btctax_cli/session.rs
1//! `Session` wraps one open `btctax_store::Vault` and is the single seam every command opens. The
2//! passphrase is ALWAYS a parameter — production resolves it in `main` (prompt/env); tests inject a
3//! constructed `Passphrase`. `project()` runs the pure core projection over the bundled price dataset.
4use crate::bulk_estimated;
5use crate::config::{self, CliConfig};
6use crate::donation_details;
7use crate::optimize_attest;
8use crate::CliError;
9use crate::{return_inputs, tax_profile};
10use btctax_adapters::{BundledFullReturnTables, BundledTaxTables};
11use btctax_core::conventions::{round_cents, tax_date, TRANSITION_DATE};
12use btctax_core::persistence::{init_schema, load_all};
13use btctax_core::tax::tables::FullReturnTables;
14use btctax_core::{project, LedgerEvent, LedgerState, PriceProvider, ProjectionConfig, TaxTables};
15use btctax_core::{
16 AllocLot, BlockerKind, DonationDetails, EventId, EventPayload, LotMethod, PendingTransfer, Sat,
17 TaxDate, TaxProfile, Usd, WalletId,
18};
19use btctax_store::{Passphrase, Vault};
20use rusqlite::Connection;
21use std::collections::{BTreeMap, BTreeSet};
22use std::path::Path;
23
24// ── Bulk link-transfer plan (bulk-link-transfer D1) ──────────────────────────
25//
26// The shared, READ-ONLY plan both the CLI (`cmd::reconcile::bulk_link_plan`) and the TUI priced
27// preview compute from the HELD session. Modeled on `optimize_proposal`/`safe_harbor_residue`: a
28// `&self` read helper that appends and persists NOTHING.
29
30/// Time-frame selector for a bulk link-transfer plan. `Range` bounds are INCLUSIVE.
31#[derive(Debug, Clone, PartialEq, Eq)]
32pub enum Frame {
33 All,
34 Year(i32),
35 Range { from: TaxDate, to: TaxDate },
36}
37
38/// Filter narrowing which pending outbound transfers a bulk plan selects.
39#[derive(Debug, Clone, PartialEq, Eq)]
40pub struct BulkFilter {
41 pub frame: Frame,
42 pub from_wallet: Option<WalletId>,
43}
44
45/// One enriched pending outbound transfer in a bulk link-transfer plan.
46#[derive(Debug, Clone, PartialEq, Eq)]
47pub struct BulkLinkRow {
48 pub out_event: EventId,
49 pub date: TaxDate,
50 /// [R0-N2] ALWAYS `Some` for a pending out (a wallet-less TransferOut never reaches
51 /// `pending_reconciliation`); `Option` kept defensively.
52 pub source_wallet: Option<WalletId>,
53 pub principal_sat: Sat,
54 /// `fmv_of(prices, date, principal_sat)` [R0-M1]; advisory, `None` on missing price / overflow.
55 pub usd_value: Option<Usd>,
56 /// Σ leg `usd_basis` carried (over the principal+fee sats the legs cover); non-taxable → carries.
57 pub basis_usd: Usd,
58}
59
60/// The read-only plan a bulk link-transfer would execute: the eligible/in-frame `included` rows, the
61/// `skipped_same_wallet` rows (source == dest — a meaningless self-link), and the preview totals.
62#[derive(Debug, Clone, PartialEq, Eq)]
63pub struct BulkLinkPlan {
64 pub dest: WalletId,
65 /// Eligible + in-frame + passes `from_wallet` + source != dest. Sorted by `date`.
66 pub included: Vec<BulkLinkRow>,
67 /// Source wallet == dest → cannot self-link to itself.
68 pub skipped_same_wallet: Vec<BulkLinkRow>,
69 pub total_sat: Sat,
70 /// [R0-I2] Σ of the priced `usd_value`s — a FLOOR, always a real number.
71 pub total_usd_value_floor: Usd,
72 /// [R0-I2] rows priced `None` → render "≥ $X (N unavailable)" vs exact "$X".
73 pub missing_price_count: usize,
74 /// Σ `basis_usd` over `included`.
75 pub total_basis_usd: Usd,
76}
77
78// ── Bulk classify-inbound-self-transfer plan (bulk-classify-inbound-self-transfer D1) ─
79//
80// The shared, READ-ONLY plan both the CLI (`cmd::reconcile::bulk_self_transfer_in_plan`) and the TUI
81// priced preview compute from the HELD session. A close MIRROR of `bulk_link_transfer_plan` applied to
82// Cycle A's `InboundClass::SelfTransferMine` ($0 conservative basis, non-taxable). Appends and
83// persists NOTHING.
84
85/// Filter narrowing which pending unknown-basis inbound deposits a bulk STI plan selects. `wallet`
86/// filters the RECEIVING wallet (the inbound has no "destination" — it IS the receiving leg).
87#[derive(Debug, Clone, PartialEq, Eq)]
88pub struct BulkStiFilter {
89 pub frame: Frame,
90 pub wallet: Option<WalletId>,
91}
92
93/// One enriched pending unknown-basis inbound deposit in a bulk STI plan.
94#[derive(Debug, Clone, PartialEq, Eq)]
95pub struct BulkStiRow {
96 pub in_event: EventId,
97 pub date: TaxDate,
98 /// [R0-M2] ALWAYS `Some` (wallet-less inbounds are excluded — they create no lot); `Option` kept
99 /// defensively / for display symmetry with `BulkLinkRow`.
100 pub wallet: Option<WalletId>,
101 pub sat: Sat,
102 /// `fmv_of(prices, date, sat)` — the market value being given $0 basis; `None` on missing price.
103 pub usd_fmv: Option<Usd>,
104}
105
106/// The read-only plan a bulk STI would execute: the eligible/in-frame `included` rows + preview totals.
107/// No `skipped_*` bucket (an inbound has no self-destination to skip).
108#[derive(Debug, Clone, PartialEq, Eq)]
109pub struct BulkStiPlan {
110 /// Eligible + in-frame + passes `wallet` filter. Sorted by `date`.
111 pub included: Vec<BulkStiRow>,
112 pub total_sat: Sat,
113 /// Σ of the priced `usd_fmv`s — the HONEST FLOOR (the over-tax exposure), always a real number.
114 pub total_usd_fmv_floor: Usd,
115 /// Rows priced `None` → render "≥ $X (N unavailable)" vs exact "$X".
116 pub missing_price_count: usize,
117}
118
119// ── Bulk classify-inbound-income plan (bulk-classify-inbound-income, Cycle 4) ─
120//
121// The shared, READ-ONLY plan both the CLI (`cmd::reconcile::bulk_classify_income_plan`) and the TUI
122// `I` flow compute from the HELD session. A NEAR-CLONE of `bulk_self_transfer_in_plan` with ONE
123// load-bearing difference [#a tax-safety]: a candidate whose `fmv_of(date, sat)` is `None` (no bundled
124// price / overflow) is EXCLUDED from `included` (counted in `excluded_missing_price`), NOT included —
125// because a persisted `InboundClass::Income { fmv: None }` projects to a Hard `FmvMissing` year-gate
126// (and on the inbound path that is NOT clearable by `ManualFmv` — the sole escape is void + reclassify).
127// So `included` carries a RESOLVED `fmv: Usd` (non-Option), making `Income{fmv:None}` structurally
128// unrepresentable from the bulk path. Appends and persists NOTHING.
129
130/// Filter narrowing which pending unknown-basis inbound deposits a bulk classify-income plan selects.
131/// Mirrors `BulkStiFilter`; `wallet` filters the RECEIVING wallet (the inbound IS the receiving leg).
132#[derive(Debug, Clone, PartialEq, Eq)]
133pub struct BulkIncomeFilter {
134 pub frame: Frame,
135 pub wallet: Option<WalletId>,
136}
137
138/// One enriched pending unknown-basis inbound in a bulk classify-income plan, carrying a RESOLVED FMV.
139#[derive(Debug, Clone, PartialEq, Eq)]
140pub struct BulkIncomeRow {
141 pub in_event: EventId,
142 pub date: TaxDate,
143 pub sat: Sat,
144 /// [#a] The RESOLVED auto-FMV `fmv_of(prices, date, sat)` — ALWAYS a real number (the `None`
145 /// rows are EXCLUDED upstream). This is the income recognized AND the lot basis.
146 pub fmv: Usd,
147}
148
149/// The read-only plan a bulk classify-income would execute: the eligible/in-frame `included` rows (each
150/// with a resolved `fmv`) + the count of candidates dropped for a MISSING price + preview totals.
151#[derive(Debug, Clone, PartialEq, Eq)]
152pub struct BulkIncomePlan {
153 /// Eligible + in-frame + passes `wallet` filter + HAS a price. Sorted by `date`.
154 pub included: Vec<BulkIncomeRow>,
155 /// [#a] Candidates dropped because `fmv_of == None` (surfaced, NOT silently dropped — the user
156 /// learns N inbounds could not be auto-valued as income; they stay pending).
157 pub excluded_missing_price: usize,
158 pub total_sat: Sat,
159 /// Σ `fmv` over `included` — the total income being recognized (always a real number).
160 pub total_income_usd: Usd,
161}
162
163// ── Bulk reclassify-outflow plan (bulk-reclassify-outflow, Cycle 5 — the LAST) ─
164//
165// The shared, READ-ONLY plan both the CLI (`cmd::reconcile::bulk_reclassify_outflow_plan`) and the TUI
166// `O` flow compute from the HELD session. The bulk analog of the single `o` reclassify-outflow: it
167// sweeps MANY `pending_reconciliation` outflows to a `Dispose{Sell|Spend}` with the auto-FMV as
168// ESTIMATED proceeds. Enriches over `pending_reconciliation` exactly as `bulk_link_transfer_plan`
169// (session.rs) does. Appends/persists NOTHING.
170//
171// Load-bearing tax-safety [#a]: a candidate whose `fmv_of(date, principal_sat)` is `None` is EXCLUDED
172// (counted in `excluded_missing_price`), NOT included — `ReclassifyOutflow.principal_proceeds_or_fmv`
173// is `Usd` (NOT Option), so a missing-price row cannot be constructed WITHOUT fabricating a number, and
174// (unlike bulk-income's LOUD `FmvMissing`) a fabricated/`0` proceeds would be SILENT (gates nothing,
175// misreports gain/loss). So `included` carries a RESOLVED `fmv: Usd` (non-Option) — the load-bearing
176// structural defense, mirroring `BulkIncomeRow.fmv: Usd`.
177//
178// Estimated gain [Q3]: `basis_usd = Σ pt.legs.usd_basis` (already computed by the fold's SINGLE
179// chronological pass with all N candidate PendingOuts pending, so `Σ` over multiple rows' legs is NEVER
180// double-counted — an earlier-dated PendingOut has already drawn the pool down before a later one
181// folds). `estimated_gain = round_cents(fmv − basis_usd)` per row. Precedent: `bulk_link_transfer_plan`
182// already sums `pt.legs.usd_basis`.
183
184/// One enriched pending outbound transfer in a bulk reclassify-outflow plan, carrying a RESOLVED FMV.
185#[derive(Debug, Clone, PartialEq, Eq)]
186pub struct BulkReclassifyOutflowRow {
187 pub out_event: EventId,
188 pub date: TaxDate,
189 /// [R0-N1] ALWAYS `Some` for a pending out (a wallet-less TransferOut never reaches
190 /// `pending_reconciliation`); `Option` kept defensively (mirror `BulkLinkRow.source_wallet`).
191 pub wallet: Option<WalletId>,
192 pub principal_sat: Sat,
193 /// [#a] The RESOLVED auto-FMV `fmv_of(prices, date, principal_sat)` — ALWAYS a real number (the
194 /// `None` rows are EXCLUDED upstream). This is the ESTIMATED proceeds a `Dispose` recognizes.
195 pub fmv: Usd,
196 /// Σ leg `usd_basis` carried by the fold's PendingOut consumption (the disposal's basis).
197 pub basis_usd: Usd,
198 /// `round_cents(fmv − basis_usd)` — the per-row ESTIMATED gain (never double-counted; see above).
199 pub estimated_gain: Usd,
200}
201
202/// The read-only plan a bulk reclassify-outflow would execute: the eligible/in-frame `included` rows
203/// (each with a resolved `fmv`), the count of candidates dropped for a MISSING price, and preview
204/// totals. Mirrors `BulkIncomePlan`.
205#[derive(Debug, Clone, PartialEq, Eq)]
206pub struct BulkReclassifyOutflowPlan {
207 /// Eligible + in-frame + passes `from_wallet` filter + HAS a price. Sorted by `date`.
208 pub included: Vec<BulkReclassifyOutflowRow>,
209 /// [#a] Candidates dropped because `fmv_of == None` (surfaced, NOT silently dropped — a Sell with
210 /// fabricated proceeds would be a SILENT misreport; they stay pending).
211 pub excluded_missing_price: usize,
212 pub total_sat: Sat,
213 /// Σ `fmv` over `included` — the total ESTIMATED proceeds (always a real number).
214 pub total_proceeds_usd: Usd,
215 /// Σ `basis_usd` over `included`.
216 pub total_basis_usd: Usd,
217 /// Σ `estimated_gain` over `included` — the total ESTIMATED gain shown in the preview.
218 pub total_estimated_gain: Usd,
219}
220
221// ── Bulk resolve-conflict plan (bulk-resolve-conflict D1) ────────────────────
222//
223// The shared, READ-ONLY plan both the CLI (`cmd::reconcile::bulk_resolve_conflict_plan`) and the TUI
224// `C` flow compute from the HELD session. Candidate set = live `ImportConflict` blockers only (engine
225// post-filtered — an accepted/rejected conflict is no longer flagged → structural idempotence). Each
226// row carries the STRUCTURED current/new payloads (NOT pre-rendered strings) so each front-end renders
227// its own summary (CLI table formatter; TUI reuses `import_payload_summary`). Appends/persists NOTHING.
228
229/// One flagged import conflict in a bulk resolve-conflict plan. STRUCTURED (front-ends render summaries).
230#[derive(Debug, Clone, PartialEq, Eq)]
231pub struct BulkResolveRow {
232 /// The `ImportConflict` event id — the resolution target (`SupersedeImport`/`RejectImport` carry
233 /// this as `conflict_event`).
234 pub conflict_event: EventId,
235 /// Calendar date (tax tz) of the conflict event.
236 pub date: TaxDate,
237 /// The TARGET import event id whose payload the conflict proposes to supersede (≠ conflict_event).
238 pub target: EventId,
239 /// Payload currently at the target (front-end renders "current"; KEPT on reject).
240 pub current_payload: EventPayload,
241 /// `ImportConflict.new_payload` (front-end renders "→ new"; ADOPTED on accept).
242 pub new_payload: EventPayload,
243 /// The 8-char `new_fingerprint` disambiguator (front-end shows it).
244 pub new_fingerprint: String,
245}
246
247/// The read-only plan a bulk resolve-conflict would execute: the live `ImportConflict` rows (sorted by
248/// date). No $ number (a conflict resolution recognizes no gain); no time/wallet filter (per-row
249/// exclude is the precision tool at the front-end).
250#[derive(Debug, Clone, PartialEq, Eq)]
251pub struct BulkResolvePlan {
252 pub rows: Vec<BulkResolveRow>,
253}
254
255// ── Bulk void plan (bulk-void D1) ────────────────────────────────────────────
256//
257// The shared, READ-ONLY plan both the CLI (`cmd::reconcile::bulk_void_plan`) and the TUI `V` sweep
258// compute from the HELD session. Candidate set = the SINGLE shared predicate `voidable_decisions`
259// (btctax-core) over the projected events + blockers — the ONLY defense against voiding an EFFECTIVE
260// `SafeHarborAllocation` (#7 → Hard `DecisionConflict`). Each row carries the STRUCTURED decision
261// `payload` (front-ends render `summarize_void_payload`) + the precomputed `disposal_to_clear` (a
262// `LotSelection` target → `ls.disposal_event`) so the persist path never re-loads the log per row.
263// Appends/persists NOTHING; mirrors `bulk_resolve_conflict_plan`.
264
265/// One voidable reconcile decision in a bulk-void plan. STRUCTURED (front-ends render summaries).
266#[derive(Debug, Clone, PartialEq, Eq)]
267pub struct BulkVoidRow {
268 /// The Decision event id to void (`VoidDecisionEvent.target_event_id`).
269 pub target_event_id: EventId,
270 /// `decision|seq` sequence number (display + deterministic sort).
271 pub seq: u64,
272 /// Calendar date (tax tz) of the decision event.
273 pub date: TaxDate,
274 /// The decision's payload — front-ends render `summarize_void_payload` (tag + what the void undoes).
275 pub payload: EventPayload,
276 /// Precomputed side-effect target: a `LotSelection` target → `Some(ls.disposal_event)` (whose
277 /// optimizer attestation the void clears); every other decision → `None`.
278 pub disposal_to_clear: Option<EventId>,
279}
280
281/// The read-only plan a bulk-void would execute: the voidable decisions (shared predicate), sorted by
282/// `seq`. No $ number (a void recognizes no gain); no time/wallet filter (per-row exclude is the
283/// front-end precision tool).
284#[derive(Debug, Clone, PartialEq, Eq)]
285pub struct BulkVoidPlan {
286 pub rows: Vec<BulkVoidRow>,
287}
288
289// ── Self-transfer matcher (self-transfer-passthrough C2) ─────────────────────
290//
291// A READ-ONLY proposal helper (mirrors `bulk_link_transfer_plan`/`safe_harbor_residue`): it appends and
292// persists NOTHING. It pairs ONLY UNRECONCILED legs — candidate ins are `TransferIn`s still flagged
293// `UnknownBasisInbound` (an already-classified income / self-transfer-in is no longer flagged, so it is
294// structurally excluded), candidate outs are `pending_reconciliation` entries (an already-reclassified
295// sale is no longer pending). The user CONFIRMS every match; nothing is written by this helper.
296
297/// The confirm action a matched self-transfer pair resolves to.
298#[derive(Debug, Clone, Copy, PartialEq, Eq)]
299pub enum MatchAction {
300 /// Same tracked wallet on both legs (both counterparties external): DROP → `SelfTransferPassthrough`.
301 Drop,
302 /// Different tracked wallets (out from X, in to Y, X≠Y): RELOCATE → the EXISTING `TransferLink` out→in.
303 Relocate,
304}
305
306/// One proposed self-transfer match (C2). A PROPOSAL — never applied until the user confirms it.
307#[derive(Debug, Clone, PartialEq, Eq)]
308pub struct MatchProposal {
309 pub in_event: EventId,
310 pub out_event: EventId,
311 pub in_date: TaxDate,
312 pub out_date: TaxDate,
313 /// The in-leg's wallet (the RELOCATE destination). `None` legs are never proposed (can't relocate /
314 /// can't be same-wallet), so this is always `Some` for a real proposal; `Option` kept defensively.
315 pub in_wallet: Option<WalletId>,
316 /// The out-leg's (source) wallet. Always `Some` for a pending out; `Option` kept defensively.
317 pub out_wallet: Option<WalletId>,
318 pub in_sat: Sat,
319 pub out_principal_sat: Sat,
320 /// `fmv_of(prices, out_date, out_principal_sat)` — advisory, `None` on missing price / overflow.
321 pub usd_value: Option<Usd>,
322 /// Suggested action from wallet topology (same-wallet ⇒ Drop, cross-tracked-wallet ⇒ Relocate).
323 pub action: MatchAction,
324 /// True when this in OR this out matches >1 counterpart — surfaced FLAGGED, NEVER auto-picked (G-FALSE-MATCH).
325 pub ambiguous: bool,
326 /// True when `in.txid == out.txid` (both `Some`) — decisive cross-wallet corroboration (relaxes the
327 /// amount check, but NOT the ambiguity guard).
328 pub txid_match: bool,
329}
330
331pub struct Session {
332 vault: Vault,
333 /// The active price provider (§9.2 bundled daily-close dataset, cache-layered in Part C). The
334 /// projection and every priced plan read prices through THIS instance seam [R0-C1/r2 I-A] rather
335 /// than a hard-wired `BundledPrices::load()`, so tests inject a CONTROLLED synthetic dataset
336 /// (`set_prices`) — decoupling their asserted FMVs from the shipped data. Pure/deterministic; the
337 /// default is the layered bundled+cache provider (resolved at open time).
338 prices: Box<dyn PriceProvider>,
339}
340
341impl std::fmt::Debug for Session {
342 fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
343 f.debug_struct("Session").finish_non_exhaustive()
344 }
345}
346
347/// Build the DEFAULT price provider a freshly-opened `Session` carries: the bundled daily-close dataset
348/// (§9.2) with the local price cache layered OVER it (Part C — cache-over-bundled; cache absent ⇒
349/// byte-identical to bundled-only). Pure/deterministic; NO network — the cache is a documented LOCAL
350/// INPUT populated only by the separate `btctax-update-prices` binary. The cache PATH is resolved HERE
351/// (btctax-cli, via `dirs`), NOT in btctax-adapters.
352fn default_prices() -> Result<Box<dyn PriceProvider>, CliError> {
353 let cache_path = crate::price_cache::default_cache_path();
354 Ok(Box::new(btctax_adapters::LayeredPrices::load_with_cache(
355 cache_path.as_deref(),
356 )?))
357}
358
359/// The pre-2025 residue event filter `safe_harbor_residue` (below) projects over (D3). Kept as its own
360/// fn so the drop rule is independently unit-testable (T12, arch r2 M-3).
361fn pre2025_residue_events(all: Vec<LedgerEvent>) -> Vec<LedgerEvent> {
362 all.into_iter()
363 .filter(|e| match &e.id {
364 EventId::Import { .. } => tax_date(e.utc_timestamp, e.original_tz) < TRANSITION_DATE,
365 // D-8: DROP SafeHarborAllocation (residue stays allocation-INDEPENDENT), DeclareTranche (a
366 // $0 conservative-filing tranche is NOT allocatable pre-2025 residue — else the allocate
367 // opener would self-poison by listing the tranche's $0 sats, authoring the very coexistence
368 // v1 forbids), AND PromoteTranche (T12: a promote's `target` is a DeclareTranche, which is
369 // ALWAYS dropped here — leaving the promote in would dangle it against an absent target in
370 // this sub-projection).
371 _ => !matches!(
372 e.payload,
373 EventPayload::SafeHarborAllocation(_)
374 | EventPayload::DeclareTranche(_)
375 | EventPayload::PromoteTranche(_)
376 ),
377 })
378 .collect()
379}
380
381impl Session {
382 /// Create a brand-new encrypted vault, then initialize the core event schema and the CLI config
383 /// table, and persist. (`Vault::create` already saved once; we re-save after the DDL.)
384 pub fn create(vault_path: &Path, pp: &Passphrase) -> Result<Session, CliError> {
385 Self::from_fresh_vault(Vault::create(vault_path, pp)?)
386 }
387
388 /// Like `create`, but first clears a half-created vault (orphan key, no pgp/bak) under
389 /// explicit `--repair` consent. Delegates to `Vault::repair` which refuses if a real or
390 /// recoverable vault is present (see `Vault::repair` safety invariant).
391 pub fn repair(vault_path: &Path, pp: &Passphrase) -> Result<Session, CliError> {
392 Self::from_fresh_vault(Vault::repair(vault_path, pp)?)
393 }
394
395 /// Initialize the core schema + CLI config + tax profile table on a freshly-created vault,
396 /// then persist.
397 fn from_fresh_vault(mut vault: Vault) -> Result<Session, CliError> {
398 init_schema(vault.conn())?;
399 config::init_config_table(vault.conn())?;
400 tax_profile::init_table(vault.conn())?;
401 optimize_attest::init_table(vault.conn())?;
402 donation_details::init_table(vault.conn())?;
403 bulk_estimated::init_table(vault.conn())?;
404 vault.save()?;
405 Ok(Session {
406 vault,
407 prices: default_prices()?,
408 })
409 }
410
411 /// Open an existing vault (acquires the store single-instance lock; NFR7). A pathless I/O failure
412 /// (missing/unreadable `--vault`) is enriched with the path + a one-clause hint (UX-P4-8).
413 pub fn open(vault_path: &Path, pp: &Passphrase) -> Result<Session, CliError> {
414 let vault = Vault::open(vault_path, pp)
415 .map_err(|e| crate::store_io_with_path(e, vault_path, crate::VAULT_OPEN_HINT))?;
416 Ok(Session {
417 vault,
418 prices: default_prices()?,
419 })
420 }
421
422 /// Borrow the active price provider (§9.2). The projection and every priced plan read prices
423 /// through this instance seam [R0-C1].
424 pub fn prices(&self) -> &dyn PriceProvider {
425 self.prices.as_ref()
426 }
427
428 /// The lots available in `wallet` JUST BEFORE the disposal/removal/self-transfer `event` — the true
429 /// at-disposal pool the engine validates a specific-lot pick against (`btctax_core::optimize::
430 /// available_lots_before` over the current ledger). The interactive editor builds its select-lots
431 /// candidate rows from this (NOT the post-default residue), so the form offers exactly the lots — and
432 /// amounts — the engine's `selection_feasible` accepts (walkthrough J9 review C1..I3).
433 pub fn available_lots_before(
434 &self,
435 event: &btctax_core::EventId,
436 date: btctax_core::conventions::TaxDate,
437 wallet: &btctax_core::WalletId,
438 ) -> Result<Vec<btctax_core::Lot>, CliError> {
439 // Load events + config only — NOT a full projection. `optimize::available_lots_before` runs its own
440 // `resolve` + `pools_before` clone-fold internally, so projecting here (and discarding the state)
441 // would just double the fold on every interactive keypress (SL-r2-c / review r2 M-2).
442 let events = load_all(self.conn())?;
443 let cfg = self.config()?.to_projection();
444 Ok(btctax_core::optimize::available_lots_before(
445 &events,
446 self.prices(),
447 &cfg,
448 event,
449 date,
450 wallet,
451 ))
452 }
453
454 /// Test / advanced seam [R0-C1/r2 I-A]: replace the price provider on an OPEN session. A KAT injects
455 /// a CONTROLLED synthetic `BundledPrices::from_csv_str(...)` so its asserted FMVs are independent of
456 /// the shipped dataset; a caller may also inject a pre-resolved layered/cache provider. Pure; no I/O.
457 pub fn set_prices(&mut self, prices: Box<dyn PriceProvider>) {
458 self.prices = prices;
459 }
460
461 /// Borrow the live in-memory SQLite handle (core appenders use interior mutability over `&Connection`).
462 pub fn conn(&self) -> &Connection {
463 self.vault.conn()
464 }
465
466 /// Persist the current DB image (encrypted, atomic; NFR2/NFR3).
467 pub fn save(&mut self) -> Result<(), CliError> {
468 self.vault.save()?;
469 Ok(())
470 }
471
472 /// Snapshot the in-memory DB image (no disk I/O) for a possible `restore()` after a failed save.
473 pub fn snapshot(&self) -> Result<Vec<u8>, CliError> {
474 Ok(self.vault.snapshot()?)
475 }
476
477 /// Restore the in-memory DB from a prior `snapshot()` (no disk I/O). On `Err`, the in-memory DB
478 /// is UNCHANGED and unsaved residue may still be live — the caller MUST latch, never swallow.
479 pub fn restore(&mut self, image: &[u8]) -> Result<(), CliError> {
480 self.vault.restore(image)?;
481 Ok(())
482 }
483
484 /// Borrow the vault for store-level operations (`export_snapshot` / `backup_key`).
485 pub fn vault(&self) -> &Vault {
486 &self.vault
487 }
488
489 /// The persisted projection config (TP8 treatment + lot method); default = (c)+FIFO if unset.
490 pub fn config(&self) -> Result<CliConfig, CliError> {
491 config::read_config(self.conn())
492 }
493
494 /// The stored per-year `TaxProfile` for `year`, or `None` if none has been set.
495 /// Robust to older vaults (calls `tax_profile::init_table` as a defensive guard).
496 pub fn tax_profile(&self, year: i32) -> Result<Option<TaxProfile>, CliError> {
497 tax_profile::get(self.conn(), year)
498 }
499
500 /// Resolve + FULLY screen `year`'s profile through the single resolver (SPEC §4.12 / §4.10 / G4) — the
501 /// shared entry point every computing consumer (report / optimize / what-if / export) should use so
502 /// the app never shows two liabilities, or a wrong number, for one year. `state`/`tables` come from
503 /// the caller's projection (`tables` is injectable so `accept` can pass a test table for a later year).
504 pub fn resolve_screened(
505 &self,
506 state: &LedgerState,
507 year: i32,
508 tables: &dyn TaxTables,
509 ) -> Result<crate::resolve::ProfileOutcome, CliError> {
510 let pseudo = self.config()?.to_projection().pseudo_reconcile;
511 let fr = BundledFullReturnTables::load();
512 crate::resolve::resolve_and_screen(
513 self.conn(),
514 state,
515 year,
516 pseudo,
517 fr.full_return_for(year),
518 tables.table_for(year),
519 )
520 }
521
522 /// [`resolve_screened`] flattened to just the profile: an uncomputable outcome becomes a `Usage` error.
523 /// The drop-in replacement for `tax_profile(year)?` at a computing consumer that needs one figure.
524 pub fn resolve_screened_profile(
525 &self,
526 state: &LedgerState,
527 year: i32,
528 tables: &dyn TaxTables,
529 ) -> Result<Option<TaxProfile>, CliError> {
530 match self.resolve_screened(state, year, tables)? {
531 crate::resolve::ProfileOutcome::Uncomputable { detail } => Err(CliError::Usage(detail)),
532 crate::resolve::ProfileOutcome::Ready { profile, .. } => Ok(profile),
533 }
534 }
535
536 /// Resolve + screen EVERY year that has a stored `TaxProfile` or full-return `ReturnInputs`, for the
537 /// read-only viewer (which holds a `Snapshot`, not a live `Session`, so it cannot resolve on demand).
538 /// Returns per-year [`crate::resolve::ProfileOutcome`] so the TUI can render a derived number OR a
539 /// refusal — never a stale/absent profile (SPEC §4.12: the TUI is a consumer; review P2-C1).
540 pub fn resolve_all_screened(
541 &self,
542 state: &LedgerState,
543 tables: &dyn TaxTables,
544 ) -> Result<BTreeMap<i32, crate::resolve::ProfileOutcome>, CliError> {
545 // Enumerate keys WITHOUT deserializing every blob (N3: one corrupt row must not break enumeration),
546 // and hoist the config/full-return-table loads OUT of the per-year loop.
547 let pseudo = self.config()?.to_projection().pseudo_reconcile;
548 let fr = BundledFullReturnTables::load();
549 let mut years: BTreeSet<i32> = tax_profile::years(self.conn())?.into_iter().collect();
550 years.extend(return_inputs::years(self.conn())?);
551 let mut out = BTreeMap::new();
552 for year in years {
553 // A corrupt side-table blob for ONE year must surface as a per-year refusal, NOT a failure that
554 // bricks the whole read-only viewer (fail-closed availability — review N3).
555 let outcome = match crate::resolve::resolve_and_screen(
556 self.conn(),
557 state,
558 year,
559 pseudo,
560 fr.full_return_for(year),
561 tables.table_for(year),
562 ) {
563 Ok(o) => o,
564 Err(e) => crate::resolve::ProfileOutcome::Uncomputable {
565 detail: format!("could not read the stored inputs for {year}: {e}"),
566 },
567 };
568 out.insert(year, outcome);
569 }
570 Ok(out)
571 }
572
573 /// All stored `TaxProfile`s, sorted by year ascending.
574 pub fn all_tax_profiles(
575 &self,
576 ) -> Result<std::collections::BTreeMap<i32, TaxProfile>, CliError> {
577 tax_profile::all(self.conn())
578 }
579
580 /// All attested disposal `EventId`s (NFR4-stable `BTreeSet`; feeds `compliance_overlay`).
581 /// Robust to older vaults (defensive `init_table` guard inside `attested_set`).
582 pub fn optimize_attested_set(
583 &self,
584 ) -> Result<std::collections::BTreeSet<btctax_core::EventId>, CliError> {
585 optimize_attest::attested_set(self.conn())
586 }
587
588 /// All stored `DonationDetails`, keyed by donation `EventId` (NFR4-stable `BTreeMap`).
589 /// Robust to older vaults (defensive `init_table` guard inside `donation_details::all`).
590 pub fn donation_details(
591 &self,
592 ) -> Result<std::collections::BTreeMap<EventId, DonationDetails>, CliError> {
593 donation_details::all(self.conn())
594 }
595
596 /// All disposals flagged as estimated-FMV proceeds by the bulk-reclassify-outflow path, keyed by
597 /// the `transfer_out_event` (== `Disposal.event`); value = the `date_marked` provenance stamp
598 /// (NFR4-stable `BTreeMap`). Robust to older vaults (defensive `init_table` guard inside
599 /// `bulk_estimated::all`). `build_snapshot` loads the `[est]` marker set via THIS accessor,
600 /// NEVER `conn()` directly [R0-M1].
601 pub fn bulk_estimated(&self) -> Result<std::collections::BTreeMap<EventId, String>, CliError> {
602 bulk_estimated::all(self.conn())
603 }
604
605 /// Load all events and run the pure deterministic projection (NFR4) over the bundled daily-close
606 /// dataset (§9.2). Returns the resolved `ProjectionConfig` too (so `verify` can display it).
607 pub fn project(&self) -> Result<(LedgerState, ProjectionConfig), CliError> {
608 let events = load_all(self.conn())?;
609 let cfg = self.config()?.to_projection();
610 let prices = self.prices();
611 let state = project(&events, prices, &cfg);
612 Ok((state, cfg))
613 }
614
615 /// Single-load variant: loads events ONCE and returns them alongside the projection. Callers
616 /// that need both the raw event log and the projected state (e.g. `verify`, `safe_harbor_attest`)
617 /// use this to avoid the double `load_all` call that the `project()` + separate `load_all()`
618 /// pattern incurs.
619 pub fn load_events_and_project(
620 &self,
621 ) -> Result<(Vec<LedgerEvent>, LedgerState, ProjectionConfig), CliError> {
622 let events = load_all(self.conn())?;
623 let cfg = self.config()?.to_projection();
624 let prices = self.prices();
625 let state = project(&events, prices, &cfg);
626 Ok((events, state, cfg))
627 }
628
629 /// §A.5(a): the distinct Exchange accounts in the vault, each with its currently-in-force
630 /// cost-basis method and whether that method is an explicit per-account election (`true`) vs
631 /// inherited from a global election / the HIFO default (`false`), as of `date`. Feeds the
632 /// btctax-tui-edit method-election flow's account list. Uses the SHARED resolver via
633 /// `btctax_core::in_force_methods` (the sole precedence path). Sorted by `WalletId: Ord`.
634 pub fn exchange_method_election_rows(
635 &self,
636 date: TaxDate,
637 ) -> Result<Vec<(WalletId, LotMethod, bool)>, CliError> {
638 let events = load_all(self.conn())?;
639 let cfg = self.config()?.to_projection();
640 let prices = self.prices();
641 // Distinct Exchange wallets (BTreeSet dedups AND sorts — NFR4).
642 let wallets: Vec<WalletId> = events
643 .iter()
644 .filter_map(|e| e.wallet.clone())
645 .filter(|w| matches!(w, WalletId::Exchange { .. }))
646 .collect::<std::collections::BTreeSet<_>>()
647 .into_iter()
648 .collect();
649 let methods = btctax_core::in_force_methods(&events, prices, &cfg, date, &wallets);
650 Ok(wallets
651 .into_iter()
652 .zip(methods)
653 .map(|(w, m)| (w, m.method, m.scoped))
654 .collect())
655 }
656
657 /// Recompute the Mode-1 optimizer proposal for `year` on the HELD session. READ-ONLY: appends and
658 /// persists NOTHING (a clone-fold-discard recompute).
659 ///
660 /// The TUI editor's optimize-accept opener calls this to obtain a FRESH proposal (NFR4 — never
661 /// trusts a stale one) WITHOUT opening a second `Session` (a second open would deadlock on the
662 /// held VaultLock, and `cmd::optimize::accept` is forbidden to the editor for the same reason).
663 /// Assembles `optimize_year`'s inputs exactly as `cmd::optimize::run`/`accept` do — events + config
664 /// from this conn, bundled prices + tables, a FRESH `tax_profile(year)` read (not the cached snap),
665 /// the attested set, and `proposal_made = tax_date(now, UtcOffset::UTC)` — and maps `OptimizeError`
666 /// through the crate-internal `map_opt_err` (which is `pub(crate)` and not TUI-reachable). `now`
667 /// is injected by the caller for determinism.
668 pub fn optimize_proposal(
669 &self,
670 year: i32,
671 now: time::OffsetDateTime,
672 ) -> Result<btctax_core::OptimizeProposal, CliError> {
673 let (events, state, cfg) = self.load_events_and_project()?;
674 let prices = self.prices();
675 let tables = BundledTaxTables::load();
676 let profile = self.resolve_screened_profile(&state, year, &tables)?;
677 let attested = self.optimize_attested_set()?;
678 let proposal_made = tax_date(now, time::UtcOffset::UTC);
679 btctax_core::optimize_year(
680 &events,
681 prices,
682 &cfg,
683 year,
684 profile.as_ref(),
685 &tables,
686 &attested,
687 proposal_made,
688 )
689 .map_err(crate::cmd::optimize::map_opt_err)
690 }
691
692 /// READ-ONLY: the 2025-01-01 pre-2025 Universal residue as `AllocLot`s, plus the `pre2025_method`
693 /// (`LotMethod`) it was computed under. Appends/persists NOTHING. The single source of the pre-2025
694 /// subset, shared by `cmd::reconcile::safe_harbor_allocate` and the TUI allocate opener.
695 ///
696 /// Reads the config ONCE: `cfg.pre2025_method` is the recorded method returned to the caller, and
697 /// `cfg.to_projection()` is the projection the residue is computed under — the two are STRUCTURALLY
698 /// the same config read, so the returned method can never diverge from the residue's [R0-M1]. The
699 /// pre-2025 subset keeps only imports whose tax-date `< 2025-01-01` plus ALL reconciliation decisions
700 /// (which shape the residue), and DROPs any prior `SafeHarborAllocation` so the residue stays
701 /// allocation-INDEPENDENT (matches `transition::universal_snapshot`).
702 pub fn safe_harbor_residue(&self) -> Result<(Vec<AllocLot>, LotMethod), CliError> {
703 let cfg = self.config()?;
704 let pre2025_method = cfg.pre2025_method; // recorded field == the one used below
705 let proj = cfg.to_projection();
706 let all = load_all(self.conn())?;
707 // T16 follow-up (arch r1 Minor 3 / tax r1 Minor 4): a pre-2025 tranche makes a safe-harbor
708 // allocation mutually-exclusive (D-8), so there is NO valid allocatable residue — and the residue
709 // projection below (which DROPs the tranche but keeps pre-2025 disposals that may have consumed its
710 // sats) would DISPLAY an understated/empty residue in the TUI allocate opener. Refuse opening the
711 // flow entirely, mirroring the record-time allocation guard: the CLI allocate path already refuses
712 // via `guard_allocation_vs_tranche` before reaching here, and the TUI opener surfaces this Err as
713 // its pre-flight status rather than showing a misleading residue.
714 if btctax_core::tranche_guard::pre2025_tranche_exists(&all) {
715 return Err(CliError::Usage(
716 "cannot open the safe-harbor allocate flow: a pre-2025 conservative-filing tranche ($0 \
717 or a promoted floor, EstimatedConservative) is on file — v1 makes a tranche and a \
718 safe-harbor allocation mutually exclusive (D-8). Void the tranche first (`reconcile void \
719 <decision-ref>`); if you have already filed the tranche's basis ($0 or a promoted \
720 floor), unallocated pre-2025 units are a facts-and-circumstances matter for a \
721 professional."
722 .to_string(),
723 ));
724 }
725 let pre2025: Vec<LedgerEvent> = pre2025_residue_events(all);
726 let prices = self.prices();
727 let residue = project(&pre2025, prices, &proj);
728 let lots = residue
729 .lots
730 .iter()
731 .filter(|l| l.remaining_sat > 0)
732 .map(|l| AllocLot {
733 wallet: l.wallet.clone(),
734 sat: l.remaining_sat,
735 usd_basis: l.usd_basis,
736 acquired_at: l.acquired_at,
737 dual_loss_basis: l.dual_loss_basis,
738 donor_acquired_at: l.donor_acquired_at,
739 })
740 .collect();
741 Ok((lots, pre2025_method))
742 }
743
744 /// READ-ONLY: compute the bulk link-transfer plan (bulk-link-transfer D1). Selects over the
745 /// PROJECTED `pending_reconciliation` (which already excludes already-decided / already-linked
746 /// outs), enriches each with date / source wallet / principal / advisory USD value / carried
747 /// basis, applies the frame + `from_wallet` filters, and routes `source == dest` rows to
748 /// `skipped_same_wallet`. Appends and persists NOTHING; mirrors `safe_harbor_residue`.
749 ///
750 /// The USD value is `btctax_core::price::fmv_of(prices, date, principal_sat)` [R0-M1] — the
751 /// vetted checked helper (round_cents + overflow→`None`), NOT a hand-rolled `principal × price`.
752 /// The total is the HONEST FLOOR [R0-I2]: `total_usd_value_floor` is Σ of the PRICED rows only,
753 /// and `missing_price_count` records how many rows lacked a price, so the caller renders exact
754 /// `$X` (when 0) or `≥ $X (N unavailable)`.
755 pub fn bulk_link_transfer_plan(
756 &self,
757 filter: BulkFilter,
758 dest: WalletId,
759 ) -> Result<BulkLinkPlan, CliError> {
760 let (events, state, _cfg) = self.load_events_and_project()?;
761 let prices = self.prices();
762 let index: std::collections::HashMap<EventId, &LedgerEvent> =
763 events.iter().map(|e| (e.id.clone(), e)).collect();
764
765 let enrich = |pt: &PendingTransfer| -> BulkLinkRow {
766 let ev = index.get(&pt.event).copied();
767 let date = ev
768 .map(|e| tax_date(e.utc_timestamp, e.original_tz))
769 .unwrap_or_else(|| {
770 // Defensive: a pending out always has an indexed source event; fall back to the
771 // epoch date rather than panic (mirrors the single link-transfer opener).
772 tax_date(
773 time::OffsetDateTime::from_unix_timestamp(0).unwrap(),
774 time::UtcOffset::UTC,
775 )
776 });
777 let source_wallet = ev.and_then(|e| e.wallet.clone());
778 let usd_value = btctax_core::price::fmv_of(prices, date, pt.principal_sat);
779 let basis_usd: Usd = pt.legs.iter().map(|l| l.usd_basis).sum();
780 BulkLinkRow {
781 out_event: pt.event.clone(),
782 date,
783 source_wallet,
784 principal_sat: pt.principal_sat,
785 usd_value,
786 basis_usd,
787 }
788 };
789
790 let in_frame = |date: TaxDate| match &filter.frame {
791 Frame::All => true,
792 Frame::Year(y) => date.year() == *y,
793 Frame::Range { from, to } => *from <= date && date <= *to,
794 };
795
796 let mut included: Vec<BulkLinkRow> = Vec::new();
797 let mut skipped_same_wallet: Vec<BulkLinkRow> = Vec::new();
798 for pt in &state.pending_reconciliation {
799 let row = enrich(pt);
800 if !in_frame(row.date) {
801 continue;
802 }
803 if let Some(w) = &filter.from_wallet {
804 if row.source_wallet.as_ref() != Some(w) {
805 continue;
806 }
807 }
808 // Same-wallet guard: a self-link to the SAME wallet is meaningless — report, never link.
809 if row.source_wallet.as_ref() == Some(&dest) {
810 skipped_same_wallet.push(row);
811 } else {
812 included.push(row);
813 }
814 }
815 included.sort_by_key(|r| r.date);
816
817 let total_sat: Sat = included.iter().map(|r| r.principal_sat).sum();
818 let total_usd_value_floor: Usd = included.iter().filter_map(|r| r.usd_value).sum();
819 let missing_price_count = included.iter().filter(|r| r.usd_value.is_none()).count();
820 let total_basis_usd: Usd = included.iter().map(|r| r.basis_usd).sum();
821
822 Ok(BulkLinkPlan {
823 dest,
824 included,
825 skipped_same_wallet,
826 total_sat,
827 total_usd_value_floor,
828 missing_price_count,
829 total_basis_usd,
830 })
831 }
832
833 /// READ-ONLY: compute the bulk classify-inbound-self-transfer plan
834 /// (bulk-classify-inbound-self-transfer D1). A close MIRROR of `bulk_link_transfer_plan` applied to
835 /// Cycle A's inbound `SelfTransferMine` ($0 conservative basis, non-taxable). Appends/persists
836 /// NOTHING (clone-fold-discard recompute); KAT-G1-clean at the TUI call site.
837 ///
838 /// **Selection (structural false-classify safety) [R0-I1]:** candidates are `TransferIn` events
839 /// still flagged `UnknownBasisInbound` (blocker set joined to the raw event via the index, as
840 /// `self_transfer_match_plan` does) **MINUS** any already targeted by a NON-VOIDED `ClassifyInbound`
841 /// (mirror `open_classify_inbound_flow`'s filter 3 — appending a second fires a return-blocking Hard
842 /// `DecisionConflict`; `UnknownBasisInbound` is RE-EMITTED for gift-basis-unknown states, so
843 /// "flagged" ≠ "unclassified") **MINUS** wallet-less inbounds [R0-M2] (create no lot). The USD is
844 /// `fmv_of` [G4]; the total is the HONEST FLOOR (`total_usd_fmv_floor` + `missing_price_count`).
845 pub fn bulk_self_transfer_in_plan(
846 &self,
847 filter: BulkStiFilter,
848 ) -> Result<BulkStiPlan, CliError> {
849 let (events, state, _cfg) = self.load_events_and_project()?;
850 let prices = self.prices();
851 let index: std::collections::HashMap<EventId, &LedgerEvent> =
852 events.iter().map(|e| (e.id.clone(), e)).collect();
853
854 // [R0-I1] filter-3, mirroring `open_classify_inbound_flow`: the set of TransferIn event ids
855 // already targeted by a NON-VOIDED `ClassifyInbound`. Build the voided-decision-id set first,
856 // then keep only ClassifyInbounds whose OWN id is not voided [R0-M-r2-1: decision-id space and
857 // TransferIn-id space are disjoint; we intersect a decision's own id against `voided`, and map
858 // the survivor to its `transfer_in_event`].
859 let voided: std::collections::BTreeSet<EventId> = events
860 .iter()
861 .filter_map(|e| match &e.payload {
862 EventPayload::VoidDecisionEvent(v) => Some(v.target_event_id.clone()),
863 _ => None,
864 })
865 .collect();
866 let already_classified: std::collections::BTreeSet<EventId> = events
867 .iter()
868 .filter(|e| !voided.contains(&e.id))
869 .filter_map(|e| match &e.payload {
870 EventPayload::ClassifyInbound(ci) => Some(ci.transfer_in_event.clone()),
871 _ => None,
872 })
873 .collect();
874
875 let in_frame = |date: TaxDate| match &filter.frame {
876 Frame::All => true,
877 Frame::Year(y) => date.year() == *y,
878 Frame::Range { from, to } => *from <= date && date <= *to,
879 };
880
881 let mut included: Vec<BulkStiRow> = Vec::new();
882 for b in &state.blockers {
883 if b.kind != BlockerKind::UnknownBasisInbound {
884 continue;
885 }
886 let Some(id) = &b.event else { continue };
887 // [R0-I1] EXCLUDE any inbound that already carries a live ClassifyInbound (else the bulk
888 // append duplicates it → Hard DecisionConflict blocks compute_tax_year).
889 if already_classified.contains(id) {
890 continue;
891 }
892 let Some(ev) = index.get(id) else { continue };
893 let EventPayload::TransferIn(ti) = &ev.payload else {
894 continue;
895 };
896 // [R0-M2] EXCLUDE wallet-less inbounds — a self-transfer-in creates no lot and re-fires
897 // the blocker (matcher skips them too).
898 let Some(wallet) = ev.wallet.clone() else {
899 continue;
900 };
901 let date = tax_date(ev.utc_timestamp, ev.original_tz);
902 if !in_frame(date) {
903 continue;
904 }
905 if let Some(w) = &filter.wallet {
906 if &wallet != w {
907 continue;
908 }
909 }
910 let sat = ti.sat;
911 let usd_fmv = btctax_core::price::fmv_of(prices, date, sat);
912 included.push(BulkStiRow {
913 in_event: id.clone(),
914 date,
915 wallet: Some(wallet),
916 sat,
917 usd_fmv,
918 });
919 }
920 included.sort_by_key(|r| r.date);
921
922 let total_sat: Sat = included.iter().map(|r| r.sat).sum();
923 let total_usd_fmv_floor: Usd = included.iter().filter_map(|r| r.usd_fmv).sum();
924 let missing_price_count = included.iter().filter(|r| r.usd_fmv.is_none()).count();
925
926 Ok(BulkStiPlan {
927 included,
928 total_sat,
929 total_usd_fmv_floor,
930 missing_price_count,
931 })
932 }
933
934 /// READ-ONLY: compute the bulk classify-inbound-income plan (bulk-classify-inbound-income, Cycle 4).
935 /// A NEAR-CLONE of `bulk_self_transfer_in_plan`: candidates are `TransferIn`s still flagged
936 /// `UnknownBasisInbound` MINUS any already targeted by a NON-VOIDED `ClassifyInbound` (filter-3;
937 /// a second `ClassifyInbound` fires a Hard `DecisionConflict`) MINUS wallet-less inbounds (create no
938 /// lot; also a Hard-`FmvMissing` vector). Then the **Cycle-4 tax-safety difference [#a]**: any
939 /// candidate whose `fmv_of(date, sat)` is `None` (missing daily-close price OR overflow) is EXCLUDED
940 /// from `included` and counted in `excluded_missing_price` — a persisted `Income{fmv:None}` projects
941 /// to a Hard `FmvMissing` year-gate (NOT clearable by `ManualFmv` on the inbound path). `included`
942 /// therefore carries a RESOLVED `fmv: Usd` (non-Option). Appends/persists NOTHING.
943 pub fn bulk_classify_income_plan(
944 &self,
945 filter: BulkIncomeFilter,
946 ) -> Result<BulkIncomePlan, CliError> {
947 let (events, state, _cfg) = self.load_events_and_project()?;
948 let prices = self.prices();
949 let index: std::collections::HashMap<EventId, &LedgerEvent> =
950 events.iter().map(|e| (e.id.clone(), e)).collect();
951
952 // filter-3, mirroring `bulk_self_transfer_in_plan`: the set of TransferIn ids already targeted
953 // by a NON-VOIDED `ClassifyInbound` (build the voided-decision-id set first, keep only
954 // ClassifyInbounds whose OWN id is not voided, map the survivor to its `transfer_in_event`).
955 let voided: std::collections::BTreeSet<EventId> = events
956 .iter()
957 .filter_map(|e| match &e.payload {
958 EventPayload::VoidDecisionEvent(v) => Some(v.target_event_id.clone()),
959 _ => None,
960 })
961 .collect();
962 let already_classified: std::collections::BTreeSet<EventId> = events
963 .iter()
964 .filter(|e| !voided.contains(&e.id))
965 .filter_map(|e| match &e.payload {
966 EventPayload::ClassifyInbound(ci) => Some(ci.transfer_in_event.clone()),
967 _ => None,
968 })
969 .collect();
970
971 let in_frame = |date: TaxDate| match &filter.frame {
972 Frame::All => true,
973 Frame::Year(y) => date.year() == *y,
974 Frame::Range { from, to } => *from <= date && date <= *to,
975 };
976
977 let mut included: Vec<BulkIncomeRow> = Vec::new();
978 let mut excluded_missing_price = 0usize;
979 for b in &state.blockers {
980 if b.kind != BlockerKind::UnknownBasisInbound {
981 continue;
982 }
983 let Some(id) = &b.event else { continue };
984 // filter-3: EXCLUDE any inbound already carrying a live ClassifyInbound (a second one →
985 // Hard DecisionConflict blocks compute_tax_year).
986 if already_classified.contains(id) {
987 continue;
988 }
989 let Some(ev) = index.get(id) else { continue };
990 let EventPayload::TransferIn(ti) = &ev.payload else {
991 continue;
992 };
993 // EXCLUDE wallet-less inbounds — an income inbound without a wallet creates no lot and
994 // itself raises a Hard FmvMissing (fold.rs); the matcher skips them too.
995 let Some(wallet) = ev.wallet.clone() else {
996 continue;
997 };
998 let date = tax_date(ev.utc_timestamp, ev.original_tz);
999 if !in_frame(date) {
1000 continue;
1001 }
1002 if let Some(w) = &filter.wallet {
1003 if &wallet != w {
1004 continue;
1005 }
1006 }
1007 let sat = ti.sat;
1008 // [#a tax-safety — the whole cycle] a candidate with no price is EXCLUDED (counted), NEVER
1009 // classified as income: an Income{fmv:None} would trade UnknownBasisInbound for a Hard
1010 // FmvMissing year-gate. bulk-sti INCLUDES these rows ($0-basis needs no FMV); bulk-income
1011 // must NOT. `included` carries the resolved non-Option fmv.
1012 match btctax_core::price::fmv_of(prices, date, sat) {
1013 Some(fmv) => included.push(BulkIncomeRow {
1014 in_event: id.clone(),
1015 date,
1016 sat,
1017 fmv,
1018 }),
1019 None => excluded_missing_price += 1,
1020 }
1021 }
1022 included.sort_by_key(|r| r.date);
1023
1024 let total_sat: Sat = included.iter().map(|r| r.sat).sum();
1025 let total_income_usd: Usd = included.iter().map(|r| r.fmv).sum();
1026
1027 Ok(BulkIncomePlan {
1028 included,
1029 excluded_missing_price,
1030 total_sat,
1031 total_income_usd,
1032 })
1033 }
1034
1035 /// READ-ONLY: compute the bulk reclassify-outflow plan (bulk-reclassify-outflow, Cycle 5). Selects
1036 /// over the PROJECTED `pending_reconciliation` (which already excludes already-reclassified / linked
1037 /// outs, and never contains wallet-less outflows), enriches each with date / source wallet /
1038 /// principal / RESOLVED auto-FMV / carried basis / estimated gain, and applies the frame +
1039 /// `from_wallet` filters. Appends/persists NOTHING (clone-fold-discard recompute); mirrors
1040 /// `bulk_link_transfer_plan` + the `bulk_classify_income_plan` `#a` missing-price exclusion.
1041 ///
1042 /// **[#a tax-safety — the whole cycle]** a candidate with no price is EXCLUDED (counted in
1043 /// `excluded_missing_price`), NEVER reclassified: `ReclassifyOutflow.principal_proceeds_or_fmv` is
1044 /// `Usd` (NOT Option), so the row could only be built by FABRICATING a `0`/bogus proceeds — a SILENT
1045 /// misreport (unlike bulk-income's LOUD `FmvMissing`). `included` therefore carries a RESOLVED
1046 /// `fmv: Usd` (non-Option), making a fabricated-proceeds Sell structurally unrepresentable here.
1047 ///
1048 /// **Estimated gain [Q3]:** `basis_usd = Σ pt.legs.usd_basis` — computed by the fold's SINGLE
1049 /// chronological pass with ALL candidate PendingOuts pending, so `Σ` over multiple rows is NEVER
1050 /// double-counted (an earlier-dated out drew the pool down before a later one folded). `estimated_gain
1051 /// = round_cents(fmv − basis_usd)` per row. The persisted Form-8949 numbers always run the ordinary
1052 /// fold (exact); only this preview carries the FIFO-vs-method / fee-treatment residual (label it).
1053 pub fn bulk_reclassify_outflow_plan(
1054 &self,
1055 filter: BulkFilter,
1056 ) -> Result<BulkReclassifyOutflowPlan, CliError> {
1057 let (events, state, _cfg) = self.load_events_and_project()?;
1058 let prices = self.prices();
1059 let index: std::collections::HashMap<EventId, &LedgerEvent> =
1060 events.iter().map(|e| (e.id.clone(), e)).collect();
1061
1062 let in_frame = |date: TaxDate| match &filter.frame {
1063 Frame::All => true,
1064 Frame::Year(y) => date.year() == *y,
1065 Frame::Range { from, to } => *from <= date && date <= *to,
1066 };
1067
1068 let mut included: Vec<BulkReclassifyOutflowRow> = Vec::new();
1069 let mut excluded_missing_price = 0usize;
1070 for pt in &state.pending_reconciliation {
1071 let ev = index.get(&pt.event).copied();
1072 let date = ev
1073 .map(|e| tax_date(e.utc_timestamp, e.original_tz))
1074 .unwrap_or_else(|| {
1075 // Defensive: a pending out always has an indexed source event; fall back to the
1076 // epoch date rather than panic (mirrors `bulk_link_transfer_plan`).
1077 tax_date(
1078 time::OffsetDateTime::from_unix_timestamp(0).unwrap(),
1079 time::UtcOffset::UTC,
1080 )
1081 });
1082 if !in_frame(date) {
1083 continue;
1084 }
1085 let wallet = ev.and_then(|e| e.wallet.clone());
1086 if let Some(w) = &filter.from_wallet {
1087 if wallet.as_ref() != Some(w) {
1088 continue;
1089 }
1090 }
1091 // [#a] EXCLUDE (count) a missing-price row — a Sell with fabricated proceeds is a SILENT
1092 // misreport. `included` carries the resolved non-Option fmv.
1093 let fmv = match btctax_core::price::fmv_of(prices, date, pt.principal_sat) {
1094 Some(v) => v,
1095 None => {
1096 excluded_missing_price += 1;
1097 continue;
1098 }
1099 };
1100 let basis_usd: Usd = pt.legs.iter().map(|l| l.usd_basis).sum();
1101 let estimated_gain = round_cents(fmv - basis_usd);
1102 included.push(BulkReclassifyOutflowRow {
1103 out_event: pt.event.clone(),
1104 date,
1105 wallet,
1106 principal_sat: pt.principal_sat,
1107 fmv,
1108 basis_usd,
1109 estimated_gain,
1110 });
1111 }
1112 included.sort_by_key(|r| r.date);
1113
1114 let total_sat: Sat = included.iter().map(|r| r.principal_sat).sum();
1115 let total_proceeds_usd: Usd = included.iter().map(|r| r.fmv).sum();
1116 let total_basis_usd: Usd = included.iter().map(|r| r.basis_usd).sum();
1117 let total_estimated_gain: Usd = included.iter().map(|r| r.estimated_gain).sum();
1118
1119 Ok(BulkReclassifyOutflowPlan {
1120 included,
1121 excluded_missing_price,
1122 total_sat,
1123 total_proceeds_usd,
1124 total_basis_usd,
1125 total_estimated_gain,
1126 })
1127 }
1128
1129 /// READ-ONLY: compute the bulk resolve-conflict plan (bulk-resolve-conflict D1). Candidate set =
1130 /// live `ImportConflict` blockers only (engine post-filtered — an accepted/rejected conflict is no
1131 /// longer flagged, so re-running never double-resolves; structural idempotence). Joins each blocker
1132 /// (whose `.event` is the `ImportConflict` event id) to the event index to build a STRUCTURED row:
1133 /// the conflict's `target` + `new_payload` + `new_fingerprint`, plus the `current_payload` read from
1134 /// the TARGET event (a SEPARATE event — accept adopts `new_payload`, reject keeps `current_payload`).
1135 /// Appends/persists NOTHING; mirrors `bulk_self_transfer_in_plan`.
1136 pub fn bulk_resolve_conflict_plan(&self) -> Result<BulkResolvePlan, CliError> {
1137 let (events, state, _cfg) = self.load_events_and_project()?;
1138 let index: std::collections::HashMap<EventId, &LedgerEvent> =
1139 events.iter().map(|e| (e.id.clone(), e)).collect();
1140
1141 let mut rows: Vec<BulkResolveRow> = Vec::new();
1142 for b in &state.blockers {
1143 if b.kind != BlockerKind::ImportConflict {
1144 continue;
1145 }
1146 let Some(conflict_id) = &b.event else {
1147 continue;
1148 };
1149 let Some(conflict_ev) = index.get(conflict_id) else {
1150 continue;
1151 };
1152 let EventPayload::ImportConflict(c) = &conflict_ev.payload else {
1153 continue;
1154 };
1155 // CURRENT payload lives at the TARGET id (a separate event, conflict_event != target).
1156 let Some(target_ev) = index.get(&c.target) else {
1157 continue;
1158 };
1159 let date = tax_date(conflict_ev.utc_timestamp, conflict_ev.original_tz);
1160 rows.push(BulkResolveRow {
1161 conflict_event: conflict_id.clone(),
1162 date,
1163 target: c.target.clone(),
1164 current_payload: target_ev.payload.clone(),
1165 new_payload: (*c.new_payload).clone(),
1166 new_fingerprint: c.new_fingerprint.0.chars().take(8).collect::<String>(),
1167 });
1168 }
1169 rows.sort_by_key(|r| r.date);
1170 Ok(BulkResolvePlan { rows })
1171 }
1172
1173 /// READ-ONLY: compute the bulk-void plan (bulk-void D1). Candidate set = the SINGLE shared
1174 /// predicate `btctax_core::voidable_decisions` over the projected events + blockers (Decision-id ∧
1175 /// not-voided ∧ `is_revocable_payload` ∧ #7 `!effective_alloc`) — the ONLY defense against sweeping
1176 /// an EFFECTIVE `SafeHarborAllocation` into a Hard `DecisionConflict`. Each row precomputes its
1177 /// `disposal_to_clear` ONCE from the same event set (a `LotSelection` target → `ls.disposal_event`)
1178 /// so `apply_bulk_void`/`persist_bulk_void` never re-load the log per row. Appends/persists NOTHING;
1179 /// mirrors `bulk_resolve_conflict_plan`. Sorted by `seq` for deterministic display.
1180 pub fn bulk_void_plan(&self) -> Result<BulkVoidPlan, CliError> {
1181 let (events, state, _cfg) = self.load_events_and_project()?;
1182 let mut rows: Vec<BulkVoidRow> = btctax_core::voidable_decisions(&events, &state.blockers)
1183 .into_iter()
1184 .map(|e| {
1185 let seq = match &e.id {
1186 EventId::Decision { seq } => *seq,
1187 _ => 0,
1188 };
1189 let disposal_to_clear = match &e.payload {
1190 EventPayload::LotSelection(ls) => Some(ls.disposal_event.clone()),
1191 _ => None,
1192 };
1193 BulkVoidRow {
1194 target_event_id: e.id.clone(),
1195 seq,
1196 date: tax_date(e.utc_timestamp, e.original_tz),
1197 payload: e.payload.clone(),
1198 disposal_to_clear,
1199 }
1200 })
1201 .collect();
1202 rows.sort_by_key(|r| r.seq);
1203 Ok(BulkVoidPlan { rows })
1204 }
1205
1206 /// READ-ONLY: propose self-transfer matches (self-transfer-passthrough C2). Appends/persists NOTHING
1207 /// (a clone-fold-discard recompute, like `bulk_link_transfer_plan`). Pairs ONLY unreconciled legs —
1208 /// candidate ins are `TransferIn`s flagged `UnknownBasisInbound` [R0-M2] (enumerated from the blocker
1209 /// set + joined to the raw event via the event index), candidate outs are `pending_reconciliation`.
1210 ///
1211 /// A pair is proposed iff ALL criteria pass: amount within `tol = max(out.fee_sat, ceil(0.005 ×
1212 /// out.principal))` (a `txid` EXACT match relaxes the amount check), a ±2-day window consistent with
1213 /// the direction (passthrough: in on/before out; relocate: in on/after out), and BOTH wallets present.
1214 /// The suggested `action` is wallet topology (same-wallet ⇒ Drop, cross-tracked-wallet ⇒ Relocate).
1215 /// A leg matching >1 counterpart is flagged `ambiguous` (surfaced, NEVER auto-picked — G-FALSE-MATCH).
1216 pub fn self_transfer_match_plan(&self) -> Result<Vec<MatchProposal>, CliError> {
1217 let (events, state, _cfg) = self.load_events_and_project()?;
1218 let prices = self.prices();
1219 let index: std::collections::HashMap<EventId, &LedgerEvent> =
1220 events.iter().map(|e| (e.id.clone(), e)).collect();
1221
1222 // Candidate ins: TransferIn events still flagged UnknownBasisInbound (unreconciled), joined to the
1223 // raw event via the index (the exact pattern `bulk_link_transfer_plan` uses for pending outs).
1224 struct CandIn {
1225 id: EventId,
1226 sat: Sat,
1227 txid: Option<String>,
1228 date: TaxDate,
1229 wallet: Option<WalletId>,
1230 }
1231 let mut ins: Vec<CandIn> = Vec::new();
1232 for b in &state.blockers {
1233 if b.kind != BlockerKind::UnknownBasisInbound {
1234 continue;
1235 }
1236 let Some(id) = &b.event else { continue };
1237 let Some(ev) = index.get(id) else { continue };
1238 let EventPayload::TransferIn(ti) = &ev.payload else {
1239 continue;
1240 };
1241 ins.push(CandIn {
1242 id: id.clone(),
1243 sat: ti.sat,
1244 txid: ti.txid.clone(),
1245 date: tax_date(ev.utc_timestamp, ev.original_tz),
1246 wallet: ev.wallet.clone(),
1247 });
1248 }
1249
1250 // Candidate outs: pending_reconciliation entries (already Op::PendingOut — unreconciled).
1251 struct CandOut {
1252 id: EventId,
1253 principal: Sat,
1254 fee: Option<Sat>,
1255 txid: Option<String>,
1256 date: TaxDate,
1257 wallet: Option<WalletId>,
1258 }
1259 let mut outs: Vec<CandOut> = Vec::new();
1260 for pt in &state.pending_reconciliation {
1261 let ev = index.get(&pt.event).copied();
1262 let date = ev
1263 .map(|e| tax_date(e.utc_timestamp, e.original_tz))
1264 .unwrap_or_else(|| {
1265 tax_date(
1266 time::OffsetDateTime::from_unix_timestamp(0).unwrap(),
1267 time::UtcOffset::UTC,
1268 )
1269 });
1270 let txid = ev.and_then(|e| match &e.payload {
1271 EventPayload::TransferOut(t) => t.txid.clone(),
1272 _ => None,
1273 });
1274 outs.push(CandOut {
1275 id: pt.event.clone(),
1276 principal: pt.principal_sat,
1277 fee: pt.fee_sat,
1278 txid,
1279 date,
1280 wallet: ev.and_then(|e| e.wallet.clone()),
1281 });
1282 }
1283
1284 // Passing (in_idx, out_idx, action, txid_match) tuples.
1285 let mut passing: Vec<(usize, usize, MatchAction, bool)> = Vec::new();
1286 for (i, ci) in ins.iter().enumerate() {
1287 // A wallet-less in can be neither a same-wallet DROP nor a RELOCATE destination.
1288 let Some(in_wallet) = ci.wallet.as_ref() else {
1289 continue;
1290 };
1291 for (j, co) in outs.iter().enumerate() {
1292 let Some(out_wallet) = co.wallet.as_ref() else {
1293 continue;
1294 };
1295 let action = if in_wallet == out_wallet {
1296 MatchAction::Drop
1297 } else {
1298 MatchAction::Relocate
1299 };
1300 // Amount: tol = max(fee, ceil(0.005 × principal)). ceil(p/200) = (p + 199) / 200 (p ≥ 0).
1301 let slack = if co.principal > 0 {
1302 (co.principal + 199) / 200
1303 } else {
1304 0
1305 };
1306 let tol = co.fee.unwrap_or(0).max(slack);
1307 let txid_match = ci.txid.is_some() && ci.txid == co.txid;
1308 let amount_ok = txid_match || (ci.sat - co.principal).abs() <= tol;
1309 if !amount_ok {
1310 continue;
1311 }
1312 // ±2-day window, direction keyed to the topology (exchange timestamp drift tolerated).
1313 let window_ok = match action {
1314 // Passthrough: the deposit precedes the withdrawal (in on/before out).
1315 MatchAction::Drop => {
1316 let d = (co.date - ci.date).whole_days();
1317 (0..=2).contains(&d)
1318 }
1319 // Relocate: the withdrawal precedes the arrival (in on/after out).
1320 MatchAction::Relocate => {
1321 let d = (ci.date - co.date).whole_days();
1322 (0..=2).contains(&d)
1323 }
1324 };
1325 if !window_ok {
1326 continue;
1327 }
1328 passing.push((i, j, action, txid_match));
1329 }
1330 }
1331
1332 // Ambiguity: a leg (in OR out) appearing in >1 passing pair is flagged, never silently picked.
1333 let mut in_count: std::collections::HashMap<usize, usize> =
1334 std::collections::HashMap::new();
1335 let mut out_count: std::collections::HashMap<usize, usize> =
1336 std::collections::HashMap::new();
1337 for (i, j, _, _) in &passing {
1338 *in_count.entry(*i).or_insert(0) += 1;
1339 *out_count.entry(*j).or_insert(0) += 1;
1340 }
1341
1342 let mut proposals: Vec<MatchProposal> = passing
1343 .iter()
1344 .map(|(i, j, action, txid_match)| {
1345 let ci = &ins[*i];
1346 let co = &outs[*j];
1347 let ambiguous = in_count[i] > 1 || out_count[j] > 1;
1348 MatchProposal {
1349 in_event: ci.id.clone(),
1350 out_event: co.id.clone(),
1351 in_date: ci.date,
1352 out_date: co.date,
1353 in_wallet: ci.wallet.clone(),
1354 out_wallet: co.wallet.clone(),
1355 in_sat: ci.sat,
1356 out_principal_sat: co.principal,
1357 usd_value: btctax_core::price::fmv_of(prices, co.date, co.principal),
1358 action: *action,
1359 ambiguous,
1360 txid_match: *txid_match,
1361 }
1362 })
1363 .collect();
1364 // Deterministic order (NFR4): by out date, then the two ids.
1365 proposals.sort_by(|a, b| {
1366 a.out_date
1367 .cmp(&b.out_date)
1368 .then(a.out_event.cmp(&b.out_event))
1369 .then(a.in_event.cmp(&b.in_event))
1370 });
1371 Ok(proposals)
1372 }
1373}
1374
1375#[cfg(test)]
1376mod tests {
1377 use super::*;
1378 use btctax_store::Passphrase;
1379
1380 fn pp() -> Passphrase {
1381 Passphrase::new("test-pass".into())
1382 }
1383
1384 #[test]
1385 fn create_then_open_round_trips_over_a_temp_vault() {
1386 let dir = tempfile::tempdir().unwrap();
1387 let vault = dir.path().join("vault.pgp");
1388 {
1389 let _s = Session::create(&vault, &pp()).unwrap(); // schema + config table initialized + saved
1390 }
1391 // Re-open with the same passphrase: an empty ledger projects cleanly.
1392 let s = Session::open(&vault, &pp()).unwrap();
1393 let (state, _cfg) = s.project().unwrap();
1394 assert!(state.lots.is_empty());
1395 assert!(state.blockers.is_empty());
1396 }
1397
1398 /// T12 (arch r2 M-3): a `PromoteTranche` layered on a dropped `DeclareTranche` must ALSO be dropped
1399 /// from the pre-2025 residue event list, or it projects with a dangling target (the tranche it
1400 /// promotes is ALWAYS excluded here, per D-8, regardless of the promote).
1401 #[test]
1402 fn safe_harbor_residue_does_not_project_a_dangling_promote() {
1403 use btctax_core::conservative::Coverage;
1404 use btctax_core::{Acknowledgment, DeclareTranche, FloorMethod, PromoteTranche};
1405 use rust_decimal_macros::dec;
1406 use time::macros::date;
1407
1408 fn events_with_pre2025_promoted_tranche() -> Vec<LedgerEvent> {
1409 let tranche_id = EventId::decision(1);
1410 vec![
1411 LedgerEvent {
1412 id: tranche_id.clone(),
1413 utc_timestamp: time::macros::datetime!(2018 - 06 - 01 0:00 UTC),
1414 original_tz: time::UtcOffset::UTC,
1415 wallet: None,
1416 payload: EventPayload::DeclareTranche(DeclareTranche {
1417 sat: 50_000_000,
1418 wallet: WalletId::SelfCustody {
1419 label: "cold".into(),
1420 },
1421 window_start: date!(2018 - 01 - 01),
1422 window_end: date!(2018 - 12 - 31),
1423 }),
1424 },
1425 LedgerEvent {
1426 id: EventId::decision(2),
1427 utc_timestamp: time::macros::datetime!(2026 - 01 - 01 0:00 UTC),
1428 original_tz: time::UtcOffset::UTC,
1429 wallet: None,
1430 payload: EventPayload::PromoteTranche(PromoteTranche {
1431 target: tranche_id,
1432 method: FloorMethod::WindowLowClose,
1433 filed_basis: dec!(12_000),
1434 coverage: Coverage::Full,
1435 provenance_attested: true,
1436 acknowledgment: Acknowledgment {
1437 phrase: "I understand and accept the risk".into(),
1438 shown_terms: vec![],
1439 provenance_text: "acquired by purchase within the declared window"
1440 .into(),
1441 provenance_version: "v1".into(),
1442 },
1443 part_ii_narrative: "cash P2P purchase, no records; window bounded on-chain"
1444 .into(),
1445 }),
1446 },
1447 ]
1448 }
1449
1450 let residue = pre2025_residue_events(events_with_pre2025_promoted_tranche());
1451 assert!(
1452 !residue
1453 .iter()
1454 .any(|e| matches!(e.payload, EventPayload::PromoteTranche(_))),
1455 "a promote layered on a dropped DeclareTranche must not leak into the pre-2025 residue"
1456 );
1457 assert!(
1458 !residue
1459 .iter()
1460 .any(|e| matches!(e.payload, EventPayload::DeclareTranche(_))),
1461 "sanity: the tranche itself stays dropped (existing D-8 behavior)"
1462 );
1463 }
1464
1465 /// `Session::snapshot`/`restore` delegate to the vault and revert an in-memory mutation
1466 /// without touching disk (the wrapper the persist layer uses for save-rollback).
1467 #[test]
1468 fn session_snapshot_restore_reverts_in_memory_mutation() {
1469 let dir = tempfile::tempdir().unwrap();
1470 let vault = dir.path().join("vault.pgp");
1471 let mut s = Session::create(&vault, &pp()).unwrap();
1472 s.conn().execute("CREATE TABLE t (x INTEGER)", []).unwrap();
1473 s.save().unwrap();
1474
1475 let snap = s.snapshot().unwrap();
1476 s.conn().execute("INSERT INTO t VALUES (7)", []).unwrap();
1477 let n: i64 = s
1478 .conn()
1479 .query_row("SELECT COUNT(*) FROM t", [], |r| r.get(0))
1480 .unwrap();
1481 assert_eq!(n, 1, "pre-restore: the inserted row is present in memory");
1482
1483 let before = std::fs::read(&vault).unwrap();
1484 s.restore(&snap).unwrap();
1485 let after = std::fs::read(&vault).unwrap();
1486 assert_eq!(before, after, "restore must not write the vault file");
1487
1488 let n: i64 = s
1489 .conn()
1490 .query_row("SELECT COUNT(*) FROM t", [], |r| r.get(0))
1491 .unwrap();
1492 assert_eq!(n, 0, "restore must revert the in-memory insert");
1493 }
1494
1495 #[test]
1496 fn wrong_passphrase_is_surfaced_not_a_panic() {
1497 let dir = tempfile::tempdir().unwrap();
1498 let vault = dir.path().join("vault.pgp");
1499 Session::create(&vault, &pp()).unwrap();
1500 let err = Session::open(&vault, &Passphrase::new("nope".into())).unwrap_err();
1501 assert!(matches!(
1502 err,
1503 CliError::Store(btctax_store::StoreError::WrongPassphrase)
1504 ));
1505 }
1506
1507 /// `load_events_and_project` must return the same (events, state, config) triple as calling
1508 /// `load_all` + `project` separately. Verifies the single-load contract (no double DB round-trip).
1509 #[test]
1510 fn load_events_and_project_matches_separate_calls() {
1511 let dir = tempfile::tempdir().unwrap();
1512 let vault = dir.path().join("vault.pgp");
1513 Session::create(&vault, &pp()).unwrap();
1514 let s = Session::open(&vault, &pp()).unwrap();
1515
1516 let (events, state, cfg) = s.load_events_and_project().unwrap();
1517
1518 // Reference path: separate load_all + project calls.
1519 let events2 = btctax_core::persistence::load_all(s.conn()).unwrap();
1520 let (state2, cfg2) = s.project().unwrap();
1521
1522 assert_eq!(events.len(), events2.len(), "event count must match");
1523 assert_eq!(state.lots.len(), state2.lots.len(), "lots count must match");
1524 assert_eq!(
1525 state.blockers.len(),
1526 state2.blockers.len(),
1527 "blocker count must match"
1528 );
1529 assert_eq!(cfg, cfg2, "ProjectionConfig must match");
1530 }
1531
1532 /// `Session::optimize_proposal` recomputes the Mode-1 proposal on the HELD session (READ-ONLY,
1533 /// no second open). For a 2025 year with two same-wallet lots and a 500k sale, the FIFO baseline
1534 /// consumes the cheaper lot A (higher gain); the optimizer prefers the dearer lot B → a
1535 /// per-disposal row whose proposed_selection differs from current_selection, with `delta ≤ 0`.
1536 #[test]
1537 fn optimize_proposal_recomputes_a_persistable_proposal_on_held_session() {
1538 use btctax_core::event::{
1539 Acquire, BasisSource, DisposeKind, EventPayload, LedgerEvent, MethodElection,
1540 OutflowClass, ReclassifyOutflow, TransferOut,
1541 };
1542 use btctax_core::identity::{Source, SourceRef};
1543 use btctax_core::persistence::{append_decision, append_import_batch};
1544 use btctax_core::{Carryforward, EventId, FilingStatus, LotMethod, TaxProfile, WalletId};
1545 use rust_decimal_macros::dec;
1546 use time::{OffsetDateTime, UtcOffset};
1547
1548 let dir = tempfile::tempdir().unwrap();
1549 let vault = dir.path().join("vault.pgp");
1550 Session::create(&vault, &pp()).unwrap();
1551 let mut s = Session::open(&vault, &pp()).unwrap();
1552
1553 let wallet = Some(WalletId::Exchange {
1554 provider: "River".to_string(),
1555 account: "main".to_string(),
1556 });
1557 let lot_a = EventId::import(Source::River, SourceRef::new("op-lot-a"));
1558 let lot_b = EventId::import(Source::River, SourceRef::new("op-lot-b"));
1559 let to_id = EventId::import(Source::River, SourceRef::new("op-sell"));
1560 let ta = OffsetDateTime::from_unix_timestamp(1_739_000_000).unwrap();
1561 let tb = OffsetDateTime::from_unix_timestamp(1_741_000_000).unwrap();
1562 let tc = OffsetDateTime::from_unix_timestamp(1_748_000_000).unwrap();
1563 let td = OffsetDateTime::from_unix_timestamp(1_748_100_000).unwrap();
1564 let batch = vec![
1565 LedgerEvent {
1566 id: lot_a.clone(),
1567 utc_timestamp: ta,
1568 original_tz: UtcOffset::UTC,
1569 wallet: wallet.clone(),
1570 payload: EventPayload::Acquire(Acquire {
1571 sat: 1_000_000,
1572 usd_cost: dec!(30000),
1573 fee_usd: dec!(0),
1574 basis_source: BasisSource::ExchangeProvided,
1575 }),
1576 },
1577 LedgerEvent {
1578 id: lot_b.clone(),
1579 utc_timestamp: tb,
1580 original_tz: UtcOffset::UTC,
1581 wallet: wallet.clone(),
1582 payload: EventPayload::Acquire(Acquire {
1583 sat: 1_000_000,
1584 usd_cost: dec!(50000),
1585 fee_usd: dec!(0),
1586 basis_source: BasisSource::ExchangeProvided,
1587 }),
1588 },
1589 LedgerEvent {
1590 id: to_id.clone(),
1591 utc_timestamp: tc,
1592 original_tz: UtcOffset::UTC,
1593 wallet: wallet.clone(),
1594 payload: EventPayload::TransferOut(TransferOut {
1595 sat: 500_000,
1596 fee_sat: None,
1597 dest_addr: None,
1598 txid: None,
1599 }),
1600 },
1601 ];
1602 append_import_batch(s.conn(), &batch).unwrap();
1603 let ro = EventPayload::ReclassifyOutflow(ReclassifyOutflow {
1604 transfer_out_event: to_id.clone(),
1605 as_: OutflowClass::Dispose {
1606 kind: DisposeKind::Sell,
1607 },
1608 principal_proceeds_or_fmv: dec!(30000),
1609 fee_usd: None,
1610 donee: None,
1611 });
1612 append_decision(s.conn(), ro, td, UtcOffset::UTC, None).unwrap();
1613 // [reconcile-defaults] pin a global FIFO standing order so the BASELINE picks the older lot_a
1614 // (the app default is now HIFO, which would already pick the dearer lot_b → nothing to propose).
1615 // Made-date 2024-12-24 ≤ effective 2025-01-01 → not backdated.
1616 append_decision(
1617 s.conn(),
1618 EventPayload::MethodElection(MethodElection {
1619 effective_from: time::macros::date!(2025 - 01 - 01),
1620 method: LotMethod::Fifo,
1621 wallet: None,
1622 }),
1623 OffsetDateTime::from_unix_timestamp(1_735_000_000).unwrap(),
1624 UtcOffset::UTC,
1625 None,
1626 )
1627 .unwrap();
1628 let profile = TaxProfile {
1629 filing_status: FilingStatus::Single,
1630 ordinary_taxable_income: dec!(100000),
1631 magi_excluding_crypto: dec!(100000),
1632 qualified_dividends_and_other_pref_income: dec!(0),
1633 other_net_capital_gain: dec!(0),
1634 capital_loss_carryforward_in: Carryforward::default(),
1635 w2_ss_wages: dec!(0),
1636 w2_medicare_wages: dec!(0),
1637 schedule_c_expenses: dec!(0),
1638 };
1639 crate::tax_profile::set(s.conn(), 2025, &profile).unwrap();
1640 s.save().unwrap();
1641
1642 let now = OffsetDateTime::from_unix_timestamp(1_752_000_000).unwrap();
1643 let proposal = s.optimize_proposal(2025, now).unwrap();
1644 assert!(
1645 proposal.delta <= dec!(0),
1646 "delta must be ≤ 0 (baseline-seeded)"
1647 );
1648 let row = proposal
1649 .per_disposal
1650 .iter()
1651 .find(|d| d.disposal == to_id)
1652 .expect("the 2025 sale must be in the proposal");
1653 assert_ne!(
1654 row.proposed_selection, row.current_selection,
1655 "the optimizer must propose the dearer lot (a change from FIFO)"
1656 );
1657 }
1658}