feat(banks): pure bank_book registry — pool + named banks, move/copy, JSON round-trip (B1)
This commit is contained in:
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#include "bank_book.h"
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#include <algorithm>
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#include <climits>
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// bank_book implementation.
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//
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// JSON is hand-rolled and self-contained, matching the house style of bank_model
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// and view_mode_model (brief: keep the pure core dependency-free — no third-party
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// JSON lib). The book blob nests one bank object per bank, each carrying that
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// bank's BankIndex serialized by bank_model's OWN writer (BankIndex::serialize),
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// so per-bank sample serialization stays owned by bank_model and is not duplicated
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// here. The book writer emits the bank envelope (id / displayName / ordinal) plus a
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// raw "index" member whose value is the BankIndex blob verbatim; the parser splits
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// the book envelope, then hands each nested index blob straight to
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// BankIndex::deserialize. Ints use %d; strings are escaped by writeEscaped.
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namespace reasampler {
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// ---------------------------------------------------------------------------
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// BankBook — construction + bank lookup
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// ---------------------------------------------------------------------------
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BankBook::BankBook() {
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Bank pool;
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pool.id = kPoolBankId;
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pool.displayName = kPoolBankName;
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pool.ordinal = 0;
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banks_.push_back(std::move(pool));
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activeBankId_ = kPoolBankId;
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}
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Bank* BankBook::bank(const std::string& id) {
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for (auto& b : banks_)
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if (b.id == id) return &b;
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return nullptr;
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}
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const Bank* BankBook::bank(const std::string& id) const {
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for (const auto& b : banks_)
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if (b.id == id) return &b;
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return nullptr;
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}
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BankIndex* BankBook::index(const std::string& id) {
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Bank* b = bank(id);
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return b ? &b->index : nullptr;
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}
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const BankIndex* BankBook::index(const std::string& id) const {
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const Bank* b = bank(id);
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return b ? &b->index : nullptr;
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}
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Bank& BankBook::pool() {
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// The pool is seeded on construction and is un-deletable, so it always exists.
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return *bank(kPoolBankId);
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}
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const Bank& BankBook::pool() const {
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return *bank(kPoolBankId);
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}
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// ---------------------------------------------------------------------------
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// Ordinal normalization
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// ---------------------------------------------------------------------------
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void BankBook::normalizeOrdinals() {
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// Stable-sort by ordinal with the pool pinned first, then rewrite ordinals to a
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// contiguous 0..N-1. Stability preserves the caller's relative order among banks
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// that share (or, after a reorder shuffle, tie on) an ordinal.
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std::stable_sort(banks_.begin(), banks_.end(), [](const Bank& a, const Bank& b) {
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if (a.isPool() != b.isPool()) return a.isPool(); // pool always first
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return a.ordinal < b.ordinal;
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});
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for (std::size_t i = 0; i < banks_.size(); ++i)
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banks_[i].ordinal = static_cast<int>(i);
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}
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// ---------------------------------------------------------------------------
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// Bank lifecycle
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// ---------------------------------------------------------------------------
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bool BankBook::createBank(const std::string& id, const std::string& displayName) {
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if (id.empty()) return false; // ids key the registry
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if (id == kPoolBankId) return false; // reserved pool id
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if (bank(id) != nullptr) return false; // duplicate
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Bank b;
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b.id = id;
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b.displayName = displayName;
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b.ordinal = static_cast<int>(banks_.size()); // append; normalize compacts it
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banks_.push_back(std::move(b));
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normalizeOrdinals();
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return true;
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}
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bool BankBook::renameBank(const std::string& id, const std::string& displayName) {
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if (id == kPoolBankId) return false; // pool is un-renamable
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Bank* b = bank(id);
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if (b == nullptr) return false;
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b->displayName = displayName;
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return true;
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}
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bool BankBook::deleteBank(const std::string& id) {
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if (id == kPoolBankId) return false; // pool is un-deletable
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auto it = std::find_if(banks_.begin(), banks_.end(),
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[&](const Bank& b) { return b.id == id; });
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if (it == banks_.end()) return false;
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banks_.erase(it);
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// If the active bank was the one deleted, fall back to the pool (invariant: the
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// active id always names a live bank).
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if (activeBankId_ == id) activeBankId_ = kPoolBankId;
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normalizeOrdinals();
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return true;
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}
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bool BankBook::reorderBank(const std::string& id, int newOrdinal) {
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if (id == kPoolBankId) return false; // pool is pinned at ordinal 0
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if (bank(id) == nullptr) return false;
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// Work on the named banks as an ordered list (banks_ is already ordinal-sorted
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// with the pool first, so named banks are banks_[1..]). Pull the target out and
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// re-insert it at the requested position, clamped into the named-bank range
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// [1..N], then rewrite ordinals contiguously. This is O(N) and obviously correct.
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std::vector<Bank> named;
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named.reserve(banks_.size());
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for (auto& b : banks_)
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if (!b.isPool()) named.push_back(std::move(b));
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auto it = std::find_if(named.begin(), named.end(),
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[&](const Bank& b) { return b.id == id; });
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Bank moved = std::move(*it);
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named.erase(it);
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// Named ordinals are 1..N; convert to a 0-based insertion index into `named`.
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const int hi = static_cast<int>(named.size()); // insert-at range is [0..size]
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int insertAt = std::max(0, std::min(newOrdinal - 1, hi));
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named.insert(named.begin() + insertAt, std::move(moved));
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// Rebuild banks_: pool first, then the reordered named banks. Assign ordinals
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// directly by position here — NOT via normalizeOrdinals(), whose stable_sort keys
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// on the (now stale) ordinals and would undo the reinsertion order.
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std::vector<Bank> rebuilt;
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rebuilt.reserve(named.size() + 1);
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rebuilt.push_back(std::move(pool()));
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for (auto& b : named) rebuilt.push_back(std::move(b));
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banks_ = std::move(rebuilt);
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for (std::size_t i = 0; i < banks_.size(); ++i)
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banks_[i].ordinal = static_cast<int>(i);
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return true;
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}
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bool BankBook::evacuate(const std::string& id) {
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if (id == kPoolBankId) return false; // pool is un-evacuable (it is the target)
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Bank* src = bank(id);
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if (src == nullptr) return false;
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// Move every member into the pool, index-only, observing destination collapse.
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// Snapshot the members first, then clear the source — BankIndex has no bulk move,
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// and adding into the pool must not alias the vector we are draining.
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BankIndex& poolIndex = pool().index;
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const std::vector<Sample> members = src->index.all(); // copy
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for (const auto& s : members)
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poolIndex.add(s); // Added or Collapsed; either way the pool now holds the hash
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src->index = BankIndex{}; // leave the evacuated bank empty
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return true;
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}
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// ---------------------------------------------------------------------------
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// Active bank
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// ---------------------------------------------------------------------------
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bool BankBook::setActiveBank(const std::string& id) {
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if (bank(id) == nullptr) return false; // unknown id never corrupts state
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activeBankId_ = id;
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return true;
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}
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BankIndex& BankBook::activeIndex() {
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// activeBankId_ always names a live bank; it falls back to the pool on delete.
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return bank(activeBankId_)->index;
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}
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const BankIndex& BankBook::activeIndex() const {
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return bank(activeBankId_)->index;
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}
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// ---------------------------------------------------------------------------
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// Sample movement (index-only)
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// ---------------------------------------------------------------------------
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namespace {
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// Adds `s` to `dest` and maps the BankIndex outcome onto the transfer outcome for
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// the "gained a NEW entry" case (`gained`) vs the collapse case. Rejected outcomes
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// (absolute path / empty id) cannot occur here: the sample already passed add() on
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// the source side, so its path and id are already valid.
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TransferResult applyDestAdd(BankIndex& dest, const Sample& s, TransferResult gained) {
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return dest.add(s) == AddResult::Collapsed ? TransferResult::Collapsed : gained;
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}
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} // namespace
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TransferResult BankBook::moveSample(const std::string& sampleId,
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const std::string& fromBankId,
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const std::string& toBankId) {
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Bank* from = bank(fromBankId);
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Bank* to = bank(toBankId);
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if (from == nullptr || to == nullptr) return TransferResult::RejectedUnknownBank;
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if (fromBankId == toBankId) return TransferResult::RejectedSameBank;
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const Sample* s = from->index.query(sampleId);
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if (s == nullptr) return TransferResult::RejectedSampleAbsent;
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// Copy the sample out before removing it: query returns a pointer into the
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// source vector that remove() invalidates.
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const Sample moved = *s;
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from->index.remove(sampleId); // source loses the entry unconditionally on a move
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return applyDestAdd(to->index, moved, TransferResult::Moved);
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}
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TransferResult BankBook::copySample(const std::string& sampleId,
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const std::string& fromBankId,
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const std::string& toBankId) {
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Bank* from = bank(fromBankId);
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Bank* to = bank(toBankId);
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if (from == nullptr || to == nullptr) return TransferResult::RejectedUnknownBank;
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if (fromBankId == toBankId) return TransferResult::RejectedSameBank;
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const Sample* s = from->index.query(sampleId);
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if (s == nullptr) return TransferResult::RejectedSampleAbsent;
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const Sample copy = *s; // source entry is left intact
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return applyDestAdd(to->index, copy, TransferResult::Copied);
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}
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// ===========================================================================
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// JSON — writer
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// ===========================================================================
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namespace {
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void writeEscaped(std::string& out, const std::string& s) {
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out += '"';
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for (char c : s) {
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switch (c) {
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case '"': out += "\\\""; break;
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case '\\': out += "\\\\"; break;
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case '\b': out += "\\b"; break;
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case '\f': out += "\\f"; break;
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case '\n': out += "\\n"; break;
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case '\r': out += "\\r"; break;
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case '\t': out += "\\t"; break;
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default:
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if (static_cast<unsigned char>(c) < 0x20) {
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char buf[8];
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std::snprintf(buf, sizeof(buf), "\\u%04x", static_cast<unsigned char>(c));
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out += buf;
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} else {
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out += c;
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}
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}
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}
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out += '"';
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}
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std::string intToStr(int v) {
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char buf[16];
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std::snprintf(buf, sizeof(buf), "%d", v);
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return buf;
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}
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class ObjWriter {
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public:
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explicit ObjWriter(std::string& out) : out_(out) { out_ += '{'; }
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~ObjWriter() { out_ += '}'; }
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void keyRaw(const char* key, const std::string& rawValue) {
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sep();
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writeEscaped(out_, key);
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out_ += ':';
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out_ += rawValue;
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}
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void keyStr(const char* key, const std::string& value) {
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sep();
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writeEscaped(out_, key);
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out_ += ':';
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writeEscaped(out_, value);
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}
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void keyBegin(const char* key) {
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sep();
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writeEscaped(out_, key);
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out_ += ':';
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}
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private:
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void sep() { if (first_) first_ = false; else out_ += ','; }
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std::string& out_;
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bool first_ = true;
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};
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} // namespace
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std::string BankBook::serialize() const {
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std::string out;
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{
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ObjWriter root(out);
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root.keyRaw("version", intToStr(1));
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root.keyStr("activeBank", activeBankId_);
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// banks: array of { id, displayName, ordinal, index: <BankIndex blob> }.
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// The pool rides in as bank-zero, persisted identically to any named bank.
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root.keyBegin("banks");
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out += '[';
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for (std::size_t i = 0; i < banks_.size(); ++i) {
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if (i) out += ',';
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ObjWriter b(out);
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b.keyStr("id", banks_[i].id);
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b.keyStr("displayName", banks_[i].displayName);
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b.keyRaw("ordinal", intToStr(banks_[i].ordinal));
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// The nested index is bank_model's own JSON, emitted verbatim so the
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// per-sample shape stays owned by BankIndex::serialize (not duplicated).
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b.keyRaw("index", banks_[i].index.serialize());
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}
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out += ']';
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} // root closes here (see bank_model note on NRVO + deferred close)
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return out;
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}
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// ===========================================================================
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// JSON — parser (recursive descent; std::nullopt on any malformed input, never UB)
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// ===========================================================================
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namespace {
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class Parser {
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public:
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explicit Parser(const std::string& s) : s_(s) {}
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// Parses a book blob into a bank set + active id. On success fills the out-params
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// and returns true. Distinguishes the legacy shape (a bare bank_index object: has
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// "samples", no "banks") from the book shape (has "banks"): a legacy blob yields a
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// single pool bank carrying the migrated index and an empty active id (⇒ pool). The
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// member deserialize() adopts the result (ordinal normalize + active resolve).
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bool parseBook(std::vector<Bank>& banks, std::string& activeBank);
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private:
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const std::string& s_;
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std::size_t pos_ = 0;
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bool eof() const { return pos_ >= s_.size(); }
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void skipWs() {
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while (!eof()) {
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char c = s_[pos_];
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if (c == ' ' || c == '\t' || c == '\n' || c == '\r') ++pos_;
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else break;
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}
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}
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bool consume(char c) {
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skipWs();
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if (eof() || s_[pos_] != c) return false;
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++pos_;
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return true;
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}
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bool parseString(std::string& out);
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bool parseInt(int& out);
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bool parseKey(std::string& key);
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bool skipValue();
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// Captures the raw source text of one JSON value (object / array / string /
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// scalar) verbatim, so a nested BankIndex blob can be handed to its own parser.
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bool captureValue(std::string& raw);
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bool parseBank(Bank& out);
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};
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bool Parser::parseString(std::string& out) {
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skipWs();
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if (eof() || s_[pos_] != '"') return false;
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++pos_;
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out.clear();
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while (!eof()) {
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char c = s_[pos_++];
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if (c == '"') return true;
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if (c == '\\') {
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if (eof()) return false;
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char e = s_[pos_++];
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switch (e) {
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case '"': out += '"'; break;
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case '\\': out += '\\'; break;
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case '/': out += '/'; break;
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case 'b': out += '\b'; break;
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case 'f': out += '\f'; break;
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case 'n': out += '\n'; break;
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case 'r': out += '\r'; break;
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case 't': out += '\t'; break;
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case 'u': {
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auto readHex4 = [&](unsigned int& cp) -> bool {
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if (pos_ + 4 > s_.size()) return false;
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cp = 0;
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for (int i = 0; i < 4; ++i) {
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char h = s_[pos_++];
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cp <<= 4;
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if (h >= '0' && h <= '9') cp |= static_cast<unsigned>(h - '0');
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else if (h >= 'a' && h <= 'f') cp |= static_cast<unsigned>(h - 'a' + 10);
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else if (h >= 'A' && h <= 'F') cp |= static_cast<unsigned>(h - 'A' + 10);
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else return false;
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}
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return true;
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};
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unsigned int hi = 0;
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if (!readHex4(hi)) return false;
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unsigned int codePoint = hi;
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if (hi >= 0xD800 && hi <= 0xDBFF) {
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if (pos_ + 6 > s_.size()) return false;
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if (s_[pos_] != '\\' || s_[pos_ + 1] != 'u') return false;
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pos_ += 2;
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unsigned int lo = 0;
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if (!readHex4(lo)) return false;
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if (lo < 0xDC00 || lo > 0xDFFF) return false;
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codePoint = 0x10000 + ((hi - 0xD800) << 10) + (lo - 0xDC00);
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} else if (hi >= 0xDC00 && hi <= 0xDFFF) {
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return false; // unpaired low surrogate
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}
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if (codePoint <= 0x7F) {
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out += static_cast<char>(codePoint);
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} else if (codePoint <= 0x7FF) {
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out += static_cast<char>(0xC0 | (codePoint >> 6));
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out += static_cast<char>(0x80 | (codePoint & 0x3F));
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} else if (codePoint <= 0xFFFF) {
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out += static_cast<char>(0xE0 | (codePoint >> 12));
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out += static_cast<char>(0x80 | ((codePoint >> 6) & 0x3F));
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out += static_cast<char>(0x80 | (codePoint & 0x3F));
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} else {
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out += static_cast<char>(0xF0 | (codePoint >> 18));
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out += static_cast<char>(0x80 | ((codePoint >> 12) & 0x3F));
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out += static_cast<char>(0x80 | ((codePoint >> 6) & 0x3F));
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out += static_cast<char>(0x80 | (codePoint & 0x3F));
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}
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break;
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}
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default: return false;
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}
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} else {
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out += c;
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}
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}
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return false; // unterminated
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}
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bool Parser::parseInt(int& out) {
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skipWs();
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std::size_t start = pos_;
|
||||
if (!eof() && (s_[pos_] == '-' || s_[pos_] == '+')) ++pos_;
|
||||
std::size_t digitsStart = pos_;
|
||||
while (!eof() && s_[pos_] >= '0' && s_[pos_] <= '9') ++pos_;
|
||||
if (pos_ == digitsStart) return false; // no digits
|
||||
long v = 0;
|
||||
try {
|
||||
v = std::stol(s_.substr(start, pos_ - start));
|
||||
} catch (...) {
|
||||
return false; // out of long range → malformed
|
||||
}
|
||||
if (v < INT_MIN || v > INT_MAX) return false;
|
||||
out = static_cast<int>(v);
|
||||
return true;
|
||||
}
|
||||
|
||||
bool Parser::parseKey(std::string& key) {
|
||||
if (!parseString(key)) return false;
|
||||
if (!consume(':')) return false;
|
||||
return true;
|
||||
}
|
||||
|
||||
bool Parser::skipValue() {
|
||||
std::string raw;
|
||||
return captureValue(raw);
|
||||
}
|
||||
|
||||
// Records the raw source span of one JSON value starting at the current position
|
||||
// (after whitespace) so it can be re-parsed by a nested parser. Handles nested
|
||||
// objects/arrays with string-aware brace matching (braces inside strings ignored).
|
||||
bool Parser::captureValue(std::string& raw) {
|
||||
skipWs();
|
||||
if (eof()) return false;
|
||||
std::size_t start = pos_;
|
||||
char c = s_[pos_];
|
||||
if (c == '"') {
|
||||
std::string tmp;
|
||||
if (!parseString(tmp)) return false;
|
||||
raw.assign(s_, start, pos_ - start);
|
||||
return true;
|
||||
}
|
||||
if (c == '{' || c == '[') {
|
||||
char open = c, close = (c == '{') ? '}' : ']';
|
||||
++pos_;
|
||||
int depth = 1;
|
||||
while (!eof() && depth > 0) {
|
||||
char d = s_[pos_];
|
||||
if (d == '"') {
|
||||
std::string tmp;
|
||||
if (!parseString(tmp)) return false; // advances past the string
|
||||
continue;
|
||||
}
|
||||
if (d == open) ++depth;
|
||||
else if (d == close) --depth;
|
||||
++pos_;
|
||||
}
|
||||
if (depth != 0) return false;
|
||||
raw.assign(s_, start, pos_ - start);
|
||||
return true;
|
||||
}
|
||||
// bare scalar (number / true / false / null)
|
||||
while (!eof()) {
|
||||
char d = s_[pos_];
|
||||
if (d == ',' || d == '}' || d == ']' || d == ' ' || d == '\t' ||
|
||||
d == '\n' || d == '\r')
|
||||
break;
|
||||
++pos_;
|
||||
}
|
||||
if (pos_ == start) return false;
|
||||
raw.assign(s_, start, pos_ - start);
|
||||
return true;
|
||||
}
|
||||
|
||||
bool Parser::parseBank(Bank& b) {
|
||||
if (!consume('{')) return false;
|
||||
skipWs();
|
||||
if (consume('}')) return false; // a bank object must at least carry an id
|
||||
|
||||
bool haveId = false;
|
||||
bool haveIndex = false;
|
||||
do {
|
||||
std::string key;
|
||||
if (!parseKey(key)) return false;
|
||||
|
||||
if (key == "id") {
|
||||
if (!parseString(b.id)) return false;
|
||||
haveId = true;
|
||||
} else if (key == "displayName") {
|
||||
if (!parseString(b.displayName)) return false;
|
||||
} else if (key == "ordinal") {
|
||||
if (!parseInt(b.ordinal)) return false;
|
||||
} else if (key == "index") {
|
||||
std::string raw;
|
||||
if (!captureValue(raw)) return false;
|
||||
auto idx = BankIndex::deserialize(raw);
|
||||
if (!idx) return false; // a malformed nested index fails the whole parse
|
||||
b.index = std::move(*idx);
|
||||
haveIndex = true;
|
||||
} else {
|
||||
if (!skipValue()) return false; // forward-compat unknown keys
|
||||
}
|
||||
} while (consume(','));
|
||||
|
||||
if (!consume('}')) return false;
|
||||
if (!haveId || b.id.empty()) return false; // id keys the registry
|
||||
if (!haveIndex) return false; // every bank persists its index
|
||||
return true;
|
||||
}
|
||||
|
||||
bool Parser::parseBook(std::vector<Bank>& banks, std::string& activeBank) {
|
||||
banks.clear();
|
||||
activeBank.clear();
|
||||
if (!consume('{')) return false;
|
||||
skipWs();
|
||||
if (consume('}')) return false; // an empty object is neither shape → malformed
|
||||
|
||||
// Decide the shape by which structural key we saw. A "banks" key ⇒ book shape; a
|
||||
// "samples" key with no "banks" ⇒ legacy shape (promote into the pool).
|
||||
std::vector<Bank> parsedBanks;
|
||||
bool sawBanks = false;
|
||||
bool sawSamples = false;
|
||||
|
||||
do {
|
||||
std::string key;
|
||||
if (!parseKey(key)) return false;
|
||||
|
||||
if (key == "banks") {
|
||||
sawBanks = true;
|
||||
if (!consume('[')) return false;
|
||||
skipWs();
|
||||
if (!consume(']')) {
|
||||
do {
|
||||
Bank b;
|
||||
if (!parseBank(b)) return false;
|
||||
parsedBanks.push_back(std::move(b));
|
||||
} while (consume(','));
|
||||
if (!consume(']')) return false;
|
||||
}
|
||||
} else if (key == "activeBank") {
|
||||
if (!parseString(activeBank)) return false;
|
||||
} else if (key == "samples") {
|
||||
// Legacy marker. The legacy index is re-parsed from the whole input below
|
||||
// (BankIndex::deserialize owns that shape); here we only skip the value to
|
||||
// keep the scan well-formed and note that we saw it.
|
||||
sawSamples = true;
|
||||
if (!skipValue()) return false;
|
||||
} else {
|
||||
if (!skipValue()) return false; // version, or unknown
|
||||
}
|
||||
} while (consume(','));
|
||||
|
||||
if (!consume('}')) return false;
|
||||
skipWs();
|
||||
if (!eof()) return false; // trailing garbage
|
||||
|
||||
// --- Legacy migration: a bare bank_index (samples, no banks) → pool. ---
|
||||
if (!sawBanks) {
|
||||
if (!sawSamples) return false; // neither shape's marker → malformed
|
||||
auto legacy = BankIndex::deserialize(s_);
|
||||
if (!legacy) return false;
|
||||
Bank pool;
|
||||
pool.id = kPoolBankId;
|
||||
pool.displayName = kPoolBankName;
|
||||
pool.ordinal = 0;
|
||||
pool.index = std::move(*legacy);
|
||||
banks.push_back(std::move(pool)); // { pool } with zero named banks
|
||||
activeBank.clear(); // ⇒ pool (default) after adoption
|
||||
return true;
|
||||
}
|
||||
|
||||
// --- Book shape: the parsed banks ARE the book (pool folded in). ---
|
||||
// The pool must be present as bank-zero (serialize always emits it). Reject a
|
||||
// book blob that omits it rather than silently re-seeding — a book without its
|
||||
// pool is malformed, not a legacy blob.
|
||||
bool hasPool = std::any_of(parsedBanks.begin(), parsedBanks.end(),
|
||||
[](const Bank& b) { return b.isPool(); });
|
||||
if (!hasPool) return false;
|
||||
|
||||
// Reject duplicate bank ids (ids key the registry; a dup would corrupt lookup).
|
||||
for (std::size_t i = 0; i < parsedBanks.size(); ++i)
|
||||
for (std::size_t j = i + 1; j < parsedBanks.size(); ++j)
|
||||
if (parsedBanks[i].id == parsedBanks[j].id) return false;
|
||||
|
||||
// Force the pool's fixed display name — it is not user-mutable, so we do not
|
||||
// trust a persisted override for it (keeps kPoolBankName authoritative).
|
||||
for (auto& b : parsedBanks)
|
||||
if (b.isPool()) b.displayName = kPoolBankName;
|
||||
|
||||
banks = std::move(parsedBanks);
|
||||
return true;
|
||||
}
|
||||
|
||||
} // namespace
|
||||
|
||||
void BankBook::adoptBanks(std::vector<Bank>&& banks, const std::string& activeBank) {
|
||||
banks_ = std::move(banks);
|
||||
normalizeOrdinals();
|
||||
// Resolve the active bank defensively: fall back to the pool if the persisted id
|
||||
// names no bank, so a corrupt active id never leaves a dangling capture target.
|
||||
activeBankId_ = (bank(activeBank) != nullptr) ? activeBank : std::string(kPoolBankId);
|
||||
}
|
||||
|
||||
std::optional<BankBook> BankBook::deserialize(const std::string& json) {
|
||||
std::vector<Bank> banks;
|
||||
std::string activeBank;
|
||||
Parser p(json);
|
||||
if (!p.parseBook(banks, activeBank)) return std::nullopt;
|
||||
|
||||
BankBook book;
|
||||
book.adoptBanks(std::move(banks), activeBank);
|
||||
return book;
|
||||
}
|
||||
|
||||
} // namespace reasampler
|
||||
Reference in New Issue
Block a user