Files
TelegramTwitterMediaBot/crates/xmedia-bot/src/ctx.rs
T
YoursFunny 0a9ff58a69 refactor: cover the edit/answer surface in MediaSender, test the button flows
docs/architecture-refactor.md §3 sketched the trait with "按需扩展:
edit_message_caption / delete_message / answer_callback_query …", but only the
five send methods landed, so `callback.rs` and the edit-before-forward caption
swap were stuck on the concrete `Bot` and remained untested (AGENTS.md still
lists callback.rs as untestable).

- `MediaSender` gains `answer_callback_query`, `edit_message_caption` (HTML
  parse mode baked in, every caller uses it) and `delete_message`; the mock
  records call order plus the texts, captions and answer toasts, so tests can
  assert what the user saw.
- `send_message` now returns the sent message id instead of the whole
  `Message`: the only consumer of the value is the edit-before-forward prompt
  (which keys its record by it), and returning a `Message` forced every mock
  to build a teloxide type. `reply`/`reply_html` follow.
- `callback.rs`: the dptree entry only unpacks the update; `handle_callback`
  takes plain values + `&AppContext`. `handlers/mod.rs::edit_message_handler`
  likewise takes the values the reply carries. Admin/setup APIs
  (`get_chat`, `get_chat_administrators`, `get_me`, `set_my_commands`) stay on
  the concrete `Bot`: they are not user flows worth a trait.
- The scripted mock moves to `parking_lot::Mutex` (no poisoning unwraps).

Tests: +11 (template button, forward ok/no-channel/retryable, expired+unknown
prompt, caption swap via template, escaping of user text into the caption,
failed swap still consuming the reply, prompt record written by post_send).
fmt/clippy clean, 70 + 69 tests pass.
2026-09-17 01:31:30 +08:00

119 lines
4.1 KiB
Rust

//! Runtime context: the collaborators a handler needs, injected as one struct
//! so tests can substitute a scripted sender and tempdir-backed stores.
//!
//! The production context is assembled from the process-wide statics
//! ([`AppContext::from_statics`]); the spawned worker closures hold
//! [`CONTEXT`], which is `'static` for that reason.
use crate::config::Config;
use crate::handlers::{CHAT_STORE, CONFIG, LINK_CACHE, TASK_QUEUE};
use crate::link_cache::LinkCache;
use crate::media_sender::MediaSender;
use crate::queue::PersistentTaskQueue;
use crate::send::BOT;
use crate::state::ChatStore;
use std::sync::LazyLock;
pub struct AppContext<'a> {
pub sender: &'a dyn MediaSender,
pub chat_store: &'a ChatStore,
pub task_queue: &'a PersistentTaskQueue,
pub link_cache: &'a LinkCache,
pub config: &'a Config,
}
impl<'a> AppContext<'a> {
/// The stores are the process-wide statics; `sender` is whatever the caller
/// was handed (the dispatcher's `Bot` clone for update handlers, the shared
/// queue `Bot` for the worker loops). Update handlers build their own
/// context from the `Bot` they received so the same code path works with an
/// injected mock in tests.
pub fn from_statics(sender: &'a dyn MediaSender) -> AppContext<'a> {
AppContext {
sender,
chat_store: &CHAT_STORE,
task_queue: &TASK_QUEUE,
link_cache: &LINK_CACHE,
config: &CONFIG,
}
}
}
/// The URL/queue workers' context: `'static` because `tokio::spawn`ed closures
/// and the queue's handler type require it.
pub static CONTEXT: LazyLock<AppContext<'static>> =
LazyLock::new(|| AppContext::from_statics(&*BOT));
/// Test support: a tempdir-backed set of stores plus the context borrowing
/// them, so a handler test needs one line of setup.
#[cfg(test)]
pub(crate) mod test_support {
use super::*;
use std::sync::Arc;
pub(crate) struct TestStores {
_dir: tempfile::TempDir,
pool: Arc<crate::db::DbPool>,
chat_store: ChatStore,
task_queue: PersistentTaskQueue,
link_cache: LinkCache,
config: Config,
}
impl TestStores {
pub(crate) fn new() -> Self {
let dir = tempfile::tempdir().unwrap();
let pool = crate::db::open_store(dir.path().join("ctx.db").to_str().unwrap()).unwrap();
TestStores {
_dir: dir,
chat_store: ChatStore::new(Arc::clone(&pool)),
task_queue: PersistentTaskQueue::new(Arc::clone(&pool)),
link_cache: LinkCache::new(Arc::clone(&pool)),
config: Config::load(),
pool,
}
}
pub(crate) fn ctx<'a>(&'a self, sender: &'a dyn MediaSender) -> AppContext<'a> {
AppContext {
sender,
chat_store: &self.chat_store,
task_queue: &self.task_queue,
link_cache: &self.link_cache,
config: &self.config,
}
}
pub(crate) fn chat_store(&self) -> &ChatStore {
&self.chat_store
}
pub(crate) fn link_cache(&self) -> &LinkCache {
&self.link_cache
}
/// Rows persisted in the task queue: what "queued for retry" looks like
/// from the outside.
pub(crate) async fn queued_tasks(&self) -> i64 {
let pool = Arc::clone(&self.pool);
pool.with_conn(|conn| {
conn.query_row("SELECT COUNT(*) FROM tasks", [], |row| row.get(0))
})
.await
.unwrap()
}
/// The single queued task payload, for asserting what was rescheduled.
pub(crate) async fn queued_payload(&self) -> serde_json::Value {
let pool = Arc::clone(&self.pool);
let payload: String = pool
.with_conn(|conn| {
conn.query_row("SELECT payload FROM tasks LIMIT 1", [], |row| row.get(0))
})
.await
.unwrap();
serde_json::from_str(&payload).unwrap()
}
}
}