Skip to main content

WebCortex

pip install web-cortex-framework

Installs as web-cortex-framework, imports as webcortex — the same split as djangorestframework → import rest_framework.

Python 3.12, 3.13 and 3.14, including the free-threaded build (3.14t), which is the fast path for Python-backed routes.

📖 Documentation · Tutorial · Orchestration · Token economy · Security

A Python web framework with a Rust core, built on one idea:

If you declared it, Rust can run it — and an agent can call it.

Django and Rails were designed when the only client was a browser and the only author was a person. Today the client is just as likely to be a model, and so is the author. WebCortex treats both as the primary case: every declaration is simultaneously a REST route, an OpenAPI operation and an MCP tool; agents, behaviours and flows are first-class and compose; and the whole application can describe itself to the model that is writing it.

# api.py
from webcortex import WebCortex

app = WebCortex("bookstore", database="sqlite://./app.db")

app.api_key("WEBCORTEX_API_KEY", id="service", scopes=["read", "write"])
app.rate_limit(per_second=50)
app.anonymous_scopes("read")

app.resource(
    "books",
    fields={"id": int, "title": str, "author": str, "year": int},
    tools=True,
    read_scopes=["read"],
    write_scopes=["write"],
)

@app.get("/books/{id}/blurb", tool=True, scopes=["read"])
def blurb(id: int) -> str:
    """One-line pitch for a book."""
    return f"Book {id} — highly recommended."
$ webcortex dev

You now have a REST API, an OpenAPI 3.1 document, a live MCP server exposing all six endpoints as tools, authentication, rate limiting, and security headers. No second file, no schema written twice, no drift.

Twenty more lines make it a multi-agent system:

app.models(default="claude-opus-5", fast="ollama/qwen3.5:9b")   # tiers, not models

app.context("policy", data={"max_discount": 0.2})              # what agents know at step one
notes = app.memory("notes", scopes=["read"])                     # a durable, per-user scratchpad

app.agent("librarian", description="Finds and pitches books.",
          tools=["list_books", "get_books_by_id_blurb"], context=["policy"],
          memory="notes", scopes=["read"], token_budget=60_000)

app.agent("front_desk", handoffs=["librarian"], scopes=["read"],
          context_window=40_000, expose_at="/ask")             # hands off; compacts

app.flow("pitch_all", parallel=["librarian", "librarian"])      # orchestration as data

Every one of those is a route, a tool, and an MCP entry. The front desk hands a conversation to the librarian; the librarian remembers what it learned about the caller; the whole run is bounded by one budget; and webcortex context prints the lot in a form a coding model can extend.


Start here

uv venv --python 3.13 && uv pip install web-cortex-framework

webcortex new myapp                # --template api | fullstack | agent | behaviour | orchestration
cd myapp
export WEBCORTEX_API_KEY=$(webcortex keygen)
webcortex dev

Why a Rust core, specifically

Most Rust-accelerated Python servers put Rust at the socket and call Python for every request. You get faster parsing; your handler is still interpreted.

WebCortex puts the boundary somewhere more useful. Python is a declaration language that compiles to a plan the Rust runtime executes. A route whose work is expressible as data — a query, a proxy, a rendered page, a static file, an agent invocation, a flow — runs entirely in Rust and never enters the interpreter at request time. In practice that is most of a CRUD API and all of an orchestration.

$ webcortex check
  19 routes, 17 served without touching Python

When a route genuinely needs Python, it crosses onto a pool of free-threaded interpreter workers (free-threaded CPython 3.14, GIL disabled), each running its own event loop. Handlers run in real parallel — measured at 4.82× vs 1.38× under the GIL (DESIGN.md has the numbers and their caveats).

WebCortex runs correctly on a GIL build too, and tells you which mode it is in.

Behaviours

A "skill" written as a prompt is a suggestion. The model reads it and may ignore it, and "if X then Y" fails silently when it does.

A Behaviour inverts that. The control flow is real Python — a for loop is a loop, an if is a branch, and both execute whether or not a model would have chosen to. Only the leaves are probabilistic, and in v2 the leaves run concurrently:

@app.behaviour("triage", tools=["list_tickets", "update_tickets"],
               model="fast", max_steps=200, token_budget=100_000)
def triage(ctx, input):
    """Classify every open ticket at once and escalate the urgent ones."""
    tickets = [t for t in ctx.call("list_tickets", limit=50) if t["state"] == "open"]

    verdicts = ctx.ask_many(                                   # fifty model calls, one wait
        [f"Grade this ticket:\n{t['body']}" for t in tickets],
        schema={"type": "object",
                "properties": {"urgency": {"type": "integer"},
                               "category": {"enum": ["bug", "billing", "other"]}},
                "required": ["urgency", "category"]},
    )

    escalated = [t["id"] for t, v in zip(tickets, verdicts)     # a real branch
                 if v["urgency"] >= input.get("threshold", 7)]

    ctx.gather(*[                                                # fifty writes, one wait
        ("update_tickets", {"id": t["id"], "body": t["body"], "urgency": v["urgency"],
                            "state": "escalated" if t["id"] in escalated else "triaged"})
        for t, v in zip(tickets, verdicts)
    ])
    return {"escalated": escalated, "usage": ctx.usage}

You get a procedure with deterministic structure and probabilistic steps, rather than a probabilistic procedure.

ctx is how a behaviour reaches the world:

ctx.call(tool, **kwargs) invoke one of the app's tools, in-process
ctx.gather((tool, kwargs), ...) several tool calls, concurrently
ctx.ask(prompt, schema=..., model="fast") a model call; a schema forces the shape; the model may be a tier
ctx.ask_many([prompts], schema=...) the classification loop collapsed into one wait
ctx.context(name) a declared context provider, resolved on demand
ctx.log(msg) / ctx.halt(reason) narrate or stop deliberately
ctx.usage / ctx.trace budget consumed (this run and the whole tree) and every leaf executed
ctx.user / ctx.tools the delegated principal and what it may call

A behaviour is a tool. It registers as a route, so it is automatically an MCP tool, an OpenAPI operation, and something an agent — or another behaviour, or a flow — can call.

The runtime enforces the limits, not your diligence: max_steps caps leaf operations; token_budget caps spend for the run and everything it calls; a behaviour cannot call a tool it did not declare; an approval-gated tool cannot be laundered through a behaviour or a gather; scopes are delegated by intersection, never unioned.

Orchestration

One agent is a tool loop. Several are a system, and a system needs answers a loop never asks: who is in control, what may it do, how much may the whole thing cost, what happens when a human has to decide. Four primitives, all executed by the runtime:

Every agent is a tool. An agent is mounted at /agents/<name> (underscores become hyphens) and exposed under its own name, so app.agent("editor", tools=["researcher", "writer"]) is the entire supervisor/worker pattern. Workers run under a principal delegated from the supervisor's, one nesting level deeper, against the supervisor's budget.

Handoffs. app.agent("front_desk", handoffs=["billing", "technical"]) gives the front desk transfer_to_* tools. Calling one moves the conversation to the specialist — its system prompt, tools and context apply from the next step — while the budget and the caller's authority carry over. Authority can only shrink along a chain.

Flows: orchestration as data.

app.flow("briefing", pipeline=["researcher", "writer"], token_budget=150_000)
app.flow("review",   parallel=["security_review", "style_review"], merge="collect")
app.flow("desk",     route={"billing": "billing", "technical": "technical"},
                     default="front_desk", classify_with="fast")

Every step is a tool — an agent, a behaviour, another flow, a plain route — so composition is uniform, and a flow is itself a tool. Steps map arguments with {"tool": "x", "input": {"id": "$.id", "q": "$input.query"}}.

Sessions. Post {"input": "...", "session_id": "..."} and the conversation continues; the key includes the principal, so callers never see each other's history, and anonymous callers, who share one identity, cannot open one. Long sessions are compacted, not truncated.

Approvals that resume. A gated tool suspends the run; a human decides at POST /_webcortex/approvals/{id} with {"approve": true|false, "note": "..."}; the run continues — including the rest of the turn it was interrupted in. A denial is a tool error the model reads and reacts to.

Budgets compose. The outermost run's token_budget is shared by every agent, behaviour and flow it calls. usage.tree_tokens reports the total.

Token economy

The cost of an agent system is which model answers, how much context each call carries, and how many calls are made. Each has a declaration.

app.models(default="claude-opus-5", fast="claude-haiku-4-5-20251001",
           local="ollama/qwen3.5:9b")
app.provider("groq", base_url="https://api.groq.com/openai/v1", api_key_env="GROQ_API_KEY")
app.pricing("claude-opus-5", input_per_mtok=5, output_per_mtok=25)
  • Tiers, not models. Judgement uses default; classification, extraction and routing use fast. Moving a workload to a cheaper or local model is one edit.
  • Two wire formats, chosen by prefix. Anthropic Messages and OpenAI Chat Completions — which is what Ollama, vLLM, LM Studio, Groq and OpenRouter all speak. ollama/qwen3.5:9b needs no key. Deliberately not a universal LLM abstraction.
  • Prompt caching on by default: the system prompt, context and tool definitions are cached across the steps of a run.
  • Bounded context. tool_result_limit caps what the model sees of any tool result; context_window compacts older turns with the fast model when the measured input exceeds it.
  • A ledger. GET /_webcortex/usage reports tokens by agent, behaviour, flow and model, and dollars where you declared prices — null, not zero, where you did not.

Context and memory

app.context("policy", data={"refund_days": 30})
app.context("open_queue", sql="SELECT id, kind FROM tickets WHERE state='open' LIMIT 20")
app.context("my_orders", sql="SELECT * FROM orders WHERE customer = ?", params=["@principal"])

@app.context("account")
def account(req) -> dict: ...

notes = app.memory("notes", read_scopes=["read"], write_scopes=["write"])
app.agent("assistant", context=["policy", "my_orders"], memory="notes", ...)

A context provider is resolved when a run starts and injected into the system prompt, bounded by max_chars. @principal binds to the human behind however many agents deep the call is. A memory is four Rust-executed tools — remember, recall, search, forget — keyed by that same principal, so an agent writing on someone's behalf writes to that someone's memory and can never read another's.

The nine kinds of route

Kind Declared with Runs in
Static app.static(...) Rust
Query app.query(...), app.resource(...), app.memory(...) Rust
Page app.page(...) Rust (minijinja)
Files app.static_files(...) Rust
Proxy app.proxy(...) Rust
Agent app.agent(...) Rust
Flow app.flow(...) Rust
Behaviour @app.behaviour(...) Python worker pool
Python @app.get(...) Python worker pool

Every route is a tool

Mark a route tool=True and it appears in MCP tools/list, with an input schema derived from the handler's own type hints. Agents declared in the same app call those tools in-process — a function call through the same dispatcher the HTTP server uses, not a loopback request. A typo in tools, handoffs or context fails at boot with a "did you mean" suggestion.

What makes agents safe to deploy

Enforced by the runtime, not by your diligence:

Delegated authority. A run executes as caller.delegate_to_agent(...), whose scopes are intersected with the caller's — never unioned — and a handoff intersects again. An anonymous caller cannot launch a privileged agent.

Human approval gates. Mark a route approval="required" and an agent asking for it does not get it. An agent's run suspends until a human decides, then resumes with the rest of its turn. Every other path is refused: a direct MCP call is rejected, a behaviour (alone or in gather) halts, and a flow step fails. Resuming continues the agent that hit the gate, not a supervisor that called it, so give gated tools to the agents people call directly.

Runtime-enforced budgets that compose. max_steps per run; token_budget for the run and everything under it.

Scope-filtered tool lists. tools/list shows only what that caller can invoke.

A full audit trail, including refused calls, handoffs, compactions and approval decisions, at GET /_webcortex/audit.

Security defaults

Deny-by-default throughout; relaxing something costs a line, tightening it costs nothing. API keys are referenced by environment variable, hashed with SHA-256, and compared in constant time. JWT (HS/RS) with mandatory expiry validation. Per-principal token-bucket rate limiting. Security headers on every response. CORS that refuses * with credentials at boot. Path traversal, symlink escapes, and dotfiles refused by the static server. The control plane — including approvals, usage and models — requires webcortex:admin once any authentication is configured.

The frontend, without the mess

Two clean paths sharing one data layer, chosen per route: server-rendered pages executed in Rust (app.page("/", "index.html", sql=..., bind="books")), where a template receives a data object and nothing else; and a typed TypeScript client for SPA frontends, generated from the same route table by webcortex typegen.

AI-native development

$ webcortex context                     # the app, described for a coding model
$ webcortex evolve "add reviews tied to books and a behaviour that summarises them" --model fast
$ webcortex check                       # boot-time validation, with hints

The context pack is the app's shape — routes, tools and schemas, agents, behaviours, flows, context, memory, models, security posture — derived from the manifest in a few thousand tokens, plus a cheat sheet of the framework's API. evolve feeds it to a model (with the app's own aliases, so --model fast can be a local Ollama model) and prints a proposal to review. The loop is describe → propose → check → run, and boot-time validation is what makes it safe to repeat.

AGENTS.md is the machine-facing reference for tools that edit this repository or write apps on it. scout/ is a local-model reviewer that leaves suggestions for the framework's own next iteration.

Commands

webcortex new <name>      scaffold a project (api | fullstack | agent | behaviour | orchestration)
webcortex dev             run with a startup report
webcortex check           routes, tools, agents, flows, and the public attack surface
webcortex security        what is reachable without a credential
webcortex tools           the agent tool manifest
webcortex context         the context pack, for an AI coding tool
webcortex evolve "…"      ask a model to propose an extension
webcortex typegen         generate a typed TypeScript client
webcortex openapi         the OpenAPI 3.1 document
webcortex sql             DDL for declared resources and memories
webcortex keygen          mint an API key

Security

WebCortex has been through an adversarial review of its own controls — auth, authorization, injection, traversal, SSRF, exhaustion, disclosure — plus stress and soak testing. Six issues were found and fixed, each with a regression test in tests/test_pentest.py:

Severity
Remote DoS + total auth failure via a JWT library panic Critical
No panic boundary on the request path High
Proxy path traversal usable as an SSRF primitive High
Unbounded behaviour recursion exhausting the worker pool High
Python tracebacks returned to clients Medium
Client input faults reported as 500s Low

Soak: 1,786,805 requests, 0 errors, 0 panics, memory at steady state.

SECURITY.md has the full report — including what was not tested, the known limits, and what v2 added to the surface.

Status

v2.0.0. Working and tested: the manifest IR, router, native ops (static / query / proxy / page / files / flow), the free-threaded Python bridge, authentication and scopes, rate limiting, CORS, security headers, graceful shutdown, Behaviours with concurrent leaves, the agent runtime with handoffs, sessions, resumable approval gates, composing budgets, tool-result bounding and compaction, context providers, memory, flows, two providers (Anthropic and OpenAI-compatible, which covers local models), prompt caching, the spend ledger, the audit trail, OpenAPI, the MCP server, TypeScript generation, the context pack and evolve. 355 tests (106 Rust, 249 Python, including a 54-test adversarial suite and an offline end-to-end suite that drives the whole agent stack over HTTP), clippy clean.

Not yet: Postgres, token-level SSE streaming, durable agent runs that survive a restart. See DESIGN.md for the roadmap, honest risk grading, and — just as importantly — what is deliberately not being built.

For AI coding tools

AGENTS.md is the machine-facing reference: the complete API surface with exact signatures and defaults, the binding and scope rules, the constraints the runtime enforces, and the specific mistakes that are cheap to make and expensive to debug. Claude Code, Cursor, Codex, Aider and Copilot Workspace all read it by convention.

It is written to be correct rather than welcoming. Humans should start with the docs site instead.

Building from source

uv venv --python 3.13
uv pip install maturin pytest
.venv/bin/maturin develop --uv
.venv/bin/python -m pytest tests/

The free-threaded build is also supported and is the configuration the bridge was designed around:

uv venv --python 3.14t

License

Apache-2.0

Metadata

Release files for web-cortex-framework 2.0.0

For a detailed explanation of source distributions (sdists) and built distributions (wheels), please see the package formats documentation.

Source distribution (sdist)

Source distribution for web-cortex-framework 2.0.0
File Size Uploaded
web_cortex_framework-2.0.0.tar.gz 182.3 kB Details

Built distributions (wheels)

Table of built distributions (wheels) for web-cortex-framework 2.0.0
File
web_cortex_framework-2.0.0-cp314-cp314t-win_amd64.whl CPython 3.14 CPython 3.14 free-threading Windows x86-64 Details
web_cortex_framework-2.0.0-cp314-cp314t-manylinux_2_17_x86_64.manylinux2014_x86_64.whl CPython 3.14 CPython 3.14 free-threading Linux glibc 2.17+ x86-64 Details
web_cortex_framework-2.0.0-cp314-cp314t-manylinux_2_17_aarch64.manylinux2014_aarch64.whl CPython 3.14 CPython 3.14 free-threading Linux glibc 2.17+ ARM64 Details
web_cortex_framework-2.0.0-cp314-cp314t-macosx_11_0_arm64.whl CPython 3.14 CPython 3.14 free-threading macOS 11.0+ ARM64 Details
web_cortex_framework-2.0.0-cp314-cp314t-macosx_10_12_x86_64.whl CPython 3.14 CPython 3.14 free-threading macOS 10.12+ x86-64 Details
web_cortex_framework-2.0.0-cp314-cp314-win_amd64.whl CPython 3.14 CPython 3.14 Windows x86-64 Details
web_cortex_framework-2.0.0-cp314-cp314-manylinux_2_17_x86_64.manylinux2014_x86_64.whl CPython 3.14 CPython 3.14 Linux glibc 2.17+ x86-64 Details
web_cortex_framework-2.0.0-cp314-cp314-manylinux_2_17_aarch64.manylinux2014_aarch64.whl CPython 3.14 CPython 3.14 Linux glibc 2.17+ ARM64 Details
web_cortex_framework-2.0.0-cp314-cp314-macosx_11_0_arm64.whl CPython 3.14 CPython 3.14 macOS 11.0+ ARM64 Details
web_cortex_framework-2.0.0-cp314-cp314-macosx_10_12_x86_64.whl CPython 3.14 CPython 3.14 macOS 10.12+ x86-64 Details
web_cortex_framework-2.0.0-cp313-cp313-win_amd64.whl CPython 3.13 CPython 3.13 Windows x86-64 Details
web_cortex_framework-2.0.0-cp313-cp313-manylinux_2_17_x86_64.manylinux2014_x86_64.whl CPython 3.13 CPython 3.13 Linux glibc 2.17+ x86-64 Details
web_cortex_framework-2.0.0-cp313-cp313-manylinux_2_17_aarch64.manylinux2014_aarch64.whl CPython 3.13 CPython 3.13 Linux glibc 2.17+ ARM64 Details
web_cortex_framework-2.0.0-cp313-cp313-macosx_11_0_arm64.whl CPython 3.13 CPython 3.13 macOS 11.0+ ARM64 Details
web_cortex_framework-2.0.0-cp313-cp313-macosx_10_12_x86_64.whl CPython 3.13 CPython 3.13 macOS 10.12+ x86-64 Details
web_cortex_framework-2.0.0-cp312-cp312-win_amd64.whl CPython 3.12 CPython 3.12 Windows x86-64 Details
web_cortex_framework-2.0.0-cp312-cp312-manylinux_2_17_x86_64.manylinux2014_x86_64.whl CPython 3.12 CPython 3.12 Linux glibc 2.17+ x86-64 Details
web_cortex_framework-2.0.0-cp312-cp312-manylinux_2_17_aarch64.manylinux2014_aarch64.whl CPython 3.12 CPython 3.12 Linux glibc 2.17+ ARM64 Details
web_cortex_framework-2.0.0-cp312-cp312-macosx_11_0_arm64.whl CPython 3.12 CPython 3.12 macOS 11.0+ ARM64 Details
web_cortex_framework-2.0.0-cp312-cp312-macosx_10_12_x86_64.whl CPython 3.12 CPython 3.12 macOS 10.12+ x86-64 Details

Total release size: 115.3 MB

Release files / web_cortex_framework-2.0.0.tar.gz

Download URL web_cortex_framework-2.0.0.tar.gz
Size 182.3 kB
Tags Source
SHA-256 checksum
How to use checksums
a04b1159676e83f024c025c8f925b29a11730523bde9cb9ff13035c08ecf71d2
BLAKE2b-256 checksum
How to use checksums
2011cdff85ee20b4409c315e6bd7daf1042df1db1ea1d0fe8d1dd4cf83ed657c
Upload date
Uploaded using Trusted Publishing?
What is trusted publishing?
Yes
Uploaded via twine/7.0.0 CPython/3.13.14

Provenance

Provenance describes where a file came from. On PyPI, provenance is shared via attestations, which provide a verifiable record of the build or publishing details. View details, limitations and caveats.

PyPI Publish Attestation

PyPI verified that this artifact, at this checksum, originated from the publisher listed below.

Signed by GitHub Actions, verified by PyPI on Sep 17, 2026.

Transparency log

Release files / web_cortex_framework-2.0.0-cp314-cp314t-win_amd64.whl

Download URL web_cortex_framework-2.0.0-cp314-cp314t-win_amd64.whl
Size 5.7 MB
Tags CPython 3.14 CPython 3.14 free-threading Windows x86-64
SHA-256 checksum
How to use checksums
e1605e9f1b5e601dd7f933e5feb2b4e2a8bba74b3e965b6dd95d92acfcb65dd3
BLAKE2b-256 checksum
How to use checksums
20dd8977623ade1b228b2b2ec87a03b127b52cdcc27d153093af2bd039f37e7b
Upload date
Uploaded using Trusted Publishing?
What is trusted publishing?
Yes
Uploaded via twine/7.0.0 CPython/3.13.14

Provenance

Provenance describes where a file came from. On PyPI, provenance is shared via attestations, which provide a verifiable record of the build or publishing details. View details, limitations and caveats.

PyPI Publish Attestation

PyPI verified that this artifact, at this checksum, originated from the publisher listed below.

Signed by GitHub Actions, verified by PyPI on Sep 17, 2026.

Transparency log

Release files / web_cortex_framework-2.0.0-cp314-cp314t-manylinux_2_17_x86_64.manylinux2014_x86_64.whl

Download URL web_cortex_framework-2.0.0-cp314-cp314t-manylinux_2_17_x86_64.manylinux2014_x86_64.whl
Size 6.0 MB
Tags CPython 3.14 CPython 3.14 free-threading Linux glibc 2.17+ x86-64
SHA-256 checksum
How to use checksums
cf77baf4d63edba51cc1995b248f978f50e8a83e07a7a754ab9637bd316a6dba
BLAKE2b-256 checksum
How to use checksums
df8542c06a15bf1418dd6c5817478a85d8498ebf41960fee338169c8a02c140d
Upload date
Uploaded using Trusted Publishing?
What is trusted publishing?
Yes
Uploaded via twine/7.0.0 CPython/3.13.14

Provenance

Provenance describes where a file came from. On PyPI, provenance is shared via attestations, which provide a verifiable record of the build or publishing details. View details, limitations and caveats.

PyPI Publish Attestation

PyPI verified that this artifact, at this checksum, originated from the publisher listed below.

Signed by GitHub Actions, verified by PyPI on Sep 17, 2026.

Transparency log

Release files / web_cortex_framework-2.0.0-cp314-cp314t-manylinux_2_17_aarch64.manylinux2014_aarch64.whl

Download URL web_cortex_framework-2.0.0-cp314-cp314t-manylinux_2_17_aarch64.manylinux2014_aarch64.whl
Size 5.9 MB
Tags CPython 3.14 CPython 3.14 free-threading Linux glibc 2.17+ ARM64
SHA-256 checksum
How to use checksums
c45cac5e335c435e84b3d26b9119d7dfa1f0538cf70358acb79eae19c1635e1c
BLAKE2b-256 checksum
How to use checksums
a80d80a326c162fa21340a55e1e3c47f765211a48857f9c23c9b4e824a8fa292
Upload date
Uploaded using Trusted Publishing?
What is trusted publishing?
Yes
Uploaded via twine/7.0.0 CPython/3.13.14

Provenance

Provenance describes where a file came from. On PyPI, provenance is shared via attestations, which provide a verifiable record of the build or publishing details. View details, limitations and caveats.

PyPI Publish Attestation

PyPI verified that this artifact, at this checksum, originated from the publisher listed below.

Signed by GitHub Actions, verified by PyPI on Sep 17, 2026.

Transparency log

Release files / web_cortex_framework-2.0.0-cp314-cp314t-macosx_11_0_arm64.whl

Download URL web_cortex_framework-2.0.0-cp314-cp314t-macosx_11_0_arm64.whl
Size 5.4 MB
Tags CPython 3.14 CPython 3.14 free-threading macOS 11.0+ ARM64
SHA-256 checksum
How to use checksums
b64aa51bb8a27ad4b90523b8c0335a5f8b01fe9233a8a89397c9ca86ac420b07
BLAKE2b-256 checksum
How to use checksums
33a6e93f12baca81c69225d3f958960bbf8ff5a539d2dd96a05f6ad74f122a71
Upload date
Uploaded using Trusted Publishing?
What is trusted publishing?
Yes
Uploaded via twine/7.0.0 CPython/3.13.14

Provenance

Provenance describes where a file came from. On PyPI, provenance is shared via attestations, which provide a verifiable record of the build or publishing details. View details, limitations and caveats.

PyPI Publish Attestation

PyPI verified that this artifact, at this checksum, originated from the publisher listed below.

Signed by GitHub Actions, verified by PyPI on Sep 17, 2026.

Transparency log

Release files / web_cortex_framework-2.0.0-cp314-cp314t-macosx_10_12_x86_64.whl

Download URL web_cortex_framework-2.0.0-cp314-cp314t-macosx_10_12_x86_64.whl
Size 5.8 MB
Tags CPython 3.14 CPython 3.14 free-threading macOS 10.12+ x86-64
SHA-256 checksum
How to use checksums
c15f77fd95c716c0499cb7975df1875d099d10bb6348df266ff110666fb42148
BLAKE2b-256 checksum
How to use checksums
771853b35d2e73b03a577d5aa1d23d78ffa1a30c70f1cd47adeb72b8502c1c46
Upload date
Uploaded using Trusted Publishing?
What is trusted publishing?
Yes
Uploaded via twine/7.0.0 CPython/3.13.14

Provenance

Provenance describes where a file came from. On PyPI, provenance is shared via attestations, which provide a verifiable record of the build or publishing details. View details, limitations and caveats.

PyPI Publish Attestation

PyPI verified that this artifact, at this checksum, originated from the publisher listed below.

Signed by GitHub Actions, verified by PyPI on Sep 17, 2026.

Transparency log

Release files / web_cortex_framework-2.0.0-cp314-cp314-win_amd64.whl

Download URL web_cortex_framework-2.0.0-cp314-cp314-win_amd64.whl
Size 5.7 MB
Tags CPython 3.14 Windows x86-64
SHA-256 checksum
How to use checksums
2a690827276f4fffca63b55fc5d9875c76f3877ebf8da37e3f1f12d1f4422415
BLAKE2b-256 checksum
How to use checksums
4874141b58d3355cfefad29ab342e64a0becc209bce6e5c6471ae46f9435094e
Upload date
Uploaded using Trusted Publishing?
What is trusted publishing?
Yes
Uploaded via twine/7.0.0 CPython/3.13.14

Provenance

Provenance describes where a file came from. On PyPI, provenance is shared via attestations, which provide a verifiable record of the build or publishing details. View details, limitations and caveats.

PyPI Publish Attestation

PyPI verified that this artifact, at this checksum, originated from the publisher listed below.

Signed by GitHub Actions, verified by PyPI on Sep 17, 2026.

Transparency log

Release files / web_cortex_framework-2.0.0-cp314-cp314-manylinux_2_17_x86_64.manylinux2014_x86_64.whl

Download URL web_cortex_framework-2.0.0-cp314-cp314-manylinux_2_17_x86_64.manylinux2014_x86_64.whl
Size 6.0 MB
Tags CPython 3.14 Linux glibc 2.17+ x86-64
SHA-256 checksum
How to use checksums
e3bc4d1cf091ac95ea2eeef01a2729593322275c76144e7ca0a1200f2b17f9c6
BLAKE2b-256 checksum
How to use checksums
850a8aa591b7ce8cb40a361a557fb4237eaf2f8affb74faecdd332ee7e95bfe8
Upload date
Uploaded using Trusted Publishing?
What is trusted publishing?
Yes
Uploaded via twine/7.0.0 CPython/3.13.14

Provenance

Provenance describes where a file came from. On PyPI, provenance is shared via attestations, which provide a verifiable record of the build or publishing details. View details, limitations and caveats.

PyPI Publish Attestation

PyPI verified that this artifact, at this checksum, originated from the publisher listed below.

Signed by GitHub Actions, verified by PyPI on Sep 17, 2026.

Transparency log

Release files / web_cortex_framework-2.0.0-cp314-cp314-manylinux_2_17_aarch64.manylinux2014_aarch64.whl

Download URL web_cortex_framework-2.0.0-cp314-cp314-manylinux_2_17_aarch64.manylinux2014_aarch64.whl
Size 5.9 MB
Tags CPython 3.14 Linux glibc 2.17+ ARM64
SHA-256 checksum
How to use checksums
a695546912df8deac89110019302adffb0990e6f26c3cc942e19729397a42dfb
BLAKE2b-256 checksum
How to use checksums
64f26c8dc88f8f2801a4e507e545affa726f5781d32d9a898a0aa5b369c5742d
Upload date
Uploaded using Trusted Publishing?
What is trusted publishing?
Yes
Uploaded via twine/7.0.0 CPython/3.13.14

Provenance

Provenance describes where a file came from. On PyPI, provenance is shared via attestations, which provide a verifiable record of the build or publishing details. View details, limitations and caveats.

PyPI Publish Attestation

PyPI verified that this artifact, at this checksum, originated from the publisher listed below.

Signed by GitHub Actions, verified by PyPI on Sep 17, 2026.

Transparency log

Release files / web_cortex_framework-2.0.0-cp314-cp314-macosx_11_0_arm64.whl

Download URL web_cortex_framework-2.0.0-cp314-cp314-macosx_11_0_arm64.whl
Size 5.4 MB
Tags CPython 3.14 macOS 11.0+ ARM64
SHA-256 checksum
How to use checksums
d666cbfc0b12fa50c3edfa3033b64463db713a035a91cdfc11dfb1989111a86b
BLAKE2b-256 checksum
How to use checksums
bd8a73874a59e4cc8404ff0ec406b1e6116853d5680dd3e90112a8f26a9abdf9
Upload date
Uploaded using Trusted Publishing?
What is trusted publishing?
Yes
Uploaded via twine/7.0.0 CPython/3.13.14

Provenance

Provenance describes where a file came from. On PyPI, provenance is shared via attestations, which provide a verifiable record of the build or publishing details. View details, limitations and caveats.

PyPI Publish Attestation

PyPI verified that this artifact, at this checksum, originated from the publisher listed below.

Signed by GitHub Actions, verified by PyPI on Sep 17, 2026.

Transparency log

Release files / web_cortex_framework-2.0.0-cp314-cp314-macosx_10_12_x86_64.whl

Download URL web_cortex_framework-2.0.0-cp314-cp314-macosx_10_12_x86_64.whl
Size 5.8 MB
Tags CPython 3.14 macOS 10.12+ x86-64
SHA-256 checksum
How to use checksums
4fca5b20f7f8dccf3508ec0989709ddb1bd43adec10346f682152b3e2ba77d10
BLAKE2b-256 checksum
How to use checksums
d826b0708c0909a17567bd2571e97eaedb5d4ff9aab45c0455004f3469843669
Upload date
Uploaded using Trusted Publishing?
What is trusted publishing?
Yes
Uploaded via twine/7.0.0 CPython/3.13.14

Provenance

Provenance describes where a file came from. On PyPI, provenance is shared via attestations, which provide a verifiable record of the build or publishing details. View details, limitations and caveats.

PyPI Publish Attestation

PyPI verified that this artifact, at this checksum, originated from the publisher listed below.

Signed by GitHub Actions, verified by PyPI on Sep 17, 2026.

Transparency log

Release files / web_cortex_framework-2.0.0-cp313-cp313-win_amd64.whl

Download URL web_cortex_framework-2.0.0-cp313-cp313-win_amd64.whl
Size 5.7 MB
Tags CPython 3.13 Windows x86-64
SHA-256 checksum
How to use checksums
562a0a9e60eb858afa56b0527928e26bebc5739c2d5d81045aab296000579851
BLAKE2b-256 checksum
How to use checksums
b6a83cc6ce777d3fc355eee8c493b3cfc56d9abd64d4c3521b6d844cd979eaf5
Upload date
Uploaded using Trusted Publishing?
What is trusted publishing?
Yes
Uploaded via twine/7.0.0 CPython/3.13.14

Provenance

Provenance describes where a file came from. On PyPI, provenance is shared via attestations, which provide a verifiable record of the build or publishing details. View details, limitations and caveats.

PyPI Publish Attestation

PyPI verified that this artifact, at this checksum, originated from the publisher listed below.

Signed by GitHub Actions, verified by PyPI on Sep 17, 2026.

Transparency log

Release files / web_cortex_framework-2.0.0-cp313-cp313-manylinux_2_17_x86_64.manylinux2014_x86_64.whl

Download URL web_cortex_framework-2.0.0-cp313-cp313-manylinux_2_17_x86_64.manylinux2014_x86_64.whl
Size 6.0 MB
Tags CPython 3.13 Linux glibc 2.17+ x86-64
SHA-256 checksum
How to use checksums
dbcf0bb94853f542155fc9ddcb422932fe8f13d78ff30a0a13f904e1ec474fb7
BLAKE2b-256 checksum
How to use checksums
d6b979ebb60d5f1fce5b47032ea056ff7e3eb3f83bc5cd2952f5cb8743f74af9
Upload date
Uploaded using Trusted Publishing?
What is trusted publishing?
Yes
Uploaded via twine/7.0.0 CPython/3.13.14

Provenance

Provenance describes where a file came from. On PyPI, provenance is shared via attestations, which provide a verifiable record of the build or publishing details. View details, limitations and caveats.

PyPI Publish Attestation

PyPI verified that this artifact, at this checksum, originated from the publisher listed below.

Signed by GitHub Actions, verified by PyPI on Sep 17, 2026.

Transparency log

Release files / web_cortex_framework-2.0.0-cp313-cp313-manylinux_2_17_aarch64.manylinux2014_aarch64.whl

Download URL web_cortex_framework-2.0.0-cp313-cp313-manylinux_2_17_aarch64.manylinux2014_aarch64.whl
Size 5.9 MB
Tags CPython 3.13 Linux glibc 2.17+ ARM64
SHA-256 checksum
How to use checksums
8d03b7d34332c68e5e17302ca3c04c3df9b788d4076cc78e81053732cf400a46
BLAKE2b-256 checksum
How to use checksums
0f3ade2bfdcf7634eae9d06cdf3859369c8181ed0980bfd7a9c709d244fc643a
Upload date
Uploaded using Trusted Publishing?
What is trusted publishing?
Yes
Uploaded via twine/7.0.0 CPython/3.13.14

Provenance

Provenance describes where a file came from. On PyPI, provenance is shared via attestations, which provide a verifiable record of the build or publishing details. View details, limitations and caveats.

PyPI Publish Attestation

PyPI verified that this artifact, at this checksum, originated from the publisher listed below.

Signed by GitHub Actions, verified by PyPI on Sep 17, 2026.

Transparency log

Release files / web_cortex_framework-2.0.0-cp313-cp313-macosx_11_0_arm64.whl

Download URL web_cortex_framework-2.0.0-cp313-cp313-macosx_11_0_arm64.whl
Size 5.4 MB
Tags CPython 3.13 macOS 11.0+ ARM64
SHA-256 checksum
How to use checksums
d975c6c4df389d726213ce25784795be107a040912dd14d7028d4bdfbf6f2c47
BLAKE2b-256 checksum
How to use checksums
dd0ee57846034a3a6967f08ca71b9ca1f14bf56e0b4b5853873ba27af39336a0
Upload date
Uploaded using Trusted Publishing?
What is trusted publishing?
Yes
Uploaded via twine/7.0.0 CPython/3.13.14

Provenance

Provenance describes where a file came from. On PyPI, provenance is shared via attestations, which provide a verifiable record of the build or publishing details. View details, limitations and caveats.

PyPI Publish Attestation

PyPI verified that this artifact, at this checksum, originated from the publisher listed below.

Signed by GitHub Actions, verified by PyPI on Sep 17, 2026.

Transparency log

Release files / web_cortex_framework-2.0.0-cp313-cp313-macosx_10_12_x86_64.whl

Download URL web_cortex_framework-2.0.0-cp313-cp313-macosx_10_12_x86_64.whl
Size 5.8 MB
Tags CPython 3.13 macOS 10.12+ x86-64
SHA-256 checksum
How to use checksums
3fed67bcfbf9620f6da2a5fffdc07dd78c2c1c67f23fc092810a257d3006b649
BLAKE2b-256 checksum
How to use checksums
8c92660835175d386bbbfd4845ee2b98093c0ec854ab4f925b21784a47347242
Upload date
Uploaded using Trusted Publishing?
What is trusted publishing?
Yes
Uploaded via twine/7.0.0 CPython/3.13.14

Provenance

Provenance describes where a file came from. On PyPI, provenance is shared via attestations, which provide a verifiable record of the build or publishing details. View details, limitations and caveats.

PyPI Publish Attestation

PyPI verified that this artifact, at this checksum, originated from the publisher listed below.

Signed by GitHub Actions, verified by PyPI on Sep 17, 2026.

Transparency log

Release files / web_cortex_framework-2.0.0-cp312-cp312-win_amd64.whl

Download URL web_cortex_framework-2.0.0-cp312-cp312-win_amd64.whl
Size 5.7 MB
Tags CPython 3.12 Windows x86-64
SHA-256 checksum
How to use checksums
64bd9724daf0e6851e93a499de3199df17582e2db683e0dde15cb7995cd6d111
BLAKE2b-256 checksum
How to use checksums
974463fee6054a76f40e49288ebb8ad0ec350a64757921aaedc251b25024dd7f
Upload date
Uploaded using Trusted Publishing?
What is trusted publishing?
Yes
Uploaded via twine/7.0.0 CPython/3.13.14

Provenance

Provenance describes where a file came from. On PyPI, provenance is shared via attestations, which provide a verifiable record of the build or publishing details. View details, limitations and caveats.

PyPI Publish Attestation

PyPI verified that this artifact, at this checksum, originated from the publisher listed below.

Signed by GitHub Actions, verified by PyPI on Sep 17, 2026.

Transparency log

Release files / web_cortex_framework-2.0.0-cp312-cp312-manylinux_2_17_x86_64.manylinux2014_x86_64.whl

Download URL web_cortex_framework-2.0.0-cp312-cp312-manylinux_2_17_x86_64.manylinux2014_x86_64.whl
Size 6.0 MB
Tags CPython 3.12 Linux glibc 2.17+ x86-64
SHA-256 checksum
How to use checksums
858b632d890a80b07bc2d1ae1b32dbdd690840547486dade74129dd7390b45ef
BLAKE2b-256 checksum
How to use checksums
3a8f2207a376423b1305445484d63d23273253ebe22a62a090cdd1807b43c307
Upload date
Uploaded using Trusted Publishing?
What is trusted publishing?
Yes
Uploaded via twine/7.0.0 CPython/3.13.14

Provenance

Provenance describes where a file came from. On PyPI, provenance is shared via attestations, which provide a verifiable record of the build or publishing details. View details, limitations and caveats.

PyPI Publish Attestation

PyPI verified that this artifact, at this checksum, originated from the publisher listed below.

Signed by GitHub Actions, verified by PyPI on Sep 17, 2026.

Transparency log

Release files / web_cortex_framework-2.0.0-cp312-cp312-manylinux_2_17_aarch64.manylinux2014_aarch64.whl

Download URL web_cortex_framework-2.0.0-cp312-cp312-manylinux_2_17_aarch64.manylinux2014_aarch64.whl
Size 5.9 MB
Tags CPython 3.12 Linux glibc 2.17+ ARM64
SHA-256 checksum
How to use checksums
b86ee8090a3287116a8c8dfe16edd2975187dc57f0f0e8f4f66432b98bdd0919
BLAKE2b-256 checksum
How to use checksums
cd494bfcdc56a53735a30faafd1a6873780f10100cfd1563424ae8aa33d6743c
Upload date
Uploaded using Trusted Publishing?
What is trusted publishing?
Yes
Uploaded via twine/7.0.0 CPython/3.13.14

Provenance

Provenance describes where a file came from. On PyPI, provenance is shared via attestations, which provide a verifiable record of the build or publishing details. View details, limitations and caveats.

PyPI Publish Attestation

PyPI verified that this artifact, at this checksum, originated from the publisher listed below.

Signed by GitHub Actions, verified by PyPI on Sep 17, 2026.

Transparency log

Release files / web_cortex_framework-2.0.0-cp312-cp312-macosx_11_0_arm64.whl

Download URL web_cortex_framework-2.0.0-cp312-cp312-macosx_11_0_arm64.whl
Size 5.4 MB
Tags CPython 3.12 macOS 11.0+ ARM64
SHA-256 checksum
How to use checksums
9a6f8967240a26d92e5035fdf7dfaae063535c6e424a888079d88018038aac20
BLAKE2b-256 checksum
How to use checksums
66fbf0064c5ea7f7572fd19fa205c7a86e3420f95553f20f542aa98e40b2d124
Upload date
Uploaded using Trusted Publishing?
What is trusted publishing?
Yes
Uploaded via twine/7.0.0 CPython/3.13.14

Provenance

Provenance describes where a file came from. On PyPI, provenance is shared via attestations, which provide a verifiable record of the build or publishing details. View details, limitations and caveats.

PyPI Publish Attestation

PyPI verified that this artifact, at this checksum, originated from the publisher listed below.

Signed by GitHub Actions, verified by PyPI on Sep 17, 2026.

Transparency log

Release files / web_cortex_framework-2.0.0-cp312-cp312-macosx_10_12_x86_64.whl

Download URL web_cortex_framework-2.0.0-cp312-cp312-macosx_10_12_x86_64.whl
Size 5.8 MB
Tags CPython 3.12 macOS 10.12+ x86-64
SHA-256 checksum
How to use checksums
3f13cf6a004f582563865c4c4cef4586057a6029b44ac1bb63329a4b2068cdb3
BLAKE2b-256 checksum
How to use checksums
4369917593311aceac82134cf59c37601bd0e9e0b851f90b8c9d753ae9508a48
Upload date
Uploaded using Trusted Publishing?
What is trusted publishing?
Yes
Uploaded via twine/7.0.0 CPython/3.13.14

Provenance

Provenance describes where a file came from. On PyPI, provenance is shared via attestations, which provide a verifiable record of the build or publishing details. View details, limitations and caveats.

PyPI Publish Attestation

PyPI verified that this artifact, at this checksum, originated from the publisher listed below.

Signed by GitHub Actions, verified by PyPI on Sep 17, 2026.

Transparency log

Release history Release notifications | RSS feed

2.1.1

21 release files

2.1.0

21 release files

2.0.1

21 release files

This release

2.0.0 This release

21 release files

0.3.2

21 release files

Anthropic, PBC Visionary sponsor Bloomberg Visionary sponsor Hudson River Trading Visionary sponsor Meta Visionary sponsor NVIDIA Visionary sponsor Microsoft Sustainability sponsor Depot Continuous Integration AWS Cloud computing and Security Sponsor Datadog Monitoring Fastly CDN Google Download Analytics Sentry Error logging StatusPage Status page