The report answered for the whole index, which is the one window a spending report is least often asked for: last January's groceries sat in the same total as last week's, and nothing on screen said which was which. It now opens on the month that has just ended -- the last one a statement can be complete for -- and left/right step along an axis beside the totals, from all time down through the named windows to the oldest month the index holds. The period narrows the report and nothing else. reloadReport runs its own query rather than reusing the rows the transaction list is showing: the two share the account, the search and the untagged toggle, and differ only in the date bounds, so opening on last month must not hide the rest of the index from the list beside it. Nothing may put the period into m.filter, which is exactly what would make it leak. The windows are relative to today, never to the newest statement. "Last month" with nothing in it reports nothing and says so, because silently answering for a month nobody asked for is worse than an empty screen; an empty period and an empty index therefore give different messages, one asking for another period and the other for an import. The rolling windows run to the end of this month rather than to the last complete one -- "last 3 months" is asked in order to see what is happening now, and leaving out the days since the 1st answers a question nobody put. The axis is built over the whole index rather than the rows in view, or it would grow and shrink as the account or search filter changed and move under the cursor; a reload rebuilds it, since an import can reach further back, but keeps the window the user was on. s cycles how those rows are arranged: largest out first as before, then in, net lowest first so the biggest losses lead, count, and the tag A to Z. A letter rather than a chord because the report is not a form. The marked heading says which column the rows are read from and the help names what the key does next, as the rule builder's preview already does. The sort rearranges rows and never changes which rows there are, so the order stays out of the filter for the same reason the period does. Currency remains the outer key under every order -- there are no rates here, so two currencies interleaved by amount would invite a comparison that cannot be made -- and every order falls back to the tag, so ties keep a fixed position instead of reshuffling between reloads. money report takes the same choice as --sort out|in|net|count|tag, and a misspelt one is refused rather than silently reporting in the default order. It keeps --month and has no equivalent of the wider windows. store.Filter gains From and To, compared as strings because dates are stored ISO-8601 and a string comparison is therefore a date comparison. store.Months replaces report.Months, which nothing had ever called: the axis needs the months of the whole index, not of a slice already in hand. Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
415 lines
12 KiB
Go
415 lines
12 KiB
Go
// Package store is the SQLite index over the statements. It is entirely
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// rebuildable: delete index.db and re-import to get it back. Nothing lives
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// only here.
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package store
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import (
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"database/sql"
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"fmt"
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"os"
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"path/filepath"
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"strings"
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_ "modernc.org/sqlite"
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"git.petrovv.com/nikola/money/internal/model"
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)
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// DB wraps the SQLite handle.
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type DB struct {
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sql *sql.DB
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}
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const schema = `
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PRAGMA foreign_keys = ON;
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CREATE TABLE IF NOT EXISTS accounts (
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id INTEGER PRIMARY KEY AUTOINCREMENT,
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slug TEXT NOT NULL UNIQUE,
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name TEXT NOT NULL,
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currency TEXT NOT NULL,
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minor_digits INTEGER NOT NULL DEFAULT 2
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);
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CREATE TABLE IF NOT EXISTS source_files (
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id INTEGER PRIMARY KEY AUTOINCREMENT,
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account_id INTEGER NOT NULL REFERENCES accounts(id),
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path TEXT NOT NULL,
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sha256 TEXT NOT NULL,
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imported_at TEXT NOT NULL,
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UNIQUE(account_id, path)
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);
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CREATE TABLE IF NOT EXISTS transactions (
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id INTEGER PRIMARY KEY AUTOINCREMENT,
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account_id INTEGER NOT NULL REFERENCES accounts(id),
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source_file_id INTEGER NOT NULL REFERENCES source_files(id),
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fingerprint TEXT NOT NULL,
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date TEXT NOT NULL,
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description TEXT NOT NULL,
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amount_minor INTEGER NOT NULL,
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type TEXT NOT NULL DEFAULT '',
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balance_minor INTEGER,
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rule_tag TEXT,
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UNIQUE(account_id, fingerprint)
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);
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CREATE INDEX IF NOT EXISTS idx_txn_date ON transactions(date);
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CREATE INDEX IF NOT EXISTS idx_txn_account ON transactions(account_id);
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-- One row per matched movement between the user's own accounts, derived from
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-- the [[transfer]] blocks in rules.toml. A leg belongs to at most one transfer,
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-- which UNIQUE enforces rather than trusting the pairing to be well behaved.
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CREATE TABLE IF NOT EXISTS transfers (
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id INTEGER PRIMARY KEY AUTOINCREMENT,
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def_index INTEGER NOT NULL,
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out_txn_id INTEGER NOT NULL UNIQUE REFERENCES transactions(id),
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in_txn_id INTEGER NOT NULL UNIQUE REFERENCES transactions(id)
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);
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`
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// Open opens (creating if needed) the index at path.
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//
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// There is no schema migration: the index caches what the statements and
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// rules.toml already say, so a build that changes the schema is answered by
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// deleting index.db and importing again, not by patching the old one in place.
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// Until it is deleted, queries against it fail on the columns it lacks.
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func Open(path string) (*DB, error) {
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if err := os.MkdirAll(filepath.Dir(path), 0o755); err != nil {
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return nil, fmt.Errorf("create index dir: %w", err)
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}
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sqlDB, err := sql.Open("sqlite", path)
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if err != nil {
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return nil, fmt.Errorf("open index %s: %w", path, err)
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}
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if _, err := sqlDB.Exec(schema); err != nil {
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sqlDB.Close()
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return nil, fmt.Errorf("apply schema: %w", err)
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}
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return &DB{sql: sqlDB}, nil
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}
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// Close releases the underlying handle.
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func (d *DB) Close() error { return d.sql.Close() }
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// UpsertAccount inserts or updates an account by slug and returns its id.
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func (d *DB) UpsertAccount(a model.Account) (int64, error) {
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_, err := d.sql.Exec(`
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INSERT INTO accounts (slug, name, currency, minor_digits)
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VALUES (?, ?, ?, ?)
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ON CONFLICT(slug) DO UPDATE SET
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name = excluded.name,
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currency = excluded.currency,
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minor_digits = excluded.minor_digits`,
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a.Slug, a.Name, a.Currency, a.MinorDigits)
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if err != nil {
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return 0, fmt.Errorf("upsert account %s: %w", a.Slug, err)
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}
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var id int64
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if err := d.sql.QueryRow(`SELECT id FROM accounts WHERE slug = ?`, a.Slug).Scan(&id); err != nil {
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return 0, fmt.Errorf("read account id %s: %w", a.Slug, err)
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}
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return id, nil
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}
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// Accounts lists every known account, ordered by slug.
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func (d *DB) Accounts() ([]model.Account, error) {
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rows, err := d.sql.Query(`SELECT id, slug, name, currency, minor_digits FROM accounts ORDER BY slug`)
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if err != nil {
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return nil, fmt.Errorf("list accounts: %w", err)
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}
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defer rows.Close()
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var out []model.Account
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for rows.Next() {
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var a model.Account
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if err := rows.Scan(&a.ID, &a.Slug, &a.Name, &a.Currency, &a.MinorDigits); err != nil {
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return nil, err
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}
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out = append(out, a)
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}
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return out, rows.Err()
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}
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// SourceFile records that a statement file was imported, returning its id.
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func (d *DB) SourceFile(accountID int64, path, sha, importedAt string) (int64, error) {
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_, err := d.sql.Exec(`
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INSERT INTO source_files (account_id, path, sha256, imported_at)
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VALUES (?, ?, ?, ?)
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ON CONFLICT(account_id, path) DO UPDATE SET
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sha256 = excluded.sha256,
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imported_at = excluded.imported_at`,
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accountID, path, sha, importedAt)
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if err != nil {
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return 0, fmt.Errorf("record source file %s: %w", path, err)
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}
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var id int64
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if err := d.sql.QueryRow(
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`SELECT id FROM source_files WHERE account_id = ? AND path = ?`, accountID, path).Scan(&id); err != nil {
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return 0, fmt.Errorf("read source file id %s: %w", path, err)
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}
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return id, nil
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}
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// SourceFileSHA returns the recorded checksum for a statement file, and whether
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// it has been imported before.
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func (d *DB) SourceFileSHA(accountID int64, path string) (string, bool, error) {
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var sha string
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err := d.sql.QueryRow(
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`SELECT sha256 FROM source_files WHERE account_id = ? AND path = ?`, accountID, path).Scan(&sha)
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if err == sql.ErrNoRows {
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return "", false, nil
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}
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if err != nil {
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return "", false, err
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}
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return sha, true, nil
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}
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// InsertTransaction adds a transaction unless its fingerprint already exists
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// for that account. It reports whether a new row was created.
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//
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// Existing rows are deliberately left untouched, so re-importing a statement
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// that overlaps one already imported adds nothing rather than duplicating it.
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func (d *DB) InsertTransaction(t model.Transaction) (bool, error) {
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var balance any
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if t.BalanceMinor != nil {
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balance = *t.BalanceMinor
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}
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res, err := d.sql.Exec(`
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INSERT INTO transactions
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(account_id, source_file_id, fingerprint, date, description, amount_minor,
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type, balance_minor, rule_tag)
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VALUES (?, ?, ?, ?, ?, ?, ?, ?, NULLIF(?, ''))
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ON CONFLICT(account_id, fingerprint) DO NOTHING`,
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t.AccountID, t.SourceFileID, t.Fingerprint, t.Date, t.Description,
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t.AmountMinor, t.Type, balance, t.RuleTag)
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if err != nil {
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return false, fmt.Errorf("insert transaction: %w", err)
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}
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n, err := res.RowsAffected()
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if err != nil {
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return false, err
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}
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return n > 0, nil
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}
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// Filter narrows a transaction query.
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type Filter struct {
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AccountSlug string
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// Untagged selects the rows still waiting for a verdict: no tag, and not a
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// leg of a matched transfer. A paired leg has been accounted for by the
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// transfer that claimed it, so listing it as untagged would ask the user to
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// write a rule for something that is already spoken for and that the report
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// leaves out anyway.
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Untagged bool
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Month string // YYYY-MM
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// From and To bound the dates inclusively, as YYYY-MM-DD, either side empty
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// for unbounded. Dates are stored ISO-8601, so a string comparison is a date
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// comparison; nothing has to be parsed to filter on a range.
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From string
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To string
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Search string // case-insensitive substring of the description
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Limit int
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}
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// Transactions returns rows matching f, newest first.
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func (d *DB) Transactions(f Filter) ([]model.Transaction, error) {
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q := `
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SELECT t.id, t.account_id, a.slug, a.currency, a.minor_digits,
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t.fingerprint, t.date, t.description, t.amount_minor,
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COALESCE(s.path, ''), t.type, t.balance_minor,
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COALESCE(t.rule_tag, ''), x.id
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FROM transactions t
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JOIN accounts a ON a.id = t.account_id
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LEFT JOIN source_files s ON s.id = t.source_file_id
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LEFT JOIN transfers x ON x.out_txn_id = t.id OR x.in_txn_id = t.id
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WHERE 1 = 1`
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var args []any
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if f.AccountSlug != "" {
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q += ` AND a.slug = ?`
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args = append(args, f.AccountSlug)
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}
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if f.Untagged {
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q += ` AND NULLIF(t.rule_tag, '') IS NULL AND x.id IS NULL`
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}
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if f.Month != "" {
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q += ` AND substr(t.date, 1, 7) = ?`
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args = append(args, f.Month)
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}
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if f.From != "" {
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q += ` AND t.date >= ?`
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args = append(args, f.From)
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}
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if f.To != "" {
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q += ` AND t.date <= ?`
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args = append(args, f.To)
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}
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q += ` ORDER BY t.date DESC, t.id DESC`
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// Search and Limit are applied in Go: SQLite's upper()/LIKE fold ASCII
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// only, which would silently fail on Cyrillic statement descriptions.
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rows, err := d.sql.Query(q, args...)
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if err != nil {
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return nil, fmt.Errorf("query transactions: %w", err)
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}
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defer rows.Close()
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needle := model.NormalizeDescription(f.Search)
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var out []model.Transaction
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for rows.Next() {
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var (
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t model.Transaction
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balance sql.NullInt64
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transfer sql.NullInt64
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)
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if err := rows.Scan(&t.ID, &t.AccountID, &t.AccountSlug, &t.Currency, &t.MinorDigits,
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&t.Fingerprint, &t.Date, &t.Description, &t.AmountMinor, &t.SourcePath,
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&t.Type, &balance, &t.RuleTag, &transfer); err != nil {
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return nil, err
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}
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if balance.Valid {
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v := balance.Int64
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t.BalanceMinor = &v
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}
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if transfer.Valid {
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v := transfer.Int64
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t.TransferID = &v
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}
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if needle != "" && !strings.Contains(model.NormalizeDescription(t.Description), needle) {
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continue
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}
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out = append(out, t)
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if f.Limit > 0 && len(out) >= f.Limit {
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break
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}
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}
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return out, rows.Err()
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}
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// RuleAssignment is one row's recomputed rule verdict.
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type RuleAssignment struct {
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ID int64
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Tag string
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}
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// ApplyRuleResults rewrites rule_tag for every listed row in a single
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// transaction. The manual column is never touched.
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func (d *DB) ApplyRuleResults(rs []RuleAssignment) error {
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tx, err := d.sql.Begin()
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if err != nil {
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return err
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}
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defer tx.Rollback()
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stmt, err := tx.Prepare(
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`UPDATE transactions SET rule_tag = NULLIF(?, '') WHERE id = ?`)
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if err != nil {
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return err
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}
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defer stmt.Close()
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for _, r := range rs {
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if _, err := stmt.Exec(r.Tag, r.ID); err != nil {
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return fmt.Errorf("apply rules to txn %d: %w", r.ID, err)
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}
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}
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return tx.Commit()
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}
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// TransferLink is one matched pair, as decided by the transfer definitions.
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type TransferLink struct {
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DefIndex int
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OutID int64
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InID int64
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}
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// ReplaceTransfers rewrites the whole pairing in one transaction. Like the
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// tags, it is derived from a file the user edits, so it is replaced wholesale
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// rather than patched: a definition removed from rules.toml must take its pairs
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// with it.
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func (d *DB) ReplaceTransfers(links []TransferLink) error {
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tx, err := d.sql.Begin()
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if err != nil {
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return err
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}
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defer tx.Rollback()
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if _, err := tx.Exec(`DELETE FROM transfers`); err != nil {
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return fmt.Errorf("clear transfers: %w", err)
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}
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stmt, err := tx.Prepare(
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`INSERT INTO transfers (def_index, out_txn_id, in_txn_id) VALUES (?, ?, ?)`)
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if err != nil {
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return err
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}
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defer stmt.Close()
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for _, l := range links {
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if _, err := stmt.Exec(l.DefIndex, l.OutID, l.InID); err != nil {
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return fmt.Errorf("link transfer %d→%d: %w", l.OutID, l.InID, err)
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}
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}
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return tx.Commit()
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}
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// Balance sums every transaction in an account.
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func (d *DB) Balance(accountID int64) (int64, error) {
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var v sql.NullInt64
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err := d.sql.QueryRow(
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`SELECT SUM(amount_minor) FROM transactions WHERE account_id = ?`, accountID).Scan(&v)
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if err != nil {
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return 0, err
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}
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return v.Int64, nil
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}
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// Count returns the number of transactions in an account.
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func (d *DB) Count(accountID int64) (int, error) {
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var n int
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err := d.sql.QueryRow(
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`SELECT COUNT(*) FROM transactions WHERE account_id = ?`, accountID).Scan(&n)
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return n, err
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}
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// Months lists the distinct YYYY-MM the index holds, most recent first. It is
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// asked of the whole index rather than of a filtered view on purpose: it is the
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// time axis the report screen steps along, and an axis that grew and shrank as
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// the account or search filter changed would move under the cursor.
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func (d *DB) Months() ([]string, error) {
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rows, err := d.sql.Query(
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`SELECT DISTINCT substr(date, 1, 7) FROM transactions ORDER BY 1 DESC`)
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if err != nil {
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return nil, fmt.Errorf("list months: %w", err)
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}
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defer rows.Close()
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var out []string
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for rows.Next() {
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var s string
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if err := rows.Scan(&s); err != nil {
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return nil, err
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}
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out = append(out, s)
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}
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return out, rows.Err()
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}
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// Tags lists every tag in use, for completion in the TUI.
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func (d *DB) Tags() ([]string, error) {
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rows, err := d.sql.Query(`
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SELECT DISTINCT rule_tag FROM transactions
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WHERE rule_tag IS NOT NULL AND rule_tag != '' ORDER BY rule_tag`)
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if err != nil {
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return nil, err
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}
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defer rows.Close()
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var out []string
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for rows.Next() {
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var s string
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if err := rows.Scan(&s); err != nil {
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return nil, err
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}
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out = append(out, s)
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}
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return out, rows.Err()
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}
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