: {e!s}")
async def list_tenants(self) -> list[Tenant]:
"""Return all tenant schemas that have been initialized."""
return [Tenant(schema=schema) for schema in self._initialized_schemas]
# ------------------------------------------------------------------
# Health check
# ------------------------------------------------------------------
async def _health_check(self) -> None:
"""Verify connectivity to Supabase using the auth health endpoint."""
try:
response = await self._http_client.get(
f"{self.supabase_url}/auth/v1/health",
headers={"apikey": self.supabase_service_key},
)
if response.status_code == 200:
logger.info("Supabase connection verified")
else:
logger.warning("Supabase health check returned %d", response.status_code)
except Exception as e:
logger.warning("Could not verify Supabase connection: %s", e)
@@ -5,42 +5,6 @@ from hindsight_api.extensions.tenant import AuthenticationError, Tenant, TenantC
from hindsight_api.models import RequestContext
class DefaultTenantExtension(TenantExtension):
"""
Default single-tenant extension with no authentication.
This is the default extension used when no tenant extension is configured.
It provides single-tenant behavior using the configured schema from
HINDSIGHT_API_DATABASE_SCHEMA (defaults to 'public').
Features:
- No authentication required (passes all requests)
- Uses configured schema from environment
- Perfect for single-tenant deployments without auth
Configuration:
HINDSIGHT_API_DATABASE_SCHEMA=your-schema (optional, defaults to 'public')
This is automatically enabled by default. To use custom authentication,
configure a different tenant extension:
HINDSIGHT_API_TENANT_EXTENSION=hindsight_api.extensions.builtin.tenant:ApiKeyTenantExtension
"""
def __init__(self, config: dict[str, str]):
super().__init__(config)
# Cache the schema at initialization for consistency
# Support explicit schema override via config, otherwise use environment
self._schema = config.get("schema", get_config().database_schema)
async def authenticate(self, context: RequestContext) -> TenantContext:
"""Return configured schema without any authentication."""
return TenantContext(schema_name=self._schema)
async def list_tenants(self) -> list[Tenant]:
"""Return configured schema for single-tenant setup."""
return [Tenant(schema=self._schema)]
class ApiKeyTenantExtension(TenantExtension):
"""
Built-in tenant extension that validates API key against an environment variable.
@@ -54,7 +18,6 @@ class ApiKeyTenantExtension(TenantExtension):
HINDSIGHT_API_TENANT_EXTENSION=hindsight_api.extensions.builtin.tenant:ApiKeyTenantExtension
HINDSIGHT_API_TENANT_API_KEY=your-secret-key
HINDSIGHT_API_DATABASE_SCHEMA=your-schema (optional, defaults to 'public')
HINDSIGHT_API_TENANT_MCP_AUTH_DISABLED=true (optional, disable auth for MCP endpoints)
For multi-tenant setups with separate schemas per tenant, implement a custom
TenantExtension that looks up the schema based on the API key or token claims.
@@ -65,8 +28,6 @@ class ApiKeyTenantExtension(TenantExtension):
self.expected_api_key = config.get("api_key")
if not self.expected_api_key:
raise ValueError("HINDSIGHT_API_TENANT_API_KEY is required when using ApiKeyTenantExtension")
# Allow disabling MCP auth for backwards compatibility
self.mcp_auth_disabled = config.get("mcp_auth_disabled", "").lower() in ("true", "1", "yes")
async def authenticate(self, context: RequestContext) -> TenantContext:
"""Validate API key and return configured schema context."""
@@ -77,14 +38,3 @@ class ApiKeyTenantExtension(TenantExtension):
async def list_tenants(self) -> list[Tenant]:
"""Return configured schema for single-tenant setup."""
return [Tenant(schema=get_config().database_schema)]
async def authenticate_mcp(self, context: RequestContext) -> TenantContext:
"""
Authenticate MCP requests.
If mcp_auth_disabled is set, skip authentication for backwards compatibility.
Otherwise, delegate to authenticate().
"""
if self.mcp_auth_disabled:
return TenantContext(schema_name=get_config().database_schema)
return await self.authenticate(context)
@@ -1,42 +0,0 @@
"""MCP Extension for registering additional MCP tools.
This extension allows external packages (like hindsight-cloud) to register
additional MCP tools on the Hindsight MCP server.
Example:
HINDSIGHT_API_MCP_EXTENSION=hindsight_cloud.extensions:CloudMCPExtension
"""
import logging
from abc import abstractmethod
from fastmcp import FastMCP
from hindsight_api import MemoryEngine
from hindsight_api.extensions.base import Extension
logger = logging.getLogger(__name__)
class MCPExtension(Extension):
"""Base class for MCP extensions that register additional tools.
Subclass this to add MCP tools in extension packages.
Example:
class CloudMCPExtension(MCPExtension):
def register_tools(self, mcp: FastMCP, memory: MemoryEngine) -> None:
@mcp.tool()
async def my_custom_tool(query: str) -> str:
return "result"
"""
@abstractmethod
def register_tools(self, mcp: FastMCP, memory: MemoryEngine) -> None:
"""Register additional MCP tools.
Args:
mcp: FastMCP server instance to register tools on
memory: MemoryEngine instance for accessing memory operations
"""
pass
@@ -132,10 +132,6 @@ class RetainResult:
unit_ids: list[list[str]] # List of unit IDs per content item
success: bool = True
error: str | None = None
# Actual LLM token usage (populated by engine when available)
llm_input_tokens: int | None = None
llm_output_tokens: int | None = None
llm_total_tokens: int | None = None
@dataclass
@@ -200,57 +196,6 @@ class ConsolidateResult:
error: str | None = None
# =============================================================================
# Mental Model Contexts
# =============================================================================
@dataclass
class MentalModelGetContext:
"""Context for a mental model GET operation validation (pre-operation)."""
bank_id: str
mental_model_id: str
request_context: "RequestContext"
@dataclass
class MentalModelRefreshContext:
"""Context for a mental model refresh/create operation validation (pre-operation)."""
bank_id: str
mental_model_id: str | None # None for create (not yet assigned)
request_context: "RequestContext"
@dataclass
class MentalModelGetResult:
"""Result context for post-mental-model-GET hook."""
bank_id: str
mental_model_id: str
request_context: "RequestContext"
output_tokens: int # tokens in the returned content
success: bool = True
error: str | None = None
@dataclass
class MentalModelRefreshResult:
"""Result context for post-mental-model-refresh hook."""
bank_id: str
mental_model_id: str
request_context: "RequestContext"
query_tokens: int # tokens in source_query
output_tokens: int # tokens in generated content
context_tokens: int # tokens in context (if any)
facts_used: int # facts referenced in based_on
mental_models_used: int # mental models referenced in based_on
success: bool = True
error: str | None = None
class OperationValidatorExtension(Extension, ABC):
"""
Validates and hooks into retain/recall/reflect/consolidate operations.
@@ -457,81 +402,3 @@ class OperationValidatorExtension(Extension, ABC):
- error: Error message (if failed)
"""
pass
# =========================================================================
# Mental Model - Pre-operation validation hook (optional - override to implement)
# =========================================================================
async def validate_mental_model_get(self, ctx: MentalModelGetContext) -> ValidationResult:
"""
Validate a mental model GET operation before execution.
Override to implement custom validation logic for mental model retrieval.
Args:
ctx: Context containing:
- bank_id: Bank identifier
- mental_model_id: Mental model identifier
- request_context: Request context with auth info
Returns:
ValidationResult indicating whether the operation is allowed.
"""
return ValidationResult.accept()
async def validate_mental_model_refresh(self, ctx: MentalModelRefreshContext) -> ValidationResult:
"""
Validate a mental model refresh/create operation before execution.
Override to implement custom validation logic for mental model refresh.
Args:
ctx: Context containing:
- bank_id: Bank identifier
- mental_model_id: Mental model identifier (None for create)
- request_context: Request context with auth info
Returns:
ValidationResult indicating whether the operation is allowed.
"""
return ValidationResult.accept()
# =========================================================================
# Mental Model - Post-operation hooks (optional - override to implement)
# =========================================================================
async def on_mental_model_get_complete(self, result: MentalModelGetResult) -> None:
"""
Called after a mental model GET operation completes (success or failure).
Override to implement post-operation logic such as tracking or audit logging.
Args:
result: Result context containing:
- bank_id: Bank identifier
- mental_model_id: Mental model identifier
- output_tokens: Token count of the returned content
- success: Whether the operation succeeded
- error: Error message (if failed)
"""
pass
async def on_mental_model_refresh_complete(self, result: MentalModelRefreshResult) -> None:
"""
Called after a mental model refresh operation completes (success or failure).
Override to implement post-operation logic such as tracking or audit logging.
Args:
result: Result context containing:
- bank_id: Bank identifier
- mental_model_id: Mental model identifier
- query_tokens: Tokens in source_query
- output_tokens: Tokens in generated content
- context_tokens: Tokens in context
- facts_used: Number of facts referenced
- mental_models_used: Number of mental models referenced
- success: Whether the operation succeeded
- error: Error message (if failed)
"""
pass
@@ -87,22 +87,3 @@ class TenantExtension(Extension, ABC):
For single-tenant setups, return [Tenant(schema="public")].
"""
...
async def authenticate_mcp(self, context: RequestContext) -> TenantContext:
"""
Authenticate MCP requests.
By default, this calls authenticate(). Override this method to provide
different authentication behavior for MCP endpoints (e.g., to disable
auth for backwards compatibility with existing MCP servers).
Args:
context: The action context containing API key and other auth data.
Returns:
TenantContext with the schema_name for database operations.
Raises:
AuthenticationError: If authentication fails.
"""
return await self.authenticate(context)
+21 -23
View File
@@ -20,13 +20,14 @@ import warnings
import uvicorn
from . import MemoryEngine, __version__
from . import MemoryEngine
from .api import create_app
from .banner import print_banner
from .config import DEFAULT_WORKERS, ENV_WORKERS, HindsightConfig, get_config
from .daemon import (
DEFAULT_DAEMON_PORT,
DEFAULT_IDLE_TIMEOUT,
DaemonLock,
IdleTimeoutMiddleware,
daemonize,
)
@@ -135,15 +136,30 @@ def main():
# Daemon mode handling
if args.daemon:
# Use port from args (may be custom for profiles)
if args.port == config.port: # No custom port specified
args.port = DEFAULT_DAEMON_PORT
# Use fixed daemon port
args.port = DEFAULT_DAEMON_PORT
args.host = "127.0.0.1" # Only bind to localhost for security
# Check if another daemon is already running
daemon_lock = DaemonLock()
if not daemon_lock.acquire():
print(f"Daemon already running (PID: {daemon_lock.get_pid()})", file=sys.stderr)
sys.exit(1)
# Fork into background
# No lockfile needed - port binding prevents duplicate daemons
daemonize()
# Re-acquire lock in child process
daemon_lock = DaemonLock()
if not daemon_lock.acquire():
sys.exit(1)
# Register cleanup to release lock
def release_lock():
daemon_lock.release()
atexit.register(release_lock)
# Print banner (not in daemon mode)
if not args.daemon:
print()
@@ -197,30 +213,18 @@ def main():
embeddings_provider=config.embeddings_provider,
embeddings_local_model=config.embeddings_local_model,
embeddings_local_force_cpu=config.embeddings_local_force_cpu,
embeddings_local_trust_remote_code=config.embeddings_local_trust_remote_code,
embeddings_tei_url=config.embeddings_tei_url,
embeddings_openai_base_url=config.embeddings_openai_base_url,
embeddings_cohere_api_key=config.embeddings_cohere_api_key,
embeddings_cohere_model=config.embeddings_cohere_model,
embeddings_cohere_base_url=config.embeddings_cohere_base_url,
embeddings_litellm_api_base=config.embeddings_litellm_api_base,
embeddings_litellm_api_key=config.embeddings_litellm_api_key,
embeddings_litellm_model=config.embeddings_litellm_model,
reranker_provider=config.reranker_provider,
reranker_local_model=config.reranker_local_model,
reranker_local_force_cpu=config.reranker_local_force_cpu,
reranker_local_max_concurrent=config.reranker_local_max_concurrent,
reranker_local_trust_remote_code=config.reranker_local_trust_remote_code,
reranker_tei_url=config.reranker_tei_url,
reranker_tei_batch_size=config.reranker_tei_batch_size,
reranker_tei_max_concurrent=config.reranker_tei_max_concurrent,
reranker_max_candidates=config.reranker_max_candidates,
reranker_cohere_api_key=config.reranker_cohere_api_key,
reranker_cohere_model=config.reranker_cohere_model,
reranker_cohere_base_url=config.reranker_cohere_base_url,
reranker_litellm_api_base=config.reranker_litellm_api_base,
reranker_litellm_api_key=config.reranker_litellm_api_key,
reranker_litellm_model=config.reranker_litellm_model,
host=args.host,
port=args.port,
log_level=args.log_level,
@@ -254,11 +258,6 @@ def main():
worker_consolidation_max_slots=config.worker_consolidation_max_slots,
reflect_max_iterations=config.reflect_max_iterations,
mental_model_refresh_concurrency=config.mental_model_refresh_concurrency,
otel_traces_enabled=config.otel_traces_enabled,
otel_exporter_otlp_endpoint=config.otel_exporter_otlp_endpoint,
otel_exporter_otlp_headers=config.otel_exporter_otlp_headers,
otel_service_name=config.otel_service_name,
otel_deployment_environment=config.otel_deployment_environment,
)
config.configure_logging()
if not args.daemon:
@@ -363,7 +362,6 @@ def main():
embeddings_provider=config.embeddings_provider,
reranker_provider=config.reranker_provider,
mcp_enabled=config.mcp_enabled,
version=__version__,
)
# Start idle checker in daemon mode
+5 -608
View File
@@ -35,12 +35,6 @@ class MCPToolsConfig:
# How to resolve API key for tenant auth (optional)
api_key_resolver: Callable[[], str | None] | None = None
# How to resolve tenant_id for usage metering (set by MCP middleware after auth)
tenant_id_resolver: Callable[[], str | None] | None = None
# How to resolve api_key_id for usage metering (set by MCP middleware after auth)
api_key_id_resolver: Callable[[], str | None] | None = None
# Whether to include bank_id as a parameter on tools (for multi-bank support)
include_bank_id_param: bool = False
@@ -56,15 +50,13 @@ class MCPToolsConfig:
def _get_request_context(config: MCPToolsConfig) -> RequestContext:
"""Create RequestContext with auth details from resolvers.
"""Create RequestContext with API key from resolver if available.
This enables tenant auth and usage metering to work with MCP tools by propagating
the authentication results from the MCP middleware to the memory engine.
This enables tenant auth to work with MCP tools by propagating
the Bearer token from the MCP middleware to the memory engine.
"""
api_key = config.api_key_resolver() if config.api_key_resolver else None
tenant_id = config.tenant_id_resolver() if config.tenant_id_resolver else None
api_key_id = config.api_key_id_resolver() if config.api_key_id_resolver else None
return RequestContext(api_key=api_key, tenant_id=tenant_id, api_key_id=api_key_id)
return RequestContext(api_key=api_key)
def parse_timestamp(timestamp: str) -> datetime | None:
@@ -127,19 +119,7 @@ def register_mcp_tools(
memory: MemoryEngine instance
config: Tool configuration
"""
tools_to_register = config.tools or {
"retain",
"recall",
"reflect",
"list_banks",
"create_bank",
"list_mental_models",
"get_mental_model",
"create_mental_model",
"update_mental_model",
"delete_mental_model",
"refresh_mental_model",
}
tools_to_register = config.tools or {"retain", "recall", "reflect", "list_banks", "create_bank"}
if "retain" in tools_to_register:
_register_retain(mcp, memory, config)
@@ -156,25 +136,6 @@ def register_mcp_tools(
if "create_bank" in tools_to_register:
_register_create_bank(mcp, memory, config)
# Mental model tools
if "list_mental_models" in tools_to_register:
_register_list_mental_models(mcp, memory, config)
if "get_mental_model" in tools_to_register:
_register_get_mental_model(mcp, memory, config)
if "create_mental_model" in tools_to_register:
_register_create_mental_model(mcp, memory, config)
if "update_mental_model" in tools_to_register:
_register_update_mental_model(mcp, memory, config)
if "delete_mental_model" in tools_to_register:
_register_delete_mental_model(mcp, memory, config)
if "refresh_mental_model" in tools_to_register:
_register_refresh_mental_model(mcp, memory, config)
def _register_retain(mcp: FastMCP, memory: MemoryEngine, config: MCPToolsConfig) -> None:
"""Register the retain tool."""
@@ -550,567 +511,3 @@ def _register_create_bank(mcp: FastMCP, memory: MemoryEngine, config: MCPToolsCo
except Exception as e:
logger.error(f"Error creating bank: {e}", exc_info=True)
return f'{{"error": "{e}"}}'
def _validate_mental_model_inputs(
name: str | None = None, source_query: str | None = None, max_tokens: int | None = None
) -> str | None:
"""Validate mental model inputs, returning an error message or None if valid."""
if name is not None and not name.strip():
return "name cannot be empty"
if source_query is not None and not source_query.strip():
return "source_query cannot be empty"
if max_tokens is not None and (max_tokens < 256 or max_tokens > 8192):
return f"max_tokens must be between 256 and 8192, got {max_tokens}"
return None
# =========================================================================
# MENTAL MODEL TOOLS
# =========================================================================
def _register_list_mental_models(mcp: FastMCP, memory: MemoryEngine, config: MCPToolsConfig) -> None:
"""Register the list_mental_models tool."""
if config.include_bank_id_param:
@mcp.tool()
async def list_mental_models(
tags: list[str] | None = None,
bank_id: str | None = None,
) -> str:
"""
List mental models (pinned reflections) for a memory bank.
Mental models are living documents that stay current by periodically re-running
a source query through reflect. Use them to maintain up-to-date summaries,
preferences, or synthesized knowledge.
Args:
tags: Optional tags to filter by (returns models matching any tag)
bank_id: Optional bank to list from (defaults to session bank). Use for cross-bank operations.
"""
try:
target_bank = bank_id or config.bank_id_resolver()
if target_bank is None:
return '{"error": "No bank_id configured", "items": []}'
models = await memory.list_mental_models(
bank_id=target_bank,
tags=tags,
request_context=_get_request_context(config),
)
return json.dumps({"items": models}, indent=2, default=str)
except Exception as e:
logger.error(f"Error listing mental models: {e}", exc_info=True)
return f'{{"error": "{e}", "items": []}}'
else:
@mcp.tool()
async def list_mental_models(
tags: list[str] | None = None,
) -> dict:
"""
List mental models (pinned reflections) for this memory bank.
Mental models are living documents that stay current by periodically re-running
a source query through reflect. Use them to maintain up-to-date summaries,
preferences, or synthesized knowledge.
Args:
tags: Optional tags to filter by (returns models matching any tag)
"""
try:
target_bank = config.bank_id_resolver()
if target_bank is None:
return {"error": "No bank_id configured", "items": []}
models = await memory.list_mental_models(
bank_id=target_bank,
tags=tags,
request_context=_get_request_context(config),
)
return {"items": models}
except Exception as e:
logger.error(f"Error listing mental models: {e}", exc_info=True)
return {"error": str(e), "items": []}
def _register_get_mental_model(mcp: FastMCP, memory: MemoryEngine, config: MCPToolsConfig) -> None:
"""Register the get_mental_model tool."""
if config.include_bank_id_param:
@mcp.tool()
async def get_mental_model(
mental_model_id: str,
bank_id: str | None = None,
) -> str:
"""
Get a specific mental model by ID.
Returns the full mental model including its generated content, source query,
and metadata. Use list_mental_models first to discover available model IDs.
Args:
mental_model_id: The ID of the mental model to retrieve
bank_id: Optional bank (defaults to session bank). Use for cross-bank operations.
"""
try:
target_bank = bank_id or config.bank_id_resolver()
if target_bank is None:
return '{"error": "No bank_id configured"}'
model = await memory.get_mental_model(
bank_id=target_bank,
mental_model_id=mental_model_id,
request_context=_get_request_context(config),
)
if model is None:
return json.dumps({"error": f"Mental model '{mental_model_id}' not found in bank '{target_bank}'"})
return json.dumps(model, indent=2, default=str)
except Exception as e:
logger.error(f"Error getting mental model: {e}", exc_info=True)
return f'{{"error": "{e}"}}'
else:
@mcp.tool()
async def get_mental_model(
mental_model_id: str,
) -> dict:
"""
Get a specific mental model by ID.
Returns the full mental model including its generated content, source query,
and metadata. Use list_mental_models first to discover available model IDs.
Args:
mental_model_id: The ID of the mental model to retrieve
"""
try:
target_bank = config.bank_id_resolver()
if target_bank is None:
return {"error": "No bank_id configured"}
model = await memory.get_mental_model(
bank_id=target_bank,
mental_model_id=mental_model_id,
request_context=_get_request_context(config),
)
if model is None:
return {"error": f"Mental model '{mental_model_id}' not found in bank '{target_bank}'"}
return model
except Exception as e:
logger.error(f"Error getting mental model: {e}", exc_info=True)
return {"error": str(e)}
def _register_create_mental_model(mcp: FastMCP, memory: MemoryEngine, config: MCPToolsConfig) -> None:
"""Register the create_mental_model tool."""
if config.include_bank_id_param:
@mcp.tool()
async def create_mental_model(
name: str,
source_query: str,
mental_model_id: str | None = None,
tags: list[str] | None = None,
max_tokens: int = 2048,
bank_id: str | None = None,
) -> str:
"""
Create a new mental model (pinned reflection).
A mental model is a living document generated by running the source_query through
reflect. The content is auto-generated asynchronously - use the returned operation_id
to track progress.
EXAMPLES:
- name="Coding Preferences", source_query="What coding patterns and tools does the user prefer?"
- name="Project Goals", source_query="What are the user's current project goals and priorities?"
- name="Communication Style", source_query="How does the user prefer to communicate?"
Args:
name: Human-readable name for the mental model
source_query: The query to run through reflect to generate content
mental_model_id: Optional custom ID (alphanumeric lowercase with hyphens). Auto-generated if not provided.
tags: Optional tags for scoped visibility filtering
max_tokens: Maximum tokens for generated content (256-8192, default: 2048)
bank_id: Optional bank (defaults to session bank). Use for cross-bank operations.
"""
try:
target_bank = bank_id or config.bank_id_resolver()
if target_bank is None:
return '{"error": "No bank_id configured"}'
validation_error = _validate_mental_model_inputs(
name=name, source_query=source_query, max_tokens=max_tokens
)
if validation_error:
return json.dumps({"error": validation_error})
request_context = _get_request_context(config)
# Create with placeholder content
model = await memory.create_mental_model(
bank_id=target_bank,
name=name,
source_query=source_query,
content="Generating content...",
mental_model_id=mental_model_id,
tags=tags,
max_tokens=max_tokens,
request_context=request_context,
)
# Schedule async refresh to generate actual content
result = await memory.submit_async_refresh_mental_model(
bank_id=target_bank,
mental_model_id=model["id"],
request_context=request_context,
)
return json.dumps(
{
"mental_model_id": model["id"],
"operation_id": result["operation_id"],
"status": "created",
"message": f"Mental model '{name}' created. Content is being generated asynchronously.",
}
)
except ValueError as e:
return json.dumps({"error": str(e)})
except Exception as e:
logger.error(f"Error creating mental model: {e}", exc_info=True)
return f'{{"error": "{e}"}}'
else:
@mcp.tool()
async def create_mental_model(
name: str,
source_query: str,
mental_model_id: str | None = None,
tags: list[str] | None = None,
max_tokens: int = 2048,
) -> dict:
"""
Create a new mental model (pinned reflection).
A mental model is a living document generated by running the source_query through
reflect. The content is auto-generated asynchronously - use the returned operation_id
to track progress.
EXAMPLES:
- name="Coding Preferences", source_query="What coding patterns and tools does the user prefer?"
- name="Project Goals", source_query="What are the user's current project goals and priorities?"
- name="Communication Style", source_query="How does the user prefer to communicate?"
Args:
name: Human-readable name for the mental model
source_query: The query to run through reflect to generate content
mental_model_id: Optional custom ID (alphanumeric lowercase with hyphens). Auto-generated if not provided.
tags: Optional tags for scoped visibility filtering
max_tokens: Maximum tokens for generated content (256-8192, default: 2048)
"""
try:
target_bank = config.bank_id_resolver()
if target_bank is None:
return {"error": "No bank_id configured"}
validation_error = _validate_mental_model_inputs(
name=name, source_query=source_query, max_tokens=max_tokens
)
if validation_error:
return {"error": validation_error}
request_context = _get_request_context(config)
model = await memory.create_mental_model(
bank_id=target_bank,
name=name,
source_query=source_query,
content="Generating content...",
mental_model_id=mental_model_id,
tags=tags,
max_tokens=max_tokens,
request_context=request_context,
)
result = await memory.submit_async_refresh_mental_model(
bank_id=target_bank,
mental_model_id=model["id"],
request_context=request_context,
)
return {
"mental_model_id": model["id"],
"operation_id": result["operation_id"],
"status": "created",
"message": f"Mental model '{name}' created. Content is being generated asynchronously.",
}
except ValueError as e:
return {"error": str(e)}
except Exception as e:
logger.error(f"Error creating mental model: {e}", exc_info=True)
return {"error": str(e)}
def _register_update_mental_model(mcp: FastMCP, memory: MemoryEngine, config: MCPToolsConfig) -> None:
"""Register the update_mental_model tool."""
if config.include_bank_id_param:
@mcp.tool()
async def update_mental_model(
mental_model_id: str,
name: str | None = None,
source_query: str | None = None,
max_tokens: int | None = None,
tags: list[str] | None = None,
bank_id: str | None = None,
) -> str:
"""
Update a mental model's metadata.
Changes the name, source query, or tags of an existing mental model.
To regenerate the content, use refresh_mental_model after updating the source query.
Args:
mental_model_id: The ID of the mental model to update
name: New name (leave None to keep current)
source_query: New source query (leave None to keep current)
max_tokens: New max tokens for content generation (256-8192, leave None to keep current)
tags: New tags (leave None to keep current)
bank_id: Optional bank (defaults to session bank). Use for cross-bank operations.
"""
try:
target_bank = bank_id or config.bank_id_resolver()
if target_bank is None:
return '{"error": "No bank_id configured"}'
validation_error = _validate_mental_model_inputs(
name=name, source_query=source_query, max_tokens=max_tokens
)
if validation_error:
return json.dumps({"error": validation_error})
model = await memory.update_mental_model(
bank_id=target_bank,
mental_model_id=mental_model_id,
name=name,
source_query=source_query,
max_tokens=max_tokens,
tags=tags,
request_context=_get_request_context(config),
)
if model is None:
return json.dumps({"error": f"Mental model '{mental_model_id}' not found in bank '{target_bank}'"})
return json.dumps(model, indent=2, default=str)
except Exception as e:
logger.error(f"Error updating mental model: {e}", exc_info=True)
return f'{{"error": "{e}"}}'
else:
@mcp.tool()
async def update_mental_model(
mental_model_id: str,
name: str | None = None,
source_query: str | None = None,
max_tokens: int | None = None,
tags: list[str] | None = None,
) -> dict:
"""
Update a mental model's metadata.
Changes the name, source query, or tags of an existing mental model.
To regenerate the content, use refresh_mental_model after updating the source query.
Args:
mental_model_id: The ID of the mental model to update
name: New name (leave None to keep current)
source_query: New source query (leave None to keep current)
max_tokens: New max tokens for content generation (256-8192, leave None to keep current)
tags: New tags (leave None to keep current)
"""
try:
target_bank = config.bank_id_resolver()
if target_bank is None:
return {"error": "No bank_id configured"}
validation_error = _validate_mental_model_inputs(
name=name, source_query=source_query, max_tokens=max_tokens
)
if validation_error:
return {"error": validation_error}
model = await memory.update_mental_model(
bank_id=target_bank,
mental_model_id=mental_model_id,
name=name,
source_query=source_query,
max_tokens=max_tokens,
tags=tags,
request_context=_get_request_context(config),
)
if model is None:
return {"error": f"Mental model '{mental_model_id}' not found in bank '{target_bank}'"}
return model
except Exception as e:
logger.error(f"Error updating mental model: {e}", exc_info=True)
return {"error": str(e)}
def _register_delete_mental_model(mcp: FastMCP, memory: MemoryEngine, config: MCPToolsConfig) -> None:
"""Register the delete_mental_model tool."""
if config.include_bank_id_param:
@mcp.tool()
async def delete_mental_model(
mental_model_id: str,
bank_id: str | None = None,
) -> str:
"""
Delete a mental model.
Permanently removes a mental model and its generated content.
Args:
mental_model_id: The ID of the mental model to delete
bank_id: Optional bank (defaults to session bank). Use for cross-bank operations.
"""
try:
target_bank = bank_id or config.bank_id_resolver()
if target_bank is None:
return '{"error": "No bank_id configured"}'
deleted = await memory.delete_mental_model(
bank_id=target_bank,
mental_model_id=mental_model_id,
request_context=_get_request_context(config),
)
if not deleted:
return json.dumps({"error": f"Mental model '{mental_model_id}' not found in bank '{target_bank}'"})
return json.dumps({"status": "deleted", "mental_model_id": mental_model_id})
except Exception as e:
logger.error(f"Error deleting mental model: {e}", exc_info=True)
return f'{{"error": "{e}"}}'
else:
@mcp.tool()
async def delete_mental_model(
mental_model_id: str,
) -> dict:
"""
Delete a mental model.
Permanently removes a mental model and its generated content.
Args:
mental_model_id: The ID of the mental model to delete
"""
try:
target_bank = config.bank_id_resolver()
if target_bank is None:
return {"error": "No bank_id configured"}
deleted = await memory.delete_mental_model(
bank_id=target_bank,
mental_model_id=mental_model_id,
request_context=_get_request_context(config),
)
if not deleted:
return {"error": f"Mental model '{mental_model_id}' not found in bank '{target_bank}'"}
return {"status": "deleted", "mental_model_id": mental_model_id}
except Exception as e:
logger.error(f"Error deleting mental model: {e}", exc_info=True)
return {"error": str(e)}
def _register_refresh_mental_model(mcp: FastMCP, memory: MemoryEngine, config: MCPToolsConfig) -> None:
"""Register the refresh_mental_model tool."""
if config.include_bank_id_param:
@mcp.tool()
async def refresh_mental_model(
mental_model_id: str,
bank_id: str | None = None,
) -> str:
"""
Refresh a mental model by re-running its source query.
Schedules an async task to re-run the source query through reflect and update the
mental model's content with fresh results. Use this after adding new memories or
when the mental model's content may be stale.
Args:
mental_model_id: The ID of the mental model to refresh
bank_id: Optional bank (defaults to session bank). Use for cross-bank operations.
"""
try:
target_bank = bank_id or config.bank_id_resolver()
if target_bank is None:
return '{"error": "No bank_id configured"}'
result = await memory.submit_async_refresh_mental_model(
bank_id=target_bank,
mental_model_id=mental_model_id,
request_context=_get_request_context(config),
)
return json.dumps(
{
"operation_id": result["operation_id"],
"status": "queued",
"message": f"Refresh queued for mental model '{mental_model_id}'.",
}
)
except ValueError as e:
return json.dumps({"error": str(e)})
except Exception as e:
logger.error(f"Error refreshing mental model: {e}", exc_info=True)
return f'{{"error": "{e}"}}'
else:
@mcp.tool()
async def refresh_mental_model(
mental_model_id: str,
) -> dict:
"""
Refresh a mental model by re-running its source query.
Schedules an async task to re-run the source query through reflect and update the
mental model's content with fresh results. Use this after adding new memories or
when the mental model's content may be stale.
Args:
mental_model_id: The ID of the mental model to refresh
"""
try:
target_bank = config.bank_id_resolver()
if target_bank is None:
return {"error": "No bank_id configured"}
result = await memory.submit_async_refresh_mental_model(
bank_id=target_bank,
mental_model_id=mental_model_id,
request_context=_get_request_context(config),
)
return {
"operation_id": result["operation_id"],
"status": "queued",
"message": f"Refresh queued for mental model '{mental_model_id}'.",
}
except ValueError as e:
return {"error": str(e)}
except Exception as e:
logger.error(f"Error refreshing mental model: {e}", exc_info=True)
return {"error": str(e)}
+1 -78
View File
@@ -25,8 +25,6 @@ from alembic.config import Config
from alembic.script.revision import ResolutionError
from sqlalchemy import create_engine, text
from .utils import mask_network_location
logger = logging.getLogger(__name__)
# Advisory lock ID for migrations (arbitrary unique number)
@@ -56,7 +54,7 @@ def _run_migrations_internal(database_url: str, script_location: str, schema: st
"""
schema_name = schema or "public"
logger.info(f"Running database migrations to head for schema '{schema_name}'...")
logger.info(f"Database URL: {mask_network_location(database_url)}")
logger.info(f"Database URL: {database_url}")
logger.info(f"Script location: {script_location}")
# Create Alembic configuration programmatically (no alembic.ini needed)
@@ -167,81 +165,6 @@ def run_migrations(
logger.debug("Migration advisory lock acquired")
try:
# Ensure pgvector extension is installed globally BEFORE schema migrations
# This is critical: the extension must exist database-wide before any schema
# migrations run, otherwise custom schemas won't have access to vector types
logger.debug("Checking pgvector extension availability...")
# First, check if extension already exists
ext_check = conn.execute(
text(
"SELECT extname, nspname FROM pg_extension e "
"JOIN pg_namespace n ON e.extnamespace = n.oid "
"WHERE extname = 'vector'"
)
).fetchone()
if ext_check:
# Extension exists - check if in correct schema
ext_schema = ext_check[1]
if ext_schema == "public":
logger.info("pgvector extension found in public schema - ready to use")
else:
# Extension in wrong schema - try to fix if we have permissions
logger.warning(
f"pgvector extension found in schema '{ext_schema}' instead of 'public'. "
f"Attempting to relocate..."
)
try:
conn.execute(text("DROP EXTENSION vector CASCADE"))
conn.execute(text("SET search_path TO public"))
conn.execute(text("CREATE EXTENSION vector"))
conn.commit()
logger.info("pgvector extension relocated to public schema")
except Exception as e:
# Failed to relocate - log but don't fail if extension exists somewhere
logger.warning(
f"Could not relocate pgvector extension to public schema: {e}. "
f"Continuing with extension in '{ext_schema}' schema."
)
conn.rollback()
else:
# Extension doesn't exist - try to install
logger.info("pgvector extension not found, attempting to install...")
try:
conn.execute(text("SET search_path TO public"))
conn.execute(text("CREATE EXTENSION vector"))
conn.commit()
logger.info("pgvector extension installed in public schema")
except Exception as e:
# Installation failed - this is only fatal if extension truly doesn't exist
# Check one more time in case another process installed it
conn.rollback()
ext_recheck = conn.execute(
text(
"SELECT nspname FROM pg_extension e "
"JOIN pg_namespace n ON e.extnamespace = n.oid "
"WHERE extname = 'vector'"
)
).fetchone()
if ext_recheck:
logger.warning(
f"Could not install pgvector extension (permission denied?), "
f"but extension exists in '{ext_recheck[0]}' schema. Continuing..."
)
else:
# Extension truly doesn't exist and we can't install it
logger.error(
f"pgvector extension is not installed and cannot be installed: {e}. "
f"Please ensure pgvector is installed by a database administrator. "
f"See: https://github.com/pgvector/pgvector#installation"
)
raise RuntimeError(
"pgvector extension is required but not installed. "
"Please install it with: CREATE EXTENSION vector;"
) from e
# Run migrations while holding the lock
_run_migrations_internal(database_url, script_location, schema=schema)
finally:
+1 -2
View File
@@ -20,8 +20,7 @@ class RequestContext:
api_key: str | None = None
api_key_id: str | None = None # UUID of the API key used for authentication
tenant_id: str | None = None # Tenant identifier (set by extension after auth)
internal: bool = False # True for background/internal operations (skips extension auth)
user_initiated: bool = False # True for async operations that originated from a user request
internal: bool = False # True for background/internal operations (not user-visible)
from pgvector.sqlalchemy import Vector
-480
View File
@@ -1,480 +0,0 @@
"""
OpenTelemetry distributed tracing instrumentation for Hindsight API.
This module provides tracing for:
- LLM API calls with full prompts/completions following GenAI semantic conventions
- Token usage and model information
- Error tracking and finish reasons
Tracing is conditional and disabled by default. When enabled, traces are exported
to Langfuse (or any OTLP-compatible backend) via OTLP HTTP protocol.
"""
import json
import logging
import time
from typing import Any, Optional
from opentelemetry import trace
from opentelemetry.exporter.otlp.proto.http.trace_exporter import OTLPSpanExporter
from opentelemetry.sdk.resources import Resource
from opentelemetry.sdk.trace import TracerProvider
from opentelemetry.sdk.trace.export import BatchSpanProcessor
from opentelemetry.trace import Status, StatusCode
logger = logging.getLogger(__name__)
def _serialize_for_span(obj: Any) -> str:
"""Serialize an object for span recording, handling Pydantic models."""
if isinstance(obj, str):
return obj
if hasattr(obj, "model_dump_json"):
# Pydantic v2 model
return obj.model_dump_json()
if hasattr(obj, "json"):
# Pydantic v1 model
return obj.json()
if hasattr(obj, "model_dump"):
# Pydantic v2 model - convert to dict then json
return json.dumps(obj.model_dump())
if hasattr(obj, "dict"):
# Pydantic v1 model - convert to dict then json
return json.dumps(obj.dict())
# Fallback to json.dumps for dicts and other types
return json.dumps(obj)
# No-op tracer for when tracing is disabled
class NoOpTracer:
"""No-op tracer that provides the same interface as OpenTelemetry Tracer but does nothing."""
def start_as_current_span(self, name: str, **kwargs):
"""Return a no-op context manager that yields a NoOpSpan."""
from contextlib import contextmanager
@contextmanager
def noop_span_context():
yield NoOpSpan()
return noop_span_context()
def start_span(self, name: str, **kwargs):
"""Return a no-op span."""
return NoOpSpan()
class NoOpSpan:
"""No-op span that provides the same interface as OpenTelemetry Span but does nothing."""
def set_attribute(self, key: str, value: Any) -> None:
"""No-op."""
pass
def set_status(self, status: Any) -> None:
"""No-op."""
pass
def record_exception(self, exception: Exception) -> None:
"""No-op."""
pass
def add_event(self, name: str, attributes: dict | None = None) -> None:
"""No-op."""
pass
def end(self, end_time: int | None = None) -> None:
"""No-op."""
pass
# Global tracer instance
_tracer: trace.Tracer | NoOpTracer = NoOpTracer()
_tracing_enabled: bool = False
# GenAI semantic convention attribute names (based on v1.37 spec)
class GenAIAttributes:
"""GenAI semantic convention attribute names."""
# Operation and provider
OPERATION_NAME = "gen_ai.operation.name"
PROVIDER_NAME = "gen_ai.provider.name"
# Model information
REQUEST_MODEL = "gen_ai.request.model"
RESPONSE_MODEL = "gen_ai.response.model"
# Token usage
USAGE_INPUT_TOKENS = "gen_ai.usage.input_tokens"
USAGE_OUTPUT_TOKENS = "gen_ai.usage.output_tokens"
# Messages and prompts
SYSTEM_INSTRUCTIONS = "gen_ai.system_instructions"
INPUT_MESSAGES = "gen_ai.input.messages"
OUTPUT_MESSAGES = "gen_ai.output.messages"
# Response metadata
FINISH_REASONS = "gen_ai.response.finish_reasons"
# Error tracking
ERROR_TYPE = "error.type"
# Provider name mapping (Hindsight internal -> GenAI semantic convention)
PROVIDER_NAME_MAPPING = {
"openai": "openai",
"anthropic": "anthropic",
"gemini": "google",
"vertexai": "google",
"groq": "groq",
"ollama": "ollama",
"lmstudio": "lmstudio",
"openai-codex": "openai",
"claude-code": "anthropic",
"mock": "mock",
}
def initialize_tracing(
service_name: str,
endpoint: str,
headers: Optional[str] = None,
deployment_environment: str = "development",
) -> None:
"""
Initialize OpenTelemetry tracing with OTLP exporter.
Args:
service_name: Name of the service for resource attributes
endpoint: OTLP endpoint URL (e.g., https://cloud.langfuse.com/api/public/otel)
headers: Optional headers in format "key1=value1,key2=value2"
deployment_environment: Deployment environment (e.g., development, staging, production)
"""
global _tracer, _tracing_enabled
# Create resource with service information
resource = Resource.create(
{
"service.name": service_name,
"service.version": "0.4.8", # Could import from __version__
"deployment.environment.name": deployment_environment,
}
)
# Parse headers
headers_dict = {}
if headers:
for pair in headers.split(","):
if "=" in pair:
key, value = pair.split("=", 1)
headers_dict[key.strip()] = value.strip()
# Create OTLP HTTP exporter
# Note: Langfuse expects /v1/traces path appended to base endpoint
otlp_endpoint = endpoint if endpoint.endswith("/v1/traces") else f"{endpoint}/v1/traces"
otlp_exporter = OTLPSpanExporter(
endpoint=otlp_endpoint,
headers=headers_dict,
)
# Create tracer provider with batch processor
provider = TracerProvider(resource=resource)
provider.add_span_processor(BatchSpanProcessor(otlp_exporter))
# Set global tracer provider
trace.set_tracer_provider(provider)
# Get tracer for this application
_tracer = trace.get_tracer(__name__)
_tracing_enabled = True
logger.info(f"Tracing initialized: endpoint={otlp_endpoint}, service={service_name}")
def get_tracer() -> trace.Tracer | NoOpTracer:
"""
Get the global tracer instance.
Returns a no-op tracer if tracing is disabled, so callers don't need to check for None.
This improves code readability by allowing direct use without null checks.
"""
return _tracer
def create_operation_span(operation: str, bank_id: str | None = None):
"""
Create a parent span for a Hindsight operation (retain, reflect, consolidation, etc.).
This creates the span hierarchy:
- hindsight.{operation} (parent)
- chat {model} (child LLM calls)
Args:
operation: Operation name (retain, reflect, consolidation, mental_model_refresh)
bank_id: Optional bank ID for context
Returns:
Span context manager
"""
if not _tracing_enabled or _tracer is None:
# Return a no-op context manager
from contextlib import nullcontext
return nullcontext()
span_name = f"hindsight.{operation}"
span = _tracer.start_as_current_span(span_name)
# Add operation-specific attributes
if span and hasattr(span, "set_attribute"):
span.set_attribute("hindsight.operation", operation)
if bank_id:
span.set_attribute("hindsight.bank_id", bank_id)
return span
def is_tracing_enabled() -> bool:
"""Check if tracing is enabled."""
return _tracing_enabled
# Maximum content length before truncation (to stay within span size limits)
MAX_CONTENT_LENGTH = 100_000 # characters
def _truncate_content(content: str) -> str:
"""Truncate content if too large for span."""
if len(content) > MAX_CONTENT_LENGTH:
return content[:MAX_CONTENT_LENGTH] + f"\n\n[TRUNCATED: {len(content) - MAX_CONTENT_LENGTH} chars omitted]"
return content
class LLMSpanRecorder:
"""
Records OpenTelemetry spans for LLM calls following GenAI semantic conventions.
"""
def __init__(self, tracer: trace.Tracer):
self.tracer = tracer
def record_llm_call(
self,
provider: str,
model: str,
scope: str,
messages: list[dict[str, str]],
response_content: Optional[str],
input_tokens: int,
output_tokens: int,
duration: float,
finish_reason: Optional[str] = None,
error: Optional[Exception] = None,
tool_calls: Optional[list[dict[str, Any]]] = None,
) -> None:
"""
Record a completed LLM call as a span with GenAI semantic conventions.
This creates a span AFTER the call completes, using timestamps to
set the correct start/end times. This approach works better with
the existing sync metrics recording pattern.
Args:
provider: Hindsight provider name
model: Model name
scope: Scope identifier (memory, reflect, consolidation, etc.)
messages: Input messages (chat history)
response_content: Response text from LLM
input_tokens: Input token count
output_tokens: Output token count
duration: Call duration in seconds
finish_reason: Reason the model stopped (stop, length, tool_calls, etc.)
error: Exception if call failed
tool_calls: List of tool calls made (for function calling)
"""
try:
# Map provider name to GenAI semantic convention
genai_provider = PROVIDER_NAME_MAPPING.get(provider.lower(), provider.lower())
# Determine operation name based on scope/context
operation_name = "chat" # Default for GenAI semantic conventions
# Create span name: "hindsight.{scope}" for consistency with parent spans
# Model info is available in span attributes (gen_ai.request.model)
if scope:
span_name = f"hindsight.{scope}"
else:
# Fallback to chat {model} if no scope provided
span_name = f"{operation_name} {model}"
# Calculate timestamps
end_time_ns = time.time_ns()
start_time_ns = end_time_ns - int(duration * 1_000_000_000)
# Create span with explicit timestamps
with self.tracer.start_as_current_span(
span_name,
start_time=start_time_ns,
end_on_exit=False, # We'll set end time manually
) as span:
# Set required attributes
span.set_attribute(GenAIAttributes.OPERATION_NAME, operation_name)
span.set_attribute(GenAIAttributes.PROVIDER_NAME, genai_provider)
span.set_attribute(GenAIAttributes.REQUEST_MODEL, model)
span.set_attribute(GenAIAttributes.RESPONSE_MODEL, model)
span.set_attribute(GenAIAttributes.USAGE_INPUT_TOKENS, input_tokens)
span.set_attribute(GenAIAttributes.USAGE_OUTPUT_TOKENS, output_tokens)
# Add custom attributes for Hindsight context
span.set_attribute("hindsight.scope", scope)
span.set_attribute("hindsight.provider.internal", provider)
# Add tool call information if present
if tool_calls:
span.set_attribute("gen_ai.tool_calls.count", len(tool_calls))
# Add tool names as comma-separated list
tool_names = [tc.get("name", "") for tc in tool_calls]
span.set_attribute("gen_ai.tool_calls.names", ",".join(tool_names))
# Format messages for GenAI conventions (as JSON)
input_messages_json = self._format_messages(messages)
output_messages_json = self._format_output(response_content, finish_reason)
# Extract system instructions if present
system_instructions = self._extract_system_instructions(messages)
# Add event with prompts/completions following v1.37 conventions
event_attrs = {}
if input_messages_json:
event_attrs[GenAIAttributes.INPUT_MESSAGES] = input_messages_json
if output_messages_json:
event_attrs[GenAIAttributes.OUTPUT_MESSAGES] = output_messages_json
if system_instructions:
event_attrs[GenAIAttributes.SYSTEM_INSTRUCTIONS] = system_instructions
if finish_reason:
event_attrs[GenAIAttributes.FINISH_REASONS] = json.dumps([finish_reason])
span.add_event(
"gen_ai.client.inference.operation.details",
attributes=event_attrs,
)
# Add individual tool call events with details
if tool_calls:
for i, tc in enumerate(tool_calls):
tool_event_attrs = {
"tool.name": tc.get("name", ""),
"tool.id": tc.get("id", ""),
"tool.arguments": json.dumps(tc.get("arguments", {})),
}
span.add_event(f"gen_ai.tool_call.{i}", attributes=tool_event_attrs)
# Handle errors
if error:
span.set_status(Status(StatusCode.ERROR, str(error)))
span.set_attribute(GenAIAttributes.ERROR_TYPE, type(error).__name__)
span.record_exception(error)
else:
span.set_status(Status(StatusCode.OK))
# Set end time
span.end(end_time=end_time_ns)
except Exception as e:
# Don't let tracing errors break LLM calls
logger.error(f"Failed to record LLM span: {e}", exc_info=True)
def _format_messages(self, messages: list[dict[str, str]]) -> str:
"""
Format messages into GenAI semantic convention format (JSON array).
Returns JSON string representation of message array.
"""
try:
formatted = []
for msg in messages:
content = msg.get("content", "")
# Truncate if needed
if isinstance(content, str):
content = _truncate_content(content)
formatted.append(
{
"role": msg.get("role", "user"),
"content": content,
}
)
return json.dumps(formatted)
except Exception as e:
logger.warning(f"Failed to format input messages: {e}")
return "[]"
def _format_output(
self,
content: Optional[str],
finish_reason: Optional[str],
) -> str:
"""Format output message into GenAI semantic convention format."""
try:
if content is None:
return "[]"
# Truncate if needed
if isinstance(content, str):
content = _truncate_content(content)
return json.dumps(
[
{
"role": "assistant",
"content": content,
}
]
)
except Exception as e:
logger.warning(f"Failed to format output message: {e}")
return "[]"
def _extract_system_instructions(self, messages: list[dict[str, str]]) -> Optional[str]:
"""Extract system instructions from messages if present."""
try:
for msg in messages:
if msg.get("role") == "system":
content = msg.get("content", "")
if isinstance(content, str):
return _truncate_content(content)
return str(content)
except Exception as e:
logger.warning(f"Failed to extract system instructions: {e}")
return None
class NoOpLLMSpanRecorder:
"""No-op span recorder for when tracing is disabled."""
def record_llm_call(self, **kwargs) -> None:
"""No-op."""
pass
# Global span recorder instance
_span_recorder: Optional[LLMSpanRecorder] = None
def get_span_recorder() -> LLMSpanRecorder | NoOpLLMSpanRecorder:
"""Get the global span recorder (NoOp if tracing disabled)."""
if _span_recorder is None:
return NoOpLLMSpanRecorder()
return _span_recorder
def create_span_recorder() -> LLMSpanRecorder:
"""Create and set the global span recorder."""
global _span_recorder
tracer = get_tracer()
if tracer is None:
raise RuntimeError("Tracing not initialized. Call initialize_tracing() first.")
_span_recorder = LLMSpanRecorder(tracer)
return _span_recorder
-13
View File
@@ -1,13 +0,0 @@
from urllib.parse import urlparse, urlunparse
def mask_network_location(url):
if not url:
return url
parsed_url = urlparse(url)
masked_network_location = parsed_url.hostname or ""
if parsed_url.port:
masked_network_location += f":{parsed_url.port}"
if parsed_url.username or parsed_url.password:
masked_network_location = f"***:***@{masked_network_location}"
return urlunparse(parsed_url._replace(netloc=masked_network_location))
+8 -33
View File
@@ -176,7 +176,7 @@ def main():
nonlocal memory, poller
import uvicorn
from ..extensions import OperationValidatorExtension, TenantExtension, load_extension
from ..extensions import TenantExtension, load_extension
# Load tenant extension BEFORE creating MemoryEngine so it can
# set correct schema context during task execution. Without this,
@@ -184,12 +184,6 @@ def main():
# causing worker writes to land in the wrong schema.
tenant_extension = load_extension("TENANT", TenantExtension)
# Load operation validator so workers can record usage metering
# for async operations (e.g. refresh_mental_model after consolidation)
operation_validator = load_extension("OPERATION_VALIDATOR", OperationValidatorExtension)
if operation_validator:
logger.info(f"Loaded operation validator: {operation_validator.__class__.__name__}")
# Initialize MemoryEngine
# Workers use SyncTaskBackend because they execute tasks directly,
# they don't need to store tasks (they poll from DB)
@@ -197,7 +191,6 @@ def main():
run_migrations=False, # Workers don't run migrations
task_backend=SyncTaskBackend(),
tenant_extension=tenant_extension,
operation_validator=operation_validator,
)
await memory.initialize()
@@ -229,30 +222,15 @@ def main():
# Create the HTTP app for metrics/health
app = create_worker_app(poller, memory)
# Setup signal handlers for graceful shutdown using asyncio
# Setup signal handlers for graceful shutdown
shutdown_requested = asyncio.Event()
force_exit = False
loop = asyncio.get_event_loop()
def signal_handler(signum, frame):
print(f"\nReceived signal {signum}, initiating graceful shutdown...")
shutdown_requested.set()
def signal_handler():
nonlocal force_exit
if shutdown_requested.is_set():
# Second signal = force exit
print("\nReceived second signal, forcing immediate exit...")
force_exit = True
# Restore default handler so third signal kills process
loop.remove_signal_handler(signal.SIGINT)
loop.remove_signal_handler(signal.SIGTERM)
sys.exit(1)
else:
print("\nReceived shutdown signal, initiating graceful shutdown...")
print("(Press Ctrl+C again to force immediate exit)")
shutdown_requested.set()
# Use asyncio's signal handlers which work properly with the event loop
loop.add_signal_handler(signal.SIGINT, signal_handler)
loop.add_signal_handler(signal.SIGTERM, signal_handler)
signal.signal(signal.SIGINT, signal_handler)
signal.signal(signal.SIGTERM, signal_handler)
# Create uvicorn config and server
uvicorn_config = uvicorn.Config(
@@ -271,10 +249,7 @@ def main():
print(f"Worker started. Metrics available at http://{args.http_host}:{args.http_port}/metrics")
# Wait for shutdown signal
try:
await shutdown_requested.wait()
except KeyboardInterrupt:
print("\nReceived interrupt, initiating graceful shutdown...")
await shutdown_requested.wait()
# Graceful shutdown
print("Shutting down HTTP server...")
+10 -14
View File
@@ -72,9 +72,9 @@ class WorkerPoller:
executor: Async function to execute tasks (typically MemoryEngine.execute_task)
poll_interval_ms: Interval between polls when no tasks found (milliseconds)
max_retries: Maximum retry attempts before marking task as failed
schema: Database schema for single-tenant support (deprecated, use tenant_extension)
tenant_extension: Extension for dynamic multi-tenant discovery. If None, creates a
DefaultTenantExtension with the configured schema.
schema: Database schema for single-tenant support (ignored if tenant_extension is set)
tenant_extension: Extension for dynamic multi-tenant discovery. If set, list_tenants()
is called on each poll cycle to discover schemas dynamically.
max_slots: Maximum concurrent tasks per worker
consolidation_max_slots: Maximum concurrent consolidation tasks per worker
"""
@@ -84,13 +84,6 @@ class WorkerPoller:
self._poll_interval_ms = poll_interval_ms
self._max_retries = max_retries
self._schema = schema
# Always set tenant extension (use DefaultTenantExtension if none provided)
if tenant_extension is None:
from ..extensions.builtin.tenant import DefaultTenantExtension
# Pass schema parameter to DefaultTenantExtension if explicitly provided
config = {"schema": schema} if schema else {}
tenant_extension = DefaultTenantExtension(config=config)
self._tenant_extension = tenant_extension
self._max_slots = max_slots
self._consolidation_max_slots = consolidation_max_slots
@@ -107,11 +100,14 @@ class WorkerPoller:
async def _get_schemas(self) -> list[str | None]:
"""Get list of schemas to poll. Returns [None] for default schema (no prefix)."""
from ..config import DEFAULT_DATABASE_SCHEMA
if self._tenant_extension is not None:
from ..config import DEFAULT_DATABASE_SCHEMA
tenants = await self._tenant_extension.list_tenants()
# Convert default schema to None for SQL compatibility (no prefix), keep others as-is
return [t.schema if t.schema != DEFAULT_DATABASE_SCHEMA else None for t in tenants]
tenants = await self._tenant_extension.list_tenants()
# Convert default schema to None for SQL compatibility (no prefix), keep others as-is
return [t.schema if t.schema != DEFAULT_DATABASE_SCHEMA else None for t in tenants]
# Single schema mode
return [self._schema]
async def _get_available_slots(self) -> tuple[int, int]:
"""
+10 -14
View File
@@ -4,7 +4,7 @@ build-backend = "hatchling.build"
[project]
name = "hindsight-api"
version = "0.4.10"
version = "0.4.6"
description = "Hindsight: Agent Memory That Works Like Human Memory"
readme = "README.md"
requires-python = ">=3.11"
@@ -25,16 +25,13 @@ dependencies = [
"psycopg2-binary>=2.9.11",
"tiktoken>=0.12.0",
"httpx>=0.27.0",
"PyJWT[crypto]>=2.8.0",
"fastmcp>=2.14.0", # CVE-2025-66416
"fastmcp>=2.14.0", # CVE-2025-66416
"pg0-embedded>=0.11.0",
"python-dateutil>=2.8.0",
"opentelemetry-api>=1.20.0",
"opentelemetry-sdk>=1.20.0",
"opentelemetry-instrumentation-fastapi>=0.41b0",
"opentelemetry-exporter-prometheus>=0.41b0",
"opentelemetry-exporter-otlp-proto-http>=1.20.0",
"opentelemetry-semantic-conventions>=0.41b0",
"dateparser>=1.2.2",
"google-genai>=1.0.0",
"google-auth>=2.0.0",
@@ -44,17 +41,16 @@ dependencies = [
"flashrank>=0.2.0",
# Local ML models for embeddings/reranking - can be excluded in Docker with INCLUDE_LOCAL_MODELS=false
"sentence-transformers>=3.3.0",
"transformers>=4.53.0", # Security fixes for ReDoS vulnerabilities
"torch>=2.6.0", # CVE fix for remote code execution
"transformers>=4.53.0", # Security fixes for ReDoS vulnerabilities
"torch>=2.6.0", # CVE fix for remote code execution
"uvloop>=0.22.1",
# Transitive dependency security fixes
"pyasn1>=0.6.2", # DoS vulnerability fix
"urllib3>=2.6.3", # Decompression-bomb safeguards bypass fix
"langchain-core>=1.2.5", # Serialization injection vulnerability fix
"filelock>=3.20.1", # TOCTOU race condition fix
"authlib>=1.6.6", # Account takeover vulnerability fix
"aiohttp>=3.13.3", # Multiple DoS vulnerabilities
"claude-agent-sdk>=0.1.27",
"pyasn1>=0.6.2", # DoS vulnerability fix
"urllib3>=2.6.3", # Decompression-bomb safeguards bypass fix
"langchain-core>=1.2.5", # Serialization injection vulnerability fix
"filelock>=3.20.1", # TOCTOU race condition fix
"authlib>=1.6.6", # Account takeover vulnerability fix
"aiohttp>=3.13.3", # Multiple DoS vulnerabilities
]
[project.optional-dependencies]
-31
View File
@@ -220,34 +220,3 @@ async def memory(pg0_db_url, embeddings, cross_encoder, query_analyzer):
await mem.close()
except Exception:
pass
@pytest_asyncio.fixture(scope="function")
async def memory_no_llm_verify(pg0_db_url, embeddings, cross_encoder, query_analyzer):
"""
Provide a MemoryEngine instance that skips LLM connection verification.
This fixture is useful for tests that override the LLM configuration
after initialization (e.g., to test specific providers).
"""
mem = MemoryEngine(
db_url=pg0_db_url,
memory_llm_provider="mock", # Use mock provider as placeholder
memory_llm_api_key="",
memory_llm_model="mock",
embeddings=embeddings,
cross_encoder=cross_encoder,
query_analyzer=query_analyzer,
pool_min_size=1,
pool_max_size=5,
run_migrations=False,
task_backend=SyncTaskBackend(),
skip_llm_verification=True, # Skip verification - will be overridden by test
)
await mem.initialize()
yield mem
try:
if mem._pool and not mem._pool._closing:
await mem.close()
except Exception:
pass
@@ -1,109 +0,0 @@
"""
Tests for configuration validation.
Verifies that config validation catches invalid parameter combinations.
"""
import os
import pytest
@pytest.fixture(autouse=True)
def setup_test_env():
"""Set up environment for each test, restoring original values after."""
from hindsight_api.config import clear_config_cache
# Save original environment values
env_vars_to_save = [
"HINDSIGHT_API_RETAIN_MAX_COMPLETION_TOKENS",
"HINDSIGHT_API_RETAIN_CHUNK_SIZE",
"HINDSIGHT_API_LLM_PROVIDER",
"HINDSIGHT_API_LLM_MODEL",
]
# Save original values
original_values = {}
for key in env_vars_to_save:
original_values[key] = os.environ.get(key)
clear_config_cache()
yield
# Restore original environment
for key, original_value in original_values.items():
if original_value is None:
os.environ.pop(key, None)
else:
os.environ[key] = original_value
clear_config_cache()
def test_retain_max_completion_tokens_must_be_greater_than_chunk_size():
"""Test that RETAIN_MAX_COMPLETION_TOKENS > RETAIN_CHUNK_SIZE validation works."""
from hindsight_api.config import HindsightConfig
# Set invalid config: max_completion_tokens <= chunk_size
os.environ["HINDSIGHT_API_RETAIN_MAX_COMPLETION_TOKENS"] = "1000"
os.environ["HINDSIGHT_API_RETAIN_CHUNK_SIZE"] = "2000"
os.environ["HINDSIGHT_API_LLM_PROVIDER"] = "mock"
# Should raise ValueError with helpful message
with pytest.raises(ValueError) as exc_info:
HindsightConfig.from_env()
error_message = str(exc_info.value)
# Verify error message contains helpful information
assert "HINDSIGHT_API_RETAIN_MAX_COMPLETION_TOKENS" in error_message
assert "1000" in error_message
assert "HINDSIGHT_API_RETAIN_CHUNK_SIZE" in error_message
assert "2000" in error_message
assert "must be greater than" in error_message
assert "You have two options to fix this:" in error_message
assert "Increase HINDSIGHT_API_RETAIN_MAX_COMPLETION_TOKENS" in error_message
assert "Use a model that supports" in error_message
def test_retain_max_completion_tokens_equal_to_chunk_size_fails():
"""Test that RETAIN_MAX_COMPLETION_TOKENS == RETAIN_CHUNK_SIZE also fails."""
from hindsight_api.config import HindsightConfig
# Set invalid config: max_completion_tokens == chunk_size
os.environ["HINDSIGHT_API_RETAIN_MAX_COMPLETION_TOKENS"] = "3000"
os.environ["HINDSIGHT_API_RETAIN_CHUNK_SIZE"] = "3000"
os.environ["HINDSIGHT_API_LLM_PROVIDER"] = "mock"
# Should raise ValueError
with pytest.raises(ValueError) as exc_info:
HindsightConfig.from_env()
error_message = str(exc_info.value)
assert "must be greater than" in error_message
def test_valid_retain_config_succeeds():
"""Test that valid config with max_completion_tokens > chunk_size works."""
from hindsight_api.config import HindsightConfig
# Set valid config: max_completion_tokens > chunk_size
os.environ["HINDSIGHT_API_RETAIN_MAX_COMPLETION_TOKENS"] = "64000"
os.environ["HINDSIGHT_API_RETAIN_CHUNK_SIZE"] = "3000"
os.environ["HINDSIGHT_API_LLM_PROVIDER"] = "mock"
# Should not raise
config = HindsightConfig.from_env()
assert config.retain_max_completion_tokens == 64000
assert config.retain_chunk_size == 3000
# Note: The BadRequestError wrapping is implemented in fact_extraction.py
# but requires a complex integration test setup. The functionality is
# straightforward: when a BadRequestError containing keywords like
# "max_tokens", "max_completion_tokens", or "maximum context" is caught,
# it's wrapped in a ValueError with helpful guidance.
#
# The config validation tests above ensure users get early feedback
# about invalid configurations before runtime errors occur.
-8
View File
@@ -353,14 +353,6 @@ class TestOperationHooksParameters:
assert post_result.error is None
assert post_result.unit_ids == result # Should match the return value
# Verify actual LLM token usage is populated
assert post_result.llm_input_tokens is not None
assert post_result.llm_input_tokens > 0
assert post_result.llm_output_tokens is not None
assert post_result.llm_output_tokens > 0
assert post_result.llm_total_tokens is not None
assert post_result.llm_total_tokens == post_result.llm_input_tokens + post_result.llm_output_tokens
@pytest.mark.asyncio
async def test_recall_pre_hook_receives_all_parameters(self, memory_with_tracking_validator):
"""Pre-recall hook receives all user-provided parameters."""
+9 -302
View File
@@ -1,10 +1,5 @@
"""
Test LLM provider with different models using actual Hindsight memory operations.
Tests validate that providers work correctly with:
1. Retain (memory ingestion with fact extraction)
2. Reflect (memory retrieval with tool calling)
3. Mental models (consolidated knowledge generation)
Test LLM provider with different models using actual memory operations.
"""
import os
from datetime import datetime
@@ -24,10 +19,6 @@ MODEL_MATRIX = [
("openai", "gpt-5-nano"),
("openai", "gpt-5"),
("openai", "gpt-5.2"),
# Anthropic models
("anthropic", "claude-sonnet-4-20250514"),
("anthropic", "claude-opus-4-5-20251101"),
("anthropic", "claude-haiku-4-20250514"),
# Groq models
("groq", "openai/gpt-oss-120b"),
("groq", "openai/gpt-oss-20b"),
@@ -38,12 +29,6 @@ MODEL_MATRIX = [
# Ollama models (local)
("ollama", "gemma3:12b"),
("ollama", "gemma3:1b"),
# Claude Code (uses Claude Agent SDK with Claude models)
("claude-code", "claude-sonnet-4-20250514"),
# OpenAI Codex (uses MCP with Codex-specific models)
("openai-codex", "gpt-5.2-codex"),
# Mock provider (for testing)
("mock", "mock"),
]
@@ -51,7 +36,6 @@ def get_api_key_for_provider(provider: str) -> str | None:
"""Get API key for provider from environment variables."""
provider_key_map = {
"openai": "OPENAI_API_KEY",
"anthropic": "ANTHROPIC_API_KEY",
"groq": "GROQ_API_KEY",
"gemini": "GEMINI_API_KEY",
}
@@ -59,171 +43,6 @@ def get_api_key_for_provider(provider: str) -> str | None:
return os.getenv(env_var) if env_var else None
def should_skip_provider(provider: str, model: str = "") -> tuple[bool, str]:
"""Check if provider should be skipped and return reason."""
# Never skip mock provider
if provider == "mock":
return False, ""
# Skip claude-code and openai-codex in CI (require local auth)
if os.getenv("CI") and provider in ("claude-code", "openai-codex"):
return True, f"{provider} not available in CI (requires local authentication)"
# Skip Ollama in CI (no models available)
if provider == "ollama" and os.getenv("CI"):
return True, "Ollama not available in CI"
# Skip Ollama gemma models (don't support tool calling)
if provider == "ollama" and "gemma" in model.lower():
return True, f"Ollama {model} does not support tool calling"
# Other providers need an API key
if provider not in ("ollama", "claude-code", "openai-codex", "mock"):
api_key = get_api_key_for_provider(provider)
if not api_key:
return True, f"No API key available (set {provider.upper()}_API_KEY)"
return False, ""
@pytest.mark.parametrize("provider,model", MODEL_MATRIX)
@pytest.mark.asyncio
@pytest.mark.timeout(300) # Increase timeout for slow models like groq gpt-oss-120b
async def test_llm_provider_api_methods(provider: str, model: str):
"""
Test all LLM API methods used by Hindsight at runtime.
This validates that the provider correctly implements the LLMInterface.
Tests:
1. verify_connection() - Connection verification
2. call() with plain text - Basic LLM call
3. call() with response_format - Structured output (used in fact extraction)
4. call_with_tools() - Tool calling (used in reflect agent)
"""
# Skip mock provider - it's a test stub, not a real LLM implementation
if provider == "mock":
pytest.skip("Mock provider is a test stub, not a real LLM")
should_skip, reason = should_skip_provider(provider, model)
if should_skip:
pytest.skip(f"Skipping {provider}/{model}: {reason}")
api_key = get_api_key_for_provider(provider)
llm = LLMProvider(
provider=provider,
api_key=api_key or "",
base_url="",
model=model,
)
print(f"\n{provider}/{model} - API methods test:")
# Test 1: verify_connection()
try:
await llm.verify_connection()
print(" ✓ verify_connection()")
except Exception as e:
pytest.fail(f"{provider}/{model} verify_connection() failed: {e}")
# Test 2: call() with plain text
try:
response = await llm.call(
messages=[
{"role": "system", "content": "You are a helpful assistant."},
{"role": "user", "content": "What is 2+2? Answer in one word."},
],
max_completion_tokens=50,
)
assert response is not None, "call() returned None"
assert len(response) > 0, "call() returned empty string"
print(f" ✓ call() plain text: {response[:50]}")
except Exception as e:
pytest.fail(f"{provider}/{model} call() plain text failed: {e}")
# Test 3: call() with response_format (structured output)
# Skip for models that don't support structured output
skip_structured_output = (provider == "groq" and "gpt-oss-120b" in model.lower())
if skip_structured_output:
print(f" ⊘ call() structured output: skipped (model doesn't support response_format)")
else:
try:
from pydantic import BaseModel
class TestResponse(BaseModel):
answer: str
confidence: str
response = await llm.call(
messages=[
{"role": "system", "content": "You are a math assistant."},
{"role": "user", "content": "What is the capital of France?"},
],
response_format=TestResponse,
max_completion_tokens=100,
)
assert isinstance(response, TestResponse), f"Expected TestResponse, got {type(response)}"
assert hasattr(response, "answer"), "Structured output missing 'answer' field"
assert hasattr(response, "confidence"), "Structured output missing 'confidence' field"
print(f" ✓ call() structured output: answer={response.answer}, confidence={response.confidence}")
except Exception as e:
pytest.fail(f"{provider}/{model} call() structured output failed: {e}")
# Test 4: call_with_tools() (tool calling)
try:
tools = [
{
"type": "function",
"function": {
"name": "get_weather",
"description": "Get the weather for a location",
"parameters": {
"type": "object",
"properties": {
"location": {"type": "string", "description": "City name"},
"unit": {"type": "string", "enum": ["celsius", "fahrenheit"]},
},
"required": ["location"],
},
},
}
]
result = await llm.call_with_tools(
messages=[
{"role": "system", "content": "You are a helpful assistant with access to tools."},
{"role": "user", "content": "What's the weather like in Paris?"},
],
tools=tools,
max_completion_tokens=500, # Increased from 200 to give models enough space for tool calls
)
assert result is not None, "call_with_tools() returned None"
assert hasattr(result, "tool_calls"), "Result missing 'tool_calls' attribute"
# Nano models may hit token limits before making tool calls - that's acceptable
is_nano_model = "nano" in model.lower()
if is_nano_model and len(result.tool_calls) == 0:
# Check if it hit length limit (expected for nano models)
if hasattr(result, "finish_reason") and result.finish_reason == "length":
print(f" ✓ call_with_tools(): nano model hit token limit (expected)")
else:
pytest.fail(f"Nano model made 0 tool calls but didn't hit length limit (finish_reason={getattr(result, 'finish_reason', 'unknown')})")
else:
assert len(result.tool_calls) > 0, f"Expected at least 1 tool call, got {len(result.tool_calls)}"
# Verify tool call structure
tool_call = result.tool_calls[0]
assert hasattr(tool_call, "name"), "Tool call missing 'name'"
assert hasattr(tool_call, "arguments"), "Tool call missing 'arguments'"
assert tool_call.name == "get_weather", f"Expected 'get_weather', got '{tool_call.name}'"
assert "location" in tool_call.arguments, "Tool call arguments missing 'location'"
print(f" ✓ call_with_tools(): {tool_call.name}({tool_call.arguments})")
except Exception as e:
pytest.fail(f"{provider}/{model} call_with_tools() failed: {e}")
@pytest.mark.parametrize("provider,model", MODEL_MATRIX)
@pytest.mark.asyncio
async def test_llm_provider_memory_operations(provider: str, model: str):
@@ -231,16 +50,16 @@ async def test_llm_provider_memory_operations(provider: str, model: str):
Test LLM provider with actual memory operations: fact extraction and reflect.
All models must pass this test.
"""
# Skip mock provider - it's a test stub, not designed for real operations
if provider == "mock":
pytest.skip("Mock provider is a test stub, not designed for real operations")
should_skip, reason = should_skip_provider(provider, model)
if should_skip:
pytest.skip(f"Skipping {provider}/{model}: {reason}")
api_key = get_api_key_for_provider(provider)
# Skip Ollama tests in CI (no models available)
if provider == "ollama" and os.getenv("CI"):
pytest.skip(f"Skipping {provider}/{model}: Ollama not available in CI")
# Other providers need an API key
if provider != "ollama" and not api_key:
pytest.skip(f"Skipping {provider}/{model}: no API key available")
llm = LLMProvider(
provider=provider,
api_key=api_key or "",
@@ -298,115 +117,3 @@ async def test_llm_provider_memory_operations(provider: str, model: str):
assert response is not None, f"{provider}/{model} reflect returned None"
assert len(response) > 10, f"{provider}/{model} reflect response too short"
@pytest.mark.parametrize("provider,model", [
("claude-code", "claude-sonnet-4-20250514"),
("openai-codex", "gpt-5.2-codex"),
])
@pytest.mark.asyncio
async def test_llm_provider_consolidation(memory_no_llm_verify, request_context, provider: str, model: str):
"""
Test LLM provider with consolidation (automatic mental model generation from observations).
This validates that the provider can generate synthesized knowledge from raw memories.
This test is limited to claude-code and codex since they're the critical providers
that needed tool calling fixes for reflect and consolidation operations.
"""
should_skip, reason = should_skip_provider(provider, model)
if should_skip:
pytest.skip(f"Skipping {provider}/{model}: {reason}")
# Use provider-specific LLM for this test
api_key = get_api_key_for_provider(provider)
memory_no_llm_verify._consolidation_llm = LLMProvider(
provider=provider,
api_key=api_key or "",
base_url="",
model=model,
)
# Also need retain LLM for ingesting data
memory_no_llm_verify._retain_llm = memory_no_llm_verify._consolidation_llm
test_bank_id = f"llm_test_consolidation_{provider}_{model}_{datetime.now().timestamp()}"
# Enable observations for this bank
from hindsight_api.config import get_config
config = get_config()
original_value = config.enable_observations
config.enable_observations = True
try:
# Retain memories to consolidate
test_content = """
Bob prefers functional programming with Rust and Haskell.
He emphasizes immutability and pure functions in code reviews.
Bob advocates for type safety and compile-time guarantees.
He avoids mutable state and prefers declarative code patterns.
"""
await memory_no_llm_verify.retain_async(
bank_id=test_bank_id,
content=test_content,
context="Team coding preferences",
event_date=datetime(2024, 12, 1),
request_context=request_context,
)
print(f"\n{provider}/{model} - Consolidation test:")
# Run consolidation to generate observations (mental models)
from hindsight_api.engine.consolidation.consolidator import run_consolidation_job
result = await run_consolidation_job(
memory_engine=memory_no_llm_verify,
bank_id=test_bank_id,
request_context=request_context,
)
print(f" Processed: {result.get('memories_processed', 0)} memories")
print(f" Created: {result.get('observations_created', 0)} observations")
print(f" Updated: {result.get('observations_updated', 0)} observations")
# Verify consolidation ran successfully
assert result["status"] in ["success", "no_new_memories"], f"{provider}/{model} consolidation failed"
# If observations were created, verify they contain relevant content
if result.get("observations_created", 0) > 0:
observations = await memory_no_llm_verify.list_mental_models_consolidated(
bank_id=test_bank_id,
request_context=request_context,
)
assert len(observations) > 0, f"{provider}/{model} consolidation created 0 observations"
# Check first observation contains relevant information
obs_content = observations[0].get("content", "").lower()
relevant_terms = ["bob", "functional", "rust", "immutab", "type"]
matches = [term for term in relevant_terms if term in obs_content]
print(f" Observation preview: {observations[0].get('content', '')[:200]}...")
print(f" Found {len(matches)} relevant terms: {matches}")
assert len(matches) >= 2, (
f"{provider}/{model} consolidated observation doesn't contain relevant info. "
f"Expected at least 2 of {relevant_terms}, found {len(matches)}: {matches}"
)
finally:
# Restore original config
config.enable_observations = original_value
# NOTE: The tests above validate the critical Hindsight operations:
#
# test_llm_provider_memory_operations (ALL providers):
# - Fact extraction (retain): tests structured output generation
# - Reflect: tests memory retrieval and reasoning (uses tool calling for claude-code/codex)
#
# test_llm_provider_consolidation (claude-code and codex only):
# - Consolidation: tests automatic mental model generation from observations
# - Requires MemoryEngine fixture with working LLM (from .env or env vars)
# - Run your local LLM server OR set HINDSIGHT_API_LLM_PROVIDER/API_KEY/MODEL env vars
#
# For full end-to-end integration tests using the HTTP API, see tests/test_http_api_integration.py
@@ -30,8 +30,7 @@ async def test_llm_metrics_recorded_for_groq():
# Create a mock metrics collector to track record_llm_call calls
mock_collector = MagicMock(spec=MetricsCollector)
# Patch the provider module where get_metrics_collector is actually called
with patch("hindsight_api.engine.providers.openai_compatible_llm.get_metrics_collector", return_value=mock_collector):
with patch("hindsight_api.engine.llm_wrapper.get_metrics_collector", return_value=mock_collector):
llm = LLMProvider(
provider="groq",
api_key=api_key,
@@ -91,8 +90,7 @@ async def test_llm_metrics_recorded_for_structured_output():
mock_collector = MagicMock(spec=MetricsCollector)
# Patch the provider module where get_metrics_collector is actually called
with patch("hindsight_api.engine.providers.openai_compatible_llm.get_metrics_collector", return_value=mock_collector):
with patch("hindsight_api.engine.llm_wrapper.get_metrics_collector", return_value=mock_collector):
llm = LLMProvider(
provider="groq",
api_key=api_key,
@@ -1,280 +0,0 @@
"""Integration test for MCP endpoint routing.
This test verifies that /mcp/ and /mcp/{bank_id}/ expose different tool sets,
and that URLs with or without trailing slashes both work (no 307 redirect).
"""
import httpx
import pytest
from mcp.client.session import ClientSession
from mcp.client.streamable_http import streamable_http_client
@pytest.mark.asyncio
async def test_mcp_endpoint_routing_integration(memory):
"""Test that multi-bank and single-bank endpoints expose different tools using StreamableHTTP.
This is a regression test for issue #317 where /mcp/{bank_id}/ was incorrectly
exposing all tools (including list_banks) and bank_id parameters.
"""
from hindsight_api.api import create_app
# Create app with MCP enabled
app = create_app(memory, mcp_api_enabled=True, initialize_memory=False)
# Use the app's lifespan context to properly initialize MCP servers
async with app.router.lifespan_context(app):
# Create an HTTPX client that routes to our ASGI app
from httpx import ASGITransport
async with httpx.AsyncClient(transport=ASGITransport(app=app), base_url="http://test") as http_client:
# Test 1: Multi-bank endpoint /mcp/
async with streamable_http_client("http://test/mcp/", http_client=http_client) as (
read_stream,
write_stream,
_,
):
async with ClientSession(read_stream, write_stream) as session:
await session.initialize()
multi_result = await session.list_tools()
multi_tools = {t.name for t in multi_result.tools}
# Multi-bank should have all tools including bank management and mental models
assert "retain" in multi_tools
assert "recall" in multi_tools
assert "reflect" in multi_tools
assert "list_banks" in multi_tools, "Multi-bank should expose list_banks"
assert "create_bank" in multi_tools, "Multi-bank should expose create_bank"
assert "list_mental_models" in multi_tools, "Multi-bank should expose list_mental_models"
assert "create_mental_model" in multi_tools, "Multi-bank should expose create_mental_model"
assert "get_mental_model" in multi_tools, "Multi-bank should expose get_mental_model"
assert "update_mental_model" in multi_tools, "Multi-bank should expose update_mental_model"
assert "delete_mental_model" in multi_tools, "Multi-bank should expose delete_mental_model"
assert "refresh_mental_model" in multi_tools, "Multi-bank should expose refresh_mental_model"
# Multi-bank retain should have bank_id parameter
retain_tool = next((t for t in multi_result.tools if t.name == "retain"), None)
assert retain_tool is not None
multi_params = set(retain_tool.inputSchema.get("properties", {}).keys())
assert "bank_id" in multi_params, "Multi-bank retain should have bank_id parameter"
# Test 2: Single-bank endpoint /mcp/test-bank/
async with streamable_http_client("http://test/mcp/test-bank/", http_client=http_client) as (
read_stream,
write_stream,
_,
):
async with ClientSession(read_stream, write_stream) as session:
await session.initialize()
single_result = await session.list_tools()
single_tools = {t.name for t in single_result.tools}
# Single-bank should have scoped tools including mental models (no bank management)
assert "retain" in single_tools
assert "recall" in single_tools
assert "reflect" in single_tools
assert "list_mental_models" in single_tools, "Single-bank should expose list_mental_models"
assert "create_mental_model" in single_tools, "Single-bank should expose create_mental_model"
assert "list_banks" not in single_tools, "Single-bank should NOT expose list_banks"
assert "create_bank" not in single_tools, "Single-bank should NOT expose create_bank"
# Single-bank retain should NOT have bank_id parameter
retain_tool = next((t for t in single_result.tools if t.name == "retain"), None)
assert retain_tool is not None
single_params = set(retain_tool.inputSchema.get("properties", {}).keys())
assert "bank_id" not in single_params, "Single-bank retain should NOT have bank_id parameter"
@pytest.mark.asyncio
async def test_mcp_no_trailing_slash_works(memory):
"""Test that /mcp (no trailing slash) discovers tools without 307 redirect.
Starlette's Mount class redirects /mcp to /mcp/ with a 307 Temporary Redirect.
Many MCP clients don't follow POST redirects, causing 0 tools to be discovered.
MCPMiddleware wraps the app directly (no Mount), so the redirect never happens.
"""
from hindsight_api.api import create_app
app = create_app(memory, mcp_api_enabled=True, initialize_memory=False)
async with app.router.lifespan_context(app):
from httpx import ASGITransport
async with httpx.AsyncClient(transport=ASGITransport(app=app), base_url="http://test") as http_client:
# /mcp (no slash) should work the same as /mcp/
async with streamable_http_client("http://test/mcp", http_client=http_client) as (
read_stream,
write_stream,
_,
):
async with ClientSession(read_stream, write_stream) as session:
await session.initialize()
result = await session.list_tools()
tools = {t.name for t in result.tools}
assert len(tools) >= 11, f"Expected at least 11 tools from /mcp, got {len(tools)}: {tools}"
assert "retain" in tools
assert "recall" in tools
assert "list_banks" in tools
# /mcp/my-bank (single-bank, no slash) should also work
async with streamable_http_client("http://test/mcp/my-bank", http_client=http_client) as (
read_stream,
write_stream,
_,
):
async with ClientSession(read_stream, write_stream) as session:
await session.initialize()
result = await session.list_tools()
tools = {t.name for t in result.tools}
assert "retain" in tools
assert "list_banks" not in tools, "Single-bank /mcp/my-bank should NOT expose list_banks"
@pytest.mark.asyncio
async def test_mcp_tool_execution_through_client(memory):
"""Test that tools can be called (not just discovered) through the MCP client.
This verifies the full pipeline: HTTP middleware FastMCP tool engine response.
Previous tests only checked tool discovery (list_tools), not actual execution.
"""
from httpx import ASGITransport
from hindsight_api.api import create_app
app = create_app(memory, mcp_api_enabled=True, initialize_memory=False)
async with app.router.lifespan_context(app):
async with httpx.AsyncClient(transport=ASGITransport(app=app), base_url="http://test") as http_client:
async with streamable_http_client("http://test/mcp/", http_client=http_client) as (
read_stream,
write_stream,
_,
):
async with ClientSession(read_stream, write_stream) as session:
await session.initialize()
# Execute list_banks tool
result = await session.call_tool("list_banks", arguments={})
assert result is not None
assert len(result.content) > 0
# The result text should be valid JSON with a "banks" key
import json
response_text = result.content[0].text
parsed = json.loads(response_text)
assert "banks" in parsed
@pytest.mark.asyncio
async def test_mcp_mental_model_validation_through_client(memory):
"""Test that input validation works through the real MCP transport.
Verifies that invalid inputs return error messages without crashing,
and that the engine is never called with invalid data.
"""
from httpx import ASGITransport
from hindsight_api.api import create_app
app = create_app(memory, mcp_api_enabled=True, initialize_memory=False)
async with app.router.lifespan_context(app):
async with httpx.AsyncClient(transport=ASGITransport(app=app), base_url="http://test") as http_client:
async with streamable_http_client("http://test/mcp/", http_client=http_client) as (
read_stream,
write_stream,
_,
):
async with ClientSession(read_stream, write_stream) as session:
await session.initialize()
# Test: empty name should return validation error
import json
result = await session.call_tool(
"create_mental_model",
arguments={"name": "", "source_query": "test query"},
)
assert result is not None
parsed = json.loads(result.content[0].text)
assert "error" in parsed
assert "name cannot be empty" in parsed["error"]
# Test: max_tokens out of range should return validation error
result = await session.call_tool(
"create_mental_model",
arguments={"name": "Test", "source_query": "test query", "max_tokens": 0},
)
parsed = json.loads(result.content[0].text)
assert "error" in parsed
assert "max_tokens must be between 256 and 8192" in parsed["error"]
@pytest.mark.asyncio
async def test_mcp_bank_named_sse_routes_to_single_bank(memory):
"""Test that a bank named 'sse' routes to single-bank mode.
Regression test: the old MCP_ENDPOINTS blocklist prevented banks named 'sse'
or 'messages' from being accessed via path routing. They fell through to
multi-bank mode instead.
"""
from httpx import ASGITransport
from hindsight_api.api import create_app
app = create_app(memory, mcp_api_enabled=True, initialize_memory=False)
async with app.router.lifespan_context(app):
async with httpx.AsyncClient(transport=ASGITransport(app=app), base_url="http://test") as http_client:
async with streamable_http_client("http://test/mcp/sse/", http_client=http_client) as (
read_stream,
write_stream,
_,
):
async with ClientSession(read_stream, write_stream) as session:
await session.initialize()
result = await session.list_tools()
tools = {t.name for t in result.tools}
# Should be single-bank mode (no bank management tools)
assert "retain" in tools
assert "recall" in tools
assert "list_banks" not in tools, "Bank 'sse' should route to single-bank mode"
assert "create_bank" not in tools
# retain should NOT have bank_id parameter (single-bank mode)
retain_tool = next(t for t in result.tools if t.name == "retain")
params = set(retain_tool.inputSchema.get("properties", {}).keys())
assert "bank_id" not in params
@pytest.mark.asyncio
async def test_mcp_bank_named_messages_routes_to_single_bank(memory):
"""Test that a bank named 'messages' routes to single-bank mode.
Same regression test as test_mcp_bank_named_sse_routes_to_single_bank but for 'messages'.
"""
from httpx import ASGITransport
from hindsight_api.api import create_app
app = create_app(memory, mcp_api_enabled=True, initialize_memory=False)
async with app.router.lifespan_context(app):
async with httpx.AsyncClient(transport=ASGITransport(app=app), base_url="http://test") as http_client:
async with streamable_http_client("http://test/mcp/messages/", http_client=http_client) as (
read_stream,
write_stream,
_,
):
async with ClientSession(read_stream, write_stream) as session:
await session.initialize()
result = await session.list_tools()
tools = {t.name for t in result.tools}
assert "retain" in tools
assert "list_banks" not in tools, "Bank 'messages' should route to single-bank mode"
-169
View File
@@ -1,169 +0,0 @@
"""Tests for MCPExtension loading and tool registration."""
from unittest.mock import MagicMock, patch
import pytest
from fastmcp import FastMCP
from hindsight_api import MemoryEngine
from hindsight_api.extensions.mcp import MCPExtension
class MockMCPExtension(MCPExtension):
"""Test extension that registers a custom tool."""
def __init__(self, config=None):
super().__init__(config)
self.register_tools_called = False
self.registered_mcp = None
self.registered_memory = None
def register_tools(self, mcp: FastMCP, memory: MemoryEngine) -> None:
"""Register a test tool to verify extension was called."""
self.register_tools_called = True
self.registered_mcp = mcp
self.registered_memory = memory
@mcp.tool()
async def test_extension_tool(query: str) -> str:
"""A test tool registered by the extension."""
return f"Extension tool received: {query}"
class TestMCPExtensionBase:
"""Tests for MCPExtension base class."""
def test_mcp_extension_is_abstract(self):
"""MCPExtension.register_tools is abstract and must be implemented."""
with pytest.raises(TypeError, match="abstract method"):
MCPExtension()
def test_subclass_can_be_instantiated(self):
"""Subclass implementing register_tools can be instantiated."""
ext = MockMCPExtension()
assert ext is not None
assert ext.register_tools_called is False
def test_register_tools_receives_mcp_and_memory(self):
"""register_tools receives FastMCP and MemoryEngine instances."""
ext = MockMCPExtension()
mcp = FastMCP("test")
memory = MagicMock(spec=MemoryEngine)
ext.register_tools(mcp, memory)
assert ext.register_tools_called is True
assert ext.registered_mcp is mcp
assert ext.registered_memory is memory
class TestMCPExtensionLoading:
"""Tests for MCPExtension loading in create_mcp_server."""
@pytest.fixture
def mock_memory(self):
"""Create a mock MemoryEngine."""
memory = MagicMock()
memory._tenant_extension = MagicMock()
memory._tenant_extension.authenticate_mcp = MagicMock()
return memory
def test_create_mcp_server_without_extension(self, mock_memory):
"""create_mcp_server works without MCPExtension configured."""
from hindsight_api.api.mcp import create_mcp_server
with patch("hindsight_api.api.mcp.load_extension", return_value=None):
mcp = create_mcp_server(mock_memory)
# Core tools should be registered
tools = mcp._tool_manager._tools
assert "retain" in tools
assert "recall" in tools
assert "reflect" in tools
# Extension tool should NOT be present
assert "test_extension_tool" not in tools
def test_create_mcp_server_with_extension(self, mock_memory):
"""create_mcp_server loads and calls MCPExtension when configured."""
from hindsight_api.api.mcp import create_mcp_server
mock_ext = MockMCPExtension()
with patch("hindsight_api.api.mcp.load_extension", return_value=mock_ext):
mcp = create_mcp_server(mock_memory)
# Extension should have been called
assert mock_ext.register_tools_called is True
# Core tools should still be registered
tools = mcp._tool_manager._tools
assert "retain" in tools
assert "recall" in tools
# Extension tool should also be registered
assert "test_extension_tool" in tools
@pytest.mark.asyncio
async def test_extension_tool_is_callable(self, mock_memory):
"""Tool registered by extension can be called."""
from hindsight_api.api.mcp import create_mcp_server
mock_ext = MockMCPExtension()
with patch("hindsight_api.api.mcp.load_extension", return_value=mock_ext):
mcp = create_mcp_server(mock_memory)
# Get and call the extension tool
tools = mcp._tool_manager._tools
test_tool = tools["test_extension_tool"]
result = await test_tool.fn(query="hello world")
assert result == "Extension tool received: hello world"
def test_load_extension_called_with_correct_args(self, mock_memory):
"""load_extension is called with 'MCP' prefix and MCPExtension class."""
from hindsight_api.api.mcp import create_mcp_server
with patch("hindsight_api.api.mcp.load_extension") as mock_load:
mock_load.return_value = None
create_mcp_server(mock_memory)
mock_load.assert_called_once_with("MCP", MCPExtension)
class TestMCPExtensionIntegration:
"""Integration tests verifying extension tools work end-to-end."""
@pytest.fixture
def mock_memory(self):
"""Create a mock MemoryEngine with required methods."""
memory = MagicMock()
memory.retain_batch_async = MagicMock()
memory.submit_async_retain = MagicMock(return_value={"operation_id": "test-op"})
memory.recall_async = MagicMock(return_value=MagicMock(results=[]))
memory.reflect_async = MagicMock(return_value=MagicMock(text="reflection"))
memory.list_banks = MagicMock(return_value=[])
memory.get_bank_profile = MagicMock(return_value={"id": "test"})
memory._tenant_extension = MagicMock()
return memory
def test_extension_tools_coexist_with_core_tools(self, mock_memory):
"""Extension tools are added alongside core tools, not replacing them."""
from hindsight_api.api.mcp import create_mcp_server
mock_ext = MockMCPExtension()
with patch("hindsight_api.api.mcp.load_extension", return_value=mock_ext):
mcp = create_mcp_server(mock_memory)
tools = mcp._tool_manager._tools
# All core tools present
assert "retain" in tools
assert "recall" in tools
assert "reflect" in tools
assert "list_banks" in tools
assert "create_bank" in tools
# Extension tool also present
assert "test_extension_tool" in tools
# At least 11 core + 1 extension = 12 tools (may grow as new tools are added)
assert len(tools) >= 12
+5 -254
View File
@@ -1,8 +1,7 @@
"""Test MCP server routing with dynamic bank_id."""
from unittest.mock import AsyncMock, MagicMock
import pytest
from unittest.mock import AsyncMock, MagicMock
@pytest.fixture
@@ -18,7 +17,7 @@ def mock_memory():
@pytest.mark.asyncio
async def test_mcp_context_variable():
"""Test that context variable works correctly."""
from hindsight_api.api.mcp import _current_bank_id, get_current_bank_id
from hindsight_api.api.mcp import get_current_bank_id, _current_bank_id
# Initially None
assert get_current_bank_id() is None
@@ -37,7 +36,7 @@ async def test_mcp_context_variable():
@pytest.mark.asyncio
async def test_mcp_tools_use_context_bank_id(mock_memory):
"""Test that MCP tools use bank_id from context."""
from hindsight_api.api.mcp import _current_bank_id, create_mcp_server
from hindsight_api.api.mcp import create_mcp_server, _current_bank_id
mcp_server = create_mcp_server(mock_memory)
@@ -63,7 +62,6 @@ async def test_mcp_tools_use_context_bank_id(mock_memory):
def test_path_parsing_logic():
"""Test the path parsing logic for bank_id extraction."""
def parse_path(path):
"""Simulate the path parsing logic from MCPMiddleware."""
if not path.startswith("/") or len(path) <= 1:
@@ -104,7 +102,7 @@ def test_path_parsing_logic():
@pytest.mark.asyncio
async def test_api_key_context_variable():
"""Test that API key context variable works correctly."""
from hindsight_api.api.mcp import _current_api_key, get_current_api_key
from hindsight_api.api.mcp import get_current_api_key, _current_api_key
# Initially None
assert get_current_api_key() is None
@@ -123,7 +121,7 @@ async def test_api_key_context_variable():
@pytest.mark.asyncio
async def test_mcp_tools_propagate_api_key(mock_memory):
"""Test that MCP tools propagate API key to RequestContext."""
from hindsight_api.api.mcp import _current_api_key, _current_bank_id, create_mcp_server
from hindsight_api.api.mcp import create_mcp_server, _current_bank_id, _current_api_key
mcp_server = create_mcp_server(mock_memory)
tools = mcp_server._tool_manager._tools
@@ -143,250 +141,3 @@ async def test_mcp_tools_propagate_api_key(mock_memory):
finally:
_current_bank_id.reset(bank_token)
_current_api_key.reset(api_key_token)
@pytest.mark.asyncio
async def test_tenant_id_context_variable():
"""Test that tenant_id and api_key_id context variables work correctly."""
from hindsight_api.api.mcp import (
_current_api_key_id,
_current_tenant_id,
get_current_api_key_id,
get_current_tenant_id,
)
# Initially None
assert get_current_tenant_id() is None
assert get_current_api_key_id() is None
# Set and verify
tenant_token = _current_tenant_id.set("org-123")
key_id_token = _current_api_key_id.set("key-456")
try:
assert get_current_tenant_id() == "org-123"
assert get_current_api_key_id() == "key-456"
finally:
_current_tenant_id.reset(tenant_token)
_current_api_key_id.reset(key_id_token)
# Back to None after reset
assert get_current_tenant_id() is None
assert get_current_api_key_id() is None
@pytest.mark.asyncio
async def test_mcp_tools_propagate_tenant_id_and_api_key_id(mock_memory):
"""Test that MCP tools propagate tenant_id and api_key_id to RequestContext.
This is the critical test for usage metering: the UsageMeteringValidator reads
request_context.tenant_id to identify the org for billing. Without this,
MCP operations get tenant_id="unknown" and billing is skipped entirely.
"""
from hindsight_api.api.mcp import (
_current_api_key,
_current_api_key_id,
_current_bank_id,
_current_tenant_id,
create_mcp_server,
)
mcp_server = create_mcp_server(mock_memory)
tools = mcp_server._tool_manager._tools
# Set all context vars (simulating what MCPMiddleware does after authenticate_mcp)
bank_token = _current_bank_id.set("test-bank")
api_key_token = _current_api_key.set("hsk_test_key")
tenant_token = _current_tenant_id.set("org-billing-123")
key_id_token = _current_api_key_id.set("key-uuid-456")
try:
retain_tool = tools["retain"]
await retain_tool.fn(content="test content", context="test_context", async_processing=False)
# Verify the RequestContext passed to memory engine has all auth fields
mock_memory.retain_batch_async.assert_called_once()
request_context = mock_memory.retain_batch_async.call_args.kwargs["request_context"]
assert request_context.api_key == "hsk_test_key"
assert request_context.tenant_id == "org-billing-123"
assert request_context.api_key_id == "key-uuid-456"
finally:
_current_bank_id.reset(bank_token)
_current_api_key.reset(api_key_token)
_current_tenant_id.reset(tenant_token)
_current_api_key_id.reset(key_id_token)
def test_multi_bank_mode_exposes_all_tools(mock_memory):
"""Test that multi-bank mode exposes all tools including bank management and mental models."""
from hindsight_api.api.mcp import create_mcp_server
# Create server in multi-bank mode (default)
mcp_server = create_mcp_server(mock_memory, multi_bank=True)
tools = mcp_server._tool_manager._tools
# Core tools
assert "retain" in tools
assert "recall" in tools
assert "reflect" in tools
assert "list_banks" in tools
assert "create_bank" in tools
# Mental model tools
assert "list_mental_models" in tools
assert "get_mental_model" in tools
assert "create_mental_model" in tools
assert "update_mental_model" in tools
assert "delete_mental_model" in tools
assert "refresh_mental_model" in tools
def test_single_bank_mode_excludes_bank_management_tools(mock_memory):
"""Test that single-bank mode only exposes bank-scoped tools."""
from hindsight_api.api.mcp import create_mcp_server
# Create server in single-bank mode
mcp_server = create_mcp_server(mock_memory, multi_bank=False)
tools = mcp_server._tool_manager._tools
# Should have bank-scoped tools
assert "retain" in tools
assert "recall" in tools
assert "reflect" in tools
# Mental model tools should also be present (they're bank-scoped)
assert "list_mental_models" in tools
assert "get_mental_model" in tools
assert "create_mental_model" in tools
assert "update_mental_model" in tools
assert "delete_mental_model" in tools
assert "refresh_mental_model" in tools
# Should NOT have bank management tools
assert "list_banks" not in tools
assert "create_bank" not in tools
def test_multi_bank_mode_tools_have_bank_id_param(mock_memory):
"""Test that multi-bank mode tools include bank_id parameter."""
import inspect
from hindsight_api.api.mcp import create_mcp_server
mcp_server = create_mcp_server(mock_memory, multi_bank=True)
tools = mcp_server._tool_manager._tools
# All bank-scoped tools should have bank_id parameter in multi-bank mode
bank_scoped_tools = [
"retain",
"recall",
"reflect",
"list_mental_models",
"get_mental_model",
"create_mental_model",
"update_mental_model",
"delete_mental_model",
"refresh_mental_model",
]
for tool_name in bank_scoped_tools:
tool = tools[tool_name]
sig = inspect.signature(tool.fn)
assert "bank_id" in sig.parameters, f"{tool_name} should have bank_id param in multi-bank mode"
def test_single_bank_mode_tools_no_bank_id_param(mock_memory):
"""Test that single-bank mode tools do NOT include bank_id parameter."""
import inspect
from hindsight_api.api.mcp import create_mcp_server
mcp_server = create_mcp_server(mock_memory, multi_bank=False)
tools = mcp_server._tool_manager._tools
# No bank-scoped tool should have bank_id parameter in single-bank mode
bank_scoped_tools = [
"retain",
"recall",
"reflect",
"list_mental_models",
"get_mental_model",
"create_mental_model",
"update_mental_model",
"delete_mental_model",
"refresh_mental_model",
]
for tool_name in bank_scoped_tools:
tool = tools[tool_name]
sig = inspect.signature(tool.fn)
assert "bank_id" not in sig.parameters, f"{tool_name} should NOT have bank_id param in single-bank mode"
@pytest.mark.asyncio
async def test_middleware_handles_both_endpoints(mock_memory):
"""Test that MCPMiddleware routes to correct server based on URL path."""
from hindsight_api.api.mcp import MCPMiddleware
# Create middleware (single instance)
middleware = MCPMiddleware(None, mock_memory)
# Verify both server instances exist
assert middleware.multi_bank_app is not None
assert middleware.single_bank_app is not None
# Verify they expose different tools
multi_bank_tools = middleware.multi_bank_server._tool_manager._tools
single_bank_tools = middleware.single_bank_server._tool_manager._tools
# Multi-bank should have all tools
assert "retain" in multi_bank_tools
assert "recall" in multi_bank_tools
assert "list_banks" in multi_bank_tools
assert "create_bank" in multi_bank_tools
assert "list_mental_models" in multi_bank_tools
assert "create_mental_model" in multi_bank_tools
# Single-bank should only have scoped tools
assert "retain" in single_bank_tools
assert "recall" in single_bank_tools
assert "list_mental_models" in single_bank_tools
assert "create_mental_model" in single_bank_tools
assert "list_banks" not in single_bank_tools
assert "create_bank" not in single_bank_tools
@pytest.mark.asyncio
async def test_routing_logic_from_url_path():
"""Test that routing correctly selects server based on URL structure.
Simulates the path parsing logic from MCPMiddleware.__call__ after the
prefix has been stripped. Any first path segment is treated as a bank_id.
"""
from hindsight_api.api.mcp import MCPMiddleware
# Mock memory
mock_memory = MagicMock()
# Create middleware
middleware = MCPMiddleware(None, mock_memory)
# Simulate different URL patterns and verify routing
# Path is what remains after stripping the /mcp prefix
test_cases = [
# (path_after_prefix_strip, expected_bank_id_from_path, expected_bank_id, description)
("/alice/messages", True, "alice", "Bank ID in path with endpoint"),
("/my-agent-123/", True, "my-agent-123", "Bank ID in path with trailing slash"),
("/sse/", True, "sse", "Bank named 'sse' routes to single-bank"),
("/messages/", True, "messages", "Bank named 'messages' routes to single-bank"),
("/", False, None, "Root path, no bank ID"),
]
for path, expected_bank_from_path, expected_bank_id, description in test_cases:
bank_id = None
bank_id_from_path = False
if path.startswith("/") and len(path) > 1:
parts = path[1:].split("/", 1)
if parts[0]:
bank_id = parts[0]
bank_id_from_path = True
assert bank_id_from_path == expected_bank_from_path, f"Failed for: {description} (path={path})"
assert bank_id == expected_bank_id, f"Failed bank_id for: {description} (path={path}, got={bank_id})"
+1 -584
View File
@@ -1,17 +1,10 @@
"""Tests for the shared MCP tools module."""
from datetime import datetime, timezone
from unittest.mock import AsyncMock, MagicMock
import pytest
from hindsight_api.mcp_tools import (
MCPToolsConfig,
_validate_mental_model_inputs,
build_content_dict,
parse_timestamp,
register_mcp_tools,
)
from hindsight_api.mcp_tools import build_content_dict, parse_timestamp
class TestParseTimestamp:
@@ -68,579 +61,3 @@ class TestBuildContentDict:
result, error = build_content_dict("test content", "test_context", None)
assert error is None
assert "event_date" not in result
# =========================================================================
# Mental Model MCP Tool Tests
# =========================================================================
@pytest.fixture
def mock_memory():
"""Create a mock MemoryEngine with mental model methods."""
memory = MagicMock()
memory.list_mental_models = AsyncMock(
return_value=[
{"id": "mm-1", "name": "Coding Prefs", "source_query": "coding preferences?", "content": "Prefers Python"},
{"id": "mm-2", "name": "Goals", "source_query": "current goals?", "content": "Ship v2"},
]
)
memory.get_mental_model = AsyncMock(
return_value={
"id": "mm-1",
"name": "Coding Prefs",
"source_query": "coding preferences?",
"content": "Prefers Python",
}
)
memory.create_mental_model = AsyncMock(return_value={"id": "mm-new"})
memory.submit_async_refresh_mental_model = AsyncMock(return_value={"operation_id": "op-123"})
memory.update_mental_model = AsyncMock(
return_value={
"id": "mm-1",
"name": "Updated Name",
"source_query": "new query?",
"content": "Updated",
}
)
memory.delete_mental_model = AsyncMock(return_value=True)
return memory
@pytest.fixture
def mcp_server_with_mental_models(mock_memory):
"""Create a FastMCP server with mental model tools registered (multi-bank mode)."""
from fastmcp import FastMCP
mcp = FastMCP("test", stateless_http=True)
config = MCPToolsConfig(
bank_id_resolver=lambda: "test-bank",
include_bank_id_param=True,
tools={
"list_mental_models",
"get_mental_model",
"create_mental_model",
"update_mental_model",
"delete_mental_model",
"refresh_mental_model",
},
)
register_mcp_tools(mcp, mock_memory, config)
return mcp
@pytest.fixture
def mcp_server_single_bank(mock_memory):
"""Create a FastMCP server with mental model tools registered (single-bank mode)."""
from fastmcp import FastMCP
mcp = FastMCP("test")
config = MCPToolsConfig(
bank_id_resolver=lambda: "fixed-bank",
include_bank_id_param=False,
tools={
"list_mental_models",
"get_mental_model",
"create_mental_model",
"update_mental_model",
"delete_mental_model",
"refresh_mental_model",
},
)
register_mcp_tools(mcp, mock_memory, config)
return mcp
class TestMentalModelToolRegistration:
"""Test that mental model tools are registered correctly."""
def test_tools_registered_multi_bank(self, mcp_server_with_mental_models):
tools = mcp_server_with_mental_models._tool_manager._tools
expected = {
"list_mental_models",
"get_mental_model",
"create_mental_model",
"update_mental_model",
"delete_mental_model",
"refresh_mental_model",
}
assert expected == set(tools.keys())
def test_tools_registered_single_bank(self, mcp_server_single_bank):
tools = mcp_server_single_bank._tool_manager._tools
expected = {
"list_mental_models",
"get_mental_model",
"create_mental_model",
"update_mental_model",
"delete_mental_model",
"refresh_mental_model",
}
assert expected == set(tools.keys())
@pytest.mark.asyncio
async def test_list_mental_models_propagates_request_context(self, mock_memory):
from fastmcp import FastMCP
mcp = FastMCP("test", stateless_http=True)
config = MCPToolsConfig(
bank_id_resolver=lambda: "test-bank",
api_key_resolver=lambda: "test-api-key",
include_bank_id_param=True,
tools={"list_mental_models"},
)
register_mcp_tools(mcp, mock_memory, config)
await _tools(mcp)["list_mental_models"].fn()
request_context = mock_memory.list_mental_models.call_args.kwargs["request_context"]
assert request_context.api_key == "test-api-key"
@pytest.mark.asyncio
async def test_create_mental_model_propagates_request_context(self, mock_memory):
from fastmcp import FastMCP
mcp = FastMCP("test", stateless_http=True)
config = MCPToolsConfig(
bank_id_resolver=lambda: "test-bank",
api_key_resolver=lambda: "test-api-key",
include_bank_id_param=True,
tools={"create_mental_model"},
)
register_mcp_tools(mcp, mock_memory, config)
await _tools(mcp)["create_mental_model"].fn(name="Test", source_query="query")
request_context = mock_memory.create_mental_model.call_args.kwargs["request_context"]
assert request_context.api_key == "test-api-key"
def test_mental_model_tools_in_default_set(self):
"""Mental model tools should be in the default tools set when config.tools is None."""
from fastmcp import FastMCP
memory = MagicMock()
# Mock all engine methods that tools reference
memory.retain_batch_async = AsyncMock()
memory.submit_async_retain = AsyncMock(return_value={"operation_id": "op"})
memory.recall_async = AsyncMock(return_value=MagicMock(results=[]))
memory.reflect_async = AsyncMock()
memory.list_banks = AsyncMock(return_value=[])
memory.get_bank_profile = AsyncMock(return_value={})
memory.update_bank = AsyncMock()
memory.list_mental_models = AsyncMock(return_value=[])
memory.get_mental_model = AsyncMock()
memory.create_mental_model = AsyncMock()
memory.submit_async_refresh_mental_model = AsyncMock()
memory.update_mental_model = AsyncMock()
memory.delete_mental_model = AsyncMock()
mcp = FastMCP("test", stateless_http=True)
config = MCPToolsConfig(
bank_id_resolver=lambda: "bank",
include_bank_id_param=True,
tools=None, # Default - all tools
)
register_mcp_tools(mcp, memory, config)
tools = mcp._tool_manager._tools
assert "list_mental_models" in tools
assert "create_mental_model" in tools
assert "refresh_mental_model" in tools
@pytest.fixture
def no_bank_mcp_server(mock_memory):
"""Create a multi-bank MCP server where bank_id_resolver returns None."""
from fastmcp import FastMCP
mcp = FastMCP("test", stateless_http=True)
config = MCPToolsConfig(
bank_id_resolver=lambda: None,
include_bank_id_param=True,
tools={
"list_mental_models",
"get_mental_model",
"create_mental_model",
"update_mental_model",
"delete_mental_model",
"refresh_mental_model",
},
)
register_mcp_tools(mcp, mock_memory, config)
return mcp
def _tools(mcp_server):
"""Helper to get tools dict from MCP server."""
return mcp_server._tool_manager._tools
@pytest.mark.asyncio
class TestListMentalModels:
async def test_list_multi_bank(self, mcp_server_with_mental_models, mock_memory):
result = await _tools(mcp_server_with_mental_models)["list_mental_models"].fn()
assert '"mm-1"' in result
assert '"mm-2"' in result
mock_memory.list_mental_models.assert_called_once()
assert mock_memory.list_mental_models.call_args.kwargs["bank_id"] == "test-bank"
async def test_list_with_bank_id_override(self, mcp_server_with_mental_models, mock_memory):
"""Explicit bank_id should override the resolver."""
await _tools(mcp_server_with_mental_models)["list_mental_models"].fn(bank_id="other-bank")
assert mock_memory.list_mental_models.call_args.kwargs["bank_id"] == "other-bank"
async def test_list_with_tags(self, mcp_server_with_mental_models, mock_memory):
await _tools(mcp_server_with_mental_models)["list_mental_models"].fn(tags=["work"])
assert mock_memory.list_mental_models.call_args.kwargs["tags"] == ["work"]
async def test_list_single_bank(self, mcp_server_single_bank, mock_memory):
result = await _tools(mcp_server_single_bank)["list_mental_models"].fn()
assert isinstance(result, dict)
assert len(result["items"]) == 2
assert mock_memory.list_mental_models.call_args.kwargs["bank_id"] == "fixed-bank"
async def test_list_no_bank_returns_error(self, no_bank_mcp_server):
result = await _tools(no_bank_mcp_server)["list_mental_models"].fn()
assert "error" in result
async def test_list_engine_error_multi_bank(self, mcp_server_with_mental_models, mock_memory):
mock_memory.list_mental_models.side_effect = RuntimeError("DB connection lost")
result = await _tools(mcp_server_with_mental_models)["list_mental_models"].fn()
assert "error" in result
assert "DB connection lost" in result
async def test_list_engine_error_single_bank(self, mcp_server_single_bank, mock_memory):
mock_memory.list_mental_models.side_effect = RuntimeError("DB connection lost")
result = await _tools(mcp_server_single_bank)["list_mental_models"].fn()
assert isinstance(result, dict)
assert "error" in result
@pytest.mark.asyncio
class TestGetMentalModel:
async def test_get_multi_bank(self, mcp_server_with_mental_models, mock_memory):
result = await _tools(mcp_server_with_mental_models)["get_mental_model"].fn(mental_model_id="mm-1")
assert '"mm-1"' in result
assert mock_memory.get_mental_model.call_args.kwargs["mental_model_id"] == "mm-1"
async def test_get_with_bank_id_override(self, mcp_server_with_mental_models, mock_memory):
await _tools(mcp_server_with_mental_models)["get_mental_model"].fn(mental_model_id="mm-1", bank_id="other-bank")
assert mock_memory.get_mental_model.call_args.kwargs["bank_id"] == "other-bank"
async def test_get_not_found_multi_bank(self, mcp_server_with_mental_models, mock_memory):
mock_memory.get_mental_model.return_value = None
result = await _tools(mcp_server_with_mental_models)["get_mental_model"].fn(mental_model_id="missing")
assert "not found" in result
async def test_get_not_found_single_bank(self, mcp_server_single_bank, mock_memory):
mock_memory.get_mental_model.return_value = None
result = await _tools(mcp_server_single_bank)["get_mental_model"].fn(mental_model_id="missing")
assert isinstance(result, dict)
assert "not found" in result["error"]
async def test_get_single_bank(self, mcp_server_single_bank, mock_memory):
result = await _tools(mcp_server_single_bank)["get_mental_model"].fn(mental_model_id="mm-1")
assert isinstance(result, dict)
assert result["id"] == "mm-1"
async def test_get_no_bank_returns_error(self, no_bank_mcp_server):
result = await _tools(no_bank_mcp_server)["get_mental_model"].fn(mental_model_id="mm-1")
assert "error" in result
async def test_get_engine_error(self, mcp_server_with_mental_models, mock_memory):
mock_memory.get_mental_model.side_effect = RuntimeError("DB error")
result = await _tools(mcp_server_with_mental_models)["get_mental_model"].fn(mental_model_id="mm-1")
assert "error" in result
@pytest.mark.asyncio
class TestCreateMentalModel:
async def test_create_multi_bank(self, mcp_server_with_mental_models, mock_memory):
result = await _tools(mcp_server_with_mental_models)["create_mental_model"].fn(
name="Test Model",
source_query="What are the user's preferences?",
)
assert '"mm-new"' in result
assert '"op-123"' in result
mock_memory.create_mental_model.assert_called_once()
call_kwargs = mock_memory.create_mental_model.call_args.kwargs
assert call_kwargs["name"] == "Test Model"
assert call_kwargs["source_query"] == "What are the user's preferences?"
assert call_kwargs["content"] == "Generating content..."
# Verify async refresh was scheduled
mock_memory.submit_async_refresh_mental_model.assert_called_once()
assert mock_memory.submit_async_refresh_mental_model.call_args.kwargs["mental_model_id"] == "mm-new"
async def test_create_with_custom_id(self, mcp_server_with_mental_models, mock_memory):
await _tools(mcp_server_with_mental_models)["create_mental_model"].fn(
name="Test", source_query="query", mental_model_id="custom-id"
)
assert mock_memory.create_mental_model.call_args.kwargs["mental_model_id"] == "custom-id"
async def test_create_with_tags_and_max_tokens(self, mcp_server_with_mental_models, mock_memory):
await _tools(mcp_server_with_mental_models)["create_mental_model"].fn(
name="Test", source_query="query", tags=["work", "coding"], max_tokens=4096
)
call_kwargs = mock_memory.create_mental_model.call_args.kwargs
assert call_kwargs["tags"] == ["work", "coding"]
assert call_kwargs["max_tokens"] == 4096
async def test_create_with_bank_id_override(self, mcp_server_with_mental_models, mock_memory):
await _tools(mcp_server_with_mental_models)["create_mental_model"].fn(
name="Test", source_query="query", bank_id="other-bank"
)
assert mock_memory.create_mental_model.call_args.kwargs["bank_id"] == "other-bank"
assert mock_memory.submit_async_refresh_mental_model.call_args.kwargs["bank_id"] == "other-bank"
async def test_create_single_bank(self, mcp_server_single_bank, mock_memory):
result = await _tools(mcp_server_single_bank)["create_mental_model"].fn(name="Test", source_query="query")
assert isinstance(result, dict)
assert result["mental_model_id"] == "mm-new"
assert result["operation_id"] == "op-123"
async def test_create_no_bank_returns_error(self, no_bank_mcp_server):
result = await _tools(no_bank_mcp_server)["create_mental_model"].fn(name="Test", source_query="query")
assert "error" in result
async def test_create_value_error_multi_bank(self, mcp_server_with_mental_models, mock_memory):
"""ValueError from engine (e.g. invalid ID format) should return error, not crash."""
mock_memory.create_mental_model.side_effect = ValueError("ID must be alphanumeric lowercase")
result = await _tools(mcp_server_with_mental_models)["create_mental_model"].fn(
name="Test", source_query="query", mental_model_id="INVALID!!"
)
assert "alphanumeric" in result
async def test_create_value_error_single_bank(self, mcp_server_single_bank, mock_memory):
mock_memory.create_mental_model.side_effect = ValueError("ID must be alphanumeric lowercase")
result = await _tools(mcp_server_single_bank)["create_mental_model"].fn(
name="Test", source_query="query", mental_model_id="INVALID!!"
)
assert isinstance(result, dict)
assert "alphanumeric" in result["error"]
async def test_create_engine_error(self, mcp_server_with_mental_models, mock_memory):
mock_memory.create_mental_model.side_effect = RuntimeError("DB error")
result = await _tools(mcp_server_with_mental_models)["create_mental_model"].fn(
name="Test", source_query="query"
)
assert "error" in result
@pytest.mark.asyncio
class TestUpdateMentalModel:
async def test_update_multi_bank(self, mcp_server_with_mental_models, mock_memory):
result = await _tools(mcp_server_with_mental_models)["update_mental_model"].fn(
mental_model_id="mm-1", name="Updated Name"
)
assert '"Updated Name"' in result
call_kwargs = mock_memory.update_mental_model.call_args.kwargs
assert call_kwargs["name"] == "Updated Name"
assert call_kwargs["source_query"] is None # Not updated
async def test_update_multiple_fields(self, mcp_server_with_mental_models, mock_memory):
await _tools(mcp_server_with_mental_models)["update_mental_model"].fn(
mental_model_id="mm-1", name="New Name", source_query="new query?", tags=["updated"], max_tokens=4096
)
call_kwargs = mock_memory.update_mental_model.call_args.kwargs
assert call_kwargs["name"] == "New Name"
assert call_kwargs["source_query"] == "new query?"
assert call_kwargs["tags"] == ["updated"]
assert call_kwargs["max_tokens"] == 4096
async def test_update_with_bank_id_override(self, mcp_server_with_mental_models, mock_memory):
await _tools(mcp_server_with_mental_models)["update_mental_model"].fn(
mental_model_id="mm-1", name="X", bank_id="other-bank"
)
assert mock_memory.update_mental_model.call_args.kwargs["bank_id"] == "other-bank"
async def test_update_not_found_multi_bank(self, mcp_server_with_mental_models, mock_memory):
mock_memory.update_mental_model.return_value = None
result = await _tools(mcp_server_with_mental_models)["update_mental_model"].fn(
mental_model_id="missing", name="X"
)
assert "not found" in result
async def test_update_single_bank(self, mcp_server_single_bank, mock_memory):
result = await _tools(mcp_server_single_bank)["update_mental_model"].fn(mental_model_id="mm-1", name="Updated")
assert isinstance(result, dict)
assert mock_memory.update_mental_model.call_args.kwargs["bank_id"] == "fixed-bank"
async def test_update_not_found_single_bank(self, mcp_server_single_bank, mock_memory):
mock_memory.update_mental_model.return_value = None
result = await _tools(mcp_server_single_bank)["update_mental_model"].fn(mental_model_id="missing", name="X")
assert isinstance(result, dict)
assert "not found" in result["error"]
async def test_update_no_bank_returns_error(self, no_bank_mcp_server):
result = await _tools(no_bank_mcp_server)["update_mental_model"].fn(mental_model_id="mm-1", name="X")
assert "error" in result
async def test_update_engine_error(self, mcp_server_with_mental_models, mock_memory):
mock_memory.update_mental_model.side_effect = RuntimeError("DB error")
result = await _tools(mcp_server_with_mental_models)["update_mental_model"].fn(mental_model_id="mm-1", name="X")
assert "error" in result
@pytest.mark.asyncio
class TestDeleteMentalModel:
async def test_delete_multi_bank(self, mcp_server_with_mental_models, mock_memory):
result = await _tools(mcp_server_with_mental_models)["delete_mental_model"].fn(mental_model_id="mm-1")
assert '"deleted"' in result
assert mock_memory.delete_mental_model.call_args.kwargs["mental_model_id"] == "mm-1"
async def test_delete_with_bank_id_override(self, mcp_server_with_mental_models, mock_memory):
await _tools(mcp_server_with_mental_models)["delete_mental_model"].fn(
mental_model_id="mm-1", bank_id="other-bank"
)
assert mock_memory.delete_mental_model.call_args.kwargs["bank_id"] == "other-bank"
async def test_delete_not_found_multi_bank(self, mcp_server_with_mental_models, mock_memory):
mock_memory.delete_mental_model.return_value = False
result = await _tools(mcp_server_with_mental_models)["delete_mental_model"].fn(mental_model_id="missing")
assert "not found" in result
async def test_delete_not_found_single_bank(self, mcp_server_single_bank, mock_memory):
mock_memory.delete_mental_model.return_value = False
result = await _tools(mcp_server_single_bank)["delete_mental_model"].fn(mental_model_id="missing")
assert isinstance(result, dict)
assert "not found" in result["error"]
async def test_delete_single_bank(self, mcp_server_single_bank, mock_memory):
result = await _tools(mcp_server_single_bank)["delete_mental_model"].fn(mental_model_id="mm-1")
assert isinstance(result, dict)
assert result["status"] == "deleted"
async def test_delete_no_bank_returns_error(self, no_bank_mcp_server):
result = await _tools(no_bank_mcp_server)["delete_mental_model"].fn(mental_model_id="mm-1")
assert "error" in result
async def test_delete_engine_error(self, mcp_server_with_mental_models, mock_memory):
mock_memory.delete_mental_model.side_effect = RuntimeError("DB error")
result = await _tools(mcp_server_with_mental_models)["delete_mental_model"].fn(mental_model_id="mm-1")
assert "error" in result
@pytest.mark.asyncio
class TestRefreshMentalModel:
async def test_refresh_multi_bank(self, mcp_server_with_mental_models, mock_memory):
result = await _tools(mcp_server_with_mental_models)["refresh_mental_model"].fn(mental_model_id="mm-1")
assert '"op-123"' in result
assert '"queued"' in result
async def test_refresh_with_bank_id_override(self, mcp_server_with_mental_models, mock_memory):
await _tools(mcp_server_with_mental_models)["refresh_mental_model"].fn(
mental_model_id="mm-1", bank_id="other-bank"
)
assert mock_memory.submit_async_refresh_mental_model.call_args.kwargs["bank_id"] == "other-bank"
async def test_refresh_not_found_multi_bank(self, mcp_server_with_mental_models, mock_memory):
mock_memory.submit_async_refresh_mental_model.side_effect = ValueError("Mental model 'missing' not found")
result = await _tools(mcp_server_with_mental_models)["refresh_mental_model"].fn(mental_model_id="missing")
assert "not found" in result
async def test_refresh_not_found_single_bank(self, mcp_server_single_bank, mock_memory):
mock_memory.submit_async_refresh_mental_model.side_effect = ValueError("not found")
result = await _tools(mcp_server_single_bank)["refresh_mental_model"].fn(mental_model_id="missing")
assert isinstance(result, dict)
assert "not found" in result["error"]
async def test_refresh_single_bank(self, mcp_server_single_bank, mock_memory):
result = await _tools(mcp_server_single_bank)["refresh_mental_model"].fn(mental_model_id="mm-1")
assert isinstance(result, dict)
assert result["operation_id"] == "op-123"
async def test_refresh_no_bank_returns_error(self, no_bank_mcp_server):
result = await _tools(no_bank_mcp_server)["refresh_mental_model"].fn(mental_model_id="mm-1")
assert "error" in result
async def test_refresh_engine_error(self, mcp_server_with_mental_models, mock_memory):
mock_memory.submit_async_refresh_mental_model.side_effect = RuntimeError("DB error")
result = await _tools(mcp_server_with_mental_models)["refresh_mental_model"].fn(mental_model_id="mm-1")
assert "error" in result
class TestValidateMentalModelInputs:
"""Tests for the _validate_mental_model_inputs helper."""
def test_valid_inputs(self):
assert _validate_mental_model_inputs(name="Test", source_query="query", max_tokens=2048) is None
def test_none_inputs(self):
assert _validate_mental_model_inputs() is None
def test_empty_name(self):
result = _validate_mental_model_inputs(name="")
assert result == "name cannot be empty"
def test_whitespace_name(self):
result = _validate_mental_model_inputs(name=" ")
assert result == "name cannot be empty"
def test_empty_source_query(self):
result = _validate_mental_model_inputs(source_query="")
assert result == "source_query cannot be empty"
def test_whitespace_source_query(self):
result = _validate_mental_model_inputs(source_query=" \t ")
assert result == "source_query cannot be empty"
def test_max_tokens_too_low(self):
result = _validate_mental_model_inputs(max_tokens=0)
assert "max_tokens must be between 256 and 8192" in result
def test_max_tokens_too_high(self):
result = _validate_mental_model_inputs(max_tokens=10000)
assert "max_tokens must be between 256 and 8192" in result
def test_max_tokens_at_lower_bound(self):
assert _validate_mental_model_inputs(max_tokens=256) is None
def test_max_tokens_at_upper_bound(self):
assert _validate_mental_model_inputs(max_tokens=8192) is None
@pytest.mark.asyncio
class TestMentalModelInputValidation:
"""Tests that validation is applied in create/update tools before engine calls."""
async def test_create_empty_name_returns_error_multi_bank(self, mcp_server_with_mental_models, mock_memory):
result = await _tools(mcp_server_with_mental_models)["create_mental_model"].fn(name="", source_query="query")
assert "name cannot be empty" in result
mock_memory.create_mental_model.assert_not_called()
async def test_create_empty_source_query_returns_error_multi_bank(self, mcp_server_with_mental_models, mock_memory):
result = await _tools(mcp_server_with_mental_models)["create_mental_model"].fn(name="Test", source_query="")
assert "source_query cannot be empty" in result
mock_memory.create_mental_model.assert_not_called()
async def test_create_max_tokens_too_low_multi_bank(self, mcp_server_with_mental_models, mock_memory):
result = await _tools(mcp_server_with_mental_models)["create_mental_model"].fn(
name="Test", source_query="query", max_tokens=0
)
assert "max_tokens must be between 256 and 8192" in result
mock_memory.create_mental_model.assert_not_called()
async def test_create_max_tokens_too_high_single_bank(self, mcp_server_single_bank, mock_memory):
result = await _tools(mcp_server_single_bank)["create_mental_model"].fn(
name="Test", source_query="query", max_tokens=10000
)
assert isinstance(result, dict)
assert "max_tokens must be between 256 and 8192" in result["error"]
mock_memory.create_mental_model.assert_not_called()
async def test_update_empty_name_returns_error_multi_bank(self, mcp_server_with_mental_models, mock_memory):
result = await _tools(mcp_server_with_mental_models)["update_mental_model"].fn(mental_model_id="mm-1", name="")
assert "name cannot be empty" in result
mock_memory.update_mental_model.assert_not_called()
async def test_update_empty_name_returns_error_single_bank(self, mcp_server_single_bank, mock_memory):
result = await _tools(mcp_server_single_bank)["update_mental_model"].fn(mental_model_id="mm-1", name=" ")
assert isinstance(result, dict)
assert "name cannot be empty" in result["error"]
mock_memory.update_mental_model.assert_not_called()
async def test_not_found_error_includes_bank_id_multi_bank(self, mcp_server_with_mental_models, mock_memory):
mock_memory.get_mental_model.return_value = None
result = await _tools(mcp_server_with_mental_models)["get_mental_model"].fn(mental_model_id="missing")
assert "test-bank" in result
async def test_not_found_error_includes_bank_id_single_bank(self, mcp_server_single_bank, mock_memory):
mock_memory.get_mental_model.return_value = None
result = await _tools(mcp_server_single_bank)["get_mental_model"].fn(mental_model_id="missing")
assert isinstance(result, dict)
assert "fixed-bank" in result["error"]
@@ -1,206 +0,0 @@
"""Unit tests for mental model operation validator hooks.
Tests that the operation validator hooks are called correctly for
mental model GET and refresh operations.
"""
import pytest
from hindsight_api.extensions.operation_validator import (
MentalModelGetContext,
MentalModelGetResult,
MentalModelRefreshResult,
OperationValidatorExtension,
ValidationResult,
)
class TestMentalModelGetContextDataclass:
"""Tests for MentalModelGetContext dataclass."""
def test_create_context(self):
"""Test creating a MentalModelGetContext."""
from unittest.mock import MagicMock
request_context = MagicMock()
ctx = MentalModelGetContext(
bank_id="bank-1",
mental_model_id="mm-1",
request_context=request_context,
)
assert ctx.bank_id == "bank-1"
assert ctx.mental_model_id == "mm-1"
assert ctx.request_context is request_context
class TestMentalModelGetResultDataclass:
"""Tests for MentalModelGetResult dataclass."""
def test_create_result_success(self):
"""Test creating a successful MentalModelGetResult."""
from unittest.mock import MagicMock
request_context = MagicMock()
result = MentalModelGetResult(
bank_id="bank-1",
mental_model_id="mm-1",
request_context=request_context,
output_tokens=250,
)
assert result.bank_id == "bank-1"
assert result.mental_model_id == "mm-1"
assert result.output_tokens == 250
assert result.success is True
assert result.error is None
def test_create_result_failure(self):
"""Test creating a failed MentalModelGetResult."""
from unittest.mock import MagicMock
result = MentalModelGetResult(
bank_id="bank-1",
mental_model_id="mm-1",
request_context=MagicMock(),
output_tokens=0,
success=False,
error="Not found",
)
assert result.success is False
assert result.error == "Not found"
class TestMentalModelRefreshResultDataclass:
"""Tests for MentalModelRefreshResult dataclass."""
def test_create_result_with_all_fields(self):
"""Test creating a MentalModelRefreshResult with all fields."""
from unittest.mock import MagicMock
result = MentalModelRefreshResult(
bank_id="bank-1",
mental_model_id="mm-1",
request_context=MagicMock(),
query_tokens=50,
output_tokens=500,
context_tokens=0,
facts_used=10,
mental_models_used=2,
)
assert result.query_tokens == 50
assert result.output_tokens == 500
assert result.context_tokens == 0
assert result.facts_used == 10
assert result.mental_models_used == 2
assert result.success is True
assert result.error is None
def test_create_result_failure(self):
"""Test creating a failed MentalModelRefreshResult."""
from unittest.mock import MagicMock
result = MentalModelRefreshResult(
bank_id="bank-1",
mental_model_id="mm-1",
request_context=MagicMock(),
query_tokens=50,
output_tokens=0,
context_tokens=0,
facts_used=0,
mental_models_used=0,
success=False,
error="Reflect failed",
)
assert result.success is False
assert result.error == "Reflect failed"
class TestDefaultHookBehavior:
"""Tests for default (no-op) behavior of mental model hooks on OperationValidatorExtension."""
@pytest.fixture
def validator(self):
"""Create a concrete subclass for testing default behavior."""
from unittest.mock import MagicMock
# Create a concrete subclass that implements the abstract methods
class TestValidator(OperationValidatorExtension):
async def validate_retain(self, ctx):
return ValidationResult.accept()
async def validate_recall(self, ctx):
return ValidationResult.accept()
async def validate_reflect(self, ctx):
return ValidationResult.accept()
return TestValidator(config={})
@pytest.mark.asyncio
async def test_validate_mental_model_get_default_accepts(self, validator):
"""Test that default validate_mental_model_get accepts."""
from unittest.mock import MagicMock
ctx = MentalModelGetContext(
bank_id="bank-1",
mental_model_id="mm-1",
request_context=MagicMock(),
)
result = await validator.validate_mental_model_get(ctx)
assert result.allowed is True
@pytest.mark.asyncio
async def test_on_mental_model_get_complete_default_noop(self, validator):
"""Test that default on_mental_model_get_complete is a no-op."""
from unittest.mock import MagicMock
result = MentalModelGetResult(
bank_id="bank-1",
mental_model_id="mm-1",
request_context=MagicMock(),
output_tokens=100,
)
# Should not raise
await validator.on_mental_model_get_complete(result)
@pytest.mark.asyncio
async def test_on_mental_model_refresh_complete_default_noop(self, validator):
"""Test that default on_mental_model_refresh_complete is a no-op."""
from unittest.mock import MagicMock
result = MentalModelRefreshResult(
bank_id="bank-1",
mental_model_id="mm-1",
request_context=MagicMock(),
query_tokens=50,
output_tokens=500,
context_tokens=0,
facts_used=5,
mental_models_used=1,
)
# Should not raise
await validator.on_mental_model_refresh_complete(result)
class TestExportsAvailable:
"""Test that mental model hooks are properly exported."""
def test_imports_from_extensions_package(self):
"""Test that all mental model types can be imported from hindsight_api.extensions."""
from hindsight_api.extensions import (
MentalModelGetContext,
MentalModelGetResult,
MentalModelRefreshResult,
)
assert MentalModelGetContext is not None
assert MentalModelGetResult is not None
assert MentalModelRefreshResult is not None
-459
View File
@@ -312,49 +312,6 @@ class TestDirectiveTags:
# Cleanup
await memory.delete_bank(bank_id, request_context=request_context)
async def test_list_all_directives_without_filter(self, memory: MemoryEngine, request_context):
"""Test that listing directives without tags returns ALL directives (both tagged and untagged)."""
bank_id = f"test-directive-list-all-{uuid.uuid4().hex[:8]}"
# Ensure bank exists
await memory.get_bank_profile(bank_id, request_context=request_context)
# Create untagged directive
await memory.create_directive(
bank_id=bank_id,
name="Untagged Directive",
content="This has no tags",
request_context=request_context,
)
# Create tagged directive
await memory.create_directive(
bank_id=bank_id,
name="Tagged Directive",
content="This has tags",
tags=["project-x"],
request_context=request_context,
)
# List ALL directives (no tag filter, isolation_mode defaults to False)
all_directives = await memory.list_directives(
bank_id=bank_id,
request_context=request_context,
)
# Should return BOTH tagged and untagged directives
assert len(all_directives) == 2
directive_names = {d["name"] for d in all_directives}
assert "Untagged Directive" in directive_names
assert "Tagged Directive" in directive_names
# Verify the tagged directive has its tags
tagged = next(d for d in all_directives if d["name"] == "Tagged Directive")
assert tagged["tags"] == ["project-x"]
# Cleanup
await memory.delete_bank(bank_id, request_context=request_context)
class TestReflect:
"""Test reflect endpoint."""
@@ -442,161 +399,6 @@ class TestDirectivesInReflect:
# Cleanup
await memory.delete_bank(bank_id, request_context=request_context)
async def test_tagged_directive_not_applied_without_tags(self, memory: MemoryEngine, request_context):
"""Test that directives with tags are NOT applied to untagged reflect operations."""
bank_id = f"test-directive-isolation-{uuid.uuid4().hex[:8]}"
# Ensure bank exists
await memory.get_bank_profile(bank_id, request_context=request_context)
# Add some untagged content
await memory.retain_batch_async(
bank_id=bank_id,
contents=[
{"content": "The sky is blue."},
{"content": "Water is wet."},
],
request_context=request_context,
)
# Add some tagged content for the project-x context
await memory.retain_batch_async(
bank_id=bank_id,
contents=[
{"content": "The sky is blue according to project X standards.", "tags": ["project-x"]},
{"content": "Project X color guidelines specify sky is blue.", "tags": ["project-x"]},
],
request_context=request_context,
)
await memory.wait_for_background_tasks()
# Create an untagged directive (should be applied)
await memory.create_directive(
bank_id=bank_id,
name="General Policy",
content="Always be polite and start responses with 'Hello!'",
request_context=request_context,
)
# Create a tagged directive (should NOT be applied to untagged reflect)
await memory.create_directive(
bank_id=bank_id,
name="Tagged Policy",
content="ALWAYS respond in ALL CAPS and end with 'PROJECT-X ONLY'",
tags=["project-x"],
request_context=request_context,
)
# Run reflect without tags - should only apply the untagged directive
result = await memory.reflect_async(
bank_id=bank_id,
query="What color is the sky?",
request_context=request_context,
)
response_lower = result.text.lower()
# Should follow the untagged directive (polite greeting)
assert "hello" in response_lower, f"Expected 'Hello' from untagged directive, but got: {result.text}"
# Should NOT follow the tagged directive (all caps and PROJECT-X)
# If it did follow, the entire response would be in caps
all_caps = result.text.replace(" ", "").replace("!", "").replace(".", "").isupper()
assert not all_caps, f"Tagged directive was incorrectly applied to untagged operation: {result.text}"
assert "project-x only" not in response_lower, f"Tagged directive was incorrectly applied: {result.text}"
# Now run reflect WITH the tag - should apply BOTH directives
result_tagged = await memory.reflect_async(
bank_id=bank_id,
query="What color is the sky?",
tags=["project-x"],
tags_match="all_strict",
request_context=request_context,
)
response_tagged_lower = result_tagged.text.lower()
# With strict matching and tags, should apply the tagged directive
assert "project-x only" in response_tagged_lower, f"Tagged directive should be applied with tags: {result_tagged.text}"
# Cleanup
await memory.delete_bank(bank_id, request_context=request_context)
async def test_reflect_based_on_structure(self, memory: MemoryEngine, request_context):
"""Test that reflect returns correct based_on structure with directives and memories separated."""
bank_id = f"test-reflect-based-on-{uuid.uuid4().hex[:8]}"
# Ensure bank exists
await memory.get_bank_profile(bank_id, request_context=request_context)
# Add some memories
await memory.retain_batch_async(
bank_id=bank_id,
contents=[
{"content": "Alice works at Google as a software engineer."},
{"content": "Bob is a product manager at Microsoft."},
{"content": "The team meets every Monday at 9am."},
],
request_context=request_context,
)
await memory.wait_for_background_tasks()
# Create a directive
directive = await memory.create_directive(
bank_id=bank_id,
name="Professional Tone",
content="Always maintain a professional and formal tone in responses.",
request_context=request_context,
)
directive_id = directive["id"]
# Run reflect which returns the core result
result = await memory.reflect_async(
bank_id=bank_id,
query="Who works at Google?",
request_context=request_context,
)
# Verify based_on structure exists
assert result.based_on is not None
# Verify directives key exists and contains our directive
assert "directives" in result.based_on
directives_list = result.based_on.get("directives", [])
# Verify directives are dicts with id, name, content (not MemoryFact objects)
assert len(directives_list) > 0, "Should have at least one directive"
directive_found = False
for d in directives_list:
assert isinstance(d, dict), f"Directive should be dict, got {type(d)}"
assert "id" in d, "Directive dict should have 'id'"
assert "name" in d, "Directive dict should have 'name'"
assert "content" in d, "Directive dict should have 'content'"
# Check if this is our directive
if d["id"] == directive_id:
directive_found = True
assert d["name"] == "Professional Tone"
assert "professional" in d["content"].lower()
assert directive_found, f"Our directive {directive_id} should be in based_on.directives"
# Verify memories (world/experience) are separate from directives
has_memories = "world" in result.based_on or "experience" in result.based_on
assert has_memories, "Should have world or experience memories"
# Verify that if mental-models key exists, it's separate from directives
if "mental-models" in result.based_on:
mental_models = result.based_on.get("mental-models", [])
# Verify mental models are MemoryFact objects, not dicts like directives
for mm in mental_models:
assert hasattr(mm, "fact_type"), "Mental model should be MemoryFact with fact_type"
assert mm.fact_type == "mental-models"
assert hasattr(mm, "context")
assert "mental model" in mm.context.lower()
# Cleanup
await memory.delete_bank(bank_id, request_context=request_context)
class TestDirectivesPromptInjection:
"""Test that directives are properly injected into the system prompt."""
@@ -649,264 +451,3 @@ class TestDirectivesPromptInjection:
directives_pos = prompt.find("## DIRECTIVES")
critical_rules_pos = prompt.find("## CRITICAL RULES")
assert directives_pos < critical_rules_pos
class TestMentalModelRefreshTagSecurity:
"""Test that mental model refresh respects tag-based security boundaries."""
async def test_refresh_with_tags_only_accesses_same_tagged_models(
self, memory: MemoryEngine, request_context
):
"""Test that refreshing a mental model with tags can only access other models with the same tags.
This is a security test to ensure that mental models with tags (e.g., user:alice)
cannot access mental models from other scopes (e.g., user:bob or no tags) during refresh.
"""
bank_id = f"test-refresh-tags-{uuid.uuid4().hex[:8]}"
# Ensure bank exists
await memory.get_bank_profile(bank_id, request_context=request_context)
# Add some facts with different tags
await memory.retain_batch_async(
bank_id=bank_id,
contents=[
{"content": "Alice works on the frontend React project. Alice's favorite color is blue.", "tags": ["user:alice"]},
{"content": "Alice prefers working in the morning. Alice drinks coffee every day.", "tags": ["user:alice"]},
{"content": "Bob works on the backend API services. Bob's favorite language is Python.", "tags": ["user:bob"]},
{"content": "Bob prefers working at night. Bob drinks tea every day.", "tags": ["user:bob"]},
{"content": "The company has 100 employees and is growing fast.", "tags": []}, # No tags
],
request_context=request_context,
)
# Wait for background processing
await memory.wait_for_background_tasks()
# Create mental model for user:alice with sensitive data
mm_alice = await memory.create_mental_model(
bank_id=bank_id,
name="Alice's Work Profile",
source_query="What does Alice work on?",
content="Alice is a frontend engineer specializing in React",
tags=["user:alice"],
request_context=request_context,
)
# Create mental model for user:bob with sensitive data
mm_bob = await memory.create_mental_model(
bank_id=bank_id,
name="Bob's Work Profile",
source_query="What does Bob work on?",
content="Bob is a backend engineer specializing in Python",
tags=["user:bob"],
request_context=request_context,
)
# Create mental model with no tags (should not be accessible from tagged models)
mm_untagged = await memory.create_mental_model(
bank_id=bank_id,
name="Company Info",
source_query="What is the company info?",
content="The company has 100 employees",
request_context=request_context,
)
# Create a mental model for user:alice that will be refreshed
mm_alice_refresh = await memory.create_mental_model(
bank_id=bank_id,
name="Alice's Summary",
source_query="What are all the facts about work and preferences?", # Broad query that should match all facts
content="Initial content",
tags=["user:alice"],
request_context=request_context,
)
# Refresh Alice's mental model
refreshed = await memory.refresh_mental_model(
bank_id=bank_id,
mental_model_id=mm_alice_refresh["id"],
request_context=request_context,
)
# SECURITY CHECK: The refreshed content should ONLY include information from
# memories/models tagged with user:alice, NOT from user:bob or untagged
refreshed_content = refreshed["content"].lower()
# Should include Alice's content (either from facts or mental models)
assert "alice" in refreshed_content, \
"Refreshed model should access memories/models with matching tags (user:alice)"
# MUST NOT include Bob's content (security violation)
# Use word boundary matching to avoid false positives (e.g., "team" contains "tea")
import re
def contains_word(text: str, word: str) -> bool:
"""Check if text contains word as a whole word (not substring)."""
return bool(re.search(rf'\b{re.escape(word)}\b', text, re.IGNORECASE))
assert not contains_word(refreshed_content, "bob") and \
not contains_word(refreshed_content, "python") and \
not contains_word(refreshed_content, "tea"), \
f"SECURITY VIOLATION: Refreshed model accessed memories/models with different tags (user:bob). Content: {refreshed['content']}"
# MUST NOT include untagged content (security violation)
assert "100 employees" not in refreshed_content and "growing fast" not in refreshed_content, \
f"SECURITY VIOLATION: Refreshed model accessed untagged memories/models. Content: {refreshed['content']}"
# Cleanup
await memory.delete_bank(bank_id, request_context=request_context)
async def test_consolidation_only_refreshes_matching_tagged_models(
self, memory: MemoryEngine, request_context
):
"""Test that consolidation only triggers refresh for mental models with matching tags.
This is a security test to ensure that when tagged memories are consolidated,
only mental models with overlapping tags get refreshed, not all mental models.
"""
bank_id = f"test-consolidation-refresh-{uuid.uuid4().hex[:8]}"
# Ensure bank exists
await memory.get_bank_profile(bank_id, request_context=request_context)
# Create mental models with different tags, all with refresh_after_consolidation=true
mm_alice = await memory.create_mental_model(
bank_id=bank_id,
name="Alice's Model",
source_query="What about Alice?",
content="Initial Alice content",
tags=["user:alice"],
trigger={"refresh_after_consolidation": True},
request_context=request_context,
)
mm_bob = await memory.create_mental_model(
bank_id=bank_id,
name="Bob's Model",
source_query="What about Bob?",
content="Initial Bob content",
tags=["user:bob"],
trigger={"refresh_after_consolidation": True},
request_context=request_context,
)
mm_untagged = await memory.create_mental_model(
bank_id=bank_id,
name="Untagged Model",
source_query="What about general stuff?",
content="Initial untagged content",
trigger={"refresh_after_consolidation": True},
request_context=request_context,
)
# Record initial last_refreshed_at timestamps
alice_initial = mm_alice["last_refreshed_at"]
bob_initial = mm_bob["last_refreshed_at"]
untagged_initial = mm_untagged["last_refreshed_at"]
# Add memories with user:alice tags
await memory.retain_batch_async(
bank_id=bank_id,
contents=[
{"content": "Alice likes React", "tags": ["user:alice"]},
{"content": "Alice drinks coffee", "tags": ["user:alice"]},
],
request_context=request_context,
)
# Trigger consolidation manually (this should only refresh Alice's mental model)
from hindsight_api.engine.consolidation.consolidator import run_consolidation_job
result = await run_consolidation_job(
memory_engine=memory,
bank_id=bank_id,
request_context=request_context,
)
# Wait for background refresh tasks to complete
await memory.wait_for_background_tasks()
# Check that mental models were refreshed appropriately
mm_alice_after = await memory.get_mental_model(
bank_id, mm_alice["id"], request_context=request_context
)
mm_bob_after = await memory.get_mental_model(
bank_id, mm_bob["id"], request_context=request_context
)
mm_untagged_after = await memory.get_mental_model(
bank_id, mm_untagged["id"], request_context=request_context
)
# SECURITY CHECK: Only Alice's mental model and untagged model should be refreshed
# Alice's model should be refreshed (tags match)
assert mm_alice_after["last_refreshed_at"] != alice_initial or mm_alice_after["content"] != mm_alice["content"], \
"Alice's mental model should be refreshed when user:alice memories are consolidated"
# Bob's model should NOT be refreshed (tags don't match)
assert mm_bob_after["last_refreshed_at"] == bob_initial, \
"SECURITY VIOLATION: Bob's mental model was refreshed even though user:bob memories were not consolidated"
# Untagged model should be refreshed (untagged models are always refreshed)
assert mm_untagged_after["last_refreshed_at"] != untagged_initial or mm_untagged_after["content"] != mm_untagged["content"], \
"Untagged mental model should be refreshed after any consolidation"
# Cleanup
await memory.delete_bank(bank_id, request_context=request_context)
async def test_refresh_mental_model_with_directives(self, memory: MemoryEngine, request_context):
"""Test that refreshing a mental model with directives works correctly."""
bank_id = f"test-refresh-directives-{uuid.uuid4().hex[:8]}"
# Ensure bank exists
await memory.get_bank_profile(bank_id, request_context=request_context)
# Create a directive
directive = await memory.create_directive(
bank_id=bank_id,
name="Response Style",
content="Always be concise and professional",
request_context=request_context,
)
# Create a concept mental model to refresh
concept = await memory.create_mental_model(
bank_id=bank_id,
name="Team Info",
source_query="Team information summary",
content="Initial team information",
request_context=request_context,
)
# Add some memories
await memory.retain_batch_async(
bank_id=bank_id,
contents=[
{"content": "Alice is the team lead and handles project planning."},
{"content": "Bob is a senior engineer who mentors junior developers."},
],
request_context=request_context,
)
# Wait for retain to complete
await memory.wait_for_background_tasks()
# Refresh the concept mental model (this should include directive in based_on)
refreshed = await memory.refresh_mental_model(
bank_id=bank_id,
mental_model_id=concept["id"],
request_context=request_context,
)
# Wait for background tasks to complete
await memory.wait_for_background_tasks()
# Verify the refresh completed without errors
assert refreshed is not None
assert refreshed["content"] is not None
# Get the updated mental model
updated = await memory.get_mental_model(bank_id, concept["id"], request_context=request_context)
assert updated["content"] != "Initial team information"
# Cleanup
await memory.delete_bank(bank_id, request_context=request_context)
@@ -1,123 +0,0 @@
"""Test provider-specific default models in config."""
import os
import pytest
def test_provider_default_models():
"""Test that each provider has a default model and it's used when model is not explicitly set."""
from hindsight_api.config import PROVIDER_DEFAULT_MODELS, HindsightConfig, clear_config_cache
# Save original env vars
original_provider = os.environ.get("HINDSIGHT_API_LLM_PROVIDER")
original_model = os.environ.get("HINDSIGHT_API_LLM_MODEL")
try:
# Test each provider has a default
for provider, expected_model in PROVIDER_DEFAULT_MODELS.items():
clear_config_cache()
os.environ["HINDSIGHT_API_LLM_PROVIDER"] = provider
# Remove explicit model setting to test default
if "HINDSIGHT_API_LLM_MODEL" in os.environ:
del os.environ["HINDSIGHT_API_LLM_MODEL"]
config = HindsightConfig.from_env()
assert config.llm_provider == provider, f"Provider mismatch for {provider}"
assert config.llm_model == expected_model, f"Expected {expected_model} for {provider}, got {config.llm_model}"
finally:
# Restore original env vars
clear_config_cache()
if original_provider:
os.environ["HINDSIGHT_API_LLM_PROVIDER"] = original_provider
elif "HINDSIGHT_API_LLM_PROVIDER" in os.environ:
del os.environ["HINDSIGHT_API_LLM_PROVIDER"]
if original_model:
os.environ["HINDSIGHT_API_LLM_MODEL"] = original_model
elif "HINDSIGHT_API_LLM_MODEL" in os.environ:
del os.environ["HINDSIGHT_API_LLM_MODEL"]
def test_explicit_model_overrides_provider_default():
"""Test that explicit model setting overrides provider default."""
from hindsight_api.config import HindsightConfig, clear_config_cache
original_provider = os.environ.get("HINDSIGHT_API_LLM_PROVIDER")
original_model = os.environ.get("HINDSIGHT_API_LLM_MODEL")
try:
clear_config_cache()
os.environ["HINDSIGHT_API_LLM_PROVIDER"] = "anthropic"
os.environ["HINDSIGHT_API_LLM_MODEL"] = "claude-sonnet-4-5-20250929"
config = HindsightConfig.from_env()
assert config.llm_provider == "anthropic"
assert config.llm_model == "claude-sonnet-4-5-20250929", "Explicit model should override default"
finally:
clear_config_cache()
if original_provider:
os.environ["HINDSIGHT_API_LLM_PROVIDER"] = original_provider
elif "HINDSIGHT_API_LLM_PROVIDER" in os.environ:
del os.environ["HINDSIGHT_API_LLM_PROVIDER"]
if original_model:
os.environ["HINDSIGHT_API_LLM_MODEL"] = original_model
elif "HINDSIGHT_API_LLM_MODEL" in os.environ:
del os.environ["HINDSIGHT_API_LLM_MODEL"]
def test_per_operation_provider_default_model():
"""Test that per-operation providers use their own default models."""
from hindsight_api.config import HindsightConfig, clear_config_cache
original_provider = os.environ.get("HINDSIGHT_API_LLM_PROVIDER")
original_model = os.environ.get("HINDSIGHT_API_LLM_MODEL")
original_retain_provider = os.environ.get("HINDSIGHT_API_RETAIN_LLM_PROVIDER")
original_retain_model = os.environ.get("HINDSIGHT_API_RETAIN_LLM_MODEL")
try:
clear_config_cache()
os.environ["HINDSIGHT_API_LLM_PROVIDER"] = "openai"
# Remove explicit model to use provider default
if "HINDSIGHT_API_LLM_MODEL" in os.environ:
del os.environ["HINDSIGHT_API_LLM_MODEL"]
# Set retain-specific provider but not model
os.environ["HINDSIGHT_API_RETAIN_LLM_PROVIDER"] = "anthropic"
if "HINDSIGHT_API_RETAIN_LLM_MODEL" in os.environ:
del os.environ["HINDSIGHT_API_RETAIN_LLM_MODEL"]
config = HindsightConfig.from_env()
# Global LLM should use OpenAI default
assert config.llm_model == "o3-mini", f"Expected o3-mini, got {config.llm_model}"
# Retain should use Anthropic default
assert (
config.retain_llm_model == "claude-haiku-4-5-20251001"
), f"Expected claude-haiku-4-5-20251001, got {config.retain_llm_model}"
finally:
clear_config_cache()
if original_provider:
os.environ["HINDSIGHT_API_LLM_PROVIDER"] = original_provider
elif "HINDSIGHT_API_LLM_PROVIDER" in os.environ:
del os.environ["HINDSIGHT_API_LLM_PROVIDER"]
if original_model:
os.environ["HINDSIGHT_API_LLM_MODEL"] = original_model
elif "HINDSIGHT_API_LLM_MODEL" in os.environ:
del os.environ["HINDSIGHT_API_LLM_MODEL"]
if original_retain_provider:
os.environ["HINDSIGHT_API_RETAIN_LLM_PROVIDER"] = original_retain_provider
elif "HINDSIGHT_API_RETAIN_LLM_PROVIDER" in os.environ:
del os.environ["HINDSIGHT_API_RETAIN_LLM_PROVIDER"]
if original_retain_model:
os.environ["HINDSIGHT_API_RETAIN_LLM_MODEL"] = original_retain_model
elif "HINDSIGHT_API_RETAIN_LLM_MODEL" in os.environ:
del os.environ["HINDSIGHT_API_RETAIN_LLM_MODEL"]
@@ -1,103 +0,0 @@
"""
Test reflect endpoint with empty based_on (no memories scenario).
This test verifies that the API returns the correct based_on format:
- v0.3.0 (old): returned based_on as list []
- v0.4.0+ (current): returns based_on as object {"memories": [], "mental_models": [], "directives": []}
"""
import pytest
import pytest_asyncio
import httpx
from hindsight_api.api import create_app
@pytest_asyncio.fixture
async def api_client(memory):
"""Create an async test client for the FastAPI app."""
app = create_app(memory, initialize_memory=False)
transport = httpx.ASGITransport(app=app)
async with httpx.AsyncClient(transport=transport, base_url="http://test") as client:
yield client
@pytest.mark.asyncio
async def test_reflect_with_no_memories_empty_bank(api_client):
"""Test reflect on an empty bank (no memories) with include.facts enabled."""
bank_id = "test_empty_bank"
# Reflect on empty bank with facts requested
response = await api_client.post(
f"/v1/default/banks/{bank_id}/reflect",
json={
"query": "What do you know about machine learning?",
"budget": "low",
"include": {
"facts": {} # Request facts but bank is empty
}
}
)
assert response.status_code == 200
data = response.json()
# DEBUG: Print what the API actually returned
import json
print("\n" + "="*80)
print("API Response:")
print(json.dumps(data, indent=2))
print("="*80 + "\n")
# Verify response structure
assert "text" in data
assert "based_on" in data
# The API should return based_on as either:
# 1. null/None (if include.facts not set)
# 2. {"memories": [], "mental_models": [], "directives": []} (if include.facts set but empty)
# It should NEVER return based_on: []
based_on = data.get("based_on")
if based_on is not None:
assert isinstance(based_on, dict), f"based_on should be dict or null, got {type(based_on)}: {based_on}"
assert not isinstance(based_on, list), f"based_on should NEVER be a list! Got: {based_on}"
assert "memories" in based_on
assert "mental_models" in based_on
assert "directives" in based_on
# All should be empty lists
assert based_on["memories"] == []
assert based_on["mental_models"] == []
assert based_on["directives"] == []
# Verify the structure is parseable as proper types
assert isinstance(data["text"], str)
if based_on is not None:
# Verify it's the v0.4.0+ format (object with arrays)
assert isinstance(based_on["memories"], list)
assert isinstance(based_on["mental_models"], list)
assert isinstance(based_on["directives"], list)
@pytest.mark.asyncio
async def test_reflect_without_include_facts(api_client):
"""Test reflect without requesting facts (based_on should be None)."""
bank_id = "test_no_facts"
response = await api_client.post(
f"/v1/default/banks/{bank_id}/reflect",
json={
"query": "Hello world",
"budget": "low"
# No include.facts
}
)
assert response.status_code == 200
data = response.json()
# When include.facts is not set, based_on should not be in response (or be null)
based_on = data.get("based_on")
assert based_on is None, f"based_on should be None when not requested, got {type(based_on)}: {based_on}"
# Verify structure
assert isinstance(data["text"], str)
@@ -1,45 +0,0 @@
"""
Test to verify reflect operation creates proper span hierarchy.
"""
import pytest
@pytest.mark.asyncio
async def test_reflect_creates_child_spans(memory, request_context):
"""Test that reflect operation creates child LLM spans."""
from datetime import datetime, timezone
from hindsight_api.tracing import initialize_tracing, get_span_recorder, create_span_recorder
# Initialize tracing with a mock endpoint
initialize_tracing(
service_name="test-hindsight",
endpoint="http://localhost:4318",
deployment_environment="test"
)
# Create span recorder
recorder = create_span_recorder()
bank_id = f"test-reflect-hierarchy-{datetime.now(timezone.utc).timestamp()}"
try:
# Add some memories
await memory.retain_async(
bank_id=bank_id,
content="Paris is the capital of France",
context="Geography",
request_context=request_context,
)
# Run reflect
result = await memory.reflect_async(
bank_id=bank_id,
query="What is the capital of France?",
request_context=request_context,
)
print(f"Reflect result: {result.text[:100]}")
print(f"Usage: {result.usage}")
finally:
await memory.delete_bank(bank_id, request_context=request_context)
-39
View File
@@ -175,45 +175,6 @@ class TestMentalModelsCRUD:
# Cleanup
await memory.delete_bank(bank_id, request_context=request_context)
@pytest.mark.asyncio
async def test_create_mental_model_with_custom_id(self, memory: MemoryEngine, request_context):
"""Test creating a mental model with a custom ID."""
bank_id = f"test-mental-model-custom-id-{uuid.uuid4().hex[:8]}"
# Create the bank first
await memory.get_bank_profile(bank_id=bank_id, request_context=request_context)
# Create a mental model with a custom ID
custom_id = "team-communication-preferences"
mental_model = await memory.create_mental_model(
bank_id=bank_id,
mental_model_id=custom_id,
name="Team Communication Preferences",
source_query="How does the team prefer to communicate?",
content="The team prefers async communication via Slack",
tags=["team", "communication"],
request_context=request_context,
)
# Verify the custom ID was used
assert mental_model["id"] == custom_id
assert mental_model["name"] == "Team Communication Preferences"
assert mental_model["tags"] == ["team", "communication"]
# Verify we can retrieve it with the custom ID
fetched = await memory.get_mental_model(
bank_id=bank_id,
mental_model_id=custom_id,
request_context=request_context,
)
assert fetched is not None
assert fetched["id"] == custom_id
assert fetched["name"] == "Team Communication Preferences"
# Cleanup
await memory.delete_bank(bank_id, request_context=request_context)
class TestObservationsAPI:
"""Test observations API endpoints.
-62
View File
@@ -2193,65 +2193,3 @@ If the text contains both Italian and English content, extract ONLY the Italian
# Clear cache again to restore original config
clear_config_cache()
@pytest.mark.asyncio
async def test_retain_batch_with_per_item_tags_on_document(memory, request_context):
"""
Test that per-item tags are correctly stored on documents.
This test verifies the fix for a bug where per-item tags in content dictionaries
were not being merged and passed to document tracking, causing tags to be lost
even though they were correctly sent through the API.
Without the fix, this test would fail because:
- Tags are correctly passed in the content dict
- Tags are correctly stored on memory_units (facts)
- BUT tags were NOT stored on the document record itself
"""
bank_id = f"test_doc_tags_{datetime.now(timezone.utc).timestamp()}"
document_id = "app-state-testuser"
try:
# Retain content with per-item tags (simulating the TasteAI use case)
contents = [
{
"content": '{"username":"testuser","meals":[],"preferences":{"nickname":"testuser"}}',
"document_id": document_id,
"tags": ["user:testuser", "app-type:taste-ai"],
}
]
result = await memory.retain_batch_async(
bank_id=bank_id,
contents=contents,
request_context=request_context,
)
assert len(result) > 0, "Should have retained content"
print(f"\n=== Retained content with tags ===")
# Retrieve the document
doc = await memory.get_document(
document_id=document_id,
bank_id=bank_id,
request_context=request_context,
)
assert doc is not None, "Document should exist"
assert "tags" in doc, "Document should have tags field"
# This is the critical assertion - tags should be stored on the document
doc_tags = doc["tags"] or []
print(f"Document tags: {doc_tags}")
assert "user:testuser" in doc_tags, \
f"Document should have 'user:testuser' tag, but got: {doc_tags}"
assert "app-type:taste-ai" in doc_tags, \
f"Document should have 'app-type:taste-ai' tag, but got: {doc_tags}"
print("✓ Per-item tags correctly stored on document")
finally:
await memory.delete_bank(bank_id, request_context=request_context)
print(f"\n=== Cleaned up bank: {bank_id} ===")
-834
View File
@@ -1,834 +0,0 @@
"""Tests for the Supabase Tenant Extension."""
import time
from unittest.mock import AsyncMock, MagicMock, patch
import httpx
import jwt as pyjwt
import pytest
from jwt import PyJWK
from hindsight_api.extensions.builtin.supabase_tenant import (
JWKS_CACHE_TTL_SECONDS,
JWKS_MIN_REFRESH_INTERVAL_SECONDS,
MIN_TOKEN_LENGTH,
SupabaseTenantExtension,
)
from hindsight_api.extensions.context import ExtensionContext
from hindsight_api.extensions.loader import load_extension
from hindsight_api.extensions.tenant import AuthenticationError, Tenant, TenantContext, TenantExtension
from hindsight_api.models import RequestContext
# A valid UUID for test user IDs
VALID_UUID = "a1b2c3d4-e5f6-7890-abcd-ef1234567890"
# Minimal JWKS response with one RSA key
MOCK_JWKS_RESPONSE = {
"keys": [
{
"kid": "test-key-1",
"kty": "RSA",
"alg": "RS256",
"use": "sig",
"n": "0vx7agoebGcQSuuPiLJXZptN9nndrQmbXEps2aiAFbWhM78LhWx4cbbfAAtVT86zwu1RK7aPFFxuhDR1L6tSoc_BJECPebWKRXjBZCiFV4n3oknjhMstn64tZ_2W-5JsGY4Hc5n9yBXArwl93lqt7_RN5w6Cf0h4QyQ5v-65YGjQR0_FDW2QvzqY368QQMicAtaSqzs8KJZgnYb9c7d0zgdAZHzu6qMQvRL5hajrn1n91CbOpbISD08qNLyrdkt-bFTWhAI4vMQFh6WeZu0fM4lFd2NcRwr3XPksINHaQ-G_xBniIqbw0Ls1jF44-csFCur-kEgU8awapJzKnqDKgw",
"e": "AQAB",
}
]
}
def _make_extension(
supabase_url: str = "https://test.supabase.co",
service_key: str | None = "test-service-key",
schema_prefix: str | None = None,
) -> SupabaseTenantExtension:
"""Helper to create a SupabaseTenantExtension with test config."""
config = {
"supabase_url": supabase_url,
}
if service_key is not None:
config["supabase_service_key"] = service_key
if schema_prefix is not None:
config["schema_prefix"] = schema_prefix
return SupabaseTenantExtension(config)
def _make_mock_response(status_code: int = 200, json_data: dict | None = None) -> MagicMock:
"""Helper to create a mock httpx.Response."""
response = MagicMock(spec=httpx.Response)
response.status_code = status_code
response.json.return_value = json_data or {}
response.raise_for_status = MagicMock()
if status_code >= 400:
response.raise_for_status.side_effect = httpx.HTTPStatusError("error", request=MagicMock(), response=response)
return response
def _make_valid_token() -> str:
"""Return a token that passes the MIN_TOKEN_LENGTH check."""
return "a" * (MIN_TOKEN_LENGTH + 10)
def _setup_jwks_ext() -> tuple[SupabaseTenantExtension, AsyncMock]:
"""Create an extension in JWKS mode with mocked internals."""
ext = _make_extension()
mock_client = AsyncMock(spec=httpx.AsyncClient)
ext._http_client = mock_client
ext._use_jwks = True
ext._jwks_keys = {"test-key-1": MagicMock(spec=PyJWK)}
ext._jwks_keys["test-key-1"].key = "mock-public-key"
ext._jwks_last_fetched = time.monotonic()
return ext, mock_client
def _setup_legacy_ext() -> tuple[SupabaseTenantExtension, AsyncMock]:
"""Create an extension in legacy mode with mocked internals."""
ext = _make_extension()
mock_client = AsyncMock(spec=httpx.AsyncClient)
ext._http_client = mock_client
ext._use_jwks = False
return ext, mock_client
# ======================================================================
# Initialization
# ======================================================================
class TestSupabaseTenantExtensionInit:
"""Tests for extension initialization."""
def test_init_with_valid_config(self):
ext = _make_extension()
assert ext.supabase_url == "https://test.supabase.co"
assert ext.supabase_service_key == "test-service-key"
assert ext.schema_prefix == "user"
assert ext._initialized_schemas == set()
assert ext._http_client is None
assert ext._use_jwks is False
assert ext._jwks_keys == {}
def test_init_missing_supabase_url(self):
with pytest.raises(ValueError, match="HINDSIGHT_API_TENANT_SUPABASE_URL is required"):
SupabaseTenantExtension({})
def test_init_without_service_key(self):
"""Service key is optional — JWKS mode doesn't require it."""
ext = _make_extension(service_key=None)
assert ext.supabase_service_key is None
def test_init_default_schema_prefix(self):
ext = _make_extension()
assert ext.schema_prefix == "user"
def test_init_custom_schema_prefix(self):
ext = _make_extension(schema_prefix="tenant")
assert ext.schema_prefix == "tenant"
def test_init_strips_trailing_slash(self):
ext = _make_extension(supabase_url="https://test.supabase.co/")
assert ext.supabase_url == "https://test.supabase.co"
def test_init_rejects_invalid_schema_prefix(self):
"""Schema prefix with special characters should be rejected."""
with pytest.raises(ValueError, match="Invalid schema_prefix"):
_make_extension(schema_prefix='"; DROP TABLE')
def test_init_rejects_empty_schema_prefix(self):
with pytest.raises(ValueError, match="Invalid schema_prefix"):
_make_extension(schema_prefix="")
def test_init_rejects_schema_prefix_starting_with_digit(self):
with pytest.raises(ValueError, match="Invalid schema_prefix"):
_make_extension(schema_prefix="123abc")
def test_init_allows_underscore_prefix(self):
ext = _make_extension(schema_prefix="_internal")
assert ext.schema_prefix == "_internal"
def test_is_tenant_extension_subclass(self):
ext = _make_extension()
assert isinstance(ext, TenantExtension)
# ======================================================================
# Startup — JWKS initialization
# ======================================================================
class TestSupabaseTenantExtensionStartup:
"""Tests for on_startup behavior."""
@pytest.mark.asyncio
async def test_on_startup_creates_http_client(self):
ext = _make_extension()
mock_client = AsyncMock(spec=httpx.AsyncClient)
# JWKS fetch returns keys
mock_client.get.return_value = _make_mock_response(200, MOCK_JWKS_RESPONSE)
with patch("hindsight_api.extensions.builtin.supabase_tenant.httpx.AsyncClient", return_value=mock_client):
with patch("hindsight_api.extensions.builtin.supabase_tenant.PyJWK"):
await ext.on_startup()
assert ext._http_client is mock_client
@pytest.mark.asyncio
async def test_on_startup_fetches_jwks(self):
ext = _make_extension()
mock_client = AsyncMock(spec=httpx.AsyncClient)
mock_client.get.return_value = _make_mock_response(200, MOCK_JWKS_RESPONSE)
with patch("hindsight_api.extensions.builtin.supabase_tenant.httpx.AsyncClient", return_value=mock_client):
with patch("hindsight_api.extensions.builtin.supabase_tenant.PyJWK") as mock_pyjwk:
mock_pyjwk.return_value = MagicMock(spec=PyJWK)
await ext.on_startup()
assert ext._use_jwks is True
# First call: JWKS fetch, second call: health check
assert mock_client.get.call_count == 2
jwks_call = mock_client.get.call_args_list[0]
assert jwks_call.args[0] == "https://test.supabase.co/auth/v1/.well-known/jwks.json"
@pytest.mark.asyncio
async def test_on_startup_falls_back_to_legacy_when_jwks_empty(self):
ext = _make_extension()
mock_client = AsyncMock(spec=httpx.AsyncClient)
# JWKS returns empty keys, health check succeeds
def mock_get(url, **kwargs):
if "jwks" in url:
return _make_mock_response(200, {"keys": []})
return _make_mock_response(200)
mock_client.get.side_effect = mock_get
with patch("hindsight_api.extensions.builtin.supabase_tenant.httpx.AsyncClient", return_value=mock_client):
await ext.on_startup()
assert ext._use_jwks is False
@pytest.mark.asyncio
async def test_on_startup_falls_back_to_legacy_when_jwks_fetch_fails(self):
ext = _make_extension()
mock_client = AsyncMock(spec=httpx.AsyncClient)
call_count = 0
def mock_get(url, **kwargs):
nonlocal call_count
call_count += 1
if call_count == 1:
# JWKS fetch fails
raise httpx.ConnectError("Connection refused")
# health check
return _make_mock_response(200)
mock_client.get.side_effect = mock_get
with patch("hindsight_api.extensions.builtin.supabase_tenant.httpx.AsyncClient", return_value=mock_client):
await ext.on_startup()
assert ext._use_jwks is False
@pytest.mark.asyncio
async def test_on_startup_raises_if_no_jwks_and_no_service_key(self):
ext = _make_extension(service_key=None)
mock_client = AsyncMock(spec=httpx.AsyncClient)
mock_client.get.return_value = _make_mock_response(200, {"keys": []})
with patch("hindsight_api.extensions.builtin.supabase_tenant.httpx.AsyncClient", return_value=mock_client):
with pytest.raises(ValueError, match="HINDSIGHT_API_TENANT_SUPABASE_SERVICE_KEY is required"):
await ext.on_startup()
@pytest.mark.asyncio
async def test_on_startup_health_check_with_service_key(self):
ext = _make_extension()
mock_client = AsyncMock(spec=httpx.AsyncClient)
mock_client.get.return_value = _make_mock_response(200, MOCK_JWKS_RESPONSE)
with patch("hindsight_api.extensions.builtin.supabase_tenant.httpx.AsyncClient", return_value=mock_client):
with patch("hindsight_api.extensions.builtin.supabase_tenant.PyJWK"):
await ext.on_startup()
# Second call should be health check
health_call = mock_client.get.call_args_list[1]
assert health_call.args[0] == "https://test.supabase.co/auth/v1/health"
assert health_call.kwargs["headers"] == {"apikey": "test-service-key"}
@pytest.mark.asyncio
async def test_on_startup_skips_health_check_without_service_key(self):
ext = _make_extension(service_key=None)
mock_client = AsyncMock(spec=httpx.AsyncClient)
mock_client.get.return_value = _make_mock_response(200, MOCK_JWKS_RESPONSE)
with patch("hindsight_api.extensions.builtin.supabase_tenant.httpx.AsyncClient", return_value=mock_client):
with patch("hindsight_api.extensions.builtin.supabase_tenant.PyJWK"):
await ext.on_startup()
# Only one call: JWKS fetch, no health check
assert mock_client.get.call_count == 1
# ======================================================================
# JWKS cache management
# ======================================================================
class TestJWKSCacheManagement:
"""Tests for JWKS key fetching, caching, and rotation handling."""
@pytest.mark.asyncio
async def test_get_signing_key_from_cache(self):
ext, _ = _setup_jwks_ext()
with patch("hindsight_api.extensions.builtin.supabase_tenant.pyjwt.get_unverified_header") as mock_header:
mock_header.return_value = {"kid": "test-key-1", "alg": "RS256"}
key = await ext._get_signing_key("fake-token")
assert key is ext._jwks_keys["test-key-1"]
@pytest.mark.asyncio
async def test_get_signing_key_refreshes_stale_cache(self):
ext, mock_client = _setup_jwks_ext()
# Make cache expired
ext._jwks_last_fetched = time.monotonic() - JWKS_CACHE_TTL_SECONDS - 1
new_key = MagicMock(spec=PyJWK)
mock_client.get.return_value = _make_mock_response(200, MOCK_JWKS_RESPONSE)
with (
patch("hindsight_api.extensions.builtin.supabase_tenant.pyjwt.get_unverified_header") as mock_header,
patch("hindsight_api.extensions.builtin.supabase_tenant.PyJWK", return_value=new_key),
):
mock_header.return_value = {"kid": "test-key-1", "alg": "RS256"}
key = await ext._get_signing_key("fake-token")
assert key is new_key
mock_client.get.assert_called_once()
@pytest.mark.asyncio
async def test_get_signing_key_handles_key_rotation(self):
"""When kid not in cache and cache is old enough, refresh once for key rotation."""
ext, mock_client = _setup_jwks_ext()
# Make cache just old enough to allow a refresh
ext._jwks_last_fetched = time.monotonic() - JWKS_MIN_REFRESH_INTERVAL_SECONDS - 1
rotated_key = MagicMock(spec=PyJWK)
mock_client.get.return_value = _make_mock_response(200, MOCK_JWKS_RESPONSE)
with (
patch("hindsight_api.extensions.builtin.supabase_tenant.pyjwt.get_unverified_header") as mock_header,
patch("hindsight_api.extensions.builtin.supabase_tenant.PyJWK", return_value=rotated_key),
):
mock_header.return_value = {"kid": "rotated-key-99", "alg": "RS256"}
# The refreshed JWKS won't have "rotated-key-99" either, so this should raise
with pytest.raises(AuthenticationError, match="Unable to find signing key"):
await ext._get_signing_key("fake-token")
# Should have attempted one refresh
mock_client.get.assert_called_once()
@pytest.mark.asyncio
async def test_get_signing_key_missing_kid_header(self):
ext, _ = _setup_jwks_ext()
with patch("hindsight_api.extensions.builtin.supabase_tenant.pyjwt.get_unverified_header") as mock_header:
mock_header.return_value = {"alg": "RS256"} # no kid
with pytest.raises(AuthenticationError, match="Token missing key ID"):
await ext._get_signing_key("fake-token")
@pytest.mark.asyncio
async def test_get_signing_key_refresh_network_error(self):
"""If JWKS refresh fails during key rotation, error should propagate."""
ext, mock_client = _setup_jwks_ext()
ext._jwks_last_fetched = time.monotonic() - JWKS_MIN_REFRESH_INTERVAL_SECONDS - 1
mock_client.get.side_effect = httpx.ConnectError("Connection refused")
with patch("hindsight_api.extensions.builtin.supabase_tenant.pyjwt.get_unverified_header") as mock_header:
mock_header.return_value = {"kid": "unknown-key", "alg": "RS256"}
with pytest.raises(Exception):
await ext._get_signing_key("fake-token")
# ======================================================================
# Authentication — JWKS mode
# ======================================================================
class TestAuthenticateJWKS:
"""Tests for JWKS-based JWT verification."""
@pytest.mark.asyncio
async def test_authenticate_valid_token(self):
ext, _ = _setup_jwks_ext()
mock_context = AsyncMock(spec=ExtensionContext)
mock_context.run_migration = AsyncMock()
ext._context = mock_context
with (
patch("hindsight_api.extensions.builtin.supabase_tenant.pyjwt.get_unverified_header") as mock_header,
patch("hindsight_api.extensions.builtin.supabase_tenant.pyjwt.decode") as mock_decode,
):
mock_header.return_value = {"kid": "test-key-1", "alg": "RS256"}
mock_decode.return_value = {"sub": VALID_UUID, "aud": "authenticated"}
result = await ext.authenticate(RequestContext(api_key=_make_valid_token()))
assert isinstance(result, TenantContext)
expected_schema = "user_" + VALID_UUID.replace("-", "_")
assert result.schema_name == expected_schema
@pytest.mark.asyncio
async def test_authenticate_custom_prefix(self):
ext, _ = _setup_jwks_ext()
ext.schema_prefix = "org"
mock_context = AsyncMock(spec=ExtensionContext)
mock_context.run_migration = AsyncMock()
ext._context = mock_context
with (
patch("hindsight_api.extensions.builtin.supabase_tenant.pyjwt.get_unverified_header") as mock_header,
patch("hindsight_api.extensions.builtin.supabase_tenant.pyjwt.decode") as mock_decode,
):
mock_header.return_value = {"kid": "test-key-1", "alg": "RS256"}
mock_decode.return_value = {"sub": VALID_UUID}
result = await ext.authenticate(RequestContext(api_key=_make_valid_token()))
assert result.schema_name.startswith("org_")
@pytest.mark.asyncio
async def test_authenticate_expired_token(self):
ext, _ = _setup_jwks_ext()
with (
patch("hindsight_api.extensions.builtin.supabase_tenant.pyjwt.get_unverified_header") as mock_header,
patch(
"hindsight_api.extensions.builtin.supabase_tenant.pyjwt.decode",
side_effect=pyjwt.ExpiredSignatureError(),
),
):
mock_header.return_value = {"kid": "test-key-1", "alg": "RS256"}
with pytest.raises(AuthenticationError, match="Token has expired"):
await ext.authenticate(RequestContext(api_key=_make_valid_token()))
@pytest.mark.asyncio
async def test_authenticate_invalid_audience(self):
ext, _ = _setup_jwks_ext()
with (
patch("hindsight_api.extensions.builtin.supabase_tenant.pyjwt.get_unverified_header") as mock_header,
patch(
"hindsight_api.extensions.builtin.supabase_tenant.pyjwt.decode",
side_effect=pyjwt.InvalidAudienceError(),
),
):
mock_header.return_value = {"kid": "test-key-1", "alg": "RS256"}
with pytest.raises(AuthenticationError, match="Invalid token audience"):
await ext.authenticate(RequestContext(api_key=_make_valid_token()))
@pytest.mark.asyncio
async def test_authenticate_invalid_issuer(self):
ext, _ = _setup_jwks_ext()
with (
patch("hindsight_api.extensions.builtin.supabase_tenant.pyjwt.get_unverified_header") as mock_header,
patch(
"hindsight_api.extensions.builtin.supabase_tenant.pyjwt.decode",
side_effect=pyjwt.InvalidIssuerError(),
),
):
mock_header.return_value = {"kid": "test-key-1", "alg": "RS256"}
with pytest.raises(AuthenticationError, match="Invalid token issuer"):
await ext.authenticate(RequestContext(api_key=_make_valid_token()))
@pytest.mark.asyncio
async def test_authenticate_decode_error(self):
ext, _ = _setup_jwks_ext()
with (
patch("hindsight_api.extensions.builtin.supabase_tenant.pyjwt.get_unverified_header") as mock_header,
patch(
"hindsight_api.extensions.builtin.supabase_tenant.pyjwt.decode",
side_effect=pyjwt.DecodeError(),
),
):
mock_header.return_value = {"kid": "test-key-1", "alg": "RS256"}
with pytest.raises(AuthenticationError, match="Invalid token"):
await ext.authenticate(RequestContext(api_key=_make_valid_token()))
@pytest.mark.asyncio
async def test_authenticate_missing_sub_claim(self):
ext, _ = _setup_jwks_ext()
with (
patch("hindsight_api.extensions.builtin.supabase_tenant.pyjwt.get_unverified_header") as mock_header,
patch("hindsight_api.extensions.builtin.supabase_tenant.pyjwt.decode") as mock_decode,
):
mock_header.return_value = {"kid": "test-key-1", "alg": "RS256"}
mock_decode.return_value = {"email": "[email protected]"} # no sub
with pytest.raises(AuthenticationError, match="missing subject"):
await ext.authenticate(RequestContext(api_key=_make_valid_token()))
@pytest.mark.asyncio
async def test_authenticate_empty_sub_claim(self):
"""Empty string sub claim should be treated as missing."""
ext, _ = _setup_jwks_ext()
with (
patch("hindsight_api.extensions.builtin.supabase_tenant.pyjwt.get_unverified_header") as mock_header,
patch("hindsight_api.extensions.builtin.supabase_tenant.pyjwt.decode") as mock_decode,
):
mock_header.return_value = {"kid": "test-key-1", "alg": "RS256"}
mock_decode.return_value = {"sub": ""}
with pytest.raises(AuthenticationError, match="missing subject"):
await ext.authenticate(RequestContext(api_key=_make_valid_token()))
@pytest.mark.asyncio
async def test_authenticate_generic_exception(self):
"""Unexpected exceptions during decode should be caught and wrapped."""
ext, _ = _setup_jwks_ext()
with (
patch("hindsight_api.extensions.builtin.supabase_tenant.pyjwt.get_unverified_header") as mock_header,
patch(
"hindsight_api.extensions.builtin.supabase_tenant.pyjwt.decode",
side_effect=RuntimeError("unexpected internal error"),
),
):
mock_header.return_value = {"kid": "test-key-1", "alg": "RS256"}
with pytest.raises(AuthenticationError, match="Token verification failed"):
await ext.authenticate(RequestContext(api_key=_make_valid_token()))
# ======================================================================
# Authentication — Legacy mode
# ======================================================================
class TestAuthenticateLegacy:
"""Tests for legacy /auth/v1/user endpoint verification."""
@pytest.mark.asyncio
async def test_authenticate_valid_token(self):
ext, mock_client = _setup_legacy_ext()
mock_client.get.return_value = _make_mock_response(200, {"id": VALID_UUID})
mock_context = AsyncMock(spec=ExtensionContext)
mock_context.run_migration = AsyncMock()
ext._context = mock_context
result = await ext.authenticate(RequestContext(api_key=_make_valid_token()))
assert isinstance(result, TenantContext)
expected_schema = "user_" + VALID_UUID.replace("-", "_")
assert result.schema_name == expected_schema
@pytest.mark.asyncio
async def test_authenticate_calls_user_endpoint(self):
ext, mock_client = _setup_legacy_ext()
mock_client.get.return_value = _make_mock_response(200, {"id": VALID_UUID})
mock_context = AsyncMock(spec=ExtensionContext)
mock_context.run_migration = AsyncMock()
ext._context = mock_context
token = _make_valid_token()
await ext.authenticate(RequestContext(api_key=token))
mock_client.get.assert_called_once_with(
"https://test.supabase.co/auth/v1/user",
headers={
"Authorization": f"Bearer {token}",
"apikey": "test-service-key",
},
)
@pytest.mark.asyncio
async def test_authenticate_expired_token_401(self):
ext, mock_client = _setup_legacy_ext()
mock_client.get.return_value = _make_mock_response(401)
with pytest.raises(AuthenticationError, match="Invalid or expired token"):
await ext.authenticate(RequestContext(api_key=_make_valid_token()))
@pytest.mark.asyncio
async def test_authenticate_supabase_error_500(self):
ext, mock_client = _setup_legacy_ext()
mock_client.get.return_value = _make_mock_response(500)
with pytest.raises(AuthenticationError, match="Authentication failed: 500"):
await ext.authenticate(RequestContext(api_key=_make_valid_token()))
@pytest.mark.asyncio
async def test_authenticate_no_user_id(self):
ext, mock_client = _setup_legacy_ext()
mock_client.get.return_value = _make_mock_response(200, {"email": "[email protected]"})
with pytest.raises(AuthenticationError, match="no user ID found"):
await ext.authenticate(RequestContext(api_key=_make_valid_token()))
@pytest.mark.asyncio
async def test_authenticate_timeout(self):
ext, mock_client = _setup_legacy_ext()
mock_client.get.side_effect = httpx.TimeoutException("Request timed out")
with pytest.raises(AuthenticationError, match="Authentication timeout"):
await ext.authenticate(RequestContext(api_key=_make_valid_token()))
@pytest.mark.asyncio
async def test_authenticate_connection_error(self):
ext, mock_client = _setup_legacy_ext()
mock_client.get.side_effect = httpx.ConnectError("Connection refused")
with pytest.raises(AuthenticationError, match="Connection error"):
await ext.authenticate(RequestContext(api_key=_make_valid_token()))
# ======================================================================
# Authentication — common (both modes)
# ======================================================================
class TestAuthenticateCommon:
"""Tests that apply regardless of verification mode."""
@pytest.mark.asyncio
async def test_authenticate_missing_token(self):
ext, _ = _setup_jwks_ext()
with pytest.raises(AuthenticationError, match="Missing Authorization header"):
await ext.authenticate(RequestContext(api_key=None))
@pytest.mark.asyncio
async def test_authenticate_empty_token(self):
ext, _ = _setup_jwks_ext()
with pytest.raises(AuthenticationError, match="Missing Authorization header"):
await ext.authenticate(RequestContext(api_key=""))
@pytest.mark.asyncio
async def test_authenticate_short_token(self):
ext, _ = _setup_jwks_ext()
with pytest.raises(AuthenticationError, match="Invalid token format"):
await ext.authenticate(RequestContext(api_key="short"))
@pytest.mark.asyncio
async def test_authenticate_not_initialized(self):
ext = _make_extension()
# _http_client is None by default
with pytest.raises(AuthenticationError, match="Extension not initialized"):
await ext.authenticate(RequestContext(api_key=_make_valid_token()))
@pytest.mark.asyncio
async def test_authenticate_rejects_non_uuid_user_id(self):
"""User IDs that aren't valid UUIDs should be rejected for schema safety."""
ext, _ = _setup_jwks_ext()
with (
patch("hindsight_api.extensions.builtin.supabase_tenant.pyjwt.get_unverified_header") as mock_header,
patch("hindsight_api.extensions.builtin.supabase_tenant.pyjwt.decode") as mock_decode,
):
mock_header.return_value = {"kid": "test-key-1", "alg": "RS256"}
mock_decode.return_value = {"sub": "not-a-uuid"}
with pytest.raises(AuthenticationError, match="Invalid user ID format"):
await ext.authenticate(RequestContext(api_key=_make_valid_token()))
@pytest.mark.asyncio
async def test_authenticate_rejects_malicious_user_id(self):
"""User IDs with SQL injection attempts should be rejected."""
ext, _ = _setup_jwks_ext()
with (
patch("hindsight_api.extensions.builtin.supabase_tenant.pyjwt.get_unverified_header") as mock_header,
patch("hindsight_api.extensions.builtin.supabase_tenant.pyjwt.decode") as mock_decode,
):
mock_header.return_value = {"kid": "test-key-1", "alg": "RS256"}
mock_decode.return_value = {"sub": "'; DROP TABLE users;--"}
with pytest.raises(AuthenticationError, match="Invalid user ID format"):
await ext.authenticate(RequestContext(api_key=_make_valid_token()))
# ======================================================================
# Schema management
# ======================================================================
class TestSupabaseTenantExtensionSchemaManagement:
"""Tests for schema initialization and caching."""
@pytest.mark.asyncio
async def test_schema_initialized_on_first_access(self):
ext, _ = _setup_jwks_ext()
mock_context = AsyncMock(spec=ExtensionContext)
mock_context.run_migration = AsyncMock()
ext._context = mock_context
with (
patch("hindsight_api.extensions.builtin.supabase_tenant.pyjwt.get_unverified_header") as mock_header,
patch("hindsight_api.extensions.builtin.supabase_tenant.pyjwt.decode") as mock_decode,
):
mock_header.return_value = {"kid": "test-key-1", "alg": "RS256"}
mock_decode.return_value = {"sub": VALID_UUID}
await ext.authenticate(RequestContext(api_key=_make_valid_token()))
expected_schema = "user_" + VALID_UUID.replace("-", "_")
mock_context.run_migration.assert_called_once_with(expected_schema)
assert expected_schema in ext._initialized_schemas
@pytest.mark.asyncio
async def test_schema_cached_on_second_access(self):
ext, _ = _setup_jwks_ext()
mock_context = AsyncMock(spec=ExtensionContext)
mock_context.run_migration = AsyncMock()
ext._context = mock_context
with (
patch("hindsight_api.extensions.builtin.supabase_tenant.pyjwt.get_unverified_header") as mock_header,
patch("hindsight_api.extensions.builtin.supabase_tenant.pyjwt.decode") as mock_decode,
):
mock_header.return_value = {"kid": "test-key-1", "alg": "RS256"}
mock_decode.return_value = {"sub": VALID_UUID}
await ext.authenticate(RequestContext(api_key=_make_valid_token()))
await ext.authenticate(RequestContext(api_key=_make_valid_token()))
# run_migration should only be called once
expected_schema = "user_" + VALID_UUID.replace("-", "_")
mock_context.run_migration.assert_called_once_with(expected_schema)
@pytest.mark.asyncio
async def test_schema_init_failure(self):
ext, _ = _setup_jwks_ext()
mock_context = AsyncMock(spec=ExtensionContext)
mock_context.run_migration = AsyncMock(side_effect=RuntimeError("Migration failed"))
ext._context = mock_context
with (
patch("hindsight_api.extensions.builtin.supabase_tenant.pyjwt.get_unverified_header") as mock_header,
patch("hindsight_api.extensions.builtin.supabase_tenant.pyjwt.decode") as mock_decode,
):
mock_header.return_value = {"kid": "test-key-1", "alg": "RS256"}
mock_decode.return_value = {"sub": VALID_UUID}
with pytest.raises(AuthenticationError, match="Failed to initialize tenant"):
await ext.authenticate(RequestContext(api_key=_make_valid_token()))
# Schema should NOT be cached on failure
expected_schema = "user_" + VALID_UUID.replace("-", "_")
assert expected_schema not in ext._initialized_schemas
# ======================================================================
# List tenants
# ======================================================================
class TestSupabaseTenantExtensionListTenants:
"""Tests for list_tenants behavior."""
@pytest.mark.asyncio
async def test_list_tenants_empty(self):
ext = _make_extension()
tenants = await ext.list_tenants()
assert tenants == []
@pytest.mark.asyncio
async def test_list_tenants_after_auth(self):
ext, _ = _setup_jwks_ext()
mock_context = AsyncMock(spec=ExtensionContext)
mock_context.run_migration = AsyncMock()
ext._context = mock_context
with (
patch("hindsight_api.extensions.builtin.supabase_tenant.pyjwt.get_unverified_header") as mock_header,
patch("hindsight_api.extensions.builtin.supabase_tenant.pyjwt.decode") as mock_decode,
):
mock_header.return_value = {"kid": "test-key-1", "alg": "RS256"}
mock_decode.return_value = {"sub": VALID_UUID}
await ext.authenticate(RequestContext(api_key=_make_valid_token()))
tenants = await ext.list_tenants()
assert len(tenants) == 1
assert isinstance(tenants[0], Tenant)
expected_schema = "user_" + VALID_UUID.replace("-", "_")
assert tenants[0].schema == expected_schema
# ======================================================================
# Shutdown
# ======================================================================
class TestSupabaseTenantExtensionShutdown:
"""Tests for on_shutdown behavior."""
@pytest.mark.asyncio
async def test_on_shutdown_closes_client(self):
ext = _make_extension()
mock_client = AsyncMock(spec=httpx.AsyncClient)
ext._http_client = mock_client
await ext.on_shutdown()
mock_client.aclose.assert_called_once()
assert ext._http_client is None
@pytest.mark.asyncio
async def test_on_shutdown_no_client(self):
ext = _make_extension()
# _http_client is None by default — should not raise
await ext.on_shutdown()
# ======================================================================
# Extension loader integration
# ======================================================================
class TestSupabaseTenantExtensionLoader:
"""Tests for loading via the extension loader."""
def test_load_via_extension_loader(self, monkeypatch):
monkeypatch.setenv(
"HINDSIGHT_API_TENANT_EXTENSION",
"hindsight_api.extensions.builtin.supabase_tenant:SupabaseTenantExtension",
)
monkeypatch.setenv("HINDSIGHT_API_TENANT_SUPABASE_URL", "https://test.supabase.co")
monkeypatch.setenv("HINDSIGHT_API_TENANT_SUPABASE_SERVICE_KEY", "test-key")
monkeypatch.setenv("HINDSIGHT_API_TENANT_SCHEMA_PREFIX", "custom")
ext = load_extension("TENANT", TenantExtension)
assert ext is not None
assert isinstance(ext, SupabaseTenantExtension)
assert ext.supabase_url == "https://test.supabase.co"
assert ext.supabase_service_key == "test-key"
assert ext.schema_prefix == "custom"
def test_load_without_service_key(self, monkeypatch):
"""Extension should load without service key — JWKS mode doesn't need it."""
monkeypatch.setenv(
"HINDSIGHT_API_TENANT_EXTENSION",
"hindsight_api.extensions.builtin.supabase_tenant:SupabaseTenantExtension",
)
monkeypatch.setenv("HINDSIGHT_API_TENANT_SUPABASE_URL", "https://test.supabase.co")
monkeypatch.delenv("HINDSIGHT_API_TENANT_SUPABASE_SERVICE_KEY", raising=False)
ext = load_extension("TENANT", TenantExtension)
assert ext is not None
assert isinstance(ext, SupabaseTenantExtension)
assert ext.supabase_service_key is None
-407
View File
@@ -1,407 +0,0 @@
"""
Unit tests for OpenTelemetry tracing instrumentation.
Tests the tracing module's ability to record LLM calls with GenAI semantic conventions.
"""
import json
from unittest.mock import MagicMock, patch
import pytest
from hindsight_api.tracing import (
PROVIDER_NAME_MAPPING,
GenAIAttributes,
LLMSpanRecorder,
NoOpLLMSpanRecorder,
_truncate_content,
create_operation_span,
initialize_tracing,
is_tracing_enabled,
)
def test_provider_name_mapping():
"""Test that provider names are correctly mapped to GenAI conventions."""
assert PROVIDER_NAME_MAPPING["openai"] == "openai"
assert PROVIDER_NAME_MAPPING["anthropic"] == "anthropic"
assert PROVIDER_NAME_MAPPING["gemini"] == "google"
assert PROVIDER_NAME_MAPPING["vertexai"] == "google"
assert PROVIDER_NAME_MAPPING["groq"] == "groq"
assert PROVIDER_NAME_MAPPING["ollama"] == "ollama"
assert PROVIDER_NAME_MAPPING["openai-codex"] == "openai"
assert PROVIDER_NAME_MAPPING["claude-code"] == "anthropic"
def test_truncate_content_short():
"""Test that short content is not truncated."""
content = "This is a short message"
result = _truncate_content(content)
assert result == content
def test_truncate_content_long():
"""Test that long content is truncated."""
content = "x" * 150000 # Exceeds MAX_CONTENT_LENGTH
result = _truncate_content(content)
assert len(result) < len(content)
assert "[TRUNCATED:" in result
assert result.startswith("x" * 100)
def test_noop_span_recorder():
"""Test that NoOpLLMSpanRecorder doesn't raise errors."""
recorder = NoOpLLMSpanRecorder()
# Should not raise any errors
recorder.record_llm_call(
provider="openai",
model="gpt-4",
scope="test",
messages=[{"role": "user", "content": "test"}],
response_content="test response",
input_tokens=10,
output_tokens=5,
duration=1.0,
)
def test_llm_span_recorder_format_messages():
"""Test message formatting to GenAI convention."""
mock_tracer = MagicMock()
recorder = LLMSpanRecorder(mock_tracer)
messages = [
{"role": "system", "content": "You are helpful"},
{"role": "user", "content": "Hello"},
]
result = recorder._format_messages(messages)
parsed = json.loads(result)
assert len(parsed) == 2
assert parsed[0]["role"] == "system"
assert parsed[0]["content"] == "You are helpful"
assert parsed[1]["role"] == "user"
assert parsed[1]["content"] == "Hello"
def test_llm_span_recorder_format_output():
"""Test output formatting to GenAI convention."""
mock_tracer = MagicMock()
recorder = LLMSpanRecorder(mock_tracer)
result = recorder._format_output("Hello world", "stop")
parsed = json.loads(result)
assert len(parsed) == 1
assert parsed[0]["role"] == "assistant"
assert parsed[0]["content"] == "Hello world"
def test_llm_span_recorder_format_output_none():
"""Test output formatting with None content."""
mock_tracer = MagicMock()
recorder = LLMSpanRecorder(mock_tracer)
result = recorder._format_output(None, None)
parsed = json.loads(result)
assert parsed == []
def test_llm_span_recorder_extract_system_instructions():
"""Test system instruction extraction."""
mock_tracer = MagicMock()
recorder = LLMSpanRecorder(mock_tracer)
messages = [
{"role": "system", "content": "You are helpful"},
{"role": "user", "content": "Hello"},
]
result = recorder._extract_system_instructions(messages)
assert result == "You are helpful"
def test_llm_span_recorder_extract_system_instructions_none():
"""Test system instruction extraction with no system message."""
mock_tracer = MagicMock()
recorder = LLMSpanRecorder(mock_tracer)
messages = [
{"role": "user", "content": "Hello"},
]
result = recorder._extract_system_instructions(messages)
assert result is None
@patch("hindsight_api.tracing.time")
def test_llm_span_recorder_record_success(mock_time):
"""Test successful LLM call recording."""
# Mock time
mock_time.time_ns.return_value = 1000000000000 # 1 second in nanoseconds
# Create mock tracer and span
mock_span = MagicMock()
mock_tracer = MagicMock()
mock_tracer.start_as_current_span.return_value.__enter__.return_value = mock_span
recorder = LLMSpanRecorder(mock_tracer)
messages = [{"role": "user", "content": "Hello"}]
response_content = "Hi there!"
recorder.record_llm_call(
provider="openai",
model="gpt-4",
scope="test",
messages=messages,
response_content=response_content,
input_tokens=10,
output_tokens=5,
duration=1.5,
finish_reason="stop",
error=None,
)
# Verify span was created with correct name (hindsight.{scope})
mock_tracer.start_as_current_span.assert_called_once()
call_args = mock_tracer.start_as_current_span.call_args
assert call_args[0][0] == "hindsight.test"
# Verify attributes were set
assert mock_span.set_attribute.called
attribute_calls = {call[0][0]: call[0][1] for call in mock_span.set_attribute.call_args_list}
assert attribute_calls[GenAIAttributes.OPERATION_NAME] == "chat"
assert attribute_calls[GenAIAttributes.PROVIDER_NAME] == "openai"
assert attribute_calls[GenAIAttributes.REQUEST_MODEL] == "gpt-4"
assert attribute_calls[GenAIAttributes.RESPONSE_MODEL] == "gpt-4"
assert attribute_calls[GenAIAttributes.USAGE_INPUT_TOKENS] == 10
assert attribute_calls[GenAIAttributes.USAGE_OUTPUT_TOKENS] == 5
assert attribute_calls["hindsight.scope"] == "test"
# Verify event was added
mock_span.add_event.assert_called_once()
event_call = mock_span.add_event.call_args
assert event_call[0][0] == "gen_ai.client.inference.operation.details"
# Verify status was set to OK
mock_span.set_status.assert_called()
# Verify span was ended
mock_span.end.assert_called_once()
@patch("hindsight_api.tracing.time")
def test_llm_span_recorder_record_error(mock_time):
"""Test error LLM call recording."""
# Mock time
mock_time.time_ns.return_value = 1000000000000
# Create mock tracer and span
mock_span = MagicMock()
mock_tracer = MagicMock()
mock_tracer.start_as_current_span.return_value.__enter__.return_value = mock_span
recorder = LLMSpanRecorder(mock_tracer)
messages = [{"role": "user", "content": "Hello"}]
error = ValueError("Test error")
recorder.record_llm_call(
provider="anthropic",
model="claude-3",
scope="test",
messages=messages,
response_content=None,
input_tokens=10,
output_tokens=0,
duration=0.5,
finish_reason=None,
error=error,
)
# Verify error status was set
mock_span.set_status.assert_called()
status_call = mock_span.set_status.call_args[0][0]
assert status_call.status_code.name == "ERROR"
# Verify error type attribute was set
attribute_calls = {call[0][0]: call[0][1] for call in mock_span.set_attribute.call_args_list}
assert attribute_calls[GenAIAttributes.ERROR_TYPE] == "ValueError"
# Verify exception was recorded
mock_span.record_exception.assert_called_once_with(error)
@patch("hindsight_api.tracing.time")
def test_llm_span_recorder_provider_mapping(mock_time):
"""Test that provider names are mapped correctly."""
mock_time.time_ns.return_value = 1000000000000
mock_span = MagicMock()
mock_tracer = MagicMock()
mock_tracer.start_as_current_span.return_value.__enter__.return_value = mock_span
recorder = LLMSpanRecorder(mock_tracer)
# Test gemini -> google mapping
recorder.record_llm_call(
provider="gemini",
model="gemini-pro",
scope="test",
messages=[{"role": "user", "content": "test"}],
response_content="test",
input_tokens=5,
output_tokens=3,
duration=1.0,
)
attribute_calls = {call[0][0]: call[0][1] for call in mock_span.set_attribute.call_args_list}
assert attribute_calls[GenAIAttributes.PROVIDER_NAME] == "google"
# ==================== Parent Span Tests ====================
def test_create_operation_span_disabled():
"""Test that create_operation_span returns no-op when tracing is disabled."""
# Tracing should be disabled by default
assert not is_tracing_enabled()
# Should return a no-op context manager
span = create_operation_span("test_operation", "test_bank_id")
# Should be usable as context manager without errors
with span:
pass
@patch("hindsight_api.tracing._tracer")
@patch("hindsight_api.tracing._tracing_enabled", True)
def test_create_operation_span_enabled(mock_tracer):
"""Test that create_operation_span creates a span when tracing is enabled."""
# Mock the tracer
mock_span = MagicMock()
mock_tracer.start_as_current_span.return_value = mock_span
# Create operation span
span = create_operation_span("retain", "bank123")
# Verify span was created with correct name
mock_tracer.start_as_current_span.assert_called_once_with("hindsight.retain")
# Verify attributes were set
mock_span.set_attribute.assert_any_call("hindsight.operation", "retain")
mock_span.set_attribute.assert_any_call("hindsight.bank_id", "bank123")
@patch("hindsight_api.tracing._tracer")
@patch("hindsight_api.tracing._tracing_enabled", True)
def test_create_operation_span_no_bank_id(mock_tracer):
"""Test that create_operation_span works without bank_id."""
mock_span = MagicMock()
mock_tracer.start_as_current_span.return_value = mock_span
# Create operation span without bank_id
span = create_operation_span("consolidation")
# Verify span was created
mock_tracer.start_as_current_span.assert_called_once_with("hindsight.consolidation")
# Verify only operation attribute was set (not bank_id)
assert mock_span.set_attribute.call_count == 1
mock_span.set_attribute.assert_called_once_with("hindsight.operation", "consolidation")
@patch("hindsight_api.tracing._tracer")
@patch("hindsight_api.tracing._tracing_enabled", True)
def test_create_operation_span_all_operations(mock_tracer):
"""Test that all 4 operations can create parent spans."""
mock_span = MagicMock()
mock_tracer.start_as_current_span.return_value = mock_span
operations = ["retain", "consolidation", "reflect", "mental_model_refresh"]
for operation in operations:
mock_tracer.reset_mock()
mock_span.reset_mock()
span = create_operation_span(operation, "test_bank")
# Verify span was created with correct name
mock_tracer.start_as_current_span.assert_called_once_with(f"hindsight.{operation}")
# Verify attributes
mock_span.set_attribute.assert_any_call("hindsight.operation", operation)
mock_span.set_attribute.assert_any_call("hindsight.bank_id", "test_bank")
@patch("hindsight_api.tracing.time")
@patch("hindsight_api.tracing._tracer")
@patch("hindsight_api.tracing._tracing_enabled", True)
def test_parent_child_span_hierarchy(mock_tracer, mock_time):
"""Test that child LLM spans are created under parent operation spans."""
mock_time.time_ns.return_value = 1000000000000
# Create mock parent span
mock_parent_span = MagicMock()
mock_parent_span.__enter__ = MagicMock(return_value=mock_parent_span)
mock_parent_span.__exit__ = MagicMock(return_value=False)
# Create mock child span
mock_child_span = MagicMock()
# Mock tracer to return parent span first, then child span
mock_tracer.start_as_current_span.side_effect = [
mock_parent_span, # Parent span
MagicMock(__enter__=MagicMock(return_value=mock_child_span), __exit__=MagicMock(return_value=False)), # Child
]
# Create parent operation span
with create_operation_span("retain", "bank123"):
# Simulate creating a child LLM span
recorder = LLMSpanRecorder(mock_tracer)
recorder.record_llm_call(
provider="openai",
model="gpt-4",
scope="retain_extract_facts",
messages=[{"role": "user", "content": "test"}],
response_content="response",
input_tokens=10,
output_tokens=5,
duration=1.0,
)
# Verify both parent and child spans were created
assert mock_tracer.start_as_current_span.call_count == 2
# Verify parent span was created first
first_call = mock_tracer.start_as_current_span.call_args_list[0]
assert first_call[0][0] == "hindsight.retain"
# Verify child span was created second (hindsight.{scope})
second_call = mock_tracer.start_as_current_span.call_args_list[1]
assert second_call[0][0] == "hindsight.retain_extract_facts"
@patch("hindsight_api.tracing._tracer")
@patch("hindsight_api.tracing._tracing_enabled", True)
def test_operation_span_context_manager(mock_tracer):
"""Test that operation spans work as context managers."""
mock_span = MagicMock()
mock_span.__enter__ = MagicMock(return_value=mock_span)
mock_span.__exit__ = MagicMock(return_value=False)
mock_tracer.start_as_current_span.return_value = mock_span
# Use span as context manager
with create_operation_span("reflect", "bank456"):
# Do some work
pass
# Verify span lifecycle
mock_tracer.start_as_current_span.assert_called_once()
mock_span.__enter__.assert_called_once()
mock_span.__exit__.assert_called_once()
@@ -1,196 +0,0 @@
"""
Integration tests for OpenTelemetry tracing with memory engine operations.
Tests that parent spans are correctly created for retain, consolidation, reflect,
and mental_model_refresh operations.
"""
from datetime import datetime, timezone
from unittest.mock import MagicMock, patch
import pytest
@pytest.mark.asyncio
@patch("hindsight_api.engine.memory_engine.create_operation_span")
async def test_retain_creates_parent_span(mock_create_span, memory, request_context):
"""Test that retain operation creates a parent span."""
# Setup
mock_span = MagicMock()
mock_span.__enter__ = MagicMock(return_value=mock_span)
mock_span.__exit__ = MagicMock(return_value=False)
mock_create_span.return_value = mock_span
bank_id = f"test-retain-{datetime.now(timezone.utc).timestamp()}"
try:
# Execute retain (automatically creates bank if needed)
await memory.retain_async(
bank_id=bank_id,
content="Test memory for tracing",
context="Test context",
request_context=request_context,
)
# Verify parent span was created
mock_create_span.assert_called()
call_args = mock_create_span.call_args
assert call_args[0][0] == "retain" # operation name
assert call_args[0][1] == bank_id # bank_id
# Verify span was used as context manager
mock_span.__enter__.assert_called()
mock_span.__exit__.assert_called()
finally:
# Cleanup
await memory.delete_bank(bank_id, request_context=request_context)
@pytest.mark.asyncio
@patch("hindsight_api.engine.memory_engine.create_operation_span")
async def test_consolidation_creates_parent_span(mock_create_span, memory, request_context):
"""Test that consolidation operation creates a parent span."""
# Setup
mock_span = MagicMock()
mock_span.__enter__ = MagicMock(return_value=mock_span)
mock_span.__exit__ = MagicMock(return_value=False)
mock_create_span.return_value = mock_span
bank_id = f"test-consolidation-{datetime.now(timezone.utc).timestamp()}"
try:
# Execute consolidation (bank will be created automatically)
await memory.run_consolidation(
bank_id=bank_id,
request_context=request_context,
)
# Verify parent span was created
mock_create_span.assert_called()
call_args = mock_create_span.call_args
assert call_args[0][0] == "consolidation"
assert call_args[0][1] == bank_id
# Verify span was used as context manager
mock_span.__enter__.assert_called()
mock_span.__exit__.assert_called()
finally:
# Cleanup
await memory.delete_bank(bank_id, request_context=request_context)
@pytest.mark.asyncio
@patch("hindsight_api.engine.memory_engine.create_operation_span")
async def test_reflect_creates_parent_span(mock_create_span, memory, request_context):
"""Test that reflect operation creates a parent span."""
# Setup
mock_span = MagicMock()
mock_span.__enter__ = MagicMock(return_value=mock_span)
mock_span.__exit__ = MagicMock(return_value=False)
mock_create_span.return_value = mock_span
bank_id = f"test-reflect-{datetime.now(timezone.utc).timestamp()}"
try:
# Add some memories first
await memory.retain_async(
bank_id=bank_id,
content="Paris is the capital of France",
context="Geography fact",
request_context=request_context,
)
# Reset mock to clear retain call
mock_create_span.reset_mock()
# Execute reflect
await memory.reflect_async(
bank_id=bank_id,
query="What is the capital of France?",
request_context=request_context,
)
# Verify parent span was created
mock_create_span.assert_called()
call_args = mock_create_span.call_args
assert call_args[0][0] == "reflect"
assert call_args[0][1] == bank_id
# Verify span was used as context manager
mock_span.__enter__.assert_called()
mock_span.__exit__.assert_called()
finally:
# Cleanup
await memory.delete_bank(bank_id, request_context=request_context)
@pytest.mark.asyncio
@patch("hindsight_api.engine.memory_engine.create_operation_span")
async def test_retain_batch_creates_single_parent_span(mock_create_span, memory, request_context):
"""Test that batch retain creates one parent span for the entire batch."""
# Setup
mock_span = MagicMock()
mock_span.__enter__ = MagicMock(return_value=mock_span)
mock_span.__exit__ = MagicMock(return_value=False)
mock_create_span.return_value = mock_span
bank_id = f"test-batch-{datetime.now(timezone.utc).timestamp()}"
try:
# Execute batch retain with multiple items
await memory.retain_batch_async(
bank_id=bank_id,
contents=[
{"content": "Memory 1", "context": "Context 1"},
{"content": "Memory 2", "context": "Context 2"},
{"content": "Memory 3", "context": "Context 3"},
],
request_context=request_context,
)
# Verify parent span was created only once for the entire batch
assert mock_create_span.call_count == 1
call_args = mock_create_span.call_args
assert call_args[0][0] == "retain"
assert call_args[0][1] == bank_id
finally:
# Cleanup
await memory.delete_bank(bank_id, request_context=request_context)
@pytest.mark.asyncio
@patch("hindsight_api.tracing._tracing_enabled", False)
@patch("hindsight_api.engine.memory_engine.create_operation_span")
async def test_operations_work_when_tracing_disabled(mock_create_span, memory, request_context):
"""Test that operations work correctly when tracing is disabled."""
# Setup - create_operation_span should return a no-op context manager
from contextlib import nullcontext
mock_create_span.return_value = nullcontext()
bank_id = f"test-no-trace-{datetime.now(timezone.utc).timestamp()}"
try:
# All operations should work without errors
await memory.retain_async(
bank_id=bank_id,
content="Test memory",
request_context=request_context,
)
await memory.run_consolidation(
bank_id=bank_id,
request_context=request_context,
)
await memory.reflect_async(
bank_id=bank_id,
query="Test query",
request_context=request_context,
)
# Verify no errors occurred and spans were attempted to be created
assert mock_create_span.call_count >= 3
finally:
# Cleanup
await memory.delete_bank(bank_id, request_context=request_context)
@@ -1,273 +0,0 @@
"""
Comprehensive tracing span verification tests.
Verifies that all memory engine operations create correct parent and child spans
with proper attributes and hierarchy.
"""
from datetime import datetime, timezone
from unittest.mock import MagicMock, patch
import pytest
@pytest.mark.asyncio
@pytest.mark.skip(reason="Background consolidation causes StopIteration - need to investigate separately")
@patch("hindsight_api.tracing._tracing_enabled", True)
@patch("hindsight_api.tracing._tracer")
async def test_recall_span_hierarchy(mock_tracer, memory, request_context):
"""Test that recall creates proper parent and child spans."""
# Setup mock spans
mock_recall_span = MagicMock()
mock_recall_span.__enter__ = MagicMock(return_value=mock_recall_span)
mock_recall_span.__exit__ = MagicMock(return_value=False)
mock_embedding_span = MagicMock()
mock_retrieval_span = MagicMock()
mock_fusion_span = MagicMock()
mock_rerank_span = MagicMock()
# Mock tracer to return spans in sequence
mock_tracer.start_as_current_span.side_effect = [mock_recall_span]
mock_tracer.start_span.side_effect = [
mock_embedding_span,
mock_retrieval_span,
mock_fusion_span,
mock_rerank_span,
]
bank_id = f"test-recall-{datetime.now(timezone.utc).timestamp()}"
try:
# Add some memories first
await memory.retain_async(
bank_id=bank_id,
content="Paris is the capital of France",
request_context=request_context,
)
# Wait a bit for any background tasks to settle
import asyncio
await asyncio.sleep(0.5)
# Reset mocks after retain
mock_tracer.reset_mock()
mock_recall_span.reset_mock()
# Execute recall
await memory.recall_async(
bank_id=bank_id,
query="What is the capital of France?",
request_context=request_context,
)
# Verify parent span was created with start_as_current_span
assert mock_tracer.start_as_current_span.called
parent_call = mock_tracer.start_as_current_span.call_args
assert parent_call[0][0] == "hindsight.recall"
# Verify parent span attributes were set
recall_attrs = {call[0][0]: call[0][1] for call in mock_recall_span.set_attribute.call_args_list}
assert "hindsight.bank_id" in recall_attrs
assert recall_attrs["hindsight.bank_id"] == bank_id
assert "hindsight.query" in recall_attrs
assert "hindsight.fact_types" in recall_attrs
assert "hindsight.thinking_budget" in recall_attrs
assert "hindsight.max_tokens" in recall_attrs
# Verify child spans were created (if tracing is enabled)
if mock_tracer.start_span.called:
child_spans = [call[0][0] for call in mock_tracer.start_span.call_args_list]
assert "hindsight.recall_embedding" in child_spans
assert "hindsight.recall_retrieval" in child_spans
assert "hindsight.recall_fusion" in child_spans
assert "hindsight.recall_rerank" in child_spans
finally:
# Cleanup
await memory.delete_bank(bank_id, request_context=request_context)
@pytest.mark.asyncio
async def test_mental_model_refresh_span_exists(memory, request_context):
"""Test that mental model refresh functionality exists (span creation tested via unit tests)."""
# This test verifies that refresh_mental_model method exists and can be called
# The actual span creation is tested in unit tests with proper mocking
bank_id = f"test-mmr-{datetime.now(timezone.utc).timestamp()}"
try:
# Just verify the method exists - it will return None if no mental model found
result = await memory.refresh_mental_model(
bank_id=bank_id,
mental_model_id="non-existent-id",
request_context=request_context,
)
# Result will be None since mental model doesn't exist
assert result is None
finally:
# Cleanup
try:
await memory.delete_bank(bank_id, request_context=request_context)
except Exception:
pass
@pytest.mark.asyncio
async def test_consolidation_child_spans(memory, request_context):
"""Test that consolidation creates child spans for its operations."""
bank_id = f"test-cons-child-{datetime.now(timezone.utc).timestamp()}"
try:
# Add memories to consolidate
await memory.retain_async(
bank_id=bank_id,
content="The Eiffel Tower is in Paris",
request_context=request_context,
)
await memory.retain_async(
bank_id=bank_id,
content="Paris is the capital of France",
request_context=request_context,
)
# Run consolidation (this will create parent + child spans)
await memory.run_consolidation(
bank_id=bank_id,
request_context=request_context,
)
# Note: We can't easily verify the child spans without mocking the tracer,
# but we can verify that consolidation completes successfully
# The actual span creation is tested in unit tests
finally:
# Cleanup
await memory.delete_bank(bank_id, request_context=request_context)
@pytest.mark.asyncio
async def test_reflect_tool_call_spans(memory, request_context):
"""Test that reflect creates tool call spans (not reflect_generation)."""
bank_id = f"test-reflect-tools-{datetime.now(timezone.utc).timestamp()}"
try:
# Add some memories
await memory.retain_async(
bank_id=bank_id,
content="Machine learning is a subset of AI",
request_context=request_context,
)
# Execute reflect (will create reflect_tool_call spans)
result = await memory.reflect_async(
bank_id=bank_id,
query="What is machine learning?",
request_context=request_context,
)
# Verify reflect completed successfully
assert result.text
assert len(result.text) > 0
# The span names are verified via unit tests with mocked tracers
# This integration test ensures the operation completes successfully
finally:
# Cleanup
await memory.delete_bank(bank_id, request_context=request_context)
@pytest.mark.asyncio
async def test_all_operations_create_spans(memory, request_context):
"""Comprehensive test that all operations create their respective spans."""
bank_id = f"test-all-ops-{datetime.now(timezone.utc).timestamp()}"
try:
# 1. Retain operation
await memory.retain_async(
bank_id=bank_id,
content="Test memory for comprehensive span test",
request_context=request_context,
)
# 2. Recall operation
await memory.recall_async(
bank_id=bank_id,
query="test memory",
request_context=request_context,
)
# 3. Reflect operation
await memory.reflect_async(
bank_id=bank_id,
query="What can you tell me about the test?",
request_context=request_context,
)
# 4. Consolidation operation
await memory.run_consolidation(
bank_id=bank_id,
request_context=request_context,
)
# All operations completed successfully
# Span hierarchy verification is done in unit tests with mocked tracers
finally:
# Cleanup
await memory.delete_bank(bank_id, request_context=request_context)
@pytest.mark.asyncio
@patch("hindsight_api.tracing._tracing_enabled", True)
@patch("hindsight_api.tracing._tracer")
async def test_recall_span_attributes(mock_tracer, memory, request_context):
"""Verify that recall spans have all required attributes."""
# Setup mock span
mock_span = MagicMock()
mock_span.__enter__ = MagicMock(return_value=mock_span)
mock_span.__exit__ = MagicMock(return_value=False)
mock_tracer.start_as_current_span.return_value = mock_span
bank_id = f"test-attrs-{datetime.now(timezone.utc).timestamp()}"
try:
# Add memory
await memory.retain_async(
bank_id=bank_id,
content="Test content for attributes",
request_context=request_context,
)
# Reset mock
mock_span.reset_mock()
# Execute recall with specific parameters
await memory.recall_async(
bank_id=bank_id,
query="test query for attributes",
fact_type=["world", "experience"],
max_tokens=2048,
request_context=request_context,
)
# Collect all attributes set on the span
attrs = {call[0][0]: call[0][1] for call in mock_span.set_attribute.call_args_list}
# Verify required attributes
assert "hindsight.bank_id" in attrs
assert "hindsight.query" in attrs
assert "hindsight.fact_types" in attrs
assert "hindsight.max_tokens" in attrs
assert "hindsight.thinking_budget" in attrs
# Verify attribute values
assert attrs["hindsight.bank_id"] == bank_id
assert "test query" in attrs["hindsight.query"]
assert attrs["hindsight.max_tokens"] == 2048
finally:
# Cleanup
await memory.delete_bank(bank_id, request_context=request_context)
+1 -1
View File
@@ -1,6 +1,6 @@
[package]
name = "hindsight-cli"
version = "0.4.10"
version = "0.4.6"
edition = "2021"
authors = ["Hindsight Team"]
description = "A beautiful CLI for Hindsight - semantic memory system"
@@ -98,7 +98,6 @@ pub fn create(
bank_id: &str,
name: &str,
source_query: &str,
id: Option<&str>,
verbose: bool,
output_format: OutputFormat,
) -> Result<()> {
@@ -109,7 +108,6 @@ pub fn create(
};
let request = types::CreateMentalModelRequest {
id: id.map(|s| s.to_string()),
name: name.to_string(),
source_query: source_query.to_string(),
max_tokens: 2048,
+2 -6
View File
@@ -596,10 +596,6 @@ enum MentalModelCommands {
/// Source query to generate the mental model from
source_query: String,
/// Optional custom ID for the mental model (alphanumeric lowercase with hyphens)
#[arg(long)]
id: Option<String>,
},
/// Update a mental model
@@ -867,8 +863,8 @@ fn run() -> Result<()> {
MentalModelCommands::Get { bank_id, mental_model_id } => {
commands::mental_model::get(&client, &bank_id, &mental_model_id, verbose, output_format)
}
MentalModelCommands::Create { bank_id, name, source_query, id } => {
commands::mental_model::create(&client, &bank_id, &name, &source_query, id.as_deref(), verbose, output_format)
MentalModelCommands::Create { bank_id, name, source_query } => {
commands::mental_model::create(&client, &bank_id, &name, &source_query, verbose, output_format)
}
MentalModelCommands::Update { bank_id, mental_model_id, name } => {
commands::mental_model::update(&client, &bank_id, &mental_model_id, name, verbose, output_format)
@@ -7,7 +7,7 @@
HTTP API for Hindsight
The version of the OpenAPI document: 0.4.10
The version of the OpenAPI document: 0.4.6
Generated by OpenAPI Generator (https://openapi-generator.tech)
Do not edit the class manually.
@@ -5,7 +5,7 @@
HTTP API for Hindsight
The version of the OpenAPI document: 0.4.10
The version of the OpenAPI document: 0.4.6
Generated by OpenAPI Generator (https://openapi-generator.tech)
Do not edit the class manually.
@@ -5,7 +5,7 @@
HTTP API for Hindsight
The version of the OpenAPI document: 0.4.10
The version of the OpenAPI document: 0.4.6
Generated by OpenAPI Generator (https://openapi-generator.tech)
Do not edit the class manually.
@@ -5,7 +5,7 @@
HTTP API for Hindsight
The version of the OpenAPI document: 0.4.10
The version of the OpenAPI document: 0.4.6
Generated by OpenAPI Generator (https://openapi-generator.tech)
Do not edit the class manually.
@@ -5,7 +5,7 @@
HTTP API for Hindsight
The version of the OpenAPI document: 0.4.10
The version of the OpenAPI document: 0.4.6
Generated by OpenAPI Generator (https://openapi-generator.tech)
Do not edit the class manually.
@@ -5,7 +5,7 @@
HTTP API for Hindsight
The version of the OpenAPI document: 0.4.10
The version of the OpenAPI document: 0.4.6
Generated by OpenAPI Generator (https://openapi-generator.tech)
Do not edit the class manually.
@@ -5,7 +5,7 @@
HTTP API for Hindsight
The version of the OpenAPI document: 0.4.10
The version of the OpenAPI document: 0.4.6
Generated by OpenAPI Generator (https://openapi-generator.tech)
Do not edit the class manually.
@@ -5,7 +5,7 @@
HTTP API for Hindsight
The version of the OpenAPI document: 0.4.10
The version of the OpenAPI document: 0.4.6
Generated by OpenAPI Generator (https://openapi-generator.tech)
Do not edit the class manually.
@@ -5,7 +5,7 @@
HTTP API for Hindsight
The version of the OpenAPI document: 0.4.10
The version of the OpenAPI document: 0.4.6
Generated by OpenAPI Generator (https://openapi-generator.tech)
Do not edit the class manually.
@@ -5,7 +5,7 @@
HTTP API for Hindsight
The version of the OpenAPI document: 0.4.10
The version of the OpenAPI document: 0.4.6
Generated by OpenAPI Generator (https://openapi-generator.tech)
Do not edit the class manually.

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