A transfer was a second verdict carried alongside the tag: a boolean set by transfer = true in a rule or by x in the TUI, kept in its own pair of rule_ and manual_ columns, whose one real effect was to hold the row out of the report. The rest of it was display -- a T column in the transaction list, in the rules screen and in money ls. Money moved between your own accounts is now tagged like anything else and counts like anything else. The leg leaving checking is an outflow and the leg arriving in savings is an inflow, so a report over the whole data root roughly nets out while one scoped to a single account or month does not. That is the price of one verdict per transaction instead of two. A rule now needs a tag, and one that set only transfer = true is refused by number on load. A leftover transfer key beside a tag is ignored, as unknown TOML keys always were, and an index built by an older binary drops both columns when it is opened. Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
114 lines
2.7 KiB
Go
114 lines
2.7 KiB
Go
// Package report aggregates transactions for the summary views.
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package report
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import (
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"sort"
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"git.petrovv.com/nikola/money/internal/model"
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)
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// TagTotal is one row of a spending breakdown.
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type TagTotal struct {
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Tag string
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Currency string
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In int64 // sum of inflows, positive
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Out int64 // sum of outflows, positive
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Count int
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Digits int
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}
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// Net is inflow minus outflow.
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func (t TagTotal) Net() int64 { return t.In - t.Out }
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// ByTag groups transactions by currency and effective tag. Untagged rows are
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// collected under "(untagged)" so they stay visible instead of vanishing.
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const Untagged = "(untagged)"
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// ByTag returns totals sorted by currency, then by largest outflow first.
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func ByTag(txns []model.Transaction) []TagTotal {
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type key struct{ currency, tag string }
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acc := map[key]*TagTotal{}
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for _, t := range txns {
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tag := t.Tag()
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if tag == "" {
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tag = Untagged
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}
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k := key{t.Currency, tag}
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row, ok := acc[k]
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if !ok {
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row = &TagTotal{Tag: tag, Currency: t.Currency, Digits: t.MinorDigits}
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acc[k] = row
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}
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if t.AmountMinor < 0 {
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row.Out += -t.AmountMinor
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} else {
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row.In += t.AmountMinor
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}
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row.Count++
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}
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out := make([]TagTotal, 0, len(acc))
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for _, row := range acc {
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out = append(out, *row)
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}
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sort.Slice(out, func(i, j int) bool {
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if out[i].Currency != out[j].Currency {
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return out[i].Currency < out[j].Currency
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}
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if out[i].Out != out[j].Out {
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return out[i].Out > out[j].Out
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}
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return out[i].Tag < out[j].Tag
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})
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return out
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}
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// CurrencyTotal is the bottom line for one currency.
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type CurrencyTotal struct {
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Currency string
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In int64
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Out int64
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Digits int
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}
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// Net is inflow minus outflow.
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func (c CurrencyTotal) Net() int64 { return c.In - c.Out }
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// Totals sums the per-tag rows per currency. Currencies are never combined,
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// because the tool holds no exchange rates.
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func Totals(rows []TagTotal) []CurrencyTotal {
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acc := map[string]*CurrencyTotal{}
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for _, r := range rows {
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c, ok := acc[r.Currency]
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if !ok {
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c = &CurrencyTotal{Currency: r.Currency, Digits: r.Digits}
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acc[r.Currency] = c
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}
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c.In += r.In
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c.Out += r.Out
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}
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out := make([]CurrencyTotal, 0, len(acc))
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for _, c := range acc {
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out = append(out, *c)
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}
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sort.Slice(out, func(i, j int) bool { return out[i].Currency < out[j].Currency })
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return out
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}
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// Months lists the distinct YYYY-MM present in txns, most recent first.
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func Months(txns []model.Transaction) []string {
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seen := map[string]bool{}
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for _, t := range txns {
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if len(t.Date) >= 7 {
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seen[t.Date[:7]] = true
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}
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}
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out := make([]string, 0, len(seen))
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for m := range seen {
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out = append(out, m)
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}
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sort.Sort(sort.Reverse(sort.StringSlice(out)))
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return out
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}
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