brewlog/CLAUDE.md
Jon Seager 546e105b10
fix(templates): prefix Datastar signals with underscore to mark as local
Datastar sends all non-underscore signals with every backend request.
UI-only signals (showForm, navOpen, isSubmitting, form ref, brew
parameters) were being serialized into pagination/search/sort URLs,
creating bloated requests. Prefix them with _ so Datastar's default
filterSignals excludes them from requests.
2026-02-03 13:37:50 +00:00

441 lines
15 KiB
Markdown

# Claude Code Guidelines for Brewlog
## Project Overview
Brewlog is a self-hosted coffee logging platform built in Rust. It provides:
- HTTP server with web UI (Axum + Askama templates + Datastar)
- REST API for programmatic access
- CLI client for command-line operations
- SQLite/PostgreSQL database support (feature-flagged)
## Build & Test Commands
```bash
cargo build # Build the project
cargo test # Run all tests
cargo clippy --allow-dirty --fix # Lint and auto-fix
cargo fmt # Format code
```
### Database Migrations
Create new migrations using sqlx:
```bash
sqlx migrate add <migration_name> # Creates migrations/NNNN_<migration_name>.sql
```
Migration files are plain SQL in the `migrations/` directory, numbered sequentially (e.g., `0008_remove_gear_notes.sql`).
## Workflow Requirements
**Before finishing any task**, always:
1. Run `cargo clippy --allow-dirty --fix && cargo fmt` to lint and format
2. Run `cargo build` to verify compilation
3. Run `cargo test` if changes affect testable code
4. Provide a **draft commit message** using Conventional Commits format
Example commit message:
```
feat(gear): add category filtering to gear list
- Add GearFilter with optional category field
- Update repository to apply filter in SQL WHERE clause
- Add --category flag to CLI list-gear command
```
## Architecture
The codebase follows **Clean Architecture / Domain-Driven Design** with four layers:
```
src/
├── domain/ # Pure business logic, no external dependencies
│ ├── errors.rs # RepositoryError enum
│ ├── ids.rs # Typed ID wrappers (RoasterId, RoastId, BagId)
│ ├── repositories.rs # Repository traits
│ └── {entity}.rs # Entity definitions (roasters, roasts, bags, etc.)
├── infrastructure/ # External integrations (database, HTTP client)
│ ├── repositories/ # SQL implementations of repository traits
│ ├── client/ # HTTP client for CLI
│ └── database.rs # Database pool abstraction
├── application/ # HTTP server, routes, middleware
│ ├── routes/ # Axum route handlers
│ └── errors.rs # HTTP error mapping
└── presentation/ # User interfaces
├── cli/ # CLI commands and argument parsing
└── web/ # View models for templates
```
**Dependency flow**: `presentation → application → domain ← infrastructure`
## Code Patterns
### Repository Pattern
All data access goes through trait-based repositories defined in `domain/repositories.rs`:
```rust
#[async_trait]
pub trait RoasterRepository {
async fn insert(&self, roaster: NewRoaster) -> Result<Roaster, RepositoryError>;
async fn get(&self, id: RoasterId) -> Result<Roaster, RepositoryError>;
// ...
}
```
SQL implementations live in `infrastructure/repositories/`.
### Typed IDs
Use the typed ID wrappers from `domain/ids.rs` to prevent mixing up IDs:
```rust
// Good
fn get_roast(&self, id: RoastId) -> Result<Roast, RepositoryError>
// Bad - raw i64 could be any ID type
fn get_roast(&self, id: i64) -> Result<Roast, RepositoryError>
```
### SQL Query Construction
Use `QueryBuilder` for dynamic queries. For UPDATE queries, use the `push_update_field!` macro:
```rust
use super::macros::push_update_field;
let mut builder = QueryBuilder::new("UPDATE roasters SET ");
let mut sep = false;
push_update_field!(builder, sep, "name", changes.name);
push_update_field!(builder, sep, "country", changes.country);
// ... more fields
if !sep {
return Err(RepositoryError::unexpected("No fields provided for update"));
}
builder.push(" WHERE id = ");
builder.push_bind(i64::from(id));
```
### Sorting/Ordering
Each repository has an `order_clause()` method for consistent sort query generation:
```rust
fn order_clause(request: &ListRequest<RoasterSortKey>) -> String {
let dir_sql = match request.sort_direction() {
SortDirection::Asc => "ASC",
SortDirection::Desc => "DESC",
};
match request.sort_key() {
RoasterSortKey::Name => format!("LOWER(name) {dir_sql}, created_at DESC"),
// ...
}
}
```
### CLI Commands
For simple get/delete commands, use the macros in `presentation/cli/macros.rs`:
```rust
use super::macros::{define_get_command, define_delete_command};
define_get_command!(GetRoasterCommand, get_roaster, RoasterId, roasters);
define_delete_command!(DeleteRoasterCommand, delete_roaster, RoasterId, roasters, "roaster");
```
### Datastar Integration
The web UI uses [Datastar](https://data-star.dev/) for reactive updates without full page reloads. This provides HTMX-style interactions with a declarative API.
#### Request Detection
Datastar requests are identified by the `datastar-request: true` header:
```rust
// application/routes/support.rs
pub fn is_datastar_request(headers: &HeaderMap) -> bool {
headers
.get("datastar-request")
.and_then(|value| value.to_str().ok())
.map(|value| value.eq_ignore_ascii_case("true"))
.unwrap_or(false)
}
```
#### Fragment Rendering
When a Datastar request is detected, return a fragment instead of a full page:
```rust
pub(crate) async fn roasters_page(...) -> Result<Response, StatusCode> {
let request = query.into_request::<RoasterSortKey>();
if is_datastar_request(&headers) {
// Datastar request → return fragment only
return render_roaster_list_fragment(state, request, is_authenticated).await;
}
// Traditional request → return full page with layout
let template = RoastersTemplate { ... };
render_html(template).map(IntoResponse::into_response)
}
```
Fragments are rendered with special headers that tell Datastar where to patch the DOM:
```rust
// application/routes/support.rs
pub fn render_fragment<T: Template>(template: T, selector: &'static str) -> Result<Response, AppError> {
let html = render_template(template)?;
let mut response = Html(html).into_response();
response.headers_mut().insert("datastar-selector", HeaderValue::from_static(selector));
response.headers_mut().insert("datastar-mode", HeaderValue::from_static("replace"));
Ok(response)
}
```
#### Frontend Attributes
Templates use Datastar attributes for interactivity:
```html
<!-- Local signals (underscore prefix = not sent to server) -->
<section data-signals:_show-form="false" data-signals:_is-submitting="false">
<!-- Visibility binding -->
<div data-show="$_showForm" style="display: none">
<!-- Form content -->
</div>
<!-- Event handlers with HTTP actions -->
<form data-on:submit="@post('/api/v1/roasters', {
contentType: 'form',
responseOverrides: {selector: '#roaster-list', mode: 'replace'}
})">
<!-- Form fields -->
</form>
<!-- Reset form on completion -->
<form data-ref="_form"
data-on:datastar-fetch="evt.detail.type === 'finished' && ($_showForm = false, $_form.reset())">
</section>
```
Key attributes:
- `data-signals:_name="value"` - Local signals (underscore prefix excludes from backend requests)
- `data-show="$_signal"` - Conditional visibility
- `data-on:event="expression"` - Event handlers
- `data-ref="_name"` - DOM element references (underscore prefix for local refs)
- `@get/@post/@put/@delete(url, options)` - HTTP actions with automatic Datastar headers
#### URL Generation
`ListNavigator` generates URLs for pagination and sorting:
```rust
// presentation/web/views.rs
navigator.page_href(2) // "/roasters?page=2&..." (full page)
navigator.fragment_page_href(2) // "/roasters?page=2&...#roaster-list" (fragment)
navigator.sort_href(key) // "/roasters?sort=name&dir=..."
```
#### Flexible Payload Handling
Handlers accept both JSON and form data via `FlexiblePayload<T>`:
```rust
pub(crate) async fn create_roaster(
payload: FlexiblePayload<NewRoaster>,
) -> Result<Response, ApiError> {
let (new_roaster, source) = payload.into_parts();
if is_datastar_request(&headers) {
render_fragment(state, request, true).await // Return updated fragment
} else if matches!(source, PayloadSource::Form) {
Ok(Redirect::to(&target).into_response()) // Traditional form redirect
} else {
Ok((StatusCode::CREATED, Json(roaster)).into_response()) // JSON API
}
}
```
### Route Handler Macros
For simple get/delete API handlers, use the macros in `application/routes/macros.rs`:
```rust
use super::macros::{define_get_handler, define_delete_handler};
// GET /api/v1/roasters/:id → returns JSON
define_get_handler!(get_roaster, RoasterId, Roaster, roaster_repo);
// DELETE /api/v1/roasters/:id → returns fragment for Datastar or 204 for API
define_delete_handler!(
delete_roaster,
RoasterId,
RoasterSortKey,
roaster_repo,
render_roaster_list_fragment
);
```
### Error Handling
- Domain errors: `RepositoryError` in `domain/errors.rs`
- HTTP errors: `AppError` in `application/errors.rs` with proper status code mapping
- CLI errors: Use `anyhow::Result` for simplicity
### Domain Conversion
Records from the database should have an `into_domain()` method or equivalent:
```rust
impl BagRecord {
fn into_domain(self) -> Bag { ... }
}
```
## Table & List Patterns
### Template Structure
List partials live in `templates/partials/` (e.g., `roaster_list.html`, `brew_list.html`). Each follows the same structure:
```
{% import "partials/table.html" as table %}
<div id="{entity}-list">
{% if items.is_empty() && !navigator.has_search() %}
<!-- Empty state (no data, no search active) -->
{% else %}
<section class="rounded-lg border border-amber-300 bg-amber-100/80 shadow-sm"
{% if items.has_next() %}data-infinite-scroll data-next-url="..." data-target="#{entity}-list"{% endif %}
>
{% call table::search_header(navigator, "#{entity}-list") %}
<table class="responsive-table ...">
<thead>...</thead>
<tbody>...</tbody>
</table>
{% if items.is_empty() %}
<!-- "No results match your search" message -->
{% endif %}
{% call table::pagination_header(items, navigator, "#{entity}-list") %}
{% if items.has_next() %}
<div class="infinite-scroll-sentinel h-4 md:hidden" aria-hidden="true"></div>
{% endif %}
</section>
{% endif %}
</div>
```
Key points:
- The outer `<div>` with `id="{entity}-list"` is the Datastar fragment target for replacements
- Empty state only shows when there are no items **and** no active search query
- When a search is active but returns no results, the table section renders with the search bar and a "no matches" message
### Shared Table Macros (`templates/partials/table.html`)
Three macros are available:
- **`search_header(navigator, target_selector)`** — search input with debounced Datastar `@get`, pushes URL state via `history.pushState`
- **`pagination_header(items, navigator, target_selector)`** — prev/next buttons, page count, rows-per-page selector; hidden on mobile via `pagination-controls hidden md:flex`
- **`sortable_header(label, key, navigator, target_selector)`** — clickable column header with sort direction arrows
### "Added" Column
Every table has a sortable "Added" column as its **first column**, sorted by `created-at`. It uses a distinct smaller style to visually separate it from content columns:
```html
<td data-label="Added" class="whitespace-nowrap px-4 py-3 text-xs font-medium text-stone-600">
{{ item.created_at }}
</td>
```
The `text-xs font-medium text-stone-600` classes give it a muted, compact appearance compared to the default `text-sm` body text.
### Actions Column
When a row has multiple action buttons/icons, wrap them in `<div class="inline-flex items-center gap-1">` inside the `<td>` to keep them horizontal. Without this wrapper, block-level elements like `<form>` will stack vertically.
```html
<td data-label="" class="px-4 py-3 text-right">
<div class="inline-flex items-center gap-1">
<form class="inline" ...>
<button type="submit" class="inline-flex h-8 w-8 ...">...</button>
</form>
<button type="button" class="inline-flex h-8 w-8 ...">...</button>
</div>
</td>
```
### Responsive Table Pattern
Tables use the `responsive-table` CSS class which converts rows to card-style layout on mobile (`max-width: 767px`). The CSS in `styles.css` hides `<thead>` and uses `data-label` attributes on `<td>` elements to show field labels.
**Desktop**: combined columns with subtext via `hidden md:block`:
```html
<td data-label="Coffee" class="px-4 py-3 whitespace-nowrap">
<div class="font-medium">{{ brew.roast_name }}</div>
<div class="hidden md:block text-xs text-stone-500">{{ brew.roaster_name }}</div>
</td>
```
**Mobile**: separate `<td>` elements with `md:hidden` for each sub-field:
```html
<td data-label="Roaster" class="px-4 py-3 whitespace-nowrap md:hidden">
{{ brew.roaster_name }}
</td>
```
This keeps the desktop table compact while giving each value its own labelled row in the mobile card view. Conditional sub-fields (e.g., filter paper, city) use `{% if %}` guards around both the desktop subtext and the mobile-only `<td>`.
### Search
Server-side search uses a `q` query parameter. The `ListQuery` struct extracts it and passes it to repository `list()` methods via `SearchFilter`. Repositories apply `LIKE` filtering across entity-specific columns (e.g., name, country, origin).
`ListNavigator` preserves the search term across pagination and sort URL generation via `search_query_base()`.
### Pagination vs Infinite Scroll
- **Desktop** (`md:` breakpoint and above): traditional pagination controls (prev/next, page size selector, result count) via the `pagination_header` macro
- **Mobile** (below `md:`): pagination controls are hidden (`hidden md:flex`); infinite scroll loads the next page automatically
The infinite scroll sentinel (`<div class="infinite-scroll-sentinel h-4 md:hidden">`) must always include `md:hidden` to avoid adding unwanted height to the desktop layout. The JavaScript in `base.html` uses `IntersectionObserver` and only activates on mobile via `matchMedia("(max-width: 767px)")`.
When creating sentinels dynamically in JS, use:
```js
newSentinel.className = "infinite-scroll-sentinel h-4 md:hidden";
```
## Conventions
1. **Method naming**: Use `order_clause()` for sort query builders (not `sort_clause`)
2. **Imports**: Group by `super::`, then `crate::`, with macros imported explicitly
3. **SQL strings**: Use raw strings `r#"..."#` for multi-line queries
4. **Tests**: Integration tests in `tests/cli/` and `tests/server/`
5. **Commits**: Use Conventional Commit format (`feat:`, `fix:`, `refactor:`, etc.)
6. **Commit authorship**: Never add "Co-Authored-By" trailers to commit messages
7. **Commit signing**: Never use `--no-gpg-sign` when committing — always allow the default GPG signing
8. **Committing**: Do not commit unless explicitly asked to — provide a draft commit message instead
## Communication Style
- Be direct and factual
- Analyse root causes before proposing solutions
- Prefer simple solutions over complex ones
- When proposing changes, explain the trade-offs