kasl/db/migrations.rs
1//! Database schema migration management and versioning system.
2//!
3//! Provides a comprehensive migration framework for evolving the database schema
4//! over time while maintaining data integrity and consistency.
5//!
6//! ## Usage
7//!
8//! ```rust,no_run
9//! # fn main() -> Result<(), Box<dyn std::error::Error>> {
10//! use kasl::db::migrations::{init_with_migrations, get_db_version};
11//! use rusqlite::Connection;
12//!
13//! let mut conn = Connection::open("kasl.db")?;
14//! init_with_migrations(&mut conn)?;
15//! let version = get_db_version(&conn)?;
16//! # Ok(())
17//! # }
18//! ```
19
20use crate::libs::messages::Message;
21use crate::{msg_debug, msg_error, msg_info, msg_success};
22use anyhow::Result;
23use rusqlite::{Connection, Transaction, params};
24
25/// SQL schema for the migrations tracking table.
26///
27/// This table maintains a complete record of all applied migrations,
28/// enabling version tracking and providing an audit trail of schema changes.
29/// Each migration is recorded with its version, name, and application timestamp.
30const MIGRATIONS_TABLE: &str = "
31CREATE TABLE IF NOT EXISTS migrations (
32 id INTEGER PRIMARY KEY,
33 version INTEGER NOT NULL UNIQUE,
34 name TEXT NOT NULL,
35 applied_at TIMESTAMP DEFAULT CURRENT_TIMESTAMP
36)";
37
38/// Represents a single database migration with execution logic.
39///
40/// Each migration contains the information needed to apply a specific
41/// schema change, including version tracking and the transformation function.
42/// Migrations are designed to be immutable and deterministic.
43#[derive(Debug, Clone)]
44struct Migration {
45 /// Unique version number for ordering and tracking
46 version: u32,
47 /// Human-readable name describing the migration's purpose
48 name: &'static str,
49 /// Function that applies the schema changes within a transaction
50 up: fn(&Transaction) -> Result<()>,
51}
52
53/// Central migration system manager that orchestrates schema evolution.
54///
55/// The `MigrationManager` maintains the complete registry of available migrations
56/// and provides the logic for applying them in the correct order. It ensures
57/// that migrations are applied atomically and tracks their completion status.
58pub struct MigrationManager {
59 /// Ordered list of all available migrations
60 ///
61 /// Migrations are stored in version order to ensure correct application
62 /// sequence. Each migration builds upon the schema state created by
63 /// its predecessors.
64 migrations: Vec<Migration>,
65}
66
67impl Default for MigrationManager {
68 fn default() -> Self {
69 Self::new()
70 }
71}
72
73impl MigrationManager {
74 /// Creates a new migration manager with all registered migrations.
75 ///
76 /// # Example
77 ///
78 /// ```rust
79 /// use kasl::db::migrations::MigrationManager;
80 ///
81 /// let manager = MigrationManager::new();
82 /// // Manager is ready to apply migrations
83 /// ```
84 pub fn new() -> Self {
85 let mut manager = Self { migrations: Vec::new() };
86
87 // Register all migrations in chronological order
88 // Each registration adds a migration to the internal registry
89 manager.register_migrations();
90 manager
91 }
92
93 /// Registers all database migrations in chronological order.
94 fn register_migrations(&mut self) {
95 // Initial schema - version 0 is implicit (empty database)
96 // Base tables are created by individual modules as needed
97
98 // Version 1: Base tables and performance indices
99 // Creates fundamental tables and adds indices for better performance
100 self.add_migration(1, "create_tables_and_indices", |tx| {
101 // First, create base tables that individual modules depend on
102 // This ensures tables exist before any indices are created
103
104 // Create tasks table
105 tx.execute(
106 "CREATE TABLE IF NOT EXISTS tasks (
107 id INTEGER NOT NULL PRIMARY KEY,
108 task_id INTEGER NOT NULL ON CONFLICT REPLACE DEFAULT 0,
109 timestamp TIMESTAMP DEFAULT CURRENT_TIMESTAMP,
110 name TEXT NOT NULL,
111 comment TEXT,
112 completeness INTEGER NOT NULL ON CONFLICT REPLACE DEFAULT 100,
113 excluded_from_search BOOLEAN NOT NULL ON CONFLICT REPLACE DEFAULT FALSE
114 )",
115 [],
116 )?;
117
118 // Create pauses table
119 tx.execute(
120 "CREATE TABLE IF NOT EXISTS pauses (
121 id INTEGER NOT NULL PRIMARY KEY,
122 start TIMESTAMP NOT NULL,
123 end TIMESTAMP,
124 duration INTEGER
125 )",
126 [],
127 )?;
128
129 // Create workdays table
130 tx.execute(
131 "CREATE TABLE IF NOT EXISTS workdays (
132 id INTEGER PRIMARY KEY,
133 date DATE NOT NULL UNIQUE,
134 start TIMESTAMP NOT NULL,
135 end TIMESTAMP
136 )",
137 [],
138 )?;
139
140 // Now create indices for the tables we just created
141
142 // Index tasks by timestamp for chronological queries
143 tx.execute("CREATE INDEX IF NOT EXISTS idx_tasks_timestamp ON tasks(timestamp)", [])?;
144 // Index tasks by parent task relationship
145 tx.execute("CREATE INDEX IF NOT EXISTS idx_tasks_task_id ON tasks(task_id)", [])?;
146 // Index pauses by start time for temporal queries
147 tx.execute("CREATE INDEX IF NOT EXISTS idx_pauses_start ON pauses(start)", [])?;
148 // Index workdays by date for daily/monthly reporting
149 tx.execute("CREATE INDEX IF NOT EXISTS idx_workdays_date ON workdays(date)", [])?;
150
151 Ok(())
152 });
153
154 // Version 2: Task templates system for reusable task patterns
155 // Introduces the ability to save and reuse common task configurations
156 self.add_migration(2, "add_task_templates", |tx| {
157 tx.execute(
158 "CREATE TABLE IF NOT EXISTS task_templates (
159 id INTEGER PRIMARY KEY,
160 name TEXT NOT NULL UNIQUE,
161 task_name TEXT NOT NULL,
162 comment TEXT,
163 completeness INTEGER DEFAULT 100,
164 created_at TIMESTAMP DEFAULT CURRENT_TIMESTAMP
165 )",
166 [],
167 )?;
168 Ok(())
169 });
170
171 // Version 3: Tags and categorization system for task organization
172 // Adds support for tagging tasks with customizable labels and colors
173 self.add_migration(3, "add_tags_system", |tx| {
174 // Main tags table for storing tag definitions
175 tx.execute(
176 "CREATE TABLE IF NOT EXISTS tags (
177 id INTEGER PRIMARY KEY,
178 name TEXT NOT NULL UNIQUE,
179 color TEXT,
180 created_at TIMESTAMP DEFAULT CURRENT_TIMESTAMP
181 )",
182 [],
183 )?;
184
185 // Junction table for many-to-many task-tag relationships
186 tx.execute(
187 "CREATE TABLE IF NOT EXISTS task_tags (
188 task_id INTEGER NOT NULL,
189 tag_id INTEGER NOT NULL,
190 PRIMARY KEY (task_id, tag_id),
191 FOREIGN KEY (task_id) REFERENCES tasks(id) ON DELETE CASCADE,
192 FOREIGN KEY (tag_id) REFERENCES tags(id) ON DELETE CASCADE
193 )",
194 [],
195 )?;
196 Ok(())
197 });
198
199 // Version 4: Soft delete functionality for data preservation
200 // Enables logical deletion while maintaining data for auditing
201 self.add_migration(4, "add_soft_delete", |tx| {
202 tx.execute("ALTER TABLE tasks ADD COLUMN deleted_at TIMESTAMP", [])?;
203 tx.execute("CREATE INDEX idx_tasks_deleted_at ON tasks(deleted_at)", [])?;
204 Ok(())
205 });
206
207 // Version 5: Workday notes and annotations for context tracking
208 // Allows users to add contextual notes to their workdays
209 self.add_migration(5, "add_workday_notes", |tx| {
210 tx.execute("ALTER TABLE workdays ADD COLUMN notes TEXT", [])?;
211 Ok(())
212 });
213
214 // Version 6: Manual breaks table for productivity management
215 // Enables users to add manual break periods to improve productivity calculations
216 self.add_migration(6, "add_breaks_table", |tx| {
217 tx.execute(
218 "CREATE TABLE IF NOT EXISTS breaks (
219 id INTEGER PRIMARY KEY,
220 date DATE NOT NULL,
221 start_time DATETIME NOT NULL,
222 end_time DATETIME NOT NULL,
223 duration INTEGER NOT NULL,
224 reason TEXT,
225 created_at DATETIME DEFAULT CURRENT_TIMESTAMP
226 )",
227 [],
228 )?;
229
230 // Create index for efficient daily break lookups
231 tx.execute("CREATE INDEX idx_breaks_date ON breaks(date)", [])?;
232 Ok(())
233 });
234
235 // Version 7: Jira inbox for assigned open issues and toast notifications
236 self.add_migration(7, "add_jira_inbox_table", |tx| {
237 tx.execute(
238 "CREATE TABLE IF NOT EXISTS jira_inbox (
239 issue_key TEXT PRIMARY KEY NOT NULL,
240 issue_id TEXT NOT NULL,
241 summary TEXT NOT NULL,
242 status TEXT NOT NULL,
243 priority TEXT,
244 priority_rank INTEGER NOT NULL DEFAULT 999,
245 url TEXT NOT NULL,
246 first_seen TIMESTAMP NOT NULL,
247 last_seen TIMESTAMP NOT NULL,
248 notified INTEGER NOT NULL DEFAULT 0,
249 pinned INTEGER NOT NULL DEFAULT 0,
250 dismissed INTEGER NOT NULL DEFAULT 0,
251 raw_updated TEXT
252 )",
253 [],
254 )?;
255 tx.execute(
256 "CREATE INDEX IF NOT EXISTS idx_jira_inbox_active
257 ON jira_inbox(dismissed, pinned DESC, priority_rank ASC, last_seen DESC)",
258 [],
259 )?;
260 Ok(())
261 });
262
263 // Version 8: status catalog + scoring/sort_value for inbox ranking
264 self.add_migration(8, "jira_inbox_status_id_and_sort_value", |tx| {
265 tx.execute(
266 "CREATE TABLE IF NOT EXISTS jira_statuses (
267 id TEXT PRIMARY KEY NOT NULL,
268 name TEXT NOT NULL
269 )",
270 [],
271 )?;
272 tx.execute("ALTER TABLE jira_inbox ADD COLUMN status_id TEXT", [])?;
273 tx.execute("ALTER TABLE jira_inbox ADD COLUMN sort_value REAL", [])?;
274 tx.execute(
275 "CREATE INDEX IF NOT EXISTS idx_jira_inbox_sort
276 ON jira_inbox(dismissed, pinned DESC, sort_value DESC, priority_rank ASC)",
277 [],
278 )?;
279 Ok(())
280 });
281
282 // Version 9: wipe legacy status name strings; use status_id + jira_statuses only
283 self.add_migration(9, "clear_jira_inbox_legacy_status_text", |tx| {
284 tx.execute("UPDATE jira_inbox SET status = ''", [])?;
285 Ok(())
286 });
287
288 // Version 10: drop unused legacy status text column (canonical: status_id)
289 self.add_migration(10, "drop_jira_inbox_legacy_status_column", |tx| {
290 tx.execute("ALTER TABLE jira_inbox DROP COLUMN status", [])?;
291 Ok(())
292 });
293
294 // Version 11: fold manual breaks into pauses as protected records.
295 //
296 // The separate `breaks` table held synthetic records whose times were
297 // invented by a placement heuristic; downstream code converted them to
298 // pauses anyway. Manual breaks now live in `pauses` with `protected = 1`,
299 // which exempts them from the duration threshold and from merging with
300 // adjacent pauses. Existing break rows are carried over so historical
301 // reports keep their numbers.
302 self.add_migration(11, "fold_breaks_into_protected_pauses", |tx| {
303 tx.execute("ALTER TABLE pauses ADD COLUMN protected INTEGER NOT NULL DEFAULT 0", [])?;
304 tx.execute("ALTER TABLE pauses ADD COLUMN reason TEXT", [])?;
305
306 // Carry over manual breaks; duration is stored in seconds in `pauses`
307 // but was stored in minutes in `breaks`.
308 tx.execute(
309 "INSERT INTO pauses (start, end, duration, protected, reason)
310 SELECT start_time, end_time, duration * 60, 1, reason FROM breaks",
311 [],
312 )?;
313
314 tx.execute("DROP INDEX IF EXISTS idx_breaks_date", [])?;
315 tx.execute("DROP TABLE IF EXISTS breaks", [])?;
316 Ok(())
317 });
318
319 // Version 12: inbox reconciliation and change tracking.
320 //
321 // `gone_at` marks issues that stopped appearing in the Jira poll
322 // (closed, reassigned) so the list stops showing them instead of
323 // freezing on the first sync. `last_change`/`changed_at` record the
324 // most recent visible change (status, priority, score) for badges
325 // and toasts.
326 self.add_migration(12, "jira_inbox_gone_and_change_tracking", |tx| {
327 tx.execute("ALTER TABLE jira_inbox ADD COLUMN gone_at TIMESTAMP", [])?;
328 tx.execute("ALTER TABLE jira_inbox ADD COLUMN last_change TEXT", [])?;
329 tx.execute("ALTER TABLE jira_inbox ADD COLUMN changed_at TIMESTAMP", [])?;
330 Ok(())
331 });
332
333 // Version 13: the link between an inbox issue and the task it became.
334 //
335 // `take` used to create a task and dismiss the issue, which severed
336 // the two: the key survived only inside the task's name, and the
337 // inbox forgot the issue had ever been picked up. `tasks.jira_key`
338 // records which issue a task came from, and `jira_inbox.taken_at`
339 // keeps the issue in the list marked as taken rather than hiding it.
340 //
341 // Dismissal stays what it always was - "not my problem" - so rows
342 // dismissed before this migration are left alone.
343 self.add_migration(13, "link_taken_issues_to_their_tasks", |tx| {
344 tx.execute("ALTER TABLE tasks ADD COLUMN jira_key TEXT", [])?;
345 tx.execute("CREATE INDEX idx_tasks_jira_key ON tasks(jira_key)", [])?;
346 tx.execute("ALTER TABLE jira_inbox ADD COLUMN taken_at TIMESTAMP", [])?;
347 Ok(())
348 });
349 }
350
351 /// Registers a single migration in the migration system.
352 ///
353 /// This helper method adds a migration to the internal registry with
354 /// proper version ordering and validation. It ensures that migrations
355 /// are stored in a consistent format for later execution.
356 ///
357 /// # Panics
358 ///
359 /// Panics if a migration with the same version number is already registered.
360 fn add_migration(&mut self, version: u32, name: &'static str, up: fn(&Transaction) -> Result<()>) {
361 self.migrations.push(Migration { version, name, up });
362 }
363
364 /// Executes all pending migrations in the correct order.
365 ///
366 /// # Example
367 ///
368 /// ```rust
369 /// # fn main() -> Result<(), Box<dyn std::error::Error>> {
370 /// use kasl::db::migrations::MigrationManager;
371 /// use rusqlite::Connection;
372 ///
373 /// let manager = MigrationManager::new();
374 /// let mut conn = Connection::open(":memory:")?;
375 /// manager.run_migrations(&mut conn)?;
376 /// # Ok(())
377 /// # }
378 /// ```
379 pub fn run_migrations(&self, conn: &mut Connection) -> Result<()> {
380 // Initialize the migrations tracking table
381 conn.execute(MIGRATIONS_TABLE, [])?;
382
383 // Determine the current schema version
384 let current_version = self.get_current_version(conn)?;
385
386 // Find all migrations that haven't been applied yet
387 let pending: Vec<&Migration> = self.migrations.iter().filter(|m| m.version > current_version).collect();
388
389 // Exit early if no migrations are needed
390 if pending.is_empty() {
391 msg_debug!("Database is up to date");
392 return Ok(());
393 }
394
395 // Notify user about pending migrations
396 msg_info!(Message::MigrationsFound(pending.len()));
397
398 // Execute all pending migrations within a single transaction
399 let tx = conn.transaction()?;
400
401 for migration in pending {
402 msg_info!(Message::RunningMigration(migration.version, migration.name.to_string()));
403
404 match (migration.up)(&tx) {
405 Ok(()) => {
406 // Record successful migration in tracking table
407 tx.execute(
408 "INSERT INTO migrations (version, name) VALUES (?1, ?2)",
409 params![migration.version, migration.name],
410 )?;
411 msg_success!(Message::MigrationCompleted(migration.version));
412 }
413 Err(e) => {
414 // Log migration failure and propagate error
415 msg_error!(Message::MigrationFailed(migration.version, e.to_string()));
416 return Err(e);
417 }
418 }
419 }
420
421 // Commit all successful migrations
422 tx.commit()?;
423 msg_success!(Message::AllMigrationsCompleted);
424
425 Ok(())
426 }
427
428 /// Retrieves the current database schema version.
429 fn get_current_version(&self, conn: &Connection) -> Result<u32> {
430 let version: Option<u32> = conn.query_row("SELECT MAX(version) FROM migrations", [], |row| row.get(0)).unwrap_or(Some(0));
431
432 Ok(version.unwrap_or(0))
433 }
434
435 /// Checks if a specific migration version has been applied.
436 ///
437 /// This utility method allows callers to verify whether a particular
438 /// migration has been successfully applied to the database. Useful
439 /// for conditional logic based on schema capabilities.
440 ///
441 /// # Example
442 ///
443 /// ```rust
444 /// # fn main() -> Result<(), Box<dyn std::error::Error>> {
445 /// use kasl::db::migrations::MigrationManager;
446 /// use rusqlite::Connection;
447 ///
448 /// let manager = MigrationManager::new();
449 /// let mut conn = Connection::open(":memory:")?;
450 /// manager.run_migrations(&mut conn)?;
451 /// if manager.is_migration_applied(&conn, 3)? {
452 /// // Tags system is available
453 /// }
454 /// # Ok(())
455 /// # }
456 /// ```
457 pub fn is_migration_applied(&self, conn: &Connection, version: u32) -> Result<bool> {
458 let count: i32 = conn.query_row("SELECT COUNT(*) FROM migrations WHERE version = ?1", params![version], |row| row.get(0))?;
459
460 Ok(count > 0)
461 }
462
463 /// Retrieves the complete migration history with timestamps.
464 ///
465 /// # Example
466 ///
467 /// ```rust
468 /// # fn main() -> Result<(), Box<dyn std::error::Error>> {
469 /// use kasl::db::migrations::MigrationManager;
470 /// use rusqlite::Connection;
471 ///
472 /// let manager = MigrationManager::new();
473 /// let mut conn = Connection::open(":memory:")?;
474 /// manager.run_migrations(&mut conn)?;
475 /// let history = manager.get_migration_history(&conn)?;
476 /// for (version, name, applied_at) in history {
477 /// println!("v{}: {} ({})", version, name, applied_at);
478 /// }
479 /// # Ok(())
480 /// # }
481 /// ```
482 pub fn get_migration_history(&self, conn: &Connection) -> Result<Vec<(u32, String, String)>> {
483 let mut stmt = conn.prepare("SELECT version, name, applied_at FROM migrations ORDER BY version")?;
484
485 let history = stmt
486 .query_map([], |row| Ok((row.get::<_, u32>(0)?, row.get::<_, String>(1)?, row.get::<_, String>(2)?)))?
487 .collect::<Result<Vec<_>, _>>()?;
488
489 Ok(history)
490 }
491
492 /// Rolls back migrations to a specific target version (debug builds only).
493 ///
494 /// This development utility allows rolling back migrations to a previous
495 /// schema version by removing migration records from the tracking table.
496 ///
497 /// # Example
498 ///
499 /// ```rust
500 /// # fn main() -> Result<(), Box<dyn std::error::Error>> {
501 /// use kasl::db::migrations::MigrationManager;
502 /// use rusqlite::Connection;
503 ///
504 /// #[cfg(debug_assertions)]
505 /// {
506 /// let manager = MigrationManager::new();
507 /// let mut conn = Connection::open(":memory:")?;
508 /// manager.run_migrations(&mut conn)?;
509 /// manager.rollback_to(&mut conn, 2)?; // Roll back to version 2
510 /// }
511 /// # Ok(())
512 /// # }
513 /// ```
514 #[cfg(debug_assertions)]
515 pub fn rollback_to(&self, conn: &mut Connection, target_version: u32) -> Result<()> {
516 let current_version = self.get_current_version(conn)?;
517
518 if target_version >= current_version {
519 msg_info!(Message::NothingToRollback);
520 return Ok(());
521 }
522
523 msg_info!(Message::RollingBack(current_version, target_version));
524
525 // Remove migration records beyond the target version
526 // Note: This is a simplified rollback that doesn't actually reverse schema changes
527 conn.execute("DELETE FROM migrations WHERE version > ?1", params![target_version])?;
528
529 msg_success!(Message::RollbackCompleted(target_version));
530 Ok(())
531 }
532}
533
534/// Initializes a database connection with all pending migrations applied.
535///
536/// This convenience function creates a migration manager and applies all
537/// pending migrations to the provided connection. It's the recommended
538/// way to ensure a database is up to date with the latest schema.
539///
540/// # Example
541///
542/// ```rust,no_run
543/// # fn main() -> Result<(), Box<dyn std::error::Error>> {
544/// use kasl::db::migrations::init_with_migrations;
545/// use rusqlite::Connection;
546///
547/// let mut conn = Connection::open("kasl.db")?;
548/// init_with_migrations(&mut conn)?;
549/// # Ok(())
550/// # }
551/// ```
552pub fn init_with_migrations(conn: &mut Connection) -> Result<()> {
553 let manager = MigrationManager::new();
554 manager.run_migrations(conn)?;
555 Ok(())
556}
557
558/// Retrieves the current database schema version.
559///
560/// This utility function provides a simple way to check the current
561/// schema version without creating a full migration manager instance.
562///
563/// # Example
564///
565/// ```rust
566/// # fn main() -> Result<(), Box<dyn std::error::Error>> {
567/// use kasl::db::migrations::get_db_version;
568/// use rusqlite::Connection;
569///
570/// let conn = Connection::open(":memory:")?;
571/// let version = get_db_version(&conn)?;
572/// println!("Current schema version: {}", version);
573/// # Ok(())
574/// # }
575/// ```
576pub fn get_db_version(conn: &Connection) -> Result<u32> {
577 let manager = MigrationManager::new();
578 manager.get_current_version(conn)
579}
580
581/// Checks if the database requires migration to the latest schema version.
582///
583/// This utility function compares the current database version with the
584/// latest available migration version to determine if updates are needed.
585///
586/// # Example
587///
588/// ```rust
589/// # fn main() -> Result<(), Box<dyn std::error::Error>> {
590/// use kasl::db::migrations::needs_migration;
591/// use rusqlite::Connection;
592///
593/// let conn = Connection::open(":memory:")?;
594/// if needs_migration(&conn)? {
595/// println!("Database needs migration!");
596/// }
597/// # Ok(())
598/// # }
599/// ```
600pub fn needs_migration(conn: &Connection) -> Result<bool> {
601 let manager = MigrationManager::new();
602 let current = manager.get_current_version(conn)?;
603 let latest = manager.migrations.last().map(|m| m.version).unwrap_or(0);
604 Ok(current < latest)
605}