Driver rename and icons: `Driver.display_name` plus a `DriverIcon` table, both global/shared like the `Driver` row they hang off, so a rename or an icon is what every Owner sees. The rename/icon dialog keeps its forms as siblings (nested forms are invalid HTML) and the icon routes return an `hx-swap-oob` thumbnail refresh rather than re-rendering the table, which would tear the open `<dialog>` out of the DOM. Web image picker: `GET /web/images` renders a pickable grid for a printer or a driver icon, with the search term prefilled from the entity name and editable. Picking one downloads it server-side and normalizes it. Driver download search: `GET /web/drivers` searches for a vendor-wide driver (the term is rewritten into the vendor's real product name for 15 brands) or for the exact model as typed. Links only — nothing is downloaded, and the fragment says the results are unvetted. Icon uploads no longer reject off-size or non-PNG files: `normalize_icon()` letterboxes any decodable raster into a 256x256 PNG. An already-exact 256x256 PNG is returned byte-identical, because icon storage is content-addressed and re-encoding would move the file on every save. `fetch_image()` makes the request from the server, so `assert_fetchable()` refuses any URL resolving to a private, loopback, or link-local address, and re-runs on every redirect. ImpTune sits on the same LAN as the printers it configures; an unguarded fetcher would be a port scanner for anyone who can reach the UI. DuckDuckGo is scraped, not called through an API — no key needed, but fragile, so both search functions swallow parse failures and return [] instead of 500ing a page. `WEB_SEARCH=false` disables every outbound request and hides the controls, for air-gapped installs. Also: one shared `Jinja2Templates` in `templating.py` instead of five per-router instances, so a template global is declared once; `_add_missing_columns()` in `database.py` adds new nullable columns to a pre-existing table, which `create_tables(safe=True)` skips; `db_env` in test_db.py now closes its connection on teardown, or the next test's ORM writes land in the previous test's DB file. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
88 lines
3.2 KiB
Python
88 lines
3.2 KiB
Python
"""Peewee SQLite database instance and initialization."""
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from peewee import SqliteDatabase
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from imptune.config import DB_PATH
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# Deferred init — path is set at runtime via init_db() so tests can override DB_PATH
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db = SqliteDatabase(None)
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def init_db() -> None:
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"""Initialize the SQLite database with WAL mode and foreign keys.
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Idempotent — safe to call on every application startup.
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Creates all ORM tables if they do not already exist.
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Closes any existing connection before re-initializing so that test
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fixtures can monkeypatch DB_PATH between test runs.
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"""
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from imptune.db.models import Client, Driver, DriverIcon, Owner, Printer, Icon
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# Re-read DB_PATH each time so tests can patch imptune.config.DB_PATH
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import imptune.config as cfg
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# Close any lingering connection from a previous run (important for tests)
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if not db.is_closed():
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db.close()
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db.init(
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cfg.DB_PATH,
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pragmas={
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"journal_mode": "wal",
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"foreign_keys": 1,
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},
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)
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db.connect(reuse_if_open=True)
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db.create_tables([Owner, Client, Driver, Printer, Icon, DriverIcon], safe=True)
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_migrate_owner_column(cfg.DATA_DIR)
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_add_missing_columns()
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def _add_missing_columns() -> None:
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"""Add columns introduced after a DB was first created.
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`create_tables(safe=True)` skips an existing table entirely, so a new field
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on an old model never lands without this. Plain ADD COLUMN of a nullable
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field — no backfill needed.
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"""
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added: dict[str, str] = {"driver": "display_name VARCHAR(255)"}
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for table, column_def in added.items():
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column = column_def.split()[0]
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columns = {row[1] for row in db.execute_sql(f"PRAGMA table_info({table})")}
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if column not in columns:
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db.execute_sql(f"ALTER TABLE {table} ADD COLUMN {column_def}")
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def _migrate_owner_column(data_dir: str) -> None:
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"""Add owner_id to printer/client if missing, backfilling pre-existing rows.
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Runs against a DB created before per-owner scoping existed. Idempotent:
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a no-op once the column exists and no rows are left with a NULL owner_id.
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"""
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from pathlib import Path
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from imptune.db.models import Client, Owner, Printer
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from imptune.services.session import generate_key
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for table in ("printer", "client"):
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columns = {row[1] for row in db.execute_sql(f"PRAGMA table_info({table})")}
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if "owner_id" not in columns:
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db.execute_sql(
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f"ALTER TABLE {table} ADD COLUMN owner_id INTEGER REFERENCES owner (id)"
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)
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orphaned = Printer.select().where(Printer.owner.is_null()).count() or Client.select().where(
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Client.owner.is_null()
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).count()
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if not orphaned:
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return
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legacy_owner = Owner.create(key=generate_key(), is_permanent=True)
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Printer.update(owner=legacy_owner.id).where(Printer.owner.is_null()).execute()
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Client.update(owner=legacy_owner.id).where(Client.owner.is_null()).execute()
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key_path = Path(data_dir) / "legacy_owner_key.txt"
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key_path.write_text(legacy_owner.key, encoding="utf-8")
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print(f"[imptune] Pre-existing printers/clients migrated to a legacy owner. "
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f"Restore key written to {key_path} — paste it into /session/restore to reclaim them.")
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