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348 lines
12 KiB
348 lines
12 KiB
# `http`
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The `http` module is an HTTP/HTTPS client for calling APIs, scraping pages, and
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submitting forms. TLS is compiled into the binary (rustls with the `ring`
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provider), so HTTPS works with no system library. There are two ways in: plain
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functions for one-off requests, and a **session** object that carries a cookie
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jar across requests for stateful flows like logging in.
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```lua
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local resp = http.get("https://example.com")
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print(resp.status, resp.ok) --> 200 true
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print(resp.body) --> "<!doctype html>…"
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-- JSON in one step
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local data = http.getJSON("https://api.example.com/users")
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for _, user in ipairs(data) do
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print(user.name)
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end
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```
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## Making requests
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Every helper takes a URL and an optional `opts` table (see [Request
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options](#request-options)) and returns a [response](#the-response) table.
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```lua
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http.get(url [, opts])
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http.post(url [, opts])
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http.put(url [, opts])
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http.patch(url [, opts])
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http.delete(url [, opts])
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http.head(url [, opts])
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```
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These are thin shorthands over the one primitive:
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### `http.request(method, url [, opts])`
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Send a request with an explicit method (any verb, e.g. `"GET"`, `"OPTIONS"`) and
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return the response. The shorthands above are just `http.request` with the method
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filled in.
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```lua
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local resp = http.request("DELETE", "https://api.example.com/items/42")
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```
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## The response
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Every request returns a table describing the response:
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| Field | Type | Description |
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|-----------|-----------|-------------------------------------------------------------------|
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| `status` | integer | HTTP status code, e.g. `200`, `404`. |
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| `ok` | boolean | `true` when `status` is in the 2xx range. |
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| `headers` | table | Response headers, keyed by **lowercase** name. |
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| `body` | string | The raw response body (Lua strings are byte sequences). |
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| `json` | function | `resp.json()` parses `body` as JSON. See [JSON](#json). |
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Header names are lowercased so you can look them up without guessing the server's
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capitalization. If a header appears more than once, the first value wins.
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```lua
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local resp = http.get("https://example.com")
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print(resp.headers["content-type"]) --> "text/html; charset=utf-8"
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```
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A non-2xx status is **not** an error — `resp.status` and `resp.ok` simply report
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it. Only a failure to get a response at all (DNS, connection, TLS, timeout) raises
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a Lua error. See [Errors](#errors).
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## Request options
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The optional `opts` table accepts these fields, all optional:
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| Field | Type | Behaviour |
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|-----------|--------|--------------------------------------------------------------------------|
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| `headers` | table | Extra request headers, `{["X-Foo"] = "bar"}`. |
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| `body` | string | Raw request body; set `Content-Type` yourself via `headers`. |
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| `json` | any | Serialized to JSON; sets `Content-Type: application/json`. |
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| `form` | table | URL-encoded; sets `Content-Type: application/x-www-form-urlencoded`. |
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| `cookies` | table | Cookies for this request, `{session = "abc"}` → `Cookie:` header. |
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| `timeout` | number | Per-request timeout in seconds (default `30`). |
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| `auth` | table | Basic or digest credentials. See [Authentication](#authentication). |
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### Bodies
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`json`, `form`, and `body` are three ways to set the request body; if more than
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one is given, the first present in that order wins.
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```lua
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-- JSON body (table serialized to an object)
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http.post("https://api.example.com/items", { json = { name = "test", count = 5 } })
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-- Form submission (application/x-www-form-urlencoded)
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http.post("https://example.com/login", { form = { user = "alice", pass = "secret" } })
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-- Raw body with an explicit content type
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http.post("https://example.com/ingest", {
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body = "id,name\n1,alice\n",
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headers = { ["Content-Type"] = "text/csv" },
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})
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```
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`json` serializes the same way as `utils.toJSON`: a table with
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sequential integer keys becomes a JSON array, otherwise an object, and
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`utils.NULL` becomes JSON `null` (a literal Lua `nil` cannot live in
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a table).
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### Headers and cookies
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```lua
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local resp = http.get("https://example.com", {
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headers = { ["Accept"] = "application/json", ["X-Token"] = "xyz" },
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cookies = { session = "abc123" },
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timeout = 10,
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})
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```
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Per-request `cookies` are sent as a `Cookie` header. With a [session](#sessions),
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they are merged with the jar and take precedence on a name collision.
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## JSON
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### `resp.json()`
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Parse the response body as JSON and return the resulting Lua value. It is the
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counterpart of `utils.fromJSON`: JSON objects become tables, arrays
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become array-tables, and `null` becomes `utils.NULL`. Calling it on a
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body that is not valid JSON raises an error.
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```lua
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local resp = http.post("https://api.example.com/echo", { json = { hello = "world" } })
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print(resp.json().hello) --> "world"
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```
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### `http.getJSON(url [, opts])`
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Shorthand for a GET that parses the body. Returns **two** values: the parsed body
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and the full response.
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```lua
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local data, resp = http.getJSON("https://api.example.com/users")
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print(resp.status, #data)
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```
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### `http.postJSON(url, body [, opts])`
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Shorthand for a POST with a JSON body — equivalent to setting `opts.json = body`.
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Returns the response.
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```lua
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local resp = http.postJSON("https://api.example.com/items", { name = "test", count = 5 })
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if resp.ok then print(resp.json().id) end
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```
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## Authentication
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Pass credentials in `opts.auth`. The `scheme` is `"basic"` (the default) or
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`"digest"`.
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| Field | Type | Description |
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|------------|--------|----------------------------------------------|
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| `username` | string | Required. |
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| `password` | string | Required. |
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| `scheme` | string | `"basic"` (default) or `"digest"`. |
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```lua
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-- HTTP Basic
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local resp = http.get("https://api.example.com/private", {
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auth = { username = "alice", password = "secret" },
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})
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-- HTTP Digest — the 401 challenge is answered automatically
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local resp = http.get("https://api.example.com/private", {
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auth = { username = "alice", password = "secret", scheme = "digest" },
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})
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```
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For basic auth the `Authorization` header is sent with the request. For digest the
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client sends the request, reads the server's `401` challenge, computes the
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response, and retries once; you only see the final response. Auth works the same
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way on [sessions](#sessions).
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## Sessions
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A **session** wraps its own cookie jar. Cookies from `Set-Cookie` responses are
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stored automatically and sent back on later requests to matching hosts — which is
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what makes login-then-fetch flows work. A session also has the same request
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methods as the plain module.
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### `http.session([path])`
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Create a session. With a `path`, the cookie jar is preloaded from that file (see
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[Persisting the jar](#persisting-the-jar)).
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```lua
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local s = http.session() -- fresh, empty jar
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local s = http.session("cookies.jsonl") -- jar loaded from disk
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```
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### Requests
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A session has every method the plain module has — `request`, `get`, `post`,
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`put`, `patch`, `delete`, `head`, `getJSON`, `postJSON` — called with `:` syntax
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and accepting the same `opts`:
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```lua
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local s = http.session()
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-- Log in; the response's Set-Cookie is captured into the jar
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s:post("https://example.com/login", { form = { user = "alice", pass = "secret" } })
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-- The session cookie is sent automatically
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local page = s:get("https://example.com/dashboard")
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```
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### Cookie behaviour
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A stored cookie is sent on a request when the request host **equals** the cookie's
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domain or is a subdomain of it. The jar reads the `name=value` pair and the
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`Domain` attribute from each `Set-Cookie` header; other attributes (`Path`,
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`Expires`, `Secure`, `HttpOnly`) are ignored. When no `Domain` is given, the
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request host is used.
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`Set-Cookie` headers set on redirect responses are captured too, so a login that
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`302`-redirects to a dashboard still records its cookie.
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### Inspecting and clearing
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#### `s:cookies()`
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Return the jar as a nested table, `{domain = {name = value}}`, for inspection.
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```lua
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local jar = s:cookies()
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for domain, names in pairs(jar) do
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for name, value in pairs(names) do
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print(domain, name, value)
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end
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end
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```
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#### `s:clearCookies()`
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Empty the in-memory jar.
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### Persisting the jar
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Cookies live in memory for the session's lifetime. Save them to reuse a logged-in
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session across script runs.
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#### `s:save(path)`
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Write the jar to `path` as JSONL — one JSON object per line, one cookie per line:
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```jsonl
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{"domain":"example.com","name":"session","value":"abc123"}
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{"domain":"api.example.com","name":"token","value":"xyz789"}
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```
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#### `s:load(path)`
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Merge cookies from a JSONL file into the current jar (existing cookies are kept,
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matching names overwritten). `http.session(path)` is the same as creating a
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session and calling `:load(path)`.
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```lua
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-- First run: log in and persist
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local s = http.session()
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s:post("https://example.com/login", { form = { user = "alice", pass = "secret" } })
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s:save("session.jsonl")
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-- Later run: restore and continue without logging in again
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local s = http.session("session.jsonl")
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local page = s:get("https://example.com/dashboard")
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```
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## Redirects
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Redirects are followed automatically, up to 10 hops; you receive the final
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response. A `303`, and a `301`/`302` in response to a `POST`, are followed as a
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bodyless `GET`, matching browser behaviour. For a session, cookies set along the
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way are captured at each hop.
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## Errors
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Failing to obtain a response raises a Lua error: DNS failure, connection refused,
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a TLS problem, or a timeout. An HTTP error *status* (4xx/5xx) does not — it is
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reported through `resp.status`/`resp.ok`. Parsing a non-JSON body with
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`resp.json()` also raises.
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Wrap calls in `pcall` or `utils.try` where you want to handle failure
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rather than abort:
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```lua
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local resp, err = utils.try(function()
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return http.get("https://does-not-exist.invalid", { timeout = 5 })
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end)
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if not resp then
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log.error("request failed: " .. tostring(err))
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end
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```
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## Notes
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- **HTTPS needs no setup.** The TLS stack (rustls + `ring`) is compiled in; trust
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roots come from the system certificate store.
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- **A default `User-Agent` is sent** (`a/<version>`) because some servers reject
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requests without one. Override it with a `User-Agent` entry in `opts.headers`.
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- **Requests don't block the event loop.** Network I/O runs on the async core, so
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a slow request does not stall other async work (timers, `os.sleep`, SQLite) in
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the same script.
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- **The cookie jar is per session.** Plain `http.get`/`http.post` calls do not
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retain cookies between calls; use a session for that.
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## Full example
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```lua
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-- Talk to a JSON API with a bearer token, then drive a stateful session.
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-- One-off authenticated JSON call
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local items, resp = http.getJSON("https://api.example.com/items", {
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headers = { ["Authorization"] = "Bearer " .. token },
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timeout = 15,
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})
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if not resp.ok then
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error("list failed: HTTP " .. resp.status)
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end
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for _, item in ipairs(items) do
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print(item.id, item.name)
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end
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-- Create one
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local created = http.postJSON("https://api.example.com/items", { name = "widget" }, {
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headers = { ["Authorization"] = "Bearer " .. token },
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})
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print("created id:", created.json().id)
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-- A login session that persists across runs
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local s = http.session("session.jsonl") -- restore if present
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local home = s:get("https://example.com/dashboard")
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if home.status == 401 then -- session expired; log in again
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s:post("https://example.com/login", { form = { user = "alice", pass = "secret" } })
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home = s:get("https://example.com/dashboard")
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s:save("session.jsonl")
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end
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print(home.ok and "logged in" or "login failed")
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```
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