Coverage Report

Created: 2026-09-01 13:33

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/root/bitcoin/src/wallet/wallet.cpp
Line
Count
Source
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// Copyright (c) 2009-2010 Satoshi Nakamoto
2
// Copyright (c) 2009-present The Bitcoin Core developers
3
// Distributed under the MIT software license, see the accompanying
4
// file COPYING or http://www.opensource.org/licenses/mit-license.php.
5
6
#include <wallet/wallet.h>
7
8
#include <bitcoin-build-config.h> // IWYU pragma: keep
9
10
#include <addresstype.h>
11
#include <blockfilter.h>
12
#include <chain.h>
13
#include <coins.h>
14
#include <common/args.h>
15
#include <common/messages.h>
16
#include <common/settings.h>
17
#include <common/signmessage.h>
18
#include <common/system.h>
19
#include <consensus/amount.h>
20
#include <consensus/consensus.h>
21
#include <consensus/validation.h>
22
#include <external_signer.h>
23
#include <interfaces/chain.h>
24
#include <interfaces/handler.h>
25
#include <interfaces/wallet.h>
26
#include <kernel/mempool_removal_reason.h>
27
#include <kernel/types.h>
28
#include <key.h>
29
#include <key_io.h>
30
#include <node/types.h>
31
#include <outputtype.h>
32
#include <policy/feerate.h>
33
#include <policy/truc_policy.h>
34
#include <primitives/block.h>
35
#include <primitives/transaction.h>
36
#include <psbt.h>
37
#include <pubkey.h>
38
#include <random.h>
39
#include <script/descriptor.h>
40
#include <script/interpreter.h>
41
#include <script/script.h>
42
#include <script/sign.h>
43
#include <script/signingprovider.h>
44
#include <script/solver.h>
45
#include <serialize.h>
46
#include <span.h>
47
#include <streams.h>
48
#include <support/allocators/secure.h>
49
#include <support/allocators/zeroafterfree.h>
50
#include <support/cleanse.h>
51
#include <sync.h>
52
#include <tinyformat.h>
53
#include <uint256.h>
54
#include <univalue.h>
55
#include <util/check.h>
56
#include <util/fs.h>
57
#include <util/fs_helpers.h>
58
#include <util/log.h>
59
#include <util/moneystr.h>
60
#include <util/result.h>
61
#include <util/string.h>
62
#include <util/time.h>
63
#include <util/translation.h>
64
#include <wallet/coincontrol.h>
65
#include <wallet/context.h>
66
#include <wallet/crypter.h>
67
#include <wallet/db.h>
68
#include <wallet/external_signer_scriptpubkeyman.h>
69
#include <wallet/scriptpubkeyman.h>
70
#include <wallet/transaction.h>
71
#include <wallet/types.h>
72
#include <wallet/walletdb.h>
73
#include <wallet/walletutil.h>
74
75
#include <algorithm>
76
#include <cassert>
77
#include <condition_variable>
78
#include <exception>
79
#include <limits>
80
#include <optional>
81
#include <stdexcept>
82
#include <thread>
83
#include <tuple>
84
#include <utility>
85
#include <variant>
86
87
struct KeyOriginInfo;
88
89
using common::AmountErrMsg;
90
using common::AmountHighWarn;
91
using common::PSBTError;
92
using interfaces::FoundBlock;
93
using kernel::ChainstateRole;
94
using util::ReplaceAll;
95
using util::ToString;
96
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namespace wallet {
98
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bool AddWalletSetting(interfaces::Chain& chain, const std::string& wallet_name)
100
0
{
101
0
    const auto update_function = [&wallet_name](common::SettingsValue& setting_value) {
102
0
        if (!setting_value.isArray()) setting_value.setArray();
  Branch (102:13): [True: 0, False: 0]
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0
        for (const auto& value : setting_value.getValues()) {
  Branch (103:32): [True: 0, False: 0]
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0
            if (value.isStr() && value.get_str() == wallet_name) return interfaces::SettingsAction::SKIP_WRITE;
  Branch (104:17): [True: 0, False: 0]
  Branch (104:34): [True: 0, False: 0]
105
0
        }
106
0
        setting_value.push_back(wallet_name);
107
0
        return interfaces::SettingsAction::WRITE;
108
0
    };
109
0
    return chain.updateRwSetting("wallet", update_function);
110
0
}
111
112
bool RemoveWalletSetting(interfaces::Chain& chain, const std::string& wallet_name)
113
0
{
114
0
    const auto update_function = [&wallet_name](common::SettingsValue& setting_value) {
115
0
        if (!setting_value.isArray()) {
  Branch (115:13): [True: 0, False: 0]
116
0
            if (wallet_name.empty() && setting_value.isNull()) {
  Branch (116:17): [True: 0, False: 0]
  Branch (116:40): [True: 0, False: 0]
117
                // Empty setting suppresses backwards-compatible default wallet autoload.
118
0
                setting_value.setArray();
119
0
                return interfaces::SettingsAction::WRITE;
120
0
            }
121
0
            return interfaces::SettingsAction::SKIP_WRITE;
122
0
        }
123
0
        common::SettingsValue new_value(common::SettingsValue::VARR);
124
0
        for (const auto& value : setting_value.getValues()) {
  Branch (124:32): [True: 0, False: 0]
125
0
            if (!value.isStr() || value.get_str() != wallet_name) new_value.push_back(value);
  Branch (125:17): [True: 0, False: 0]
  Branch (125:35): [True: 0, False: 0]
126
0
        }
127
0
        if (new_value.size() == setting_value.size()) return interfaces::SettingsAction::SKIP_WRITE;
  Branch (127:13): [True: 0, False: 0]
128
0
        setting_value = std::move(new_value);
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0
        return interfaces::SettingsAction::WRITE;
130
0
    };
131
0
    return chain.updateRwSetting("wallet", update_function);
132
0
}
133
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static void UpdateWalletSetting(interfaces::Chain& chain,
135
                                const std::string& wallet_name,
136
                                std::optional<bool> load_on_startup,
137
                                std::vector<bilingual_str>& warnings)
138
0
{
139
0
    if (!load_on_startup) return;
  Branch (139:9): [True: 0, False: 0]
140
0
    if (load_on_startup.value() && !AddWalletSetting(chain, wallet_name)) {
  Branch (140:9): [True: 0, False: 0]
  Branch (140:36): [True: 0, False: 0]
141
0
        warnings.emplace_back(Untranslated("Wallet load on startup setting could not be updated, so wallet may not be loaded next node startup."));
142
0
    } else if (!load_on_startup.value() && !RemoveWalletSetting(chain, wallet_name)) {
  Branch (142:16): [True: 0, False: 0]
  Branch (142:44): [True: 0, False: 0]
143
0
        warnings.emplace_back(Untranslated("Wallet load on startup setting could not be updated, so wallet may still be loaded next node startup."));
144
0
    }
145
0
}
146
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/**
148
 * Refresh mempool status so the wallet is in an internally consistent state and
149
 * immediately knows the transaction's status: Whether it can be considered
150
 * trusted and is eligible to be abandoned ...
151
 */
152
static void RefreshMempoolStatus(CWalletTx& tx, interfaces::Chain& chain)
153
0
{
154
0
    if (chain.isInMempool(tx.GetHash())) {
  Branch (154:9): [True: 0, False: 0]
155
0
        tx.m_state = TxStateInMempool();
156
0
    } else if (tx.state<TxStateInMempool>()) {
  Branch (156:16): [True: 0, False: 0]
157
0
        tx.m_state = TxStateInactive();
158
0
    }
159
0
}
160
161
bool AddWallet(WalletContext& context, const std::shared_ptr<CWallet>& wallet)
162
0
{
163
0
    LOCK(context.wallets_mutex);
164
0
    assert(wallet);
  Branch (164:5): [True: 0, False: 0]
165
0
    std::vector<std::shared_ptr<CWallet>>::const_iterator i = std::find(context.wallets.begin(), context.wallets.end(), wallet);
166
0
    if (i != context.wallets.end()) return false;
  Branch (166:9): [True: 0, False: 0]
167
0
    context.wallets.push_back(wallet);
168
0
    wallet->ConnectScriptPubKeyManNotifiers();
169
0
    wallet->NotifyCanGetAddressesChanged();
170
0
    return true;
171
0
}
172
173
bool RemoveWallet(WalletContext& context, const std::shared_ptr<CWallet>& wallet, std::optional<bool> load_on_start, std::vector<bilingual_str>& warnings)
174
0
{
175
0
    assert(wallet);
  Branch (175:5): [True: 0, False: 0]
176
177
0
    interfaces::Chain& chain = wallet->chain();
178
0
    std::string name = wallet->GetName();
179
0
    WITH_LOCK(wallet->cs_wallet, wallet->WriteBestBlock());
180
181
    // Unregister with the validation interface which also drops shared pointers.
182
0
    wallet->DisconnectChainNotifications();
183
0
    {
184
0
        LOCK(context.wallets_mutex);
185
0
        std::vector<std::shared_ptr<CWallet>>::iterator i = std::find(context.wallets.begin(), context.wallets.end(), wallet);
186
0
        if (i == context.wallets.end()) return false;
  Branch (186:13): [True: 0, False: 0]
187
0
        context.wallets.erase(i);
188
0
    }
189
    // Notify unload so that upper layers release the shared pointer.
190
0
    wallet->NotifyUnload();
191
192
    // Write the wallet setting
193
0
    UpdateWalletSetting(chain, name, load_on_start, warnings);
194
195
0
    return true;
196
0
}
197
198
bool RemoveWallet(WalletContext& context, const std::shared_ptr<CWallet>& wallet, std::optional<bool> load_on_start)
199
0
{
200
0
    std::vector<bilingual_str> warnings;
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0
    return RemoveWallet(context, wallet, load_on_start, warnings);
202
0
}
203
204
std::vector<std::shared_ptr<CWallet>> GetWallets(WalletContext& context)
205
0
{
206
0
    LOCK(context.wallets_mutex);
207
0
    return context.wallets;
208
0
}
209
210
std::shared_ptr<CWallet> GetDefaultWallet(WalletContext& context, size_t& count)
211
0
{
212
0
    LOCK(context.wallets_mutex);
213
0
    count = context.wallets.size();
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0
    return count == 1 ? context.wallets[0] : nullptr;
  Branch (214:12): [True: 0, False: 0]
215
0
}
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217
std::shared_ptr<CWallet> GetWallet(WalletContext& context, const std::string& name)
218
0
{
219
0
    LOCK(context.wallets_mutex);
220
0
    for (const std::shared_ptr<CWallet>& wallet : context.wallets) {
  Branch (220:49): [True: 0, False: 0]
221
0
        if (wallet->GetName() == name) return wallet;
  Branch (221:13): [True: 0, False: 0]
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0
    }
223
0
    return nullptr;
224
0
}
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std::unique_ptr<interfaces::Handler> HandleLoadWallet(WalletContext& context, LoadWalletFn load_wallet)
227
0
{
228
0
    LOCK(context.wallets_mutex);
229
0
    auto it = context.wallet_load_fns.emplace(context.wallet_load_fns.end(), std::move(load_wallet));
230
0
    return interfaces::MakeCleanupHandler([&context, it] { LOCK(context.wallets_mutex); context.wallet_load_fns.erase(it); });
231
0
}
232
233
void NotifyWalletLoaded(WalletContext& context, const std::shared_ptr<CWallet>& wallet)
234
0
{
235
0
    LOCK(context.wallets_mutex);
236
0
    for (auto& load_wallet : context.wallet_load_fns) {
  Branch (236:28): [True: 0, False: 0]
237
0
        load_wallet(interfaces::MakeWallet(context, wallet));
238
0
    }
239
0
}
240
241
static GlobalMutex g_loading_wallet_mutex;
242
static GlobalMutex g_wallet_release_mutex;
243
static std::condition_variable g_wallet_release_cv;
244
static std::set<std::string> g_loading_wallet_set GUARDED_BY(g_loading_wallet_mutex);
245
static std::set<std::string> g_unloading_wallet_set GUARDED_BY(g_wallet_release_mutex);
246
247
// Custom deleter for shared_ptr<CWallet>.
248
static void FlushAndDeleteWallet(CWallet* wallet)
249
0
{
250
0
    const std::string name = wallet->GetName();
251
0
    wallet->WalletLogPrintf("Releasing wallet %s..\n", name);
252
0
    delete wallet;
253
    // Wallet is now released, notify WaitForDeleteWallet, if any.
254
0
    {
255
0
        LOCK(g_wallet_release_mutex);
256
0
        if (g_unloading_wallet_set.erase(name) == 0) {
  Branch (256:13): [True: 0, False: 0]
257
            // WaitForDeleteWallet was not called for this wallet, all done.
258
0
            return;
259
0
        }
260
0
    }
261
0
    g_wallet_release_cv.notify_all();
262
0
}
263
264
void WaitForDeleteWallet(std::shared_ptr<CWallet>&& wallet)
265
0
{
266
    // Mark wallet for unloading.
267
0
    const std::string name = wallet->GetName();
268
0
    {
269
0
        LOCK(g_wallet_release_mutex);
270
0
        g_unloading_wallet_set.insert(name);
271
        // Do not expect to be the only one removing this wallet.
272
        // Multiple threads could simultaneously be waiting for deletion.
273
0
    }
274
275
    // Time to ditch our shared_ptr and wait for FlushAndDeleteWallet call.
276
0
    wallet.reset();
277
0
    {
278
0
        WAIT_LOCK(g_wallet_release_mutex, lock);
279
0
        while (g_unloading_wallet_set.contains(name)) {
  Branch (279:16): [True: 0, False: 0]
280
0
            g_wallet_release_cv.wait(lock);
281
0
        }
282
0
    }
283
0
}
284
285
namespace {
286
std::shared_ptr<CWallet> LoadWalletInternal(WalletContext& context, const std::string& name, std::optional<bool> load_on_start, const DatabaseOptions& options, DatabaseStatus& status, bilingual_str& error, std::vector<bilingual_str>& warnings)
287
0
{
288
0
    try {
289
0
        std::unique_ptr<WalletDatabase> database = MakeWalletDatabase(name, options, status, error);
290
0
        if (!database) {
  Branch (290:13): [True: 0, False: 0]
291
0
            error = Untranslated("Wallet file verification failed.") + Untranslated(" ") + error;
292
0
            return nullptr;
293
0
        }
294
295
0
        context.chain->initMessage(_("Loading wallet…"));
296
0
        std::shared_ptr<CWallet> wallet = CWallet::LoadExisting(context, name, std::move(database), error, warnings);
297
0
        if (!wallet) {
  Branch (297:13): [True: 0, False: 0]
298
0
            error = Untranslated("Wallet loading failed.") + Untranslated(" ") + error;
299
0
            status = DatabaseStatus::FAILED_LOAD;
300
0
            return nullptr;
301
0
        }
302
303
0
        NotifyWalletLoaded(context, wallet);
304
0
        AddWallet(context, wallet);
305
0
        wallet->postInitProcess();
306
307
        // Write the wallet setting
308
0
        UpdateWalletSetting(*context.chain, name, load_on_start, warnings);
309
310
0
        return wallet;
311
0
    } catch (const std::runtime_error& e) {
312
0
        error = Untranslated(e.what());
313
0
        status = DatabaseStatus::FAILED_LOAD;
314
0
        return nullptr;
315
0
    }
316
0
}
317
318
class FastWalletRescanFilter
319
{
320
public:
321
0
    FastWalletRescanFilter(const CWallet& wallet) : m_wallet(wallet)
322
0
    {
323
        // create initial filter with scripts from all ScriptPubKeyMans
324
0
        for (auto spkm : m_wallet.GetAllScriptPubKeyMans()) {
  Branch (324:24): [True: 0, False: 0]
325
0
            auto desc_spkm{dynamic_cast<DescriptorScriptPubKeyMan*>(spkm)};
326
0
            assert(desc_spkm != nullptr);
  Branch (326:13): [True: 0, False: 0]
327
0
            AddScriptPubKeys(desc_spkm);
328
            // save each range descriptor's end for possible future filter updates
329
0
            if (desc_spkm->IsHDEnabled()) {
  Branch (329:17): [True: 0, False: 0]
330
0
                m_last_range_ends.emplace(desc_spkm->GetID(), desc_spkm->GetEndRange());
331
0
            }
332
0
        }
333
0
    }
334
335
    void UpdateIfNeeded()
336
0
    {
337
        // repopulate filter with new scripts if top-up has happened since last iteration
338
0
        for (const auto& [desc_spkm_id, last_range_end] : m_last_range_ends) {
  Branch (338:57): [True: 0, False: 0]
339
0
            auto desc_spkm{dynamic_cast<DescriptorScriptPubKeyMan*>(m_wallet.GetScriptPubKeyMan(desc_spkm_id))};
340
0
            assert(desc_spkm != nullptr);
  Branch (340:13): [True: 0, False: 0]
341
0
            int32_t current_range_end{desc_spkm->GetEndRange()};
342
0
            if (current_range_end > last_range_end) {
  Branch (342:17): [True: 0, False: 0]
343
0
                AddScriptPubKeys(desc_spkm, last_range_end);
344
0
                m_last_range_ends.at(desc_spkm->GetID()) = current_range_end;
345
0
            }
346
0
        }
347
0
    }
348
349
    std::optional<bool> MatchesBlock(const uint256& block_hash) const
350
0
    {
351
0
        return m_wallet.chain().blockFilterMatchesAny(BlockFilterType::BASIC, block_hash, m_filter_set);
352
0
    }
353
354
private:
355
    const CWallet& m_wallet;
356
    /** Map for keeping track of each range descriptor's last seen end range.
357
      * This information is used to detect whether new addresses were derived
358
      * (that is, if the current end range is larger than the saved end range)
359
      * after processing a block and hence a filter set update is needed to
360
      * take possible keypool top-ups into account.
361
      */
362
    std::map<uint256, int32_t> m_last_range_ends;
363
    GCSFilter::ElementSet m_filter_set;
364
365
    void AddScriptPubKeys(const DescriptorScriptPubKeyMan* desc_spkm, int32_t last_range_end = 0)
366
0
    {
367
0
        for (const auto& script_pub_key : desc_spkm->GetScriptPubKeys(last_range_end)) {
  Branch (367:41): [True: 0, False: 0]
368
0
            m_filter_set.emplace(script_pub_key.begin(), script_pub_key.end());
369
0
        }
370
0
    }
371
};
372
} // namespace
373
374
std::shared_ptr<CWallet> LoadWallet(WalletContext& context, const std::string& name, std::optional<bool> load_on_start, const DatabaseOptions& options, DatabaseStatus& status, bilingual_str& error, std::vector<bilingual_str>& warnings)
375
0
{
376
0
    auto result = WITH_LOCK(g_loading_wallet_mutex, return g_loading_wallet_set.insert(name));
377
0
    if (!result.second) {
  Branch (377:9): [True: 0, False: 0]
378
0
        error = Untranslated("Wallet already loading.");
379
0
        status = DatabaseStatus::FAILED_LOAD;
380
0
        return nullptr;
381
0
    }
382
0
    auto wallet = LoadWalletInternal(context, name, load_on_start, options, status, error, warnings);
383
0
    WITH_LOCK(g_loading_wallet_mutex, g_loading_wallet_set.erase(result.first));
384
0
    return wallet;
385
0
}
386
387
std::shared_ptr<CWallet> CreateWallet(WalletContext& context, const std::string& name, std::optional<bool> load_on_start, DatabaseOptions& options, DatabaseStatus& status, bilingual_str& error, std::vector<bilingual_str>& warnings)
388
0
{
389
    // Wallet must have a non-empty name
390
0
    if (name.empty()) {
  Branch (390:9): [True: 0, False: 0]
391
0
        error = Untranslated("Wallet name cannot be empty");
392
0
        status = DatabaseStatus::FAILED_NEW_UNNAMED;
393
0
        return nullptr;
394
0
    }
395
396
0
    uint64_t wallet_creation_flags = options.create_flags;
397
0
    const SecureString& passphrase = options.create_passphrase;
398
0
    bool born_encrypted = !passphrase.empty();
399
400
    // Only descriptor wallets can be created
401
0
    Assert(wallet_creation_flags & WALLET_FLAG_DESCRIPTORS);
402
0
    options.require_format = DatabaseFormat::SQLITE;
403
404
405
    // Private keys must be disabled for an external signer wallet
406
0
    if ((wallet_creation_flags & WALLET_FLAG_EXTERNAL_SIGNER) && !(wallet_creation_flags & WALLET_FLAG_DISABLE_PRIVATE_KEYS)) {
  Branch (406:9): [True: 0, False: 0]
  Branch (406:66): [True: 0, False: 0]
407
0
        error = Untranslated("Private keys must be disabled when using an external signer");
408
0
        status = DatabaseStatus::FAILED_CREATE;
409
0
        return nullptr;
410
0
    }
411
412
    // Do not allow a passphrase when private keys are disabled
413
0
    if (born_encrypted && (wallet_creation_flags & WALLET_FLAG_DISABLE_PRIVATE_KEYS)) {
  Branch (413:9): [True: 0, False: 0]
  Branch (413:27): [True: 0, False: 0]
414
0
        error = Untranslated("Passphrase provided but private keys are disabled. A passphrase is only used to encrypt private keys, so cannot be used for wallets with private keys disabled.");
415
0
        status = DatabaseStatus::FAILED_CREATE;
416
0
        return nullptr;
417
0
    }
418
419
    // Wallet::Verify will check if we're trying to create a wallet with a duplicate name.
420
0
    std::unique_ptr<WalletDatabase> database = MakeWalletDatabase(name, options, status, error);
421
0
    if (!database) {
  Branch (421:9): [True: 0, False: 0]
422
0
        error = Untranslated("Wallet file verification failed.") + Untranslated(" ") + error;
423
0
        status = DatabaseStatus::FAILED_VERIFY;
424
0
        return nullptr;
425
0
    }
426
427
    // Make the wallet
428
0
    context.chain->initMessage(_("Creating wallet…"));
429
0
    std::shared_ptr<CWallet> wallet = CWallet::CreateNew(context, name, std::move(database), wallet_creation_flags, born_encrypted, error, warnings);
430
0
    if (!wallet) {
  Branch (430:9): [True: 0, False: 0]
431
0
        error = Untranslated("Wallet creation failed.") + Untranslated(" ") + error;
432
0
        status = DatabaseStatus::FAILED_CREATE;
433
0
        return nullptr;
434
0
    }
435
436
    // Encrypt the wallet
437
0
    if (born_encrypted) {
  Branch (437:9): [True: 0, False: 0]
438
0
        if (!wallet->EncryptWallet(passphrase)) {
  Branch (438:13): [True: 0, False: 0]
439
0
            error = Untranslated("Error: Wallet created but failed to encrypt.");
440
0
            status = DatabaseStatus::FAILED_ENCRYPT;
441
0
            return nullptr;
442
0
        }
443
0
    }
444
445
0
    WITH_LOCK(wallet->cs_wallet, wallet->LogStats());
446
0
    NotifyWalletLoaded(context, wallet);
447
0
    AddWallet(context, wallet);
448
0
    wallet->postInitProcess();
449
450
    // Write the wallet settings
451
0
    UpdateWalletSetting(*context.chain, name, load_on_start, warnings);
452
453
0
    status = DatabaseStatus::SUCCESS;
454
0
    return wallet;
455
0
}
456
457
// Re-creates wallet from the backup file by renaming and moving it into the wallet's directory.
458
// If 'load_after_restore=true', the wallet object will be fully initialized and appended to the context.
459
std::shared_ptr<CWallet> RestoreWallet(WalletContext& context, const fs::path& backup_file, const std::string& wallet_name, std::optional<bool> load_on_start, DatabaseStatus& status, bilingual_str& error, std::vector<bilingual_str>& warnings, bool load_after_restore, bool allow_unnamed)
460
0
{
461
    // Error if the wallet name is empty and allow_unnamed == false
462
    // allow_unnamed == true is only used by migration to migrate an unnamed wallet
463
0
    if (!allow_unnamed && wallet_name.empty()) {
  Branch (463:9): [True: 0, False: 0]
  Branch (463:27): [True: 0, False: 0]
464
0
        error = Untranslated("Wallet name cannot be empty");
465
0
        status = DatabaseStatus::FAILED_NEW_UNNAMED;
466
0
        return nullptr;
467
0
    }
468
469
0
    DatabaseOptions options;
470
0
    ReadDatabaseArgs(*context.args, options);
471
0
    options.require_existing = true;
472
473
0
    const fs::path wallet_path = fsbridge::AbsPathJoin(GetWalletDir(), fs::u8path(wallet_name));
474
0
    auto wallet_file = wallet_path / "wallet.dat";
475
0
    std::shared_ptr<CWallet> wallet;
476
0
    bool wallet_file_copied = false;
477
0
    bool created_parent_dir = false;
478
479
0
    try {
480
0
        if (!fs::exists(backup_file)) {
  Branch (480:13): [True: 0, False: 0]
481
0
            error = Untranslated("Backup file does not exist");
482
0
            status = DatabaseStatus::FAILED_INVALID_BACKUP_FILE;
483
0
            return nullptr;
484
0
        }
485
486
        // Wallet directories are allowed to exist, but must not contain a .dat file.
487
        // Any existing wallet database is treated as a hard failure to prevent overwriting.
488
0
        if (fs::exists(wallet_path)) {
  Branch (488:13): [True: 0, False: 0]
489
            // If this is a file, it is the db and we don't want to overwrite it.
490
0
            if (!fs::is_directory(wallet_path)) {
  Branch (490:17): [True: 0, False: 0]
491
0
                error = Untranslated(strprintf("Failed to restore wallet. Database file exists '%s'.", fs::PathToString(wallet_path)));
492
0
                status = DatabaseStatus::FAILED_ALREADY_EXISTS;
493
0
                return nullptr;
494
0
            }
495
496
            // Check we are not going to overwrite an existing db file
497
0
            if (fs::exists(wallet_file)) {
  Branch (497:17): [True: 0, False: 0]
498
0
                error = Untranslated(strprintf("Failed to restore wallet. Database file exists in '%s'.", fs::PathToString(wallet_file)));
499
0
                status = DatabaseStatus::FAILED_ALREADY_EXISTS;
500
0
                return nullptr;
501
0
            }
502
0
        } else {
503
            // The directory doesn't exist, create it
504
0
            if (!TryCreateDirectories(wallet_path)) {
  Branch (504:17): [True: 0, False: 0]
505
0
                error = Untranslated(strprintf("Failed to restore database path '%s'.", fs::PathToString(wallet_path)));
506
0
                status = DatabaseStatus::FAILED_ALREADY_EXISTS;
507
0
                return nullptr;
508
0
            }
509
0
            created_parent_dir = true;
510
0
        }
511
512
0
        fs::copy_file(backup_file, wallet_file, fs::copy_options::none);
513
0
        wallet_file_copied = true;
514
515
0
        if (load_after_restore) {
  Branch (515:13): [True: 0, False: 0]
516
0
            wallet = LoadWallet(context, wallet_name, load_on_start, options, status, error, warnings);
517
0
        }
518
0
    } catch (const std::exception& e) {
519
0
        assert(!wallet);
  Branch (519:9): [True: 0, False: 0]
520
0
        if (!error.empty()) error += Untranslated("\n");
  Branch (520:13): [True: 0, False: 0]
521
0
        error += Untranslated(strprintf("Unexpected exception: %s", e.what()));
522
0
    }
523
524
    // Remove created wallet path only when loading fails
525
0
    if (load_after_restore && !wallet) {
  Branch (525:9): [True: 0, False: 0]
  Branch (525:31): [True: 0, False: 0]
526
0
        if (wallet_file_copied) fs::remove(wallet_file);
  Branch (526:13): [True: 0, False: 0]
527
        // Clean up the parent directory if we created it during restoration.
528
        // As we have created it, it must be empty after deleting the wallet file.
529
0
        if (created_parent_dir) {
  Branch (529:13): [True: 0, False: 0]
530
0
            Assume(fs::is_empty(wallet_path));
531
0
            fs::remove(wallet_path);
532
0
        }
533
0
    }
534
535
0
    return wallet;
536
0
}
537
538
/** @defgroup mapWallet
539
 *
540
 * @{
541
 */
542
543
const CWalletTx* CWallet::GetWalletTx(const Txid& hash) const
544
0
{
545
0
    AssertLockHeld(cs_wallet);
546
0
    const auto it = mapWallet.find(hash);
547
0
    if (it == mapWallet.end())
  Branch (547:9): [True: 0, False: 0]
548
0
        return nullptr;
549
0
    return &(it->second);
550
0
}
551
552
void CWallet::UpgradeDescriptorCache()
553
0
{
554
0
    if (!IsWalletFlagSet(WALLET_FLAG_DESCRIPTORS) || IsLocked() || IsWalletFlagSet(WALLET_FLAG_LAST_HARDENED_XPUB_CACHED)) {
  Branch (554:9): [True: 0, False: 0]
  Branch (554:54): [True: 0, False: 0]
  Branch (554:68): [True: 0, False: 0]
555
0
        return;
556
0
    }
557
558
0
    for (ScriptPubKeyMan* spkm : GetAllScriptPubKeyMans()) {
  Branch (558:32): [True: 0, False: 0]
559
0
        DescriptorScriptPubKeyMan* desc_spkm = dynamic_cast<DescriptorScriptPubKeyMan*>(spkm);
560
0
        desc_spkm->UpgradeDescriptorCache();
561
0
    }
562
0
    SetWalletFlag(WALLET_FLAG_LAST_HARDENED_XPUB_CACHED);
563
0
}
564
565
/* Given a wallet passphrase string and an unencrypted master key, determine the proper key
566
 * derivation parameters (should take at least 100ms) and encrypt the master key. */
567
static bool EncryptMasterKey(const SecureString& wallet_passphrase, const CKeyingMaterial& plain_master_key, CMasterKey& master_key)
568
0
{
569
0
    constexpr MillisecondsDouble target_time{100};
570
0
    CCrypter crypter;
571
0
    CMasterKey updated_master_key{master_key};
572
573
    // Get the weighted average of iterations we can do in 100ms over 2 runs.
574
0
    for (int i = 0; i < 2; i++){
  Branch (574:21): [True: 0, False: 0]
575
0
        auto start_time{NodeClock::now()};
576
0
        const bool key_set{crypter.SetKeyFromPassphrase(wallet_passphrase, updated_master_key.vchSalt, updated_master_key.nDeriveIterations, updated_master_key.nDerivationMethod)};
577
0
        auto elapsed_time{NodeClock::now() - start_time};
578
0
        if (!key_set) {
  Branch (578:13): [True: 0, False: 0]
579
0
            return false;
580
0
        }
581
582
0
        if (elapsed_time <= 0s) {
  Branch (582:13): [True: 0, False: 0]
583
            // We are probably in a test with a mocked clock.
584
0
            updated_master_key.nDeriveIterations = CMasterKey::DEFAULT_DERIVE_ITERATIONS;
585
0
            break;
586
0
        }
587
588
        // target_iterations : elapsed_iterations :: target_time : elapsed_time
589
0
        const double target_iterations{updated_master_key.nDeriveIterations * target_time / elapsed_time};
590
0
        if (target_iterations < 1 || target_iterations > std::numeric_limits<unsigned int>::max()) {
  Branch (590:13): [True: 0, False: 0]
  Branch (590:38): [True: 0, False: 0]
591
0
            return false;
592
0
        }
593
        // Get the weighted average with previous runs. Use 64-bit math so the
594
        // sum cannot wrap; the average of two unsigned int values fits in one.
595
0
        updated_master_key.nDeriveIterations = (uint64_t{updated_master_key.nDeriveIterations} * i + static_cast<unsigned int>(target_iterations)) / (i + 1);
596
0
    }
597
598
0
    if (updated_master_key.nDeriveIterations < CMasterKey::DEFAULT_DERIVE_ITERATIONS) {
  Branch (598:9): [True: 0, False: 0]
599
0
        updated_master_key.nDeriveIterations = CMasterKey::DEFAULT_DERIVE_ITERATIONS;
600
0
    }
601
602
0
    if (!crypter.SetKeyFromPassphrase(wallet_passphrase, updated_master_key.vchSalt, updated_master_key.nDeriveIterations, updated_master_key.nDerivationMethod)) {
  Branch (602:9): [True: 0, False: 0]
603
0
        return false;
604
0
    }
605
0
    if (!crypter.Encrypt(plain_master_key, updated_master_key.vchCryptedKey)) {
  Branch (605:9): [True: 0, False: 0]
606
0
        return false;
607
0
    }
608
609
0
    master_key = std::move(updated_master_key);
610
0
    return true;
611
0
}
612
613
static bool DecryptMasterKey(const SecureString& wallet_passphrase, const CMasterKey& master_key, CKeyingMaterial& plain_master_key)
614
0
{
615
0
    CCrypter crypter;
616
0
    if (!crypter.SetKeyFromPassphrase(wallet_passphrase, master_key.vchSalt, master_key.nDeriveIterations, master_key.nDerivationMethod)) {
  Branch (616:9): [True: 0, False: 0]
617
0
        return false;
618
0
    }
619
0
    if (!crypter.Decrypt(master_key.vchCryptedKey, plain_master_key)) {
  Branch (619:9): [True: 0, False: 0]
620
0
        return false;
621
0
    }
622
623
0
    return true;
624
0
}
625
626
bool CWallet::Unlock(const SecureString& strWalletPassphrase)
627
0
{
628
0
    CKeyingMaterial plain_master_key;
629
630
0
    {
631
0
        LOCK(cs_wallet);
632
0
        for (const auto& [_, master_key] : mapMasterKeys)
  Branch (632:42): [True: 0, False: 0]
633
0
        {
634
0
            if (!DecryptMasterKey(strWalletPassphrase, master_key, plain_master_key)) {
  Branch (634:17): [True: 0, False: 0]
635
0
                continue; // try another master key
636
0
            }
637
0
            if (Unlock(plain_master_key)) {
  Branch (637:17): [True: 0, False: 0]
638
                // Now that we've unlocked, upgrade the descriptor cache
639
0
                UpgradeDescriptorCache();
640
0
                return true;
641
0
            }
642
0
        }
643
0
    }
644
0
    return false;
645
0
}
646
647
bool CWallet::ChangeWalletPassphrase(const SecureString& strOldWalletPassphrase, const SecureString& strNewWalletPassphrase)
648
0
{
649
0
    bool fWasLocked = IsLocked();
650
651
0
    {
652
0
        LOCK2(m_relock_mutex, cs_wallet);
653
0
        Lock();
654
655
0
        CKeyingMaterial plain_master_key;
656
0
        for (auto& [master_key_id, master_key] : mapMasterKeys)
  Branch (656:48): [True: 0, False: 0]
657
0
        {
658
0
            if (!DecryptMasterKey(strOldWalletPassphrase, master_key, plain_master_key)) {
  Branch (658:17): [True: 0, False: 0]
659
0
                return false;
660
0
            }
661
0
            if (Unlock(plain_master_key))
  Branch (661:17): [True: 0, False: 0]
662
0
            {
663
0
                if (!EncryptMasterKey(strNewWalletPassphrase, plain_master_key, master_key)) {
  Branch (663:21): [True: 0, False: 0]
664
0
                    return false;
665
0
                }
666
0
                WalletLogPrintf("Wallet passphrase changed to an nDeriveIterations of %i\n", master_key.nDeriveIterations);
667
668
0
                WalletBatch(GetDatabase()).WriteMasterKey(master_key_id, master_key);
669
0
                if (fWasLocked)
  Branch (669:21): [True: 0, False: 0]
670
0
                    Lock();
671
0
                return true;
672
0
            }
673
0
        }
674
0
    }
675
676
0
    return false;
677
0
}
678
679
void CWallet::SetLastBlockProcessedInMem(int block_height, uint256 block_hash)
680
9.68k
{
681
9.68k
    AssertLockHeld(cs_wallet);
682
683
9.68k
    m_last_block_processed = block_hash;
684
9.68k
    m_last_block_processed_height = block_height;
685
9.68k
}
686
687
void CWallet::SetLastBlockProcessed(int block_height, uint256 block_hash)
688
9.68k
{
689
9.68k
    AssertLockHeld(cs_wallet);
690
691
9.68k
    SetLastBlockProcessedInMem(block_height, block_hash);
692
9.68k
    WriteBestBlock();
693
9.68k
}
694
695
std::set<Txid> CWallet::GetConflicts(const Txid& txid) const
696
0
{
697
0
    std::set<Txid> result;
698
0
    AssertLockHeld(cs_wallet);
699
700
0
    const auto it = mapWallet.find(txid);
701
0
    if (it == mapWallet.end())
  Branch (701:9): [True: 0, False: 0]
702
0
        return result;
703
0
    const CWalletTx& wtx = it->second;
704
705
0
    std::pair<TxSpends::const_iterator, TxSpends::const_iterator> range;
706
707
0
    for (const CTxIn& txin : wtx.GetTx()->vin)
  Branch (707:28): [True: 0, False: 0]
708
0
    {
709
0
        if (mapTxSpends.count(txin.prevout) <= 1)
  Branch (709:13): [True: 0, False: 0]
710
0
            continue;  // No conflict if zero or one spends
711
0
        range = mapTxSpends.equal_range(txin.prevout);
712
0
        for (TxSpends::const_iterator _it = range.first; _it != range.second; ++_it)
  Branch (712:58): [True: 0, False: 0]
713
0
            result.insert(_it->second);
714
0
    }
715
0
    return result;
716
0
}
717
718
bool CWallet::HasWalletSpend(const CTransactionRef& tx) const
719
0
{
720
0
    AssertLockHeld(cs_wallet);
721
0
    const Txid& txid = tx->GetHash();
722
0
    for (unsigned int i = 0; i < tx->vout.size(); ++i) {
  Branch (722:30): [True: 0, False: 0]
723
0
        if (IsSpent(COutPoint(txid, i))) {
  Branch (723:13): [True: 0, False: 0]
724
0
            return true;
725
0
        }
726
0
    }
727
0
    return false;
728
0
}
729
730
void CWallet::Close()
731
0
{
732
0
    GetDatabase().Close();
733
0
}
734
735
void CWallet::SyncMetaData(std::pair<TxSpends::iterator, TxSpends::iterator> range)
736
0
{
737
    // We want all the wallet transactions in range to have the same metadata as
738
    // the oldest (smallest nOrderPos).
739
    // So: find smallest nOrderPos:
740
741
0
    int nMinOrderPos = std::numeric_limits<int>::max();
742
0
    const CWalletTx* copyFrom = nullptr;
743
0
    for (TxSpends::iterator it = range.first; it != range.second; ++it) {
  Branch (743:47): [True: 0, False: 0]
744
0
        const CWalletTx* wtx = &mapWallet.at(it->second);
745
0
        if (wtx->nOrderPos < nMinOrderPos) {
  Branch (745:13): [True: 0, False: 0]
746
0
            nMinOrderPos = wtx->nOrderPos;
747
0
            copyFrom = wtx;
748
0
        }
749
0
    }
750
751
0
    if (!copyFrom) {
  Branch (751:9): [True: 0, False: 0]
752
0
        return;
753
0
    }
754
755
    // Now copy data from copyFrom to rest:
756
0
    for (TxSpends::iterator it = range.first; it != range.second; ++it)
  Branch (756:47): [True: 0, False: 0]
757
0
    {
758
0
        const Txid& hash = it->second;
759
0
        CWalletTx* copyTo = &mapWallet.at(hash);
760
0
        if (copyFrom == copyTo) continue;
  Branch (760:13): [True: 0, False: 0]
761
0
        assert(copyFrom && "Oldest wallet transaction in range assumed to have been found.");
  Branch (761:9): [True: 0, False: 0]
  Branch (761:9): [Folded - Ignored]
  Branch (761:9): [True: 0, False: 0]
762
0
        if (!copyFrom->IsEquivalentTo(*copyTo)) continue;
  Branch (762:13): [True: 0, False: 0]
763
0
        copyTo->m_from = copyFrom->m_from;
764
0
        copyTo->m_message = copyFrom->m_message;
765
0
        copyTo->m_comment = copyFrom->m_comment;
766
0
        copyTo->m_comment_to = copyFrom->m_comment_to;
767
0
        copyTo->m_replaces_txid = copyFrom->m_replaces_txid;
768
0
        copyTo->m_replaced_by_txid = copyFrom->m_replaced_by_txid;
769
0
        copyTo->m_messages = copyFrom->m_messages;
770
0
        copyTo->m_payment_requests = copyFrom->m_payment_requests;
771
        // nTimeReceived not copied on purpose
772
0
        copyTo->nTimeSmart = copyFrom->nTimeSmart;
773
        // nOrderPos not copied on purpose
774
        // cached members not copied on purpose
775
0
    }
776
0
}
777
778
/**
779
 * Outpoint is spent if any non-conflicted transaction
780
 * spends it:
781
 */
782
bool CWallet::IsSpent(const COutPoint& outpoint) const
783
107k
{
784
107k
    std::pair<TxSpends::const_iterator, TxSpends::const_iterator> range;
785
107k
    range = mapTxSpends.equal_range(outpoint);
786
787
107k
    for (TxSpends::const_iterator it = range.first; it != range.second; ++it) {
  Branch (787:53): [True: 0, False: 107k]
788
0
        const Txid& txid = it->second;
789
0
        const auto mit = mapWallet.find(txid);
790
0
        if (mit != mapWallet.end()) {
  Branch (790:13): [True: 0, False: 0]
791
0
            const auto& wtx = mit->second;
792
0
            if (!wtx.isAbandoned() && !wtx.isBlockConflicted() && !wtx.isMempoolConflicted())
  Branch (792:17): [True: 0, False: 0]
  Branch (792:39): [True: 0, False: 0]
  Branch (792:67): [True: 0, False: 0]
793
0
                return true; // Spent
794
0
        }
795
0
    }
796
107k
    return false;
797
107k
}
798
799
CWallet::SpendType CWallet::HowSpent(const COutPoint& outpoint) const
800
0
{
801
0
    SpendType st{SpendType::UNSPENT};
802
803
0
    std::pair<TxSpends::const_iterator, TxSpends::const_iterator> range;
804
0
    range = mapTxSpends.equal_range(outpoint);
805
806
0
    for (TxSpends::const_iterator it = range.first; it != range.second; ++it) {
  Branch (806:53): [True: 0, False: 0]
807
0
        const Txid& txid = it->second;
808
0
        const auto mit = mapWallet.find(txid);
809
0
        if (mit != mapWallet.end()) {
  Branch (809:13): [True: 0, False: 0]
810
0
            const auto& wtx = mit->second;
811
0
            if (wtx.isConfirmed()) return SpendType::CONFIRMED;
  Branch (811:17): [True: 0, False: 0]
812
0
            if (wtx.InMempool()) {
  Branch (812:17): [True: 0, False: 0]
813
0
                st = SpendType::MEMPOOL;
814
0
            } else if (!wtx.isAbandoned() && !wtx.isBlockConflicted() && !wtx.isMempoolConflicted()) {
  Branch (814:24): [True: 0, False: 0]
  Branch (814:46): [True: 0, False: 0]
  Branch (814:74): [True: 0, False: 0]
815
0
                if (st == SpendType::UNSPENT) st = SpendType::NONMEMPOOL;
  Branch (815:21): [True: 0, False: 0]
816
0
            }
817
0
        }
818
0
    }
819
0
    return st;
820
0
}
821
822
void CWallet::AddToSpends(const COutPoint& outpoint, const Txid& txid)
823
0
{
824
0
    mapTxSpends.insert(std::make_pair(outpoint, txid));
825
826
0
    UnlockCoin(outpoint);
827
828
0
    std::pair<TxSpends::iterator, TxSpends::iterator> range;
829
0
    range = mapTxSpends.equal_range(outpoint);
830
0
    SyncMetaData(range);
831
0
}
832
833
834
void CWallet::AddToSpends(const CWalletTx& wtx)
835
0
{
836
0
    if (wtx.IsCoinBase()) // Coinbases don't spend anything!
  Branch (836:9): [True: 0, False: 0]
837
0
        return;
838
839
0
    for (const CTxIn& txin : wtx.GetTx()->vin)
  Branch (839:28): [True: 0, False: 0]
840
0
        AddToSpends(txin.prevout, wtx.GetHash());
841
0
}
842
843
bool CWallet::EncryptWallet(const SecureString& strWalletPassphrase)
844
0
{
845
    // Only descriptor wallets can be encrypted
846
0
    Assert(IsWalletFlagSet(WALLET_FLAG_DESCRIPTORS));
847
848
0
    if (HasEncryptionKeys())
  Branch (848:9): [True: 0, False: 0]
849
0
        return false;
850
851
0
    CKeyingMaterial plain_master_key;
852
853
0
    plain_master_key.resize(WALLET_CRYPTO_KEY_SIZE);
854
0
    GetStrongRandBytes(plain_master_key);
855
856
0
    CMasterKey master_key;
857
858
0
    master_key.vchSalt.resize(WALLET_CRYPTO_SALT_SIZE);
859
0
    GetStrongRandBytes(master_key.vchSalt);
860
861
0
    if (!EncryptMasterKey(strWalletPassphrase, plain_master_key, master_key)) {
  Branch (861:9): [True: 0, False: 0]
862
0
        return false;
863
0
    }
864
0
    WalletLogPrintf("Encrypting Wallet with an nDeriveIterations of %i\n", master_key.nDeriveIterations);
865
866
0
    {
867
0
        LOCK2(m_relock_mutex, cs_wallet);
868
0
        mapMasterKeys[++nMasterKeyMaxID] = master_key;
869
0
        WalletBatch* encrypted_batch = new WalletBatch(GetDatabase());
870
0
        if (!encrypted_batch->TxnBegin()) {
  Branch (870:13): [True: 0, False: 0]
871
0
            delete encrypted_batch;
872
0
            encrypted_batch = nullptr;
873
0
            return false;
874
0
        }
875
0
        encrypted_batch->WriteMasterKey(nMasterKeyMaxID, master_key);
876
877
0
        for (const auto& spk_man_pair : m_spk_managers) {
  Branch (877:39): [True: 0, False: 0]
878
0
            auto spk_man = spk_man_pair.second.get();
879
0
            if (!spk_man->Encrypt(plain_master_key, encrypted_batch)) {
  Branch (879:17): [True: 0, False: 0]
880
0
                encrypted_batch->TxnAbort();
881
0
                delete encrypted_batch;
882
0
                encrypted_batch = nullptr;
883
                // We now probably have half of our keys encrypted in memory, and half not...
884
                // die and let the user reload the unencrypted wallet.
885
0
                assert(false);
  Branch (885:17): [Folded - Ignored]
886
0
            }
887
0
        }
888
889
0
        if (!encrypted_batch->TxnCommit()) {
  Branch (889:13): [True: 0, False: 0]
890
0
            delete encrypted_batch;
891
0
            encrypted_batch = nullptr;
892
            // We now have keys encrypted in memory, but not on disk...
893
            // die to avoid confusion and let the user reload the unencrypted wallet.
894
0
            assert(false);
  Branch (894:13): [Folded - Ignored]
895
0
        }
896
897
0
        delete encrypted_batch;
898
0
        encrypted_batch = nullptr;
899
900
0
        Lock();
901
0
        if (!Unlock(strWalletPassphrase)) {
  Branch (901:13): [True: 0, False: 0]
902
0
            return false;
903
0
        }
904
905
0
        SetupWalletGeneration();
906
907
0
        Lock();
908
909
        // Need to completely rewrite the wallet file; if we don't, the database might keep
910
        // bits of the unencrypted private key in slack space in the database file.
911
0
        GetDatabase().Rewrite();
912
0
    }
913
0
    NotifyStatusChanged(this);
914
915
0
    return true;
916
0
}
917
918
DBErrors CWallet::ReorderTransactions()
919
0
{
920
0
    LOCK(cs_wallet);
921
0
    WalletBatch batch(GetDatabase());
922
923
    // Old wallets didn't have any defined order for transactions
924
    // Probably a bad idea to change the output of this
925
926
    // First: get all CWalletTx into a sorted-by-time multimap.
927
0
    typedef std::multimap<int64_t, CWalletTx*> TxItems;
928
0
    TxItems txByTime;
929
930
0
    for (auto& entry : mapWallet)
  Branch (930:22): [True: 0, False: 0]
931
0
    {
932
0
        CWalletTx* wtx = &entry.second;
933
0
        txByTime.insert(std::make_pair(wtx->nTimeReceived, wtx));
934
0
    }
935
936
0
    nOrderPosNext = 0;
937
0
    std::vector<int64_t> nOrderPosOffsets;
938
0
    for (TxItems::iterator it = txByTime.begin(); it != txByTime.end(); ++it)
  Branch (938:51): [True: 0, False: 0]
939
0
    {
940
0
        CWalletTx *const pwtx = (*it).second;
941
0
        int64_t& nOrderPos = pwtx->nOrderPos;
942
943
0
        if (nOrderPos == -1)
  Branch (943:13): [True: 0, False: 0]
944
0
        {
945
0
            nOrderPos = nOrderPosNext++;
946
0
            nOrderPosOffsets.push_back(nOrderPos);
947
948
0
            if (!batch.WriteTx(*pwtx))
  Branch (948:17): [True: 0, False: 0]
949
0
                return DBErrors::LOAD_FAIL;
950
0
        }
951
0
        else
952
0
        {
953
0
            int64_t nOrderPosOff = 0;
954
0
            for (const int64_t& nOffsetStart : nOrderPosOffsets)
  Branch (954:46): [True: 0, False: 0]
955
0
            {
956
0
                if (nOrderPos >= nOffsetStart)
  Branch (956:21): [True: 0, False: 0]
957
0
                    ++nOrderPosOff;
958
0
            }
959
0
            nOrderPos += nOrderPosOff;
960
0
            nOrderPosNext = std::max(nOrderPosNext, nOrderPos + 1);
961
962
0
            if (!nOrderPosOff)
  Branch (962:17): [True: 0, False: 0]
963
0
                continue;
964
965
            // Since we're changing the order, write it back
966
0
            if (!batch.WriteTx(*pwtx))
  Branch (966:17): [True: 0, False: 0]
967
0
                return DBErrors::LOAD_FAIL;
968
0
        }
969
0
    }
970
0
    batch.WriteOrderPosNext(nOrderPosNext);
971
972
0
    return DBErrors::LOAD_OK;
973
0
}
974
975
int64_t CWallet::IncOrderPosNext(WalletBatch* batch)
976
0
{
977
0
    AssertLockHeld(cs_wallet);
978
0
    int64_t nRet = nOrderPosNext++;
979
0
    if (batch) {
  Branch (979:9): [True: 0, False: 0]
980
0
        batch->WriteOrderPosNext(nOrderPosNext);
981
0
    } else {
982
0
        WalletBatch(GetDatabase()).WriteOrderPosNext(nOrderPosNext);
983
0
    }
984
0
    return nRet;
985
0
}
986
987
void CWallet::MarkDirty()
988
16.9k
{
989
16.9k
    {
990
16.9k
        LOCK(cs_wallet);
991
16.9k
        for (auto& [_, wtx] : mapWallet)
  Branch (991:29): [True: 0, False: 16.9k]
992
0
            wtx.MarkDirty();
993
16.9k
    }
994
16.9k
}
995
996
bool CWallet::MarkReplaced(const Txid& originalHash, const Txid& newHash)
997
0
{
998
0
    LOCK(cs_wallet);
999
1000
0
    auto mi = mapWallet.find(originalHash);
1001
1002
    // There is a bug if MarkReplaced is not called on an existing wallet transaction.
1003
0
    assert(mi != mapWallet.end());
  Branch (1003:5): [True: 0, False: 0]
1004
1005
0
    CWalletTx& wtx = (*mi).second;
1006
1007
    // Ensure for now that we're not overwriting data
1008
0
    Assert(!wtx.m_replaced_by_txid);
1009
1010
0
    wtx.m_replaced_by_txid = newHash;
1011
1012
    // Refresh mempool status without waiting for transactionRemovedFromMempool or transactionAddedToMempool
1013
0
    RefreshMempoolStatus(wtx, chain());
1014
1015
0
    WalletBatch batch(GetDatabase());
1016
1017
0
    bool success = true;
1018
0
    if (!batch.WriteTx(wtx)) {
  Branch (1018:9): [True: 0, False: 0]
1019
0
        WalletLogPrintf("%s: Updating batch tx %s failed\n", __func__, wtx.GetHash().ToString());
1020
0
        success = false;
1021
0
    }
1022
1023
0
    NotifyTransactionChanged(originalHash, CT_UPDATED);
1024
1025
0
    return success;
1026
0
}
1027
1028
void CWallet::SetSpentKeyState(WalletBatch& batch, const Txid& hash, unsigned int n, bool used, std::set<CTxDestination>& tx_destinations)
1029
0
{
1030
0
    AssertLockHeld(cs_wallet);
1031
0
    const CWalletTx* srctx = GetWalletTx(hash);
1032
0
    if (!srctx) return;
  Branch (1032:9): [True: 0, False: 0]
1033
1034
0
    CTxDestination dst;
1035
0
    if (ExtractDestination(srctx->GetTx()->vout[n].scriptPubKey, dst)) {
  Branch (1035:9): [True: 0, False: 0]
1036
0
        if (IsMine(dst)) {
  Branch (1036:13): [True: 0, False: 0]
1037
0
            if (used != IsAddressPreviouslySpent(dst)) {
  Branch (1037:17): [True: 0, False: 0]
1038
0
                if (used) {
  Branch (1038:21): [True: 0, False: 0]
1039
0
                    tx_destinations.insert(dst);
1040
0
                }
1041
0
                SetAddressPreviouslySpent(batch, dst, used);
1042
0
            }
1043
0
        }
1044
0
    }
1045
0
}
1046
1047
bool CWallet::IsSpentKey(const CScript& scriptPubKey) const
1048
0
{
1049
0
    AssertLockHeld(cs_wallet);
1050
0
    CTxDestination dest;
1051
0
    if (!ExtractDestination(scriptPubKey, dest)) {
  Branch (1051:9): [True: 0, False: 0]
1052
0
        return false;
1053
0
    }
1054
0
    if (IsAddressPreviouslySpent(dest)) {
  Branch (1054:9): [True: 0, False: 0]
1055
0
        return true;
1056
0
    }
1057
0
    return false;
1058
0
}
1059
1060
CWalletTx* CWallet::AddToWallet(CTransactionRef tx, const TxState& state, const UpdateWalletTxFn& update_wtx, bool rescanning_old_block)
1061
0
{
1062
0
    LOCK(cs_wallet);
1063
1064
0
    WalletBatch batch(GetDatabase());
1065
1066
0
    Txid hash = tx->GetHash();
1067
1068
0
    if (IsWalletFlagSet(WALLET_FLAG_AVOID_REUSE)) {
  Branch (1068:9): [True: 0, False: 0]
1069
        // Mark used destinations
1070
0
        std::set<CTxDestination> tx_destinations;
1071
1072
0
        for (const CTxIn& txin : tx->vin) {
  Branch (1072:32): [True: 0, False: 0]
1073
0
            const COutPoint& op = txin.prevout;
1074
0
            SetSpentKeyState(batch, op.hash, op.n, true, tx_destinations);
1075
0
        }
1076
1077
0
        MarkDestinationsDirty(tx_destinations);
1078
0
    }
1079
1080
    // Inserts only if not already there, returns tx inserted or tx found
1081
0
    auto ret = mapWallet.emplace(std::piecewise_construct, std::forward_as_tuple(hash), std::forward_as_tuple(tx, state));
1082
0
    CWalletTx& wtx = (*ret.first).second;
1083
0
    bool fInsertedNew = ret.second;
1084
0
    bool fUpdated = update_wtx && update_wtx(wtx, fInsertedNew);
  Branch (1084:21): [True: 0, False: 0]
  Branch (1084:35): [True: 0, False: 0]
1085
0
    if (fInsertedNew) {
  Branch (1085:9): [True: 0, False: 0]
1086
0
        wtx.nTimeReceived = GetTime();
1087
0
        wtx.nOrderPos = IncOrderPosNext(&batch);
1088
0
        wtx.m_it_wtxOrdered = wtxOrdered.insert(std::make_pair(wtx.nOrderPos, &wtx));
1089
0
        wtx.nTimeSmart = ComputeTimeSmart(wtx, rescanning_old_block);
1090
0
        AddToSpends(wtx);
1091
1092
        // Update birth time when tx time is older than it.
1093
0
        MaybeUpdateBirthTime(wtx.GetTxTime());
1094
0
    }
1095
1096
0
    if (!fInsertedNew)
  Branch (1096:9): [True: 0, False: 0]
1097
0
    {
1098
0
        fUpdated |= wtx.Update(tx, state);
1099
0
    }
1100
1101
    // Mark inactive coinbase transactions and their descendants as abandoned
1102
0
    if (wtx.IsCoinBase() && wtx.isInactive()) {
  Branch (1102:9): [True: 0, False: 0]
  Branch (1102:29): [True: 0, False: 0]
1103
0
        std::vector<CWalletTx*> txs{&wtx};
1104
1105
0
        TxStateInactive inactive_state = TxStateInactive{/*abandoned=*/true};
1106
1107
0
        while (!txs.empty()) {
  Branch (1107:16): [True: 0, False: 0]
1108
0
            CWalletTx* desc_tx = txs.back();
1109
0
            txs.pop_back();
1110
0
            desc_tx->m_state = inactive_state;
1111
            // Break caches since we have changed the state
1112
0
            desc_tx->MarkDirty();
1113
0
            batch.WriteTx(*desc_tx);
1114
0
            MarkInputsDirty(desc_tx->GetTx());
1115
0
            for (unsigned int i = 0; i < desc_tx->GetTx()->vout.size(); ++i) {
  Branch (1115:38): [True: 0, False: 0]
1116
0
                COutPoint outpoint(desc_tx->GetHash(), i);
1117
0
                std::pair<TxSpends::const_iterator, TxSpends::const_iterator> range = mapTxSpends.equal_range(outpoint);
1118
0
                for (TxSpends::const_iterator it = range.first; it != range.second; ++it) {
  Branch (1118:65): [True: 0, False: 0]
1119
0
                    const auto wit = mapWallet.find(it->second);
1120
0
                    if (wit != mapWallet.end()) {
  Branch (1120:25): [True: 0, False: 0]
1121
0
                        txs.push_back(&wit->second);
1122
0
                    }
1123
0
                }
1124
0
            }
1125
0
        }
1126
0
    }
1127
1128
    //// debug print
1129
0
    std::string status{"no-change"};
1130
0
    if (fInsertedNew || fUpdated) {
  Branch (1130:9): [True: 0, False: 0]
  Branch (1130:25): [True: 0, False: 0]
1131
0
        status = fInsertedNew ? (fUpdated ? "new, update" : "new") : "update";
  Branch (1131:18): [True: 0, False: 0]
  Branch (1131:34): [True: 0, False: 0]
1132
0
    }
1133
0
    WalletLogPrintf("AddToWallet %s %s %s", hash.ToString(), status, TxStateString(state));
1134
1135
    // Write to disk
1136
0
    if (fInsertedNew || fUpdated)
  Branch (1136:9): [True: 0, False: 0]
  Branch (1136:25): [True: 0, False: 0]
1137
0
        if (!batch.WriteTx(wtx))
  Branch (1137:13): [True: 0, False: 0]
1138
0
            return nullptr;
1139
1140
    // Break debit/credit balance caches:
1141
0
    wtx.MarkDirty();
1142
1143
    // Cache the outputs that belong to the wallet
1144
0
    RefreshTXOsFromTx(wtx);
1145
1146
    // Notify UI of new or updated transaction
1147
0
    NotifyTransactionChanged(hash, fInsertedNew ? CT_NEW : CT_UPDATED);
  Branch (1147:36): [True: 0, False: 0]
1148
1149
0
#if HAVE_SYSTEM
1150
    // notify an external script when a wallet transaction comes in or is updated
1151
0
    std::string strCmd = m_notify_tx_changed_script;
1152
1153
0
    if (!strCmd.empty())
  Branch (1153:9): [True: 0, False: 0]
1154
0
    {
1155
0
        ReplaceAll(strCmd, "%s", hash.GetHex());
1156
0
        if (auto* conf = wtx.state<TxStateConfirmed>())
  Branch (1156:19): [True: 0, False: 0]
1157
0
        {
1158
0
            ReplaceAll(strCmd, "%b", conf->confirmed_block_hash.GetHex());
1159
0
            ReplaceAll(strCmd, "%h", ToString(conf->confirmed_block_height));
1160
0
        } else {
1161
0
            ReplaceAll(strCmd, "%b", "unconfirmed");
1162
0
            ReplaceAll(strCmd, "%h", "-1");
1163
0
        }
1164
0
#ifndef WIN32
1165
        // Substituting the wallet name isn't currently supported on windows
1166
        // because windows shell escaping has not been implemented yet:
1167
        // https://github.com/bitcoin/bitcoin/pull/13339#issuecomment-537384875
1168
        // A few ways it could be implemented in the future are described in:
1169
        // https://github.com/bitcoin/bitcoin/pull/13339#issuecomment-461288094
1170
0
        ReplaceAll(strCmd, "%w", ShellEscape(GetName()));
1171
0
#endif
1172
0
        std::thread t(runCommand, strCmd);
1173
0
        t.detach(); // thread runs free
1174
0
    }
1175
0
#endif
1176
1177
0
    return &wtx;
1178
0
}
1179
1180
bool CWallet::LoadToWallet(CWalletTx&& wtx_in)
1181
0
{
1182
0
    const auto& ins = mapWallet.emplace(wtx_in.GetHash(), std::move(wtx_in));
1183
0
    CWalletTx& wtx = ins.first->second;
1184
0
    if (!ins.second) {
  Branch (1184:9): [True: 0, False: 0]
1185
0
        return false;
1186
0
    }
1187
    // If wallet doesn't have a chain (e.g when using bitcoin-wallet tool),
1188
    // don't bother to update txn.
1189
0
    if (HaveChain()) {
  Branch (1189:9): [True: 0, False: 0]
1190
0
      wtx.updateState(chain());
1191
0
    }
1192
0
    wtx.m_it_wtxOrdered = wtxOrdered.insert(std::make_pair(wtx.nOrderPos, &wtx));
1193
0
    AddToSpends(wtx);
1194
0
    for (const CTxIn& txin : wtx.GetTx()->vin) {
  Branch (1194:28): [True: 0, False: 0]
1195
0
        auto it = mapWallet.find(txin.prevout.hash);
1196
0
        if (it != mapWallet.end()) {
  Branch (1196:13): [True: 0, False: 0]
1197
0
            CWalletTx& prevtx = it->second;
1198
0
            if (auto* prev = prevtx.state<TxStateBlockConflicted>()) {
  Branch (1198:23): [True: 0, False: 0]
1199
0
                MarkConflicted(prev->conflicting_block_hash, prev->conflicting_block_height, wtx.GetHash());
1200
0
            }
1201
0
        }
1202
0
    }
1203
1204
    // Update birth time when tx time is older than it.
1205
0
    MaybeUpdateBirthTime(wtx.GetTxTime());
1206
1207
    // Make sure the tx outputs are known by the wallet
1208
0
    RefreshTXOsFromTx(wtx);
1209
0
    return true;
1210
0
}
1211
1212
bool CWallet::AddToWalletIfInvolvingMe(const CTransactionRef& ptx, const SyncTxState& state, bool rescanning_old_block)
1213
0
{
1214
0
    const CTransaction& tx = *ptx;
1215
0
    {
1216
0
        AssertLockHeld(cs_wallet);
1217
1218
0
        if (auto* conf = std::get_if<TxStateConfirmed>(&state)) {
  Branch (1218:19): [True: 0, False: 0]
1219
0
            for (const CTxIn& txin : tx.vin) {
  Branch (1219:36): [True: 0, False: 0]
1220
0
                std::pair<TxSpends::const_iterator, TxSpends::const_iterator> range = mapTxSpends.equal_range(txin.prevout);
1221
0
                while (range.first != range.second) {
  Branch (1221:24): [True: 0, False: 0]
1222
0
                    if (range.first->second != tx.GetHash()) {
  Branch (1222:25): [True: 0, False: 0]
1223
0
                        WalletLogPrintf("Transaction %s (in block %s) conflicts with wallet transaction %s (both spend %s:%i)\n", tx.GetHash().ToString(), conf->confirmed_block_hash.ToString(), range.first->second.ToString(), range.first->first.hash.ToString(), range.first->first.n);
1224
0
                        MarkConflicted(conf->confirmed_block_hash, conf->confirmed_block_height, range.first->second);
1225
0
                    }
1226
0
                    range.first++;
1227
0
                }
1228
0
            }
1229
0
        }
1230
1231
0
        bool fExisted = mapWallet.contains(tx.GetHash());
1232
0
        if (fExisted || IsMine(tx) || IsFromMe(tx))
  Branch (1232:13): [True: 0, False: 0]
  Branch (1232:25): [True: 0, False: 0]
  Branch (1232:39): [True: 0, False: 0]
1233
0
        {
1234
            /* Check if any keys in the wallet keypool that were supposed to be unused
1235
             * have appeared in a new transaction. If so, remove those keys from the keypool.
1236
             * This can happen when restoring an old wallet backup that does not contain
1237
             * the mostly recently created transactions from newer versions of the wallet.
1238
             */
1239
1240
            // loop though all outputs
1241
0
            for (const CTxOut& txout: tx.vout) {
  Branch (1241:37): [True: 0, False: 0]
1242
0
                for (const auto& spk_man : GetScriptPubKeyMans(txout.scriptPubKey)) {
  Branch (1242:42): [True: 0, False: 0]
1243
0
                    for (auto &dest : spk_man->MarkUnusedAddresses(txout.scriptPubKey)) {
  Branch (1243:37): [True: 0, False: 0]
1244
                        // If internal flag is not defined try to infer it from the ScriptPubKeyMan
1245
0
                        if (!dest.internal.has_value()) {
  Branch (1245:29): [True: 0, False: 0]
1246
0
                            dest.internal = IsInternalScriptPubKeyMan(spk_man);
1247
0
                        }
1248
1249
                        // skip if can't determine whether it's a receiving address or not
1250
0
                        if (!dest.internal.has_value()) continue;
  Branch (1250:29): [True: 0, False: 0]
1251
1252
                        // If this is a receiving address and it's not in the address book yet
1253
                        // (e.g. it wasn't generated on this node or we're restoring from backup)
1254
                        // add it to the address book for proper transaction accounting
1255
0
                        if (!*dest.internal && !FindAddressBookEntry(dest.dest, /* allow_change= */ false)) {
  Branch (1255:29): [True: 0, False: 0]
  Branch (1255:48): [True: 0, False: 0]
1256
0
                            SetAddressBook(dest.dest, "", AddressPurpose::RECEIVE);
1257
0
                        }
1258
0
                    }
1259
0
                }
1260
0
            }
1261
1262
            // Block disconnection override an abandoned tx as unconfirmed
1263
            // which means user may have to call abandontransaction again
1264
0
            TxState tx_state = std::visit([](auto&& s) -> TxState { return s; }, state);
Unexecuted instantiation: wallet.cpp:_ZZN6wallet7CWallet24AddToWalletIfInvolvingMeERKSt10shared_ptrIK12CTransactionERKSt7variantIJNS_16TxStateConfirmedENS_16TxStateInMempoolENS_15TxStateInactiveEEEbENK3$_0clIRKS8_EES7_IJS8_S9_NS_22TxStateBlockConflictedESA_NS_19TxStateUnrecognizedEEEOT_
Unexecuted instantiation: wallet.cpp:_ZZN6wallet7CWallet24AddToWalletIfInvolvingMeERKSt10shared_ptrIK12CTransactionERKSt7variantIJNS_16TxStateConfirmedENS_16TxStateInMempoolENS_15TxStateInactiveEEEbENK3$_0clIRKS9_EES7_IJS8_S9_NS_22TxStateBlockConflictedESA_NS_19TxStateUnrecognizedEEEOT_
Unexecuted instantiation: wallet.cpp:_ZZN6wallet7CWallet24AddToWalletIfInvolvingMeERKSt10shared_ptrIK12CTransactionERKSt7variantIJNS_16TxStateConfirmedENS_16TxStateInMempoolENS_15TxStateInactiveEEEbENK3$_0clIRKSA_EES7_IJS8_S9_NS_22TxStateBlockConflictedESA_NS_19TxStateUnrecognizedEEEOT_
1265
0
            CWalletTx* wtx = AddToWallet(MakeTransactionRef(tx), tx_state, /*update_wtx=*/nullptr, rescanning_old_block);
1266
0
            if (!wtx) {
  Branch (1266:17): [True: 0, False: 0]
1267
                // Can only be nullptr if there was a db write error (missing db, read-only db or a db engine internal writing error).
1268
                // As we only store arriving transaction in this process, and we don't want an inconsistent state, let's throw an error.
1269
0
                throw std::runtime_error("DB error adding transaction to wallet, write failed");
1270
0
            }
1271
0
            return true;
1272
0
        }
1273
0
    }
1274
0
    return false;
1275
0
}
1276
1277
bool CWallet::TransactionCanBeAbandoned(const Txid& hashTx) const
1278
0
{
1279
0
    LOCK(cs_wallet);
1280
0
    const CWalletTx* wtx = GetWalletTx(hashTx);
1281
0
    return wtx && !wtx->isAbandoned() && GetTxDepthInMainChain(*wtx) == 0 && !wtx->InMempool();
  Branch (1281:12): [True: 0, False: 0]
  Branch (1281:19): [True: 0, False: 0]
  Branch (1281:42): [True: 0, False: 0]
  Branch (1281:78): [True: 0, False: 0]
1282
0
}
1283
1284
void CWallet::UpdateTrucSiblingConflicts(const CWalletTx& parent_wtx, const Txid& child_txid, bool add_conflict) EXCLUSIVE_LOCKS_REQUIRED(cs_wallet)
1285
0
{
1286
    // Find all other txs in our wallet that spend utxos from this parent
1287
    // so that we can mark them as mempool-conflicted by this new tx.
1288
0
    for (long unsigned int i = 0; i < parent_wtx.GetTx()->vout.size(); i++) {
  Branch (1288:35): [True: 0, False: 0]
1289
0
        for (auto range = mapTxSpends.equal_range(COutPoint(parent_wtx.GetTx()->GetHash(), i)); range.first != range.second; range.first++) {
  Branch (1289:97): [True: 0, False: 0]
1290
0
            const Txid& sibling_txid = range.first->second;
1291
            // Skip the child_tx itself
1292
0
            if (sibling_txid == child_txid) continue;
  Branch (1292:17): [True: 0, False: 0]
1293
0
            RecursiveUpdateTxState(/*batch=*/nullptr, sibling_txid, [&child_txid, add_conflict](CWalletTx& wtx) EXCLUSIVE_LOCKS_REQUIRED(cs_wallet) {
1294
0
                return add_conflict ? (wtx.mempool_conflicts.insert(child_txid).second ? TxUpdate::CHANGED : TxUpdate::UNCHANGED)
  Branch (1294:24): [True: 0, False: 0]
  Branch (1294:40): [True: 0, False: 0]
1295
0
                                    : (wtx.mempool_conflicts.erase(child_txid) ? TxUpdate::CHANGED : TxUpdate::UNCHANGED);
  Branch (1295:40): [True: 0, False: 0]
1296
0
            });
1297
0
        }
1298
0
    }
1299
0
}
1300
1301
void CWallet::MarkInputsDirty(const CTransactionRef& tx)
1302
0
{
1303
0
    for (const CTxIn& txin : tx->vin) {
  Branch (1303:28): [True: 0, False: 0]
1304
0
        auto it = mapWallet.find(txin.prevout.hash);
1305
0
        if (it != mapWallet.end()) {
  Branch (1305:13): [True: 0, False: 0]
1306
0
            it->second.MarkDirty();
1307
0
        }
1308
0
    }
1309
0
}
1310
1311
bool CWallet::AbandonTransaction(const Txid& hashTx)
1312
0
{
1313
0
    LOCK(cs_wallet);
1314
0
    auto it = mapWallet.find(hashTx);
1315
0
    assert(it != mapWallet.end());
  Branch (1315:5): [True: 0, False: 0]
1316
0
    return AbandonTransaction(it->second);
1317
0
}
1318
1319
bool CWallet::AbandonTransaction(CWalletTx& tx)
1320
0
{
1321
    // Can't mark abandoned if confirmed or in mempool
1322
0
    if (GetTxDepthInMainChain(tx) != 0 || tx.InMempool()) {
  Branch (1322:9): [True: 0, False: 0]
  Branch (1322:43): [True: 0, False: 0]
1323
0
        return false;
1324
0
    }
1325
1326
0
    auto try_updating_state = [](CWalletTx& wtx) EXCLUSIVE_LOCKS_REQUIRED(cs_wallet) {
1327
        // If the orig tx was not in block/mempool, none of its spends can be.
1328
0
        assert(!wtx.isConfirmed());
  Branch (1328:9): [True: 0, False: 0]
1329
0
        assert(!wtx.InMempool());
  Branch (1329:9): [True: 0, False: 0]
1330
        // If already conflicted or abandoned, no need to set abandoned
1331
0
        if (!wtx.isBlockConflicted() && !wtx.isAbandoned()) {
  Branch (1331:13): [True: 0, False: 0]
  Branch (1331:41): [True: 0, False: 0]
1332
0
            wtx.m_state = TxStateInactive{/*abandoned=*/true};
1333
0
            return TxUpdate::NOTIFY_CHANGED;
1334
0
        }
1335
0
        return TxUpdate::UNCHANGED;
1336
0
    };
1337
1338
    // Iterate over all its outputs, and mark transactions in the wallet that spend them abandoned too.
1339
    // States are not permanent, so these transactions can become unabandoned if they are re-added to the
1340
    // mempool, or confirmed in a block, or conflicted.
1341
    // Note: If the reorged coinbase is re-added to the main chain, the descendants that have not had their
1342
    // states change will remain abandoned and will require manual broadcast if the user wants them.
1343
1344
0
    RecursiveUpdateTxState(tx.GetHash(), try_updating_state);
1345
1346
0
    return true;
1347
0
}
1348
1349
void CWallet::MarkConflicted(const uint256& hashBlock, int conflicting_height, const Txid& hashTx)
1350
0
{
1351
0
    LOCK(cs_wallet);
1352
1353
    // If number of conflict confirms cannot be determined, this means
1354
    // that the block is still unknown or not yet part of the main chain,
1355
    // for example when loading the wallet during a reindex. Do nothing in that
1356
    // case.
1357
0
    if (m_last_block_processed_height < 0 || conflicting_height < 0) {
  Branch (1357:9): [True: 0, False: 0]
  Branch (1357:46): [True: 0, False: 0]
1358
0
        return;
1359
0
    }
1360
0
    int conflictconfirms = (m_last_block_processed_height - conflicting_height + 1) * -1;
1361
0
    if (conflictconfirms >= 0)
  Branch (1361:9): [True: 0, False: 0]
1362
0
        return;
1363
1364
0
    auto try_updating_state = [&](CWalletTx& wtx) EXCLUSIVE_LOCKS_REQUIRED(cs_wallet) {
1365
0
        if (conflictconfirms < GetTxDepthInMainChain(wtx)) {
  Branch (1365:13): [True: 0, False: 0]
1366
            // Block is 'more conflicted' than current confirm; update.
1367
            // Mark transaction as conflicted with this block.
1368
0
            wtx.m_state = TxStateBlockConflicted{hashBlock, conflicting_height};
1369
0
            return TxUpdate::CHANGED;
1370
0
        }
1371
0
        return TxUpdate::UNCHANGED;
1372
0
    };
1373
1374
    // Iterate over all its outputs, and mark transactions in the wallet that spend them conflicted too.
1375
0
    RecursiveUpdateTxState(hashTx, try_updating_state);
1376
1377
0
}
1378
1379
0
void CWallet::RecursiveUpdateTxState(const Txid& tx_hash, const TryUpdatingStateFn& try_updating_state) {
1380
0
    WalletBatch batch(GetDatabase());
1381
0
    RecursiveUpdateTxState(&batch, tx_hash, try_updating_state);
1382
0
}
1383
1384
0
void CWallet::RecursiveUpdateTxState(WalletBatch* batch, const Txid& tx_hash, const TryUpdatingStateFn& try_updating_state) {
1385
0
    std::set<Txid> todo;
1386
0
    std::set<Txid> done;
1387
1388
0
    todo.insert(tx_hash);
1389
1390
0
    while (!todo.empty()) {
  Branch (1390:12): [True: 0, False: 0]
1391
0
        Txid now = *todo.begin();
1392
0
        todo.erase(now);
1393
0
        done.insert(now);
1394
0
        auto it = mapWallet.find(now);
1395
0
        assert(it != mapWallet.end());
  Branch (1395:9): [True: 0, False: 0]
1396
0
        CWalletTx& wtx = it->second;
1397
1398
0
        TxUpdate update_state = try_updating_state(wtx);
1399
0
        if (update_state != TxUpdate::UNCHANGED) {
  Branch (1399:13): [True: 0, False: 0]
1400
0
            wtx.MarkDirty();
1401
0
            if (batch) batch->WriteTx(wtx);
  Branch (1401:17): [True: 0, False: 0]
1402
            // Iterate over all its outputs, and update those tx states as well (if applicable)
1403
0
            for (unsigned int i = 0; i < wtx.GetTx()->vout.size(); ++i) {
  Branch (1403:38): [True: 0, False: 0]
1404
0
                std::pair<TxSpends::const_iterator, TxSpends::const_iterator> range = mapTxSpends.equal_range(COutPoint(now, i));
1405
0
                for (TxSpends::const_iterator iter = range.first; iter != range.second; ++iter) {
  Branch (1405:67): [True: 0, False: 0]
1406
0
                    if (!done.contains(iter->second)) {
  Branch (1406:25): [True: 0, False: 0]
1407
0
                        todo.insert(iter->second);
1408
0
                    }
1409
0
                }
1410
0
            }
1411
1412
0
            if (update_state == TxUpdate::NOTIFY_CHANGED) {
  Branch (1412:17): [True: 0, False: 0]
1413
0
                NotifyTransactionChanged(wtx.GetHash(), CT_UPDATED);
1414
0
            }
1415
1416
            // If a transaction changes its tx state, that usually changes the balance
1417
            // available of the outputs it spends. So force those to be recomputed
1418
0
            MarkInputsDirty(wtx.GetTx());
1419
0
        }
1420
0
    }
1421
0
}
1422
1423
bool CWallet::SyncTransaction(const CTransactionRef& ptx, const SyncTxState& state, bool rescanning_old_block)
1424
0
{
1425
0
    if (!AddToWalletIfInvolvingMe(ptx, state, rescanning_old_block))
  Branch (1425:9): [True: 0, False: 0]
1426
0
        return false; // Not one of ours
1427
1428
    // If a transaction changes 'conflicted' state, that changes the balance
1429
    // available of the outputs it spends. So force those to be
1430
    // recomputed, also:
1431
0
    MarkInputsDirty(ptx);
1432
0
    return true;
1433
0
}
1434
1435
0
void CWallet::transactionAddedToMempool(const CTransactionRef& tx) {
1436
0
    LOCK(cs_wallet);
1437
0
    SyncTransaction(tx, TxStateInMempool{});
1438
1439
0
    auto it = mapWallet.find(tx->GetHash());
1440
0
    if (it != mapWallet.end()) {
  Branch (1440:9): [True: 0, False: 0]
1441
0
        RefreshMempoolStatus(it->second, chain());
1442
0
    }
1443
1444
0
    const Txid& txid = tx->GetHash();
1445
1446
0
    for (const CTxIn& tx_in : tx->vin) {
  Branch (1446:29): [True: 0, False: 0]
1447
        // For each wallet transaction spending this prevout..
1448
0
        for (auto range = mapTxSpends.equal_range(tx_in.prevout); range.first != range.second; range.first++) {
  Branch (1448:67): [True: 0, False: 0]
1449
0
            const Txid& spent_id = range.first->second;
1450
            // Skip the recently added tx
1451
0
            if (spent_id == txid) continue;
  Branch (1451:17): [True: 0, False: 0]
1452
0
            RecursiveUpdateTxState(/*batch=*/nullptr, spent_id, [&txid](CWalletTx& wtx) EXCLUSIVE_LOCKS_REQUIRED(cs_wallet) {
1453
0
                return wtx.mempool_conflicts.insert(txid).second ? TxUpdate::CHANGED : TxUpdate::UNCHANGED;
  Branch (1453:24): [True: 0, False: 0]
1454
0
            });
1455
0
        }
1456
1457
0
    }
1458
1459
0
    if (tx->version == TRUC_VERSION) {
  Branch (1459:9): [True: 0, False: 0]
1460
        // Unconfirmed TRUC transactions are only allowed a 1-parent-1-child topology.
1461
        // For any unconfirmed v3 parents (there should be a maximum of 1 except in reorgs),
1462
        // record this child so the wallet doesn't try to spend any other outputs
1463
0
        for (const CTxIn& tx_in : tx->vin) {
  Branch (1463:33): [True: 0, False: 0]
1464
0
            auto parent_it = mapWallet.find(tx_in.prevout.hash);
1465
0
            if (parent_it != mapWallet.end()) {
  Branch (1465:17): [True: 0, False: 0]
1466
0
                CWalletTx& parent_wtx = parent_it->second;
1467
0
                if (parent_wtx.isUnconfirmed()) {
  Branch (1467:21): [True: 0, False: 0]
1468
0
                    parent_wtx.truc_child_in_mempool = tx->GetHash();
1469
                    // Even though these siblings do not spend the same utxos, they can't
1470
                    // be present in the mempool at the same time because of TRUC policy rules
1471
0
                    UpdateTrucSiblingConflicts(parent_wtx, txid, /*add_conflict=*/true);
1472
0
                }
1473
0
            }
1474
0
        }
1475
0
    }
1476
0
}
1477
1478
0
void CWallet::transactionRemovedFromMempool(const CTransactionRef& tx, MemPoolRemovalReason reason) {
1479
0
    LOCK(cs_wallet);
1480
0
    auto it = mapWallet.find(tx->GetHash());
1481
0
    if (it != mapWallet.end()) {
  Branch (1481:9): [True: 0, False: 0]
1482
0
        RefreshMempoolStatus(it->second, chain());
1483
0
    }
1484
    // Handle transactions that were removed from the mempool because they
1485
    // conflict with transactions in a newly connected block.
1486
0
    if (reason == MemPoolRemovalReason::CONFLICT) {
  Branch (1486:9): [True: 0, False: 0]
1487
        // Trigger external -walletnotify notifications for these transactions.
1488
        // Set Status::UNCONFIRMED instead of Status::CONFLICTED for a few reasons:
1489
        //
1490
        // 1. The transactionRemovedFromMempool callback does not currently
1491
        //    provide the conflicting block's hash and height, and for backwards
1492
        //    compatibility reasons it may not be not safe to store conflicted
1493
        //    wallet transactions with a null block hash. See
1494
        //    https://github.com/bitcoin/bitcoin/pull/18600#discussion_r420195993.
1495
        // 2. For most of these transactions, the wallet's internal conflict
1496
        //    detection in the blockConnected handler will subsequently call
1497
        //    MarkConflicted and update them with CONFLICTED status anyway. This
1498
        //    applies to any wallet transaction that has inputs spent in the
1499
        //    block, or that has ancestors in the wallet with inputs spent by
1500
        //    the block.
1501
        // 3. Longstanding behavior since the sync implementation in
1502
        //    https://github.com/bitcoin/bitcoin/pull/9371 and the prior sync
1503
        //    implementation before that was to mark these transactions
1504
        //    unconfirmed rather than conflicted.
1505
        //
1506
        // Nothing described above should be seen as an unchangeable requirement
1507
        // when improving this code in the future. The wallet's heuristics for
1508
        // distinguishing between conflicted and unconfirmed transactions are
1509
        // imperfect, and could be improved in general, see
1510
        // https://github.com/bitcoin-core/bitcoin-devwiki/wiki/Wallet-Transaction-Conflict-Tracking
1511
0
        SyncTransaction(tx, TxStateInactive{});
1512
0
    }
1513
1514
0
    const Txid& txid = tx->GetHash();
1515
1516
0
    for (const CTxIn& tx_in : tx->vin) {
  Branch (1516:29): [True: 0, False: 0]
1517
        // Iterate over all wallet transactions spending txin.prev
1518
        // and recursively mark them as no longer conflicting with
1519
        // txid
1520
0
        for (auto range = mapTxSpends.equal_range(tx_in.prevout); range.first != range.second; range.first++) {
  Branch (1520:67): [True: 0, False: 0]
1521
0
            const Txid& spent_id = range.first->second;
1522
1523
0
            RecursiveUpdateTxState(/*batch=*/nullptr, spent_id, [&txid](CWalletTx& wtx) EXCLUSIVE_LOCKS_REQUIRED(cs_wallet) {
1524
0
                return wtx.mempool_conflicts.erase(txid) ? TxUpdate::CHANGED : TxUpdate::UNCHANGED;
  Branch (1524:24): [True: 0, False: 0]
1525
0
            });
1526
0
        }
1527
0
    }
1528
1529
0
    if (tx->version == TRUC_VERSION) {
  Branch (1529:9): [True: 0, False: 0]
1530
        // If this tx has a parent, unset its truc_child_in_mempool to make it possible
1531
        // to spend from the parent again. If this tx was replaced by another
1532
        // child of the same parent, transactionAddedToMempool
1533
        // will update truc_child_in_mempool
1534
0
        for (const CTxIn& tx_in : tx->vin) {
  Branch (1534:33): [True: 0, False: 0]
1535
0
            auto parent_it = mapWallet.find(tx_in.prevout.hash);
1536
0
            if (parent_it != mapWallet.end()) {
  Branch (1536:17): [True: 0, False: 0]
1537
0
                CWalletTx& parent_wtx = parent_it->second;
1538
0
                if (parent_wtx.truc_child_in_mempool == tx->GetHash()) {
  Branch (1538:21): [True: 0, False: 0]
1539
0
                    parent_wtx.truc_child_in_mempool = std::nullopt;
1540
0
                    UpdateTrucSiblingConflicts(parent_wtx, txid, /*add_conflict=*/false);
1541
0
                }
1542
0
            }
1543
0
        }
1544
0
    }
1545
0
}
1546
1547
void CWallet::blockConnected(const ChainstateRole& role, const interfaces::BlockInfo& block)
1548
0
{
1549
0
    if (role.historical) {
  Branch (1549:9): [True: 0, False: 0]
1550
0
        return;
1551
0
    }
1552
0
    assert(block.data);
  Branch (1552:5): [True: 0, False: 0]
1553
0
    LOCK(cs_wallet);
1554
1555
    // Update the best block in memory first. This will set the best block's height, which is
1556
    // needed by MarkConflicted.
1557
0
    SetLastBlockProcessedInMem(block.height, block.hash);
1558
1559
    // No need to scan block if it was created before the wallet birthday.
1560
    // Uses chain max time and twice the grace period to adjust time for block time variability.
1561
0
    if (block.chain_time_max < m_birth_time.load() - (TIMESTAMP_WINDOW * 2)) return;
  Branch (1561:9): [True: 0, False: 0]
1562
1563
    // Scan block
1564
0
    bool wallet_updated = false;
1565
0
    for (size_t index = 0; index < block.data->vtx.size(); index++) {
  Branch (1565:28): [True: 0, False: 0]
1566
0
        wallet_updated |= SyncTransaction(block.data->vtx[index], TxStateConfirmed{block.hash, block.height, static_cast<int>(index)});
1567
0
        transactionRemovedFromMempool(block.data->vtx[index], MemPoolRemovalReason::BLOCK);
1568
0
    }
1569
1570
    // Update on disk if this block resulted in us updating a tx, or periodically every 144 blocks (~1 day)
1571
0
    if (wallet_updated || block.height % 144 == 0) {
  Branch (1571:9): [True: 0, False: 0]
  Branch (1571:27): [True: 0, False: 0]
1572
0
        WriteBestBlock();
1573
0
    }
1574
0
}
1575
1576
void CWallet::blockDisconnected(const interfaces::BlockInfo& block)
1577
0
{
1578
0
    assert(block.data);
  Branch (1578:5): [True: 0, False: 0]
1579
0
    LOCK(cs_wallet);
1580
1581
    // At block disconnection, this will change an abandoned transaction to
1582
    // be unconfirmed, whether or not the transaction is added back to the mempool.
1583
    // User may have to call abandontransaction again. It may be addressed in the
1584
    // future with a stickier abandoned state or even removing abandontransaction call.
1585
0
    int disconnect_height = block.height;
1586
1587
0
    for (size_t index = 0; index < block.data->vtx.size(); index++) {
  Branch (1587:28): [True: 0, False: 0]
1588
0
        const CTransactionRef& ptx = block.data->vtx[index];
1589
        // Coinbase transactions are not only inactive but also abandoned,
1590
        // meaning they should never be relayed standalone via the p2p protocol.
1591
0
        SyncTransaction(ptx, TxStateInactive{/*abandoned=*/index == 0});
1592
1593
0
        for (const CTxIn& tx_in : ptx->vin) {
  Branch (1593:33): [True: 0, False: 0]
1594
            // No other wallet transactions conflicted with this transaction
1595
0
            if (!mapTxSpends.contains(tx_in.prevout)) continue;
  Branch (1595:17): [True: 0, False: 0]
1596
1597
0
            std::pair<TxSpends::const_iterator, TxSpends::const_iterator> range = mapTxSpends.equal_range(tx_in.prevout);
1598
1599
            // For all of the spends that conflict with this transaction
1600
0
            for (TxSpends::const_iterator _it = range.first; _it != range.second; ++_it) {
  Branch (1600:62): [True: 0, False: 0]
1601
0
                CWalletTx& wtx = mapWallet.find(_it->second)->second;
1602
1603
0
                if (!wtx.isBlockConflicted()) continue;
  Branch (1603:21): [True: 0, False: 0]
1604
1605
0
                auto try_updating_state = [&](CWalletTx& tx) {
1606
0
                    if (!tx.isBlockConflicted()) return TxUpdate::UNCHANGED;
  Branch (1606:25): [True: 0, False: 0]
1607
0
                    if (tx.state<TxStateBlockConflicted>()->conflicting_block_height >= disconnect_height) {
  Branch (1607:25): [True: 0, False: 0]
1608
0
                        tx.m_state = TxStateInactive{};
1609
0
                        return TxUpdate::CHANGED;
1610
0
                    }
1611
0
                    return TxUpdate::UNCHANGED;
1612
0
                };
1613
1614
0
                RecursiveUpdateTxState(wtx.GetTx()->GetHash(), try_updating_state);
1615
0
            }
1616
0
        }
1617
0
    }
1618
1619
    // Update the best block
1620
0
    SetLastBlockProcessed(block.height - 1, *Assert(block.prev_hash));
1621
0
}
1622
1623
void CWallet::updatedBlockTip()
1624
0
{
1625
0
    m_best_block_time = GetTime();
1626
0
}
1627
1628
0
void CWallet::BlockUntilSyncedToCurrentChain() const {
1629
0
    AssertLockNotHeld(cs_wallet);
1630
    // Skip the queue-draining stuff if we know we're caught up with
1631
    // chain().Tip(), otherwise put a callback in the validation interface queue and wait
1632
    // for the queue to drain enough to execute it (indicating we are caught up
1633
    // at least with the time we entered this function).
1634
0
    uint256 last_block_hash = WITH_LOCK(cs_wallet, return m_last_block_processed);
1635
0
    chain().waitForNotificationsIfTipChanged(last_block_hash);
1636
0
}
1637
1638
// Note that this function doesn't distinguish between a 0-valued input,
1639
// and a not-"is mine" input.
1640
CAmount CWallet::GetDebit(const CTxIn &txin) const
1641
0
{
1642
0
    LOCK(cs_wallet);
1643
0
    auto txo = GetTXO(txin.prevout);
1644
0
    if (txo) {
  Branch (1644:9): [True: 0, False: 0]
1645
0
        return txo->GetTxOut().nValue;
1646
0
    }
1647
0
    return 0;
1648
0
}
1649
1650
bool CWallet::IsMine(const CTxOut& txout) const
1651
200k
{
1652
200k
    AssertLockHeld(cs_wallet);
1653
200k
    return IsMine(txout.scriptPubKey);
1654
200k
}
1655
1656
bool CWallet::IsMine(const CTxDestination& dest) const
1657
165k
{
1658
165k
    AssertLockHeld(cs_wallet);
1659
165k
    return IsMine(GetScriptForDestination(dest));
1660
165k
}
1661
1662
bool CWallet::IsMine(const CScript& script) const
1663
366k
{
1664
366k
    AssertLockHeld(cs_wallet);
1665
1666
    // Search the cache so that IsMine is called only on the relevant SPKMs instead of on everything in m_spk_managers
1667
366k
    const auto& it = m_cached_spks.find(script);
1668
366k
    if (it != m_cached_spks.end()) {
  Branch (1668:9): [True: 366k, False: 0]
1669
366k
        bool res = false;
1670
366k
        for (const auto& spkm : it->second) {
  Branch (1670:31): [True: 366k, False: 366k]
1671
366k
            res = res || spkm->IsMine(script);
  Branch (1671:19): [True: 63, False: 366k]
  Branch (1671:26): [True: 366k, False: 0]
1672
366k
        }
1673
366k
        Assume(res);
1674
366k
        return res;
1675
366k
    }
1676
1677
0
    return false;
1678
366k
}
1679
1680
bool CWallet::IsMine(const CTransaction& tx) const
1681
0
{
1682
0
    AssertLockHeld(cs_wallet);
1683
0
    for (const CTxOut& txout : tx.vout)
  Branch (1683:30): [True: 0, False: 0]
1684
0
        if (IsMine(txout))
  Branch (1684:13): [True: 0, False: 0]
1685
0
            return true;
1686
0
    return false;
1687
0
}
1688
1689
bool CWallet::IsMine(const COutPoint& outpoint) const
1690
0
{
1691
0
    AssertLockHeld(cs_wallet);
1692
0
    auto wtx = GetWalletTx(outpoint.hash);
1693
0
    if (!wtx) {
  Branch (1693:9): [True: 0, False: 0]
1694
0
        return false;
1695
0
    }
1696
0
    if (outpoint.n >= wtx->GetTx()->vout.size()) {
  Branch (1696:9): [True: 0, False: 0]
1697
0
        return false;
1698
0
    }
1699
0
    return IsMine(wtx->GetTx()->vout[outpoint.n]);
1700
0
}
1701
1702
bool CWallet::IsFromMe(const CTransaction& tx) const
1703
84.3k
{
1704
84.3k
    LOCK(cs_wallet);
1705
84.3k
    for (const CTxIn& txin : tx.vin) {
  Branch (1705:28): [True: 0, False: 84.3k]
1706
0
        if (GetTXO(txin.prevout)) return true;
  Branch (1706:13): [True: 0, False: 0]
1707
0
    }
1708
84.3k
    return false;
1709
84.3k
}
1710
1711
CAmount CWallet::GetDebit(const CTransaction& tx) const
1712
0
{
1713
0
    CAmount nDebit = 0;
1714
0
    for (const CTxIn& txin : tx.vin)
  Branch (1714:28): [True: 0, False: 0]
1715
0
    {
1716
0
        nDebit += GetDebit(txin);
1717
0
        if (!MoneyRange(nDebit))
  Branch (1717:13): [True: 0, False: 0]
1718
0
            throw std::runtime_error(std::string(__func__) + ": value out of range");
1719
0
    }
1720
0
    return nDebit;
1721
0
}
1722
1723
bool CWallet::IsHDEnabled() const
1724
0
{
1725
    // All Active ScriptPubKeyMans must be HD for this to be true
1726
0
    bool result = false;
1727
0
    for (const auto& spk_man : GetActiveScriptPubKeyMans()) {
  Branch (1727:30): [True: 0, False: 0]
1728
0
        if (!spk_man->IsHDEnabled()) return false;
  Branch (1728:13): [True: 0, False: 0]
1729
0
        result = true;
1730
0
    }
1731
0
    return result;
1732
0
}
1733
1734
bool CWallet::CanGetAddresses(bool internal) const
1735
0
{
1736
0
    LOCK(cs_wallet);
1737
0
    if (m_spk_managers.empty()) return false;
  Branch (1737:9): [True: 0, False: 0]
1738
0
    for (OutputType t : OUTPUT_TYPES) {
  Branch (1738:23): [True: 0, False: 0]
1739
0
        auto spk_man = GetScriptPubKeyMan(t, internal);
1740
0
        if (spk_man && spk_man->CanGetAddresses(internal)) {
  Branch (1740:13): [True: 0, False: 0]
  Branch (1740:24): [True: 0, False: 0]
1741
0
            return true;
1742
0
        }
1743
0
    }
1744
0
    return false;
1745
0
}
1746
1747
void CWallet::SetWalletFlag(uint64_t flags)
1748
8.20k
{
1749
8.20k
    WalletBatch batch(GetDatabase());
1750
8.20k
    return SetWalletFlagWithDB(batch, flags);
1751
8.20k
}
1752
1753
void CWallet::SetWalletFlagWithDB(WalletBatch& batch, uint64_t flags)
1754
8.20k
{
1755
8.20k
    LOCK(cs_wallet);
1756
8.20k
    m_wallet_flags |= flags;
1757
8.20k
    if (!batch.WriteWalletFlags(m_wallet_flags))
  Branch (1757:9): [True: 0, False: 8.20k]
1758
0
        throw std::runtime_error(std::string(__func__) + ": writing wallet flags failed");
1759
8.20k
}
1760
1761
void CWallet::UnsetWalletFlag(uint64_t flag)
1762
1.32k
{
1763
1.32k
    WalletBatch batch(GetDatabase());
1764
1.32k
    UnsetWalletFlagWithDB(batch, flag);
1765
1.32k
}
1766
1767
void CWallet::UnsetWalletFlagWithDB(WalletBatch& batch, uint64_t flag)
1768
1.32k
{
1769
1.32k
    LOCK(cs_wallet);
1770
1.32k
    m_wallet_flags &= ~flag;
1771
1.32k
    if (!batch.WriteWalletFlags(m_wallet_flags))
  Branch (1771:9): [True: 0, False: 1.32k]
1772
0
        throw std::runtime_error(std::string(__func__) + ": writing wallet flags failed");
1773
1.32k
}
1774
1775
void CWallet::UnsetBlankWalletFlag(WalletBatch& batch)
1776
0
{
1777
0
    UnsetWalletFlagWithDB(batch, WALLET_FLAG_BLANK_WALLET);
1778
0
}
1779
1780
bool CWallet::IsWalletFlagSet(uint64_t flag) const
1781
106k
{
1782
106k
    return (m_wallet_flags & flag);
1783
106k
}
1784
1785
bool CWallet::LoadWalletFlags(uint64_t flags)
1786
0
{
1787
0
    LOCK(cs_wallet);
1788
0
    if (((flags & KNOWN_WALLET_FLAGS) >> 32) ^ (flags >> 32)) {
  Branch (1788:9): [True: 0, False: 0]
1789
        // contains unknown non-tolerable wallet flags
1790
0
        return false;
1791
0
    }
1792
0
    m_wallet_flags = flags;
1793
1794
0
    return true;
1795
0
}
1796
1797
void CWallet::InitWalletFlags(uint64_t flags)
1798
0
{
1799
0
    LOCK(cs_wallet);
1800
1801
    // We should never be writing unknown non-tolerable wallet flags
1802
0
    assert(((flags & KNOWN_WALLET_FLAGS) >> 32) == (flags >> 32));
  Branch (1802:5): [True: 0, False: 0]
1803
    // This should only be used once, when creating a new wallet - so current flags are expected to be blank
1804
0
    assert(m_wallet_flags == 0);
  Branch (1804:5): [True: 0, False: 0]
1805
1806
0
    if (!WalletBatch(GetDatabase()).WriteWalletFlags(flags)) {
  Branch (1806:9): [True: 0, False: 0]
1807
0
        throw std::runtime_error(std::string(__func__) + ": writing wallet flags failed");
1808
0
    }
1809
1810
0
    if (!LoadWalletFlags(flags)) assert(false);
  Branch (1810:9): [True: 0, False: 0]
  Branch (1810:34): [Folded - Ignored]
1811
0
}
1812
1813
uint64_t CWallet::GetWalletFlags() const
1814
0
{
1815
0
    return m_wallet_flags;
1816
0
}
1817
1818
void CWallet::MaybeUpdateBirthTime(int64_t time)
1819
18.2k
{
1820
18.2k
    int64_t birthtime = m_birth_time.load();
1821
18.2k
    if (time < birthtime) {
  Branch (1821:9): [True: 8.29k, False: 9.92k]
1822
8.29k
        m_birth_time = time;
1823
8.29k
    }
1824
18.2k
}
1825
1826
/**
1827
 * Scan active chain for relevant transactions after importing keys. This should
1828
 * be called whenever new keys are added to the wallet, with the oldest key
1829
 * creation time.
1830
 *
1831
 * @return Earliest timestamp that could be successfully scanned from. Timestamp
1832
 * returned will be higher than startTime if relevant blocks could not be read.
1833
 */
1834
int64_t CWallet::RescanFromTime(int64_t startTime, const WalletRescanReserver& reserver)
1835
0
{
1836
    // Find starting block. May be null if nCreateTime is greater than the
1837
    // highest blockchain timestamp, in which case there is nothing that needs
1838
    // to be scanned.
1839
0
    int start_height = 0;
1840
0
    uint256 start_block;
1841
0
    bool start = chain().findFirstBlockWithTimeAndHeight(startTime - TIMESTAMP_WINDOW, 0, FoundBlock().hash(start_block).height(start_height));
1842
0
    WalletLogPrintf("%s: Rescanning last %i blocks\n", __func__, start ? WITH_LOCK(cs_wallet, return GetLastBlockHeight()) - start_height + 1 : 0);
  Branch (1842:66): [True: 0, False: 0]
1843
1844
0
    if (start) {
  Branch (1844:9): [True: 0, False: 0]
1845
        // TODO: this should take into account failure by ScanResult::USER_ABORT
1846
0
        ScanResult result = ScanForWalletTransactions(start_block, start_height, /*max_height=*/{}, reserver, /*save_progress=*/false);
1847
0
        if (result.status == ScanResult::FAILURE) {
  Branch (1847:13): [True: 0, False: 0]
1848
0
            int64_t time_max;
1849
0
            CHECK_NONFATAL(chain().findBlock(result.last_failed_block, FoundBlock().maxTime(time_max)));
1850
0
            return time_max + TIMESTAMP_WINDOW + 1;
1851
0
        }
1852
0
    }
1853
0
    return startTime;
1854
0
}
1855
1856
/**
1857
 * Scan the block chain (starting in start_block) for transactions
1858
 * from or to us. If max_height is not set, the
1859
 * mempool will be scanned as well.
1860
 *
1861
 * @param[in] start_block Scan starting block. If block is not on the active
1862
 *                        chain, the scan will return SUCCESS immediately.
1863
 * @param[in] start_height Height of start_block
1864
 * @param[in] max_height  Optional max scanning height. If unset there is
1865
 *                        no maximum and scanning can continue to the tip
1866
 *
1867
 * @return ScanResult returning scan information and indicating success or
1868
 *         failure. Return status will be set to SUCCESS if scan was
1869
 *         successful. FAILURE if a complete rescan was not possible (due to
1870
 *         pruning or corruption). USER_ABORT if the rescan was aborted before
1871
 *         it could complete.
1872
 *
1873
 * @pre Caller needs to make sure start_block (and the optional stop_block) are on
1874
 * the main chain after to the addition of any new keys you want to detect
1875
 * transactions for.
1876
 */
1877
CWallet::ScanResult CWallet::ScanForWalletTransactions(const uint256& start_block, int start_height, std::optional<int> max_height, const WalletRescanReserver& reserver, const bool save_progress)
1878
0
{
1879
0
    constexpr auto INTERVAL_TIME{60s};
1880
0
    auto current_time{reserver.now()};
1881
0
    auto start_time{reserver.now()};
1882
1883
0
    assert(reserver.isReserved());
  Branch (1883:5): [True: 0, False: 0]
1884
1885
0
    uint256 block_hash = start_block;
1886
0
    ScanResult result;
1887
1888
0
    std::unique_ptr<FastWalletRescanFilter> fast_rescan_filter;
1889
0
    if (chain().hasBlockFilterIndex(BlockFilterType::BASIC)) fast_rescan_filter = std::make_unique<FastWalletRescanFilter>(*this);
  Branch (1889:9): [True: 0, False: 0]
1890
1891
0
    WalletLogPrintf("Rescan started from block %s... (%s)\n", start_block.ToString(),
1892
0
                    fast_rescan_filter ? "fast variant using block filters" : "slow variant inspecting all blocks");
  Branch (1892:21): [True: 0, False: 0]
1893
1894
0
    ShowProgress(strprintf("[%s] %s", DisplayName(), _("Rescanning…")), 0); // show rescan progress in GUI as dialog or on splashscreen, if rescan required on startup (e.g. due to corruption)
1895
0
    uint256 tip_hash = WITH_LOCK(cs_wallet, return GetLastBlockHash());
1896
0
    uint256 end_hash = tip_hash;
1897
0
    if (max_height) chain().findAncestorByHeight(tip_hash, *max_height, FoundBlock().hash(end_hash));
  Branch (1897:9): [True: 0, False: 0]
1898
0
    double progress_begin = chain().guessVerificationProgress(block_hash);
1899
0
    double progress_end = chain().guessVerificationProgress(end_hash);
1900
0
    double progress_current = progress_begin;
1901
0
    int block_height = start_height;
1902
0
    while (!fAbortRescan && !chain().shutdownRequested()) {
  Branch (1902:12): [True: 0, False: 0]
  Branch (1902:29): [True: 0, False: 0]
1903
0
        if (progress_end - progress_begin > 0.0) {
  Branch (1903:13): [True: 0, False: 0]
1904
0
            m_scanning_progress = (progress_current - progress_begin) / (progress_end - progress_begin);
1905
0
        } else { // avoid divide-by-zero for single block scan range (i.e. start and stop hashes are equal)
1906
0
            m_scanning_progress = 0;
1907
0
        }
1908
0
        if (block_height % 100 == 0 && progress_end - progress_begin > 0.0) {
  Branch (1908:13): [True: 0, False: 0]
  Branch (1908:40): [True: 0, False: 0]
1909
0
            ShowProgress(strprintf("[%s] %s", DisplayName(), _("Rescanning…")), std::max(1, std::min(99, (int)(m_scanning_progress * 100))));
1910
0
        }
1911
1912
0
        bool next_interval = reserver.now() >= current_time + INTERVAL_TIME;
1913
0
        if (next_interval) {
  Branch (1913:13): [True: 0, False: 0]
1914
0
            current_time = reserver.now();
1915
0
            WalletLogPrintf("Still rescanning. At block %d. Progress=%f\n", block_height, progress_current);
1916
0
        }
1917
1918
0
        bool fetch_block{true};
1919
0
        if (fast_rescan_filter) {
  Branch (1919:13): [True: 0, False: 0]
1920
0
            fast_rescan_filter->UpdateIfNeeded();
1921
0
            auto matches_block{fast_rescan_filter->MatchesBlock(block_hash)};
1922
0
            if (matches_block.has_value()) {
  Branch (1922:17): [True: 0, False: 0]
1923
0
                if (*matches_block) {
  Branch (1923:21): [True: 0, False: 0]
1924
0
                    LogDebug(BCLog::SCAN, "Fast rescan: inspect block %d [%s] (filter matched)\n", block_height, block_hash.ToString());
1925
0
                } else {
1926
0
                    result.last_scanned_block = block_hash;
1927
0
                    result.last_scanned_height = block_height;
1928
0
                    fetch_block = false;
1929
0
                }
1930
0
            } else {
1931
0
                LogDebug(BCLog::SCAN, "Fast rescan: inspect block %d [%s] (WARNING: block filter not found!)\n", block_height, block_hash.ToString());
1932
0
            }
1933
0
        }
1934
1935
        // Find next block separately from reading data above, because reading
1936
        // is slow and there might be a reorg while it is read.
1937
0
        bool block_still_active = false;
1938
0
        bool next_block = false;
1939
0
        uint256 next_block_hash;
1940
0
        chain().findBlock(block_hash, FoundBlock().inActiveChain(block_still_active).nextBlock(FoundBlock().inActiveChain(next_block).hash(next_block_hash)));
1941
1942
0
        if (fetch_block) {
  Branch (1942:13): [True: 0, False: 0]
1943
            // Read block data and locator if needed (the locator is usually null unless we need to save progress)
1944
0
            CBlock block;
1945
0
            CBlockLocator loc;
1946
            // Find block
1947
0
            FoundBlock found_block{FoundBlock().data(block)};
1948
0
            if (save_progress && next_interval) found_block.locator(loc);
  Branch (1948:17): [True: 0, False: 0]
  Branch (1948:34): [True: 0, False: 0]
1949
0
            chain().findBlock(block_hash, found_block);
1950
1951
0
            if (!block.IsNull()) {
  Branch (1951:17): [True: 0, False: 0]
1952
0
                LOCK(cs_wallet);
1953
0
                if (!block_still_active) {
  Branch (1953:21): [True: 0, False: 0]
1954
                    // Abort scan if current block is no longer active, to prevent
1955
                    // marking transactions as coming from the wrong block.
1956
0
                    result.last_failed_block = block_hash;
1957
0
                    result.status = ScanResult::FAILURE;
1958
0
                    break;
1959
0
                }
1960
0
                for (size_t posInBlock = 0; posInBlock < block.vtx.size(); ++posInBlock) {
  Branch (1960:45): [True: 0, False: 0]
1961
0
                    SyncTransaction(block.vtx[posInBlock], TxStateConfirmed{block_hash, block_height, static_cast<int>(posInBlock)}, /*rescanning_old_block=*/true);
1962
0
                }
1963
                // scan succeeded, record block as most recent successfully scanned
1964
0
                result.last_scanned_block = block_hash;
1965
0
                result.last_scanned_height = block_height;
1966
1967
0
                if (!loc.IsNull()) {
  Branch (1967:21): [True: 0, False: 0]
1968
0
                    WalletLogPrintf("Saving scan progress %d.\n", block_height);
1969
0
                    WalletBatch batch(GetDatabase());
1970
0
                    batch.WriteBestBlock(loc);
1971
0
                }
1972
0
            } else {
1973
                // could not scan block, keep scanning but record this block as the most recent failure
1974
0
                result.last_failed_block = block_hash;
1975
0
                result.status = ScanResult::FAILURE;
1976
0
            }
1977
0
        }
1978
0
        if (max_height && block_height >= *max_height) {
  Branch (1978:13): [True: 0, False: 0]
  Branch (1978:27): [True: 0, False: 0]
1979
0
            break;
1980
0
        }
1981
        // If rescanning was triggered with cs_wallet permanently locked (AttachChain), additional blocks that were connected during the rescan
1982
        // aren't processed here but will be processed with the pending blockConnected notifications after the lock is released.
1983
        // If rescanning without a permanent cs_wallet lock, additional blocks that were added during the rescan will be re-processed if
1984
        // the notification was processed and the last block height was updated.
1985
0
        if (block_height >= WITH_LOCK(cs_wallet, return GetLastBlockHeight())) {
  Branch (1985:13): [True: 0, False: 0]
1986
0
            break;
1987
0
        }
1988
1989
0
        {
1990
0
            if (!next_block) {
  Branch (1990:17): [True: 0, False: 0]
1991
                // break successfully when rescan has reached the tip, or
1992
                // previous block is no longer on the chain due to a reorg
1993
0
                break;
1994
0
            }
1995
1996
            // increment block and verification progress
1997
0
            block_hash = next_block_hash;
1998
0
            ++block_height;
1999
0
            progress_current = chain().guessVerificationProgress(block_hash);
2000
2001
            // handle updated tip hash
2002
0
            const uint256 prev_tip_hash = tip_hash;
2003
0
            tip_hash = WITH_LOCK(cs_wallet, return GetLastBlockHash());
2004
0
            if (!max_height && prev_tip_hash != tip_hash) {
  Branch (2004:17): [True: 0, False: 0]
  Branch (2004:32): [True: 0, False: 0]
2005
                // in case the tip has changed, update progress max
2006
0
                progress_end = chain().guessVerificationProgress(tip_hash);
2007
0
            }
2008
0
        }
2009
0
    }
2010
0
    if (!max_height) {
  Branch (2010:9): [True: 0, False: 0]
2011
0
        WalletLogPrintf("Scanning current mempool transactions.\n");
2012
0
        WITH_LOCK(cs_wallet, chain().requestMempoolTransactions(*this));
2013
0
    }
2014
0
    ShowProgress(strprintf("[%s] %s", DisplayName(), _("Rescanning…")), 100); // hide progress dialog in GUI
2015
0
    if (fAbortRescan) {
  Branch (2015:9): [True: 0, False: 0]
2016
0
        WalletLogPrintf("Rescan aborted at block %d. Progress=%f\n", block_height, progress_current);
2017
0
        result.status = ScanResult::USER_ABORT;
2018
0
    } else if (chain().shutdownRequested()) {
  Branch (2018:16): [True: 0, False: 0]
2019
0
        WalletLogPrintf("Rescan interrupted by shutdown request at block %d. Progress=%f\n", block_height, progress_current);
2020
0
        result.status = ScanResult::USER_ABORT;
2021
0
    } else {
2022
0
        WalletLogPrintf("Rescan completed in %15dms\n", Ticks<std::chrono::milliseconds>(reserver.now() - start_time));
2023
0
    }
2024
0
    return result;
2025
0
}
2026
2027
bool CWallet::SubmitTxMemoryPoolAndRelay(CWalletTx& wtx,
2028
                                         std::string& err_string,
2029
                                         node::TxBroadcast broadcast_method) const
2030
0
{
2031
0
    AssertLockHeld(cs_wallet);
2032
2033
    // Can't relay if wallet is not broadcasting
2034
0
    if (!GetBroadcastTransactions()) return false;
  Branch (2034:9): [True: 0, False: 0]
2035
    // Don't relay abandoned transactions
2036
0
    if (wtx.isAbandoned()) return false;
  Branch (2036:9): [True: 0, False: 0]
2037
    // Don't try to submit coinbase transactions. These would fail anyway but would
2038
    // cause log spam.
2039
0
    if (wtx.IsCoinBase()) return false;
  Branch (2039:9): [True: 0, False: 0]
2040
    // Don't try to submit conflicted or confirmed transactions.
2041
0
    if (GetTxDepthInMainChain(wtx) != 0) return false;
  Branch (2041:9): [True: 0, False: 0]
2042
2043
0
    const char* what{""};
2044
0
    switch (broadcast_method) {
  Branch (2044:13): [True: 0, False: 0]
2045
0
    case node::TxBroadcast::MEMPOOL_AND_BROADCAST_TO_ALL:
  Branch (2045:5): [True: 0, False: 0]
2046
0
        what = "to mempool and for broadcast to peers";
2047
0
        break;
2048
0
    case node::TxBroadcast::MEMPOOL_NO_BROADCAST:
  Branch (2048:5): [True: 0, False: 0]
2049
0
        what = "to mempool without broadcast";
2050
0
        break;
2051
0
    case node::TxBroadcast::NO_MEMPOOL_PRIVATE_BROADCAST:
  Branch (2051:5): [True: 0, False: 0]
2052
0
        what = "for private broadcast without adding to the mempool";
2053
0
        break;
2054
0
    }
2055
0
    WalletLogPrintf("Submitting wtx %s %s\n", wtx.GetHash().ToString(), what);
2056
    // We must set TxStateInMempool here. Even though it will also be set later by the
2057
    // entered-mempool callback, if we did not there would be a race where a
2058
    // user could call sendmoney in a loop and hit spurious out of funds errors
2059
    // because we think that this newly generated transaction's change is
2060
    // unavailable as we're not yet aware that it is in the mempool.
2061
    //
2062
    // If broadcast fails for any reason, trying to set wtx.m_state here would be incorrect.
2063
    // If transaction was previously in the mempool, it should be updated when
2064
    // TransactionRemovedFromMempool fires.
2065
0
    bool ret = chain().broadcastTransaction(wtx.GetTx(), m_default_max_tx_fee, broadcast_method, err_string);
2066
0
    if (ret) wtx.m_state = TxStateInMempool{};
  Branch (2066:9): [True: 0, False: 0]
2067
0
    return ret;
2068
0
}
2069
2070
std::set<Txid> CWallet::GetTxConflicts(const CWalletTx& wtx) const
2071
0
{
2072
0
    AssertLockHeld(cs_wallet);
2073
2074
0
    const Txid myHash{wtx.GetHash()};
2075
0
    std::set<Txid> result{GetConflicts(myHash)};
2076
0
    result.erase(myHash);
2077
0
    return result;
2078
0
}
2079
2080
bool CWallet::ShouldResend() const
2081
0
{
2082
    // Don't attempt to resubmit if the wallet is configured to not broadcast
2083
0
    if (!fBroadcastTransactions) return false;
  Branch (2083:9): [True: 0, False: 0]
2084
2085
    // During reindex, importing and IBD, old wallet transactions become
2086
    // unconfirmed. Don't resend them as that would spam other nodes.
2087
    // We only allow forcing mempool submission when not relaying to avoid this spam.
2088
0
    if (!chain().isReadyToBroadcast()) return false;
  Branch (2088:9): [True: 0, False: 0]
2089
2090
    // Do this infrequently and randomly to avoid giving away
2091
    // that these are our transactions.
2092
0
    if (NodeClock::now() < m_next_resend) return false;
  Branch (2092:9): [True: 0, False: 0]
2093
2094
0
    return true;
2095
0
}
2096
2097
9.68k
NodeClock::time_point CWallet::GetDefaultNextResend() { return FastRandomContext{}.rand_uniform_delay(NodeClock::now() + 12h, 24h); }
2098
2099
// Resubmit transactions from the wallet to the mempool, optionally asking the
2100
// mempool to relay them. On startup, we will do this for all unconfirmed
2101
// transactions but will not ask the mempool to relay them. We do this on startup
2102
// to ensure that our own mempool is aware of our transactions. There
2103
// is a privacy side effect here as not broadcasting on startup also means that we won't
2104
// inform the world of our wallet's state, particularly if the wallet (or node) is not
2105
// yet synced.
2106
//
2107
// Otherwise this function is called periodically in order to relay our unconfirmed txs.
2108
// We do this on a random timer to slightly obfuscate which transactions
2109
// come from our wallet.
2110
//
2111
// TODO: Ideally, we'd only resend transactions that we think should have been
2112
// mined in the most recent block. Any transaction that wasn't in the top
2113
// blockweight of transactions in the mempool shouldn't have been mined,
2114
// and so is probably just sitting in the mempool waiting to be confirmed.
2115
// Rebroadcasting does nothing to speed up confirmation and only damages
2116
// privacy.
2117
//
2118
// The `force` option results in all unconfirmed transactions being submitted to
2119
// the mempool. This does not necessarily result in those transactions being relayed,
2120
// that depends on the `broadcast_method` option. Periodic rebroadcast uses the pattern
2121
// broadcast_method=TxBroadcast::MEMPOOL_AND_BROADCAST_TO_ALL force=false, while loading into
2122
// the mempool (on start, or after import) uses
2123
// broadcast_method=TxBroadcast::MEMPOOL_NO_BROADCAST force=true.
2124
void CWallet::ResubmitWalletTransactions(node::TxBroadcast broadcast_method, bool force)
2125
0
{
2126
    // Don't attempt to resubmit if the wallet is configured to not broadcast,
2127
    // even if forcing.
2128
0
    if (!fBroadcastTransactions) return;
  Branch (2128:9): [True: 0, False: 0]
2129
2130
0
    int submitted_tx_count = 0;
2131
2132
0
    { // cs_wallet scope
2133
0
        LOCK(cs_wallet);
2134
2135
        // First filter for the transactions we want to rebroadcast.
2136
        // We use a set with WalletTxOrderComparator so that rebroadcasting occurs in insertion order
2137
0
        std::set<CWalletTx*, WalletTxOrderComparator> to_submit;
2138
0
        for (auto& [txid, wtx] : mapWallet) {
  Branch (2138:32): [True: 0, False: 0]
2139
            // Only rebroadcast unconfirmed txs
2140
0
            if (!wtx.isUnconfirmed()) continue;
  Branch (2140:17): [True: 0, False: 0]
2141
2142
            // Attempt to rebroadcast all txes more than 5 minutes older than
2143
            // the last block, or all txs if forcing.
2144
0
            if (!force && wtx.nTimeReceived > m_best_block_time - 5 * 60) continue;
  Branch (2144:17): [True: 0, False: 0]
  Branch (2144:27): [True: 0, False: 0]
2145
0
            to_submit.insert(&wtx);
2146
0
        }
2147
        // Now try submitting the transactions to the memory pool and (optionally) relay them.
2148
0
        for (auto wtx : to_submit) {
  Branch (2148:23): [True: 0, False: 0]
2149
0
            std::string unused_err_string;
2150
0
            if (SubmitTxMemoryPoolAndRelay(*wtx, unused_err_string, broadcast_method)) ++submitted_tx_count;
  Branch (2150:17): [True: 0, False: 0]
2151
0
        }
2152
0
    } // cs_wallet
2153
2154
0
    if (submitted_tx_count > 0) {
  Branch (2154:9): [True: 0, False: 0]
2155
0
        WalletLogPrintf("%s: resubmit %u unconfirmed transactions\n", __func__, submitted_tx_count);
2156
0
    }
2157
0
}
2158
2159
/** @} */ // end of mapWallet
2160
2161
void MaybeResendWalletTxs(WalletContext& context)
2162
0
{
2163
0
    for (const std::shared_ptr<CWallet>& pwallet : GetWallets(context)) {
  Branch (2163:50): [True: 0, False: 0]
2164
0
        if (!pwallet->ShouldResend()) continue;
  Branch (2164:13): [True: 0, False: 0]
2165
0
        pwallet->ResubmitWalletTransactions(node::TxBroadcast::MEMPOOL_AND_BROADCAST_TO_ALL, /*force=*/false);
2166
0
        pwallet->SetNextResend();
2167
0
    }
2168
0
}
2169
2170
2171
bool CWallet::SignTransaction(CMutableTransaction& tx) const
2172
1.03k
{
2173
1.03k
    AssertLockHeld(cs_wallet);
2174
2175
    // Build coins map
2176
1.03k
    std::map<COutPoint, Coin> coins;
2177
36.5k
    for (auto& input : tx.vin) {
  Branch (2177:22): [True: 36.5k, False: 1.03k]
2178
36.5k
        const auto mi = mapWallet.find(input.prevout.hash);
2179
36.5k
        if(mi == mapWallet.end() || input.prevout.n >= mi->second.GetTx()->vout.size()) {
  Branch (2179:12): [True: 0, False: 36.5k]
  Branch (2179:12): [True: 0, False: 36.5k]
  Branch (2179:37): [True: 0, False: 36.5k]
2180
0
            return false;
2181
0
        }
2182
36.5k
        const CWalletTx& wtx = mi->second;
2183
36.5k
        int prev_height = wtx.state<TxStateConfirmed>() ? wtx.state<TxStateConfirmed>()->confirmed_block_height : 0;
  Branch (2183:27): [True: 36.5k, False: 0]
2184
36.5k
        coins[input.prevout] = Coin(wtx.GetTx()->vout[input.prevout.n], prev_height, wtx.IsCoinBase());
2185
36.5k
    }
2186
1.03k
    std::map<int, bilingual_str> input_errors;
2187
1.03k
    return SignTransaction(tx, coins, SIGHASH_DEFAULT, input_errors);
2188
1.03k
}
2189
2190
bool CWallet::SignTransaction(CMutableTransaction& tx, const std::map<COutPoint, Coin>& coins, int sighash, std::map<int, bilingual_str>& input_errors) const
2191
1.03k
{
2192
    // Try to sign with all ScriptPubKeyMans
2193
5.97k
    for (ScriptPubKeyMan* spk_man : GetAllScriptPubKeyMans()) {
  Branch (2193:35): [True: 5.97k, False: 0]
2194
        // spk_man->SignTransaction will return true if the transaction is complete,
2195
        // so we can exit early and return true if that happens
2196
5.97k
        if (spk_man->SignTransaction(tx, coins, sighash, input_errors)) {
  Branch (2196:13): [True: 1.03k, False: 4.94k]
2197
1.03k
            return true;
2198
1.03k
        }
2199
5.97k
    }
2200
2201
    // At this point, one input was not fully signed otherwise we would have exited already
2202
0
    return false;
2203
1.03k
}
2204
2205
std::optional<PSBTError> CWallet::FillPSBT(PartiallySignedTransaction& psbtx, const common::PSBTFillOptions& options, bool& complete, size_t* n_signed) const
2206
0
{
2207
0
    if (n_signed) {
  Branch (2207:9): [True: 0, False: 0]
2208
0
        *n_signed = 0;
2209
0
    }
2210
0
    LOCK(cs_wallet);
2211
    // Get all of the previous transactions
2212
0
    for (PSBTInput& input : psbtx.inputs) {
  Branch (2212:27): [True: 0, False: 0]
2213
0
        if (PSBTInputSigned(input)) {
  Branch (2213:13): [True: 0, False: 0]
2214
0
            continue;
2215
0
        }
2216
2217
        // If we have no utxo, grab it from the wallet.
2218
0
        if (!input.non_witness_utxo) {
  Branch (2218:13): [True: 0, False: 0]
2219
0
            const Txid& txhash = input.prev_txid;
2220
0
            const auto it = mapWallet.find(txhash);
2221
0
            if (it != mapWallet.end()) {
  Branch (2221:17): [True: 0, False: 0]
2222
0
                const CWalletTx& wtx = it->second;
2223
                // We only need the non_witness_utxo, which is a superset of the witness_utxo.
2224
                //   The signing code will switch to the smaller witness_utxo if this is ok.
2225
0
                input.non_witness_utxo = wtx.GetTx();
2226
0
            }
2227
0
        }
2228
0
    }
2229
2230
0
    std::optional<PrecomputedTransactionData> txdata_res = PrecomputePSBTData(psbtx);
2231
0
    if (!txdata_res) {
  Branch (2231:9): [True: 0, False: 0]
2232
0
        return PSBTError::INVALID_TX;
2233
0
    }
2234
0
    const PrecomputedTransactionData& txdata = *txdata_res;
2235
2236
    // Fill in information from ScriptPubKeyMans
2237
0
    for (ScriptPubKeyMan* spk_man : GetAllScriptPubKeyMans()) {
  Branch (2237:35): [True: 0, False: 0]
2238
0
        int n_signed_this_spkm = 0;
2239
0
        const auto error{spk_man->FillPSBT(psbtx, txdata, options, &n_signed_this_spkm)};
2240
0
        if (error) {
  Branch (2240:13): [True: 0, False: 0]
2241
0
            return error;
2242
0
        }
2243
2244
0
        if (n_signed) {
  Branch (2244:13): [True: 0, False: 0]
2245
0
            (*n_signed) += n_signed_this_spkm;
2246
0
        }
2247
0
    }
2248
2249
0
    RemoveUnnecessaryTransactions(psbtx);
2250
2251
    // Complete if every input is now signed
2252
0
    complete = true;
2253
0
    for (size_t i = 0; i < psbtx.inputs.size(); ++i) {
  Branch (2253:24): [True: 0, False: 0]
2254
0
        complete &= PSBTInputSignedAndVerified(psbtx, i, &txdata);
2255
0
    }
2256
2257
0
    return {};
2258
0
}
2259
2260
SigningResult CWallet::SignMessage(const std::string& message, const PKHash& pkhash, std::string& str_sig) const
2261
0
{
2262
0
    SignatureData sigdata;
2263
0
    CScript script_pub_key = GetScriptForDestination(pkhash);
2264
0
    for (const auto& spk_man_pair : m_spk_managers) {
  Branch (2264:35): [True: 0, False: 0]
2265
0
        if (spk_man_pair.second->CanProvide(script_pub_key, sigdata)) {
  Branch (2265:13): [True: 0, False: 0]
2266
0
            LOCK(cs_wallet);  // DescriptorScriptPubKeyMan calls IsLocked which can lock cs_wallet in a deadlocking order
2267
0
            return spk_man_pair.second->SignMessage(message, pkhash, str_sig);
2268
0
        }
2269
0
    }
2270
0
    return SigningResult::PRIVATE_KEY_NOT_AVAILABLE;
2271
0
}
2272
2273
OutputType CWallet::TransactionChangeType(const std::optional<OutputType>& change_type, const std::vector<CRecipient>& vecSend) const
2274
1.51k
{
2275
    // If -changetype is specified, always use that change type.
2276
1.51k
    if (change_type) {
  Branch (2276:9): [True: 943, False: 572]
2277
943
        return *change_type;
2278
943
    }
2279
2280
    // if m_default_address_type is legacy, use legacy address as change.
2281
572
    if (m_default_address_type == OutputType::LEGACY) {
  Branch (2281:9): [True: 0, False: 572]
2282
0
        return OutputType::LEGACY;
2283
0
    }
2284
2285
572
    bool any_tr{false};
2286
572
    bool any_wpkh{false};
2287
572
    bool any_sh{false};
2288
572
    bool any_pkh{false};
2289
2290
7.46k
    for (const auto& recipient : vecSend) {
  Branch (2290:32): [True: 7.46k, False: 572]
2291
7.46k
        if (std::get_if<WitnessV1Taproot>(&recipient.dest)) {
  Branch (2291:13): [True: 1.30k, False: 6.15k]
2292
1.30k
            any_tr = true;
2293
6.15k
        } else if (std::get_if<WitnessV0KeyHash>(&recipient.dest)) {
  Branch (2293:20): [True: 936, False: 5.22k]
2294
936
            any_wpkh = true;
2295
5.22k
        } else if (std::get_if<ScriptHash>(&recipient.dest)) {
  Branch (2295:20): [True: 1.98k, False: 3.24k]
2296
1.98k
            any_sh = true;
2297
3.24k
        } else if (std::get_if<PKHash>(&recipient.dest)) {
  Branch (2297:20): [True: 596, False: 2.64k]
2298
596
            any_pkh = true;
2299
596
        }
2300
7.46k
    }
2301
2302
572
    const bool has_bech32m_spkman(GetScriptPubKeyMan(OutputType::BECH32M, /*internal=*/true));
2303
572
    if (has_bech32m_spkman && any_tr) {
  Branch (2303:9): [True: 572, False: 0]
  Branch (2303:31): [True: 144, False: 428]
2304
        // Currently tr is the only type supported by the BECH32M spkman
2305
144
        return OutputType::BECH32M;
2306
144
    }
2307
428
    const bool has_bech32_spkman(GetScriptPubKeyMan(OutputType::BECH32, /*internal=*/true));
2308
428
    if (has_bech32_spkman && any_wpkh) {
  Branch (2308:9): [True: 428, False: 0]
  Branch (2308:30): [True: 69, False: 359]
2309
        // Currently wpkh is the only type supported by the BECH32 spkman
2310
69
        return OutputType::BECH32;
2311
69
    }
2312
359
    const bool has_p2sh_segwit_spkman(GetScriptPubKeyMan(OutputType::P2SH_SEGWIT, /*internal=*/true));
2313
359
    if (has_p2sh_segwit_spkman && any_sh) {
  Branch (2313:9): [True: 359, False: 0]
  Branch (2313:35): [True: 143, False: 216]
2314
        // Currently sh_wpkh is the only type supported by the P2SH_SEGWIT spkman
2315
        // As of 2021 about 80% of all SH are wrapping WPKH, so use that
2316
143
        return OutputType::P2SH_SEGWIT;
2317
143
    }
2318
216
    const bool has_legacy_spkman(GetScriptPubKeyMan(OutputType::LEGACY, /*internal=*/true));
2319
216
    if (has_legacy_spkman && any_pkh) {
  Branch (2319:9): [True: 216, False: 0]
  Branch (2319:30): [True: 42, False: 174]
2320
        // Currently pkh is the only type supported by the LEGACY spkman
2321
42
        return OutputType::LEGACY;
2322
42
    }
2323
2324
174
    if (has_bech32m_spkman) {
  Branch (2324:9): [True: 174, False: 0]
2325
174
        return OutputType::BECH32M;
2326
174
    }
2327
0
    if (has_bech32_spkman) {
  Branch (2327:9): [True: 0, False: 0]
2328
0
        return OutputType::BECH32;
2329
0
    }
2330
    // else use m_default_address_type for change
2331
0
    return m_default_address_type;
2332
0
}
2333
2334
void CWallet::CommitTransaction(
2335
    CTransactionRef tx,
2336
    std::optional<Txid> replaces_txid,
2337
    std::optional<std::string> comment,
2338
    std::optional<std::string> comment_to,
2339
    const std::vector<std::string>& messages,
2340
    const std::vector<std::string>& payment_requests
2341
)
2342
0
{
2343
0
    LOCK(cs_wallet);
2344
0
    WalletLogPrintf("CommitTransaction:\n%s\n", util::RemoveSuffixView(tx->ToString(), "\n"));
2345
2346
    // Add tx to wallet, because if it has change it's also ours,
2347
    // otherwise just for transaction history.
2348
0
    CWalletTx* wtx = AddToWallet(tx, TxStateInactive{}, [&](CWalletTx& wtx, bool new_tx) {
2349
0
        if (replaces_txid) wtx.m_replaces_txid = replaces_txid;
  Branch (2349:13): [True: 0, False: 0]
2350
0
        if (comment) wtx.m_comment = comment;
  Branch (2350:13): [True: 0, False: 0]
2351
0
        if (comment_to) wtx.m_comment_to = comment_to;
  Branch (2351:13): [True: 0, False: 0]
2352
0
        if (!messages.empty()) wtx.m_messages = messages;
  Branch (2352:13): [True: 0, False: 0]
2353
0
        if (!payment_requests.empty()) wtx.m_payment_requests = payment_requests;
  Branch (2353:13): [True: 0, False: 0]
2354
0
        return true;
2355
0
    });
2356
2357
    // wtx can only be null if the db write failed.
2358
0
    if (!wtx) {
  Branch (2358:9): [True: 0, False: 0]
2359
0
        throw std::runtime_error(std::string(__func__) + ": Wallet db error, transaction commit failed");
2360
0
    }
2361
2362
    // Notify that old coins are spent
2363
0
    for (const CTxIn& txin : tx->vin) {
  Branch (2363:28): [True: 0, False: 0]
2364
0
        CWalletTx &coin = mapWallet.at(txin.prevout.hash);
2365
0
        coin.MarkDirty();
2366
0
        NotifyTransactionChanged(coin.GetHash(), CT_UPDATED);
2367
0
    }
2368
2369
0
    if (!fBroadcastTransactions) {
  Branch (2369:9): [True: 0, False: 0]
2370
        // Don't submit tx to the mempool
2371
0
        return;
2372
0
    }
2373
2374
0
    std::string err_string;
2375
0
    if (!SubmitTxMemoryPoolAndRelay(*wtx, err_string, node::TxBroadcast::MEMPOOL_AND_BROADCAST_TO_ALL)) {
  Branch (2375:9): [True: 0, False: 0]
2376
0
        WalletLogPrintf("CommitTransaction(): Transaction cannot be broadcast immediately, %s\n", err_string);
2377
        // TODO: if we expect the failure to be long term or permanent, instead delete wtx from the wallet and return failure.
2378
0
    }
2379
0
}
2380
2381
DBErrors CWallet::PopulateWalletFromDB(bilingual_str& error, std::vector<bilingual_str>& warnings)
2382
0
{
2383
0
    LOCK(cs_wallet);
2384
2385
0
    Assert(m_spk_managers.empty());
2386
0
    Assert(m_wallet_flags == 0);
2387
0
    DBErrors nLoadWalletRet = WalletBatch(GetDatabase()).LoadWallet(this);
2388
2389
0
    if (m_spk_managers.empty()) {
  Branch (2389:9): [True: 0, False: 0]
2390
0
        assert(m_external_spk_managers.empty());
  Branch (2390:9): [True: 0, False: 0]
2391
0
        assert(m_internal_spk_managers.empty());
  Branch (2391:9): [True: 0, False: 0]
2392
0
    }
2393
2394
0
    const auto wallet_file = m_database->Filename();
2395
0
    switch (nLoadWalletRet) {
  Branch (2395:13): [True: 0, False: 0]
2396
0
    case DBErrors::LOAD_OK:
  Branch (2396:5): [True: 0, False: 0]
2397
0
        break;
2398
0
    case DBErrors::NONCRITICAL_ERROR:
  Branch (2398:5): [True: 0, False: 0]
2399
0
        warnings.push_back(strprintf(_("Error reading %s! All keys read correctly, but transaction data"
2400
0
                                       " or address metadata may be missing or incorrect."),
2401
0
            wallet_file));
2402
0
        break;
2403
0
    case DBErrors::NEED_RESCAN:
  Branch (2403:5): [True: 0, False: 0]
2404
0
        warnings.push_back(strprintf(_("Error reading %s! Transaction data may be missing or incorrect."
2405
0
                                       " Rescanning wallet."), wallet_file));
2406
0
        break;
2407
0
    case DBErrors::CORRUPT:
  Branch (2407:5): [True: 0, False: 0]
2408
0
        error = strprintf(_("Error loading %s: Wallet corrupted"), wallet_file);
2409
0
        break;
2410
0
    case DBErrors::TOO_NEW:
  Branch (2410:5): [True: 0, False: 0]
2411
0
        error = strprintf(_("Error loading %s: Wallet requires newer version of %s"), wallet_file, CLIENT_NAME);
2412
0
        break;
2413
0
    case DBErrors::EXTERNAL_SIGNER_SUPPORT_REQUIRED:
  Branch (2413:5): [True: 0, False: 0]
2414
0
        error = strprintf(_("Error loading %s: External signer wallet being loaded without external signer support compiled"), wallet_file);
2415
0
        break;
2416
0
    case DBErrors::UNKNOWN_DESCRIPTOR:
  Branch (2416:5): [True: 0, False: 0]
2417
0
        error = strprintf(_("Unrecognized descriptor found. Loading wallet %s\n\n"
2418
0
                            "The wallet might have been created on a newer version.\n"
2419
0
                            "Please try running the latest software version.\n"), wallet_file);
2420
0
        break;
2421
0
    case DBErrors::UNEXPECTED_LEGACY_ENTRY:
  Branch (2421:5): [True: 0, False: 0]
2422
0
        error = strprintf(_("Unexpected legacy entry in descriptor wallet found. Loading wallet %s\n\n"
2423
0
                            "The wallet might have been tampered with or created with malicious intent.\n"), wallet_file);
2424
0
        break;
2425
0
    case DBErrors::LEGACY_WALLET:
  Branch (2425:5): [True: 0, False: 0]
2426
0
        error = strprintf(_("Error loading %s: Wallet is a legacy wallet. Please migrate to a descriptor wallet using the migration tool (migratewallet RPC)."), wallet_file);
2427
0
        break;
2428
0
    case DBErrors::LOAD_FAIL:
  Branch (2428:5): [True: 0, False: 0]
2429
0
        error = strprintf(_("Error loading %s"), wallet_file);
2430
0
        break;
2431
0
    } // no default case, so the compiler can warn about missing cases
2432
0
    return nLoadWalletRet;
2433
0
}
2434
2435
util::Result<void> CWallet::RemoveTxs(std::vector<Txid>& txs_to_remove)
2436
0
{
2437
0
    AssertLockHeld(cs_wallet);
2438
0
    bilingual_str str_err;  // future: make RunWithinTxn return a util::Result
2439
0
    bool was_txn_committed = RunWithinTxn(GetDatabase(), /*process_desc=*/"remove transactions", [&](WalletBatch& batch) EXCLUSIVE_LOCKS_REQUIRED(cs_wallet) {
2440
0
        util::Result<void> result{RemoveTxs(batch, txs_to_remove)};
2441
0
        if (!result) str_err = util::ErrorString(result);
  Branch (2441:13): [True: 0, False: 0]
2442
0
        return result.has_value();
2443
0
    });
2444
0
    if (!str_err.empty()) return util::Error{str_err};
  Branch (2444:9): [True: 0, False: 0]
2445
0
    if (!was_txn_committed) return util::Error{_("Error starting/committing db txn for wallet transactions removal process")};
  Branch (2445:9): [True: 0, False: 0]
2446
0
    return {}; // all good
2447
0
}
2448
2449
util::Result<void> CWallet::RemoveTxs(WalletBatch& batch, std::vector<Txid>& txs_to_remove)
2450
0
{
2451
0
    AssertLockHeld(cs_wallet);
2452
0
    if (!batch.HasActiveTxn()) return util::Error{strprintf(_("The transactions removal process can only be executed within a db txn"))};
  Branch (2452:9): [True: 0, False: 0]
2453
2454
    // Check for transaction existence and remove entries from disk
2455
0
    std::vector<decltype(mapWallet)::const_iterator> erased_txs;
2456
0
    bilingual_str str_err;
2457
0
    for (const Txid& hash : txs_to_remove) {
  Branch (2457:27): [True: 0, False: 0]
2458
0
        auto it_wtx = mapWallet.find(hash);
2459
0
        if (it_wtx == mapWallet.end()) {
  Branch (2459:13): [True: 0, False: 0]
2460
0
            return util::Error{strprintf(_("Transaction %s does not belong to this wallet"), hash.GetHex())};
2461
0
        }
2462
0
        if (!batch.EraseTx(hash)) {
  Branch (2462:13): [True: 0, False: 0]
2463
0
            return util::Error{strprintf(_("Failure removing transaction: %s"), hash.GetHex())};
2464
0
        }
2465
0
        erased_txs.emplace_back(it_wtx);
2466
0
    }
2467
2468
    // Register callback to update the memory state only when the db txn is actually dumped to disk
2469
0
    batch.RegisterTxnListener({.on_commit=[&, erased_txs]() EXCLUSIVE_LOCKS_REQUIRED(cs_wallet) {
2470
        // Update the in-memory state and notify upper layers about the removals
2471
0
        for (const auto& it : erased_txs) {
  Branch (2471:29): [True: 0, False: 0]
2472
0
            const Txid hash{it->first};
2473
0
            wtxOrdered.erase(it->second.m_it_wtxOrdered);
2474
0
            for (const auto& txin : it->second.GetTx()->vin) {
  Branch (2474:35): [True: 0, False: 0]
2475
0
                auto range = mapTxSpends.equal_range(txin.prevout);
2476
0
                for (auto iter = range.first; iter != range.second; ++iter) {
  Branch (2476:47): [True: 0, False: 0]
2477
0
                    if (iter->second == hash) {
  Branch (2477:25): [True: 0, False: 0]
2478
0
                        mapTxSpends.erase(iter);
2479
0
                        break;
2480
0
                    }
2481
0
                }
2482
0
            }
2483
0
            for (unsigned int i = 0; i < it->second.GetTx()->vout.size(); ++i) {
  Branch (2483:38): [True: 0, False: 0]
2484
0
                m_txos.erase(COutPoint(hash, i));
2485
0
            }
2486
0
            mapWallet.erase(it);
2487
0
            NotifyTransactionChanged(hash, CT_DELETED);
2488
0
        }
2489
2490
0
        MarkDirty();
2491
0
    }, .on_abort={}});
2492
2493
0
    return {};
2494
0
}
2495
2496
bool CWallet::SetAddressBookWithDB(WalletBatch& batch, const CTxDestination& address, const std::string& strName, const std::optional<AddressPurpose>& new_purpose)
2497
165k
{
2498
165k
    bool fUpdated = false;
2499
165k
    bool is_mine;
2500
165k
    std::optional<AddressPurpose> purpose;
2501
165k
    {
2502
165k
        LOCK(cs_wallet);
2503
165k
        std::map<CTxDestination, CAddressBookData>::iterator mi = m_address_book.find(address);
2504
165k
        fUpdated = mi != m_address_book.end() && !mi->second.IsChange();
  Branch (2504:20): [True: 63, False: 165k]
  Branch (2504:50): [True: 63, False: 0]
2505
2506
165k
        CAddressBookData& record = mi != m_address_book.end() ? mi->second : m_address_book[address];
  Branch (2506:36): [True: 63, False: 165k]
2507
165k
        record.SetLabel(strName);
2508
165k
        is_mine = IsMine(address);
2509
165k
        if (new_purpose) { /* update purpose only if requested */
  Branch (2509:13): [True: 165k, False: 0]
2510
165k
            record.purpose = new_purpose;
2511
165k
        }
2512
165k
        purpose = record.purpose;
2513
165k
    }
2514
2515
165k
    const std::string& encoded_dest = EncodeDestination(address);
2516
165k
    if (new_purpose && !batch.WritePurpose(encoded_dest, PurposeToString(*new_purpose))) {
  Branch (2516:9): [True: 165k, False: 0]
  Branch (2516:9): [True: 0, False: 165k]
  Branch (2516:24): [True: 0, False: 165k]
2517
0
        WalletLogPrintf("Error: fail to write address book 'purpose' entry\n");
2518
0
        return false;
2519
0
    }
2520
165k
    if (!batch.WriteName(encoded_dest, strName)) {
  Branch (2520:9): [True: 0, False: 165k]
2521
0
        WalletLogPrintf("Error: fail to write address book 'name' entry\n");
2522
0
        return false;
2523
0
    }
2524
2525
    // In very old wallets, address purpose may not be recorded so we derive it from IsMine
2526
165k
    NotifyAddressBookChanged(address, strName, is_mine,
2527
165k
                             purpose.value_or(is_mine ? AddressPurpose::RECEIVE : AddressPurpose::SEND),
  Branch (2527:47): [True: 165k, False: 0]
2528
165k
                             (fUpdated ? CT_UPDATED : CT_NEW));
  Branch (2528:31): [True: 63, False: 165k]
2529
165k
    return true;
2530
165k
}
2531
2532
bool CWallet::SetAddressBook(const CTxDestination& address, const std::string& strName, const std::optional<AddressPurpose>& purpose)
2533
165k
{
2534
165k
    WalletBatch batch(GetDatabase());
2535
165k
    return SetAddressBookWithDB(batch, address, strName, purpose);
2536
165k
}
2537
2538
bool CWallet::DelAddressBook(const CTxDestination& address)
2539
0
{
2540
0
    return RunWithinTxn(GetDatabase(), /*process_desc=*/"address book entry removal", [&](WalletBatch& batch){
2541
0
        return DelAddressBookWithDB(batch, address);
2542
0
    });
2543
0
}
2544
2545
bool CWallet::DelAddressBookWithDB(WalletBatch& batch, const CTxDestination& address)
2546
0
{
2547
0
    const std::string& dest = EncodeDestination(address);
2548
0
    {
2549
0
        LOCK(cs_wallet);
2550
        // If we want to delete receiving addresses, we should avoid calling EraseAddressData because it will delete the previously_spent value. Could instead just erase the label so it becomes a change address, and keep the data.
2551
        // NOTE: This isn't a problem for sending addresses because they don't have any data that needs to be kept.
2552
        // When adding new address data, it should be considered here whether to retain or delete it.
2553
0
        if (IsMine(address)) {
  Branch (2553:13): [True: 0, False: 0]
2554
0
            WalletLogPrintf("%s called with IsMine address, NOT SUPPORTED. Please report this bug! %s\n", __func__, CLIENT_BUGREPORT);
2555
0
            return false;
2556
0
        }
2557
        // Delete data rows associated with this address
2558
0
        if (!batch.EraseAddressData(address)) {
  Branch (2558:13): [True: 0, False: 0]
2559
0
            WalletLogPrintf("Error: cannot erase address book entry data\n");
2560
0
            return false;
2561
0
        }
2562
2563
        // Delete purpose entry
2564
0
        if (!batch.ErasePurpose(dest)) {
  Branch (2564:13): [True: 0, False: 0]
2565
0
            WalletLogPrintf("Error: cannot erase address book entry purpose\n");
2566
0
            return false;
2567
0
        }
2568
2569
        // Delete name entry
2570
0
        if (!batch.EraseName(dest)) {
  Branch (2570:13): [True: 0, False: 0]
2571
0
            WalletLogPrintf("Error: cannot erase address book entry name\n");
2572
0
            return false;
2573
0
        }
2574
2575
        // finally, remove it from the map
2576
0
        m_address_book.erase(address);
2577
0
    }
2578
2579
    // All good, signal changes
2580
0
    NotifyAddressBookChanged(address, "", /*is_mine=*/false, AddressPurpose::SEND, CT_DELETED);
2581
0
    return true;
2582
0
}
2583
2584
size_t CWallet::KeypoolCountExternalKeys() const
2585
0
{
2586
0
    AssertLockHeld(cs_wallet);
2587
2588
0
    unsigned int count = 0;
2589
0
    for (auto spk_man : m_external_spk_managers) {
  Branch (2589:23): [True: 0, False: 0]
2590
0
        count += spk_man.second->GetKeyPoolSize();
2591
0
    }
2592
2593
0
    return count;
2594
0
}
2595
2596
unsigned int CWallet::GetKeyPoolSize() const
2597
0
{
2598
0
    AssertLockHeld(cs_wallet);
2599
2600
0
    unsigned int count = 0;
2601
0
    for (auto spk_man : GetActiveScriptPubKeyMans()) {
  Branch (2601:23): [True: 0, False: 0]
2602
0
        count += spk_man->GetKeyPoolSize();
2603
0
    }
2604
0
    return count;
2605
0
}
2606
2607
bool CWallet::TopUpKeyPool(unsigned int kpSize)
2608
0
{
2609
0
    LOCK(cs_wallet);
2610
0
    bool res = true;
2611
0
    for (auto spk_man : GetActiveScriptPubKeyMans()) {
  Branch (2611:23): [True: 0, False: 0]
2612
0
        res &= spk_man->TopUp(kpSize);
2613
0
    }
2614
0
    return res;
2615
0
}
2616
2617
util::Result<CTxDestination> CWallet::GetNewDestination(const OutputType type, const std::string& label)
2618
163k
{
2619
163k
    LOCK(cs_wallet);
2620
163k
    auto spk_man = GetScriptPubKeyMan(type, /*internal=*/false);
2621
163k
    if (!spk_man) {
  Branch (2621:9): [True: 0, False: 163k]
2622
0
        return util::Error{strprintf(_("Error: No %s addresses available."), FormatOutputType(type))};
2623
0
    }
2624
2625
163k
    auto op_dest = spk_man->GetNewDestination(type);
2626
163k
    if (op_dest) {
  Branch (2626:9): [True: 163k, False: 0]
2627
163k
        SetAddressBook(*op_dest, label, AddressPurpose::RECEIVE);
2628
163k
    }
2629
2630
163k
    return op_dest;
2631
163k
}
2632
2633
util::Result<CTxDestination> CWallet::GetNewChangeDestination(const OutputType type)
2634
47.0k
{
2635
47.0k
    LOCK(cs_wallet);
2636
2637
47.0k
    ReserveDestination reservedest(this, type);
2638
47.0k
    auto op_dest = reservedest.GetReservedDestination(true);
2639
47.0k
    if (op_dest) reservedest.KeepDestination();
  Branch (2639:9): [True: 47.0k, False: 0]
2640
2641
47.0k
    return op_dest;
2642
47.0k
}
2643
2644
0
void CWallet::MarkDestinationsDirty(const std::set<CTxDestination>& destinations) {
2645
0
    for (auto& entry : mapWallet) {
  Branch (2645:22): [True: 0, False: 0]
2646
0
        CWalletTx& wtx = entry.second;
2647
0
        if (wtx.m_is_cache_empty) continue;
  Branch (2647:13): [True: 0, False: 0]
2648
0
        for (unsigned int i = 0; i < wtx.GetTx()->vout.size(); i++) {
  Branch (2648:34): [True: 0, False: 0]
2649
0
            CTxDestination dst;
2650
0
            if (ExtractDestination(wtx.GetTx()->vout[i].scriptPubKey, dst) && destinations.contains(dst)) {
  Branch (2650:17): [True: 0, False: 0]
  Branch (2650:17): [True: 0, False: 0]
  Branch (2650:79): [True: 0, False: 0]
2651
0
                wtx.MarkDirty();
2652
0
                break;
2653
0
            }
2654
0
        }
2655
0
    }
2656
0
}
2657
2658
void CWallet::ForEachAddrBookEntry(const ListAddrBookFunc& func) const
2659
0
{
2660
0
    AssertLockHeld(cs_wallet);
2661
0
    for (const std::pair<const CTxDestination, CAddressBookData>& item : m_address_book) {
  Branch (2661:72): [True: 0, False: 0]
2662
0
        const auto& entry = item.second;
2663
0
        func(item.first, entry.GetLabel(), entry.IsChange(), entry.purpose);
2664
0
    }
2665
0
}
2666
2667
std::vector<CTxDestination> CWallet::ListAddrBookAddresses(const std::optional<AddrBookFilter>& _filter) const
2668
0
{
2669
0
    AssertLockHeld(cs_wallet);
2670
0
    std::vector<CTxDestination> result;
2671
0
    AddrBookFilter filter = _filter ? *_filter : AddrBookFilter();
  Branch (2671:29): [True: 0, False: 0]
2672
0
    ForEachAddrBookEntry([&result, &filter](const CTxDestination& dest, const std::string& label, bool is_change, const std::optional<AddressPurpose>& purpose) {
2673
        // Filter by change
2674
0
        if (filter.ignore_change && is_change) return;
  Branch (2674:13): [True: 0, False: 0]
  Branch (2674:37): [True: 0, False: 0]
2675
        // Filter by label
2676
0
        if (filter.m_op_label && *filter.m_op_label != label) return;
  Branch (2676:13): [True: 0, False: 0]
  Branch (2676:34): [True: 0, False: 0]
2677
        // All good
2678
0
        result.emplace_back(dest);
2679
0
    });
2680
0
    return result;
2681
0
}
2682
2683
std::set<std::string> CWallet::ListAddrBookLabels(const std::optional<AddressPurpose> purpose) const
2684
0
{
2685
0
    AssertLockHeld(cs_wallet);
2686
0
    std::set<std::string> label_set;
2687
0
    ForEachAddrBookEntry([&](const CTxDestination& _dest, const std::string& _label,
2688
0
                             bool _is_change, const std::optional<AddressPurpose>& _purpose) {
2689
0
        if (_is_change) return;
  Branch (2689:13): [True: 0, False: 0]
2690
0
        if (!purpose || purpose == _purpose) {
  Branch (2690:13): [True: 0, False: 0]
  Branch (2690:25): [True: 0, False: 0]
2691
0
            label_set.insert(_label);
2692
0
        }
2693
0
    });
2694
0
    return label_set;
2695
0
}
2696
2697
util::Result<CTxDestination> ReserveDestination::GetReservedDestination(bool internal)
2698
47.5k
{
2699
47.5k
    m_spk_man = pwallet->GetScriptPubKeyMan(type, internal);
2700
47.5k
    if (!m_spk_man) {
  Branch (2700:9): [True: 0, False: 47.5k]
2701
0
        return util::Error{strprintf(_("Error: No %s addresses available."), FormatOutputType(type))};
2702
0
    }
2703
2704
47.5k
    if (nIndex == -1) {
  Branch (2704:9): [True: 47.5k, False: 0]
2705
47.5k
        int64_t index;
2706
47.5k
        auto op_address = m_spk_man->GetReservedDestination(type, internal, index);
2707
47.5k
        if (!op_address) return op_address;
  Branch (2707:13): [True: 0, False: 47.5k]
2708
47.5k
        nIndex = index;
2709
47.5k
        address = *op_address;
2710
47.5k
    }
2711
47.5k
    return address;
2712
47.5k
}
2713
2714
void ReserveDestination::KeepDestination()
2715
47.9k
{
2716
47.9k
    if (nIndex != -1) {
  Branch (2716:9): [True: 47.2k, False: 663]
2717
47.2k
        m_spk_man->KeepDestination(nIndex, type);
2718
47.2k
    }
2719
47.9k
    nIndex = -1;
2720
47.9k
    address = CNoDestination();
2721
47.9k
}
2722
2723
void ReserveDestination::ReturnDestination()
2724
48.6k
{
2725
48.6k
    if (nIndex != -1) {
  Branch (2725:9): [True: 277, False: 48.3k]
2726
277
        m_spk_man->ReturnDestination(nIndex, fInternal, address);
2727
277
    }
2728
48.6k
    nIndex = -1;
2729
48.6k
    address = CNoDestination();
2730
48.6k
}
2731
2732
util::Result<void> CWallet::DisplayAddress(const CTxDestination& dest)
2733
0
{
2734
0
    CScript scriptPubKey = GetScriptForDestination(dest);
2735
0
    for (const auto& spk_man : GetScriptPubKeyMans(scriptPubKey)) {
  Branch (2735:30): [True: 0, False: 0]
2736
0
        auto signer_spk_man = dynamic_cast<ExternalSignerScriptPubKeyMan *>(spk_man);
2737
0
        if (signer_spk_man == nullptr) {
  Branch (2737:13): [True: 0, False: 0]
2738
0
            continue;
2739
0
        }
2740
0
        auto signer{ExternalSignerScriptPubKeyMan::GetExternalSigner()};
2741
0
        if (!signer) throw std::runtime_error(util::ErrorString(signer).original);
  Branch (2741:13): [True: 0, False: 0]
2742
0
        return signer_spk_man->DisplayAddress(dest, *signer);
2743
0
    }
2744
0
    return util::Error{_("There is no ScriptPubKeyManager for this address")};
2745
0
}
2746
2747
void CWallet::LoadLockedCoin(const COutPoint& coin, bool persistent)
2748
0
{
2749
0
    AssertLockHeld(cs_wallet);
2750
0
    m_locked_coins.emplace(coin, persistent);
2751
0
}
2752
2753
bool CWallet::LockCoin(const COutPoint& output, bool persist)
2754
0
{
2755
0
    AssertLockHeld(cs_wallet);
2756
0
    LoadLockedCoin(output, persist);
2757
0
    if (persist) {
  Branch (2757:9): [True: 0, False: 0]
2758
0
        WalletBatch batch(GetDatabase());
2759
0
        return batch.WriteLockedUTXO(output);
2760
0
    }
2761
0
    return true;
2762
0
}
2763
2764
bool CWallet::UnlockCoin(const COutPoint& output)
2765
0
{
2766
0
    AssertLockHeld(cs_wallet);
2767
0
    auto locked_coin_it = m_locked_coins.find(output);
2768
0
    if (locked_coin_it != m_locked_coins.end()) {
  Branch (2768:9): [True: 0, False: 0]
2769
0
        bool persisted = locked_coin_it->second;
2770
0
        m_locked_coins.erase(locked_coin_it);
2771
0
        if (persisted) {
  Branch (2771:13): [True: 0, False: 0]
2772
0
            WalletBatch batch(GetDatabase());
2773
0
            return batch.EraseLockedUTXO(output);
2774
0
        }
2775
0
    }
2776
0
    return true;
2777
0
}
2778
2779
bool CWallet::UnlockAllCoins()
2780
0
{
2781
0
    AssertLockHeld(cs_wallet);
2782
0
    bool success = true;
2783
0
    WalletBatch batch(GetDatabase());
2784
0
    for (const auto& [coin, persistent] : m_locked_coins) {
  Branch (2784:41): [True: 0, False: 0]
2785
0
        if (persistent) success = success && batch.EraseLockedUTXO(coin);
  Branch (2785:13): [True: 0, False: 0]
  Branch (2785:35): [True: 0, False: 0]
  Branch (2785:46): [True: 0, False: 0]
2786
0
    }
2787
0
    m_locked_coins.clear();
2788
0
    return success;
2789
0
}
2790
2791
bool CWallet::IsLockedCoin(const COutPoint& output) const
2792
107k
{
2793
107k
    AssertLockHeld(cs_wallet);
2794
107k
    return m_locked_coins.contains(output);
2795
107k
}
2796
2797
void CWallet::ListLockedCoins(std::vector<COutPoint>& vOutpts) const
2798
0
{
2799
0
    AssertLockHeld(cs_wallet);
2800
0
    for (const auto& [coin, _] : m_locked_coins) {
  Branch (2800:32): [True: 0, False: 0]
2801
0
        vOutpts.push_back(coin);
2802
0
    }
2803
0
}
2804
2805
/**
2806
 * Compute smart timestamp for a transaction being added to the wallet.
2807
 *
2808
 * Logic:
2809
 * - If sending a transaction, assign its timestamp to the current time.
2810
 * - If receiving a transaction outside a block, assign its timestamp to the
2811
 *   current time.
2812
 * - If receiving a transaction during a rescanning process, assign all its
2813
 *   (not already known) transactions' timestamps to the block time.
2814
 * - If receiving a block with a future timestamp, assign all its (not already
2815
 *   known) transactions' timestamps to the current time.
2816
 * - If receiving a block with a past timestamp, before the most recent known
2817
 *   transaction (that we care about), assign all its (not already known)
2818
 *   transactions' timestamps to the same timestamp as that most-recent-known
2819
 *   transaction.
2820
 * - If receiving a block with a past timestamp, but after the most recent known
2821
 *   transaction, assign all its (not already known) transactions' timestamps to
2822
 *   the block time.
2823
 *
2824
 * For more information see CWalletTx::nTimeSmart,
2825
 * https://bitcointalk.org/?topic=54527, or
2826
 * https://github.com/bitcoin/bitcoin/pull/1393.
2827
 */
2828
unsigned int CWallet::ComputeTimeSmart(const CWalletTx& wtx, bool rescanning_old_block) const
2829
0
{
2830
0
    std::optional<uint256> block_hash;
2831
0
    if (auto* conf = wtx.state<TxStateConfirmed>()) {
  Branch (2831:15): [True: 0, False: 0]
2832
0
        block_hash = conf->confirmed_block_hash;
2833
0
    } else if (auto* conf = wtx.state<TxStateBlockConflicted>()) {
  Branch (2833:22): [True: 0, False: 0]
2834
0
        block_hash = conf->conflicting_block_hash;
2835
0
    }
2836
2837
0
    unsigned int nTimeSmart = wtx.nTimeReceived;
2838
0
    if (block_hash) {
  Branch (2838:9): [True: 0, False: 0]
2839
0
        int64_t blocktime;
2840
0
        int64_t block_max_time;
2841
0
        if (chain().findBlock(*block_hash, FoundBlock().time(blocktime).maxTime(block_max_time))) {
  Branch (2841:13): [True: 0, False: 0]
2842
0
            if (rescanning_old_block) {
  Branch (2842:17): [True: 0, False: 0]
2843
0
                nTimeSmart = block_max_time;
2844
0
            } else {
2845
0
                int64_t latestNow = wtx.nTimeReceived;
2846
0
                int64_t latestEntry = 0;
2847
2848
                // Tolerate times up to the last timestamp in the wallet not more than 5 minutes into the future
2849
0
                int64_t latestTolerated = latestNow + 300;
2850
0
                const TxItems& txOrdered = wtxOrdered;
2851
0
                for (auto it = txOrdered.rbegin(); it != txOrdered.rend(); ++it) {
  Branch (2851:52): [True: 0, False: 0]
2852
0
                    CWalletTx* const pwtx = it->second;
2853
0
                    if (pwtx == &wtx) {
  Branch (2853:25): [True: 0, False: 0]
2854
0
                        continue;
2855
0
                    }
2856
0
                    int64_t nSmartTime;
2857
0
                    nSmartTime = pwtx->nTimeSmart;
2858
0
                    if (!nSmartTime) {
  Branch (2858:25): [True: 0, False: 0]
2859
0
                        nSmartTime = pwtx->nTimeReceived;
2860
0
                    }
2861
0
                    if (nSmartTime <= latestTolerated) {
  Branch (2861:25): [True: 0, False: 0]
2862
0
                        latestEntry = nSmartTime;
2863
0
                        if (nSmartTime > latestNow) {
  Branch (2863:29): [True: 0, False: 0]
2864
0
                            latestNow = nSmartTime;
2865
0
                        }
2866
0
                        break;
2867
0
                    }
2868
0
                }
2869
2870
0
                nTimeSmart = std::max(latestEntry, std::min(blocktime, latestNow));
2871
0
            }
2872
0
        } else {
2873
0
            WalletLogPrintf("%s: found %s in block %s not in index\n", __func__, wtx.GetHash().ToString(), block_hash->ToString());
2874
0
        }
2875
0
    }
2876
0
    return nTimeSmart;
2877
0
}
2878
2879
bool CWallet::SetAddressPreviouslySpent(WalletBatch& batch, const CTxDestination& dest, bool used)
2880
0
{
2881
0
    if (std::get_if<CNoDestination>(&dest))
  Branch (2881:9): [True: 0, False: 0]
2882
0
        return false;
2883
2884
0
    if (!used) {
  Branch (2884:9): [True: 0, False: 0]
2885
0
        if (auto* data{common::FindKey(m_address_book, dest)}) data->previously_spent = false;
  Branch (2885:19): [True: 0, False: 0]
2886
0
        return batch.WriteAddressPreviouslySpent(dest, false);
2887
0
    }
2888
2889
0
    LoadAddressPreviouslySpent(dest);
2890
0
    return batch.WriteAddressPreviouslySpent(dest, true);
2891
0
}
2892
2893
void CWallet::LoadAddressPreviouslySpent(const CTxDestination& dest)
2894
0
{
2895
0
    m_address_book[dest].previously_spent = true;
2896
0
}
2897
2898
void CWallet::LoadAddressReceiveRequest(const CTxDestination& dest, const std::string& id, const std::string& request)
2899
0
{
2900
0
    m_address_book[dest].receive_requests[id] = request;
2901
0
}
2902
2903
bool CWallet::IsAddressPreviouslySpent(const CTxDestination& dest) const
2904
0
{
2905
0
    if (auto* data{common::FindKey(m_address_book, dest)}) return data->previously_spent;
  Branch (2905:15): [True: 0, False: 0]
2906
0
    return false;
2907
0
}
2908
2909
std::vector<std::string> CWallet::GetAddressReceiveRequests() const
2910
0
{
2911
0
    std::vector<std::string> values;
2912
0
    for (const auto& [dest, entry] : m_address_book) {
  Branch (2912:36): [True: 0, False: 0]
2913
0
        for (const auto& [id, request] : entry.receive_requests) {
  Branch (2913:40): [True: 0, False: 0]
2914
0
            values.emplace_back(request);
2915
0
        }
2916
0
    }
2917
0
    return values;
2918
0
}
2919
2920
bool CWallet::SetAddressReceiveRequest(WalletBatch& batch, const CTxDestination& dest, const std::string& id, const std::string& value)
2921
0
{
2922
0
    if (!batch.WriteAddressReceiveRequest(dest, id, value)) return false;
  Branch (2922:9): [True: 0, False: 0]
2923
0
    m_address_book[dest].receive_requests[id] = value;
2924
0
    return true;
2925
0
}
2926
2927
bool CWallet::EraseAddressReceiveRequest(WalletBatch& batch, const CTxDestination& dest, const std::string& id)
2928
0
{
2929
0
    if (!batch.EraseAddressReceiveRequest(dest, id)) return false;
  Branch (2929:9): [True: 0, False: 0]
2930
0
    m_address_book[dest].receive_requests.erase(id);
2931
0
    return true;
2932
0
}
2933
2934
util::Result<fs::path> GetWalletPath(const std::string& name)
2935
0
{
2936
0
    const fs::path name_path = fs::PathFromString(name);
2937
2938
    // 'name' must be a normalized path, i.e. no . or .. except at the root
2939
0
    if (name_path != name_path.lexically_normal()) {
  Branch (2939:9): [True: 0, False: 0]
2940
0
        return util::Error{Untranslated("Wallet name given as a path must be normalized")};
2941
0
    }
2942
2943
    // 'name' cannot begin with ./ or ../
2944
0
    if (!name_path.empty() && (*name_path.begin() == fs::PathFromString(".") || *name_path.begin() == fs::PathFromString(".."))) {
  Branch (2944:9): [True: 0, False: 0]
  Branch (2944:9): [True: 0, False: 0]
  Branch (2944:32): [True: 0, False: 0]
  Branch (2944:81): [True: 0, False: 0]
2945
0
        return util::Error{Untranslated("Wallet name given as a relative path cannot begin with ./ or ../, for wallets not in the walletdir, please use an absolute path.")};
2946
0
    }
2947
2948
    // Disallow path at root
2949
0
    if (name_path.has_root_path() && name_path.root_path() == name_path) {
  Branch (2949:9): [True: 0, False: 0]
  Branch (2949:9): [True: 0, False: 0]
  Branch (2949:38): [True: 0, False: 0]
2950
0
        return util::Error{Untranslated("Wallet name cannot be the root path")};
2951
0
    }
2952
2953
    // Do some checking on wallet path. It should be either a:
2954
    //
2955
    // 1. Path where a directory can be created.
2956
    // 2. Path to an existing directory.
2957
    // 3. Path to a symlink to a directory.
2958
    // 4. For backwards compatibility, the name of a data file in -walletdir.
2959
0
    const fs::path wallet_path = fsbridge::AbsPathJoin(GetWalletDir(), name_path);
2960
0
    fs::file_type path_type = fs::symlink_status(wallet_path).type();
2961
0
    if (!(path_type == fs::file_type::not_found || path_type == fs::file_type::directory ||
  Branch (2961:9): [True: 0, False: 0]
  Branch (2961:11): [True: 0, False: 0]
  Branch (2961:52): [True: 0, False: 0]
2962
0
          (path_type == fs::file_type::symlink && fs::is_directory(wallet_path)) ||
  Branch (2962:12): [True: 0, False: 0]
  Branch (2962:51): [True: 0, False: 0]
2963
0
          (path_type == fs::file_type::regular && name_path.filename() == name_path))) {
  Branch (2963:12): [True: 0, False: 0]
  Branch (2963:51): [True: 0, False: 0]
2964
0
        return util::Error{Untranslated(strprintf(
2965
0
              "Invalid -wallet path '%s'. -wallet path should point to a directory where wallet.dat and "
2966
0
              "database/log.?????????? files can be stored, a location where such a directory could be created, "
2967
0
              "or (for backwards compatibility) the name of an existing data file in -walletdir (%s)",
2968
0
              name, fs::quoted(fs::PathToString(GetWalletDir()))))};
2969
0
    }
2970
0
    return wallet_path;
2971
0
}
2972
2973
std::unique_ptr<WalletDatabase> MakeWalletDatabase(const std::string& name, const DatabaseOptions& options, DatabaseStatus& status, bilingual_str& error_string)
2974
0
{
2975
0
    const auto& wallet_path = GetWalletPath(name);
2976
0
    if (!wallet_path) {
  Branch (2976:9): [True: 0, False: 0]
2977
0
        error_string = util::ErrorString(wallet_path);
2978
0
        status = DatabaseStatus::FAILED_BAD_PATH;
2979
0
        return nullptr;
2980
0
    }
2981
0
    return MakeDatabase(*wallet_path, options, status, error_string);
2982
0
}
2983
2984
bool CWallet::LoadWalletArgs(std::shared_ptr<CWallet> wallet, const WalletContext& context, bilingual_str& error, std::vector<bilingual_str>& warnings)
2985
0
{
2986
0
    interfaces::Chain* chain = context.chain;
2987
0
    const ArgsManager& args = *Assert(context.args);
2988
2989
0
    if (!args.GetArg("-addresstype", "").empty()) {
  Branch (2989:9): [True: 0, False: 0]
2990
0
        std::optional<OutputType> parsed = ParseOutputType(args.GetArg("-addresstype", ""));
2991
0
        if (!parsed) {
  Branch (2991:13): [True: 0, False: 0]
2992
0
            error = strprintf(_("Unknown address type '%s'"), args.GetArg("-addresstype", ""));
2993
0
            return false;
2994
0
        }
2995
0
        wallet->m_default_address_type = parsed.value();
2996
0
    }
2997
2998
0
    if (!args.GetArg("-changetype", "").empty()) {
  Branch (2998:9): [True: 0, False: 0]
2999
0
        std::optional<OutputType> parsed = ParseOutputType(args.GetArg("-changetype", ""));
3000
0
        if (!parsed) {
  Branch (3000:13): [True: 0, False: 0]
3001
0
            error = strprintf(_("Unknown change type '%s'"), args.GetArg("-changetype", ""));
3002
0
            return false;
3003
0
        }
3004
0
        wallet->m_default_change_type = parsed.value();
3005
0
    }
3006
3007
0
    if (const auto arg{args.GetArg("-mintxfee")}) {
  Branch (3007:20): [True: 0, False: 0]
3008
0
        std::optional<CAmount> min_tx_fee = ParseMoney(*arg);
3009
0
        if (!min_tx_fee) {
  Branch (3009:13): [True: 0, False: 0]
3010
0
            error = AmountErrMsg("mintxfee", *arg);
3011
0
            return false;
3012
0
        } else if (min_tx_fee.value() > HIGH_TX_FEE_PER_KB) {
  Branch (3012:20): [True: 0, False: 0]
3013
0
            warnings.push_back(AmountHighWarn("-mintxfee") + Untranslated(" ") +
3014
0
                               _("This is the minimum transaction fee you pay on every transaction."));
3015
0
        }
3016
3017
0
        wallet->m_min_fee = CFeeRate{min_tx_fee.value()};
3018
0
    }
3019
3020
0
    if (const auto arg{args.GetArg("-maxapsfee")}) {
  Branch (3020:20): [True: 0, False: 0]
3021
0
        const std::string& max_aps_fee{*arg};
3022
0
        if (max_aps_fee == "-1") {
  Branch (3022:13): [True: 0, False: 0]
3023
0
            wallet->m_max_aps_fee = -1;
3024
0
        } else if (std::optional<CAmount> max_fee = ParseMoney(max_aps_fee)) {
  Branch (3024:43): [True: 0, False: 0]
3025
0
            if (max_fee.value() > HIGH_APS_FEE) {
  Branch (3025:17): [True: 0, False: 0]
3026
0
                warnings.push_back(AmountHighWarn("-maxapsfee") + Untranslated(" ") +
3027
0
                                  _("This is the maximum transaction fee you pay (in addition to the normal fee) to prioritize partial spend avoidance over regular coin selection."));
3028
0
            }
3029
0
            wallet->m_max_aps_fee = max_fee.value();
3030
0
        } else {
3031
0
            error = AmountErrMsg("maxapsfee", max_aps_fee);
3032
0
            return false;
3033
0
        }
3034
0
    }
3035
3036
0
    if (const auto arg{args.GetArg("-fallbackfee")}) {
  Branch (3036:20): [True: 0, False: 0]
3037
0
        std::optional<CAmount> fallback_fee = ParseMoney(*arg);
3038
0
        if (!fallback_fee) {
  Branch (3038:13): [True: 0, False: 0]
3039
0
            error = strprintf(_("Invalid amount for %s=<amount>: '%s'"), "-fallbackfee", *arg);
3040
0
            return false;
3041
0
        } else if (fallback_fee.value() > HIGH_TX_FEE_PER_KB) {
  Branch (3041:20): [True: 0, False: 0]
3042
0
            warnings.push_back(AmountHighWarn("-fallbackfee") + Untranslated(" ") +
3043
0
                               _("This is the transaction fee you may pay when fee estimates are not available."));
3044
0
        }
3045
0
        wallet->m_fallback_fee = CFeeRate{fallback_fee.value()};
3046
0
    }
3047
3048
    // Disable fallback fee in case value was set to 0, enable if non-null value
3049
0
    wallet->m_allow_fallback_fee = wallet->m_fallback_fee.GetFeePerK() != 0;
3050
3051
0
    if (const auto arg{args.GetArg("-discardfee")}) {
  Branch (3051:20): [True: 0, False: 0]
3052
0
        std::optional<CAmount> discard_fee = ParseMoney(*arg);
3053
0
        if (!discard_fee) {
  Branch (3053:13): [True: 0, False: 0]
3054
0
            error = strprintf(_("Invalid amount for %s=<amount>: '%s'"), "-discardfee", *arg);
3055
0
            return false;
3056
0
        } else if (discard_fee.value() > HIGH_TX_FEE_PER_KB) {
  Branch (3056:20): [True: 0, False: 0]
3057
0
            warnings.push_back(AmountHighWarn("-discardfee") + Untranslated(" ") +
3058
0
                               _("This is the transaction fee you may discard if change is smaller than dust at this level"));
3059
0
        }
3060
0
        wallet->m_discard_rate = CFeeRate{discard_fee.value()};
3061
0
    }
3062
3063
0
    if (const auto arg{args.GetArg("-maxtxfee")}) {
  Branch (3063:20): [True: 0, False: 0]
3064
0
        std::optional<CAmount> max_fee = ParseMoney(*arg);
3065
0
        if (!max_fee) {
  Branch (3065:13): [True: 0, False: 0]
3066
0
            error = AmountErrMsg("maxtxfee", *arg);
3067
0
            return false;
3068
0
        } else if (max_fee.value() > HIGH_MAX_TX_FEE) {
  Branch (3068:20): [True: 0, False: 0]
3069
0
            warnings.push_back(strprintf(_("%s is set very high! Fees this large could be paid on a single transaction."), "-maxtxfee"));
3070
0
        }
3071
3072
0
        if (chain && CFeeRate{max_fee.value(), 1000} < chain->relayMinFee()) {
  Branch (3072:13): [True: 0, False: 0]
  Branch (3072:13): [True: 0, False: 0]
  Branch (3072:22): [True: 0, False: 0]
3073
0
            error = strprintf(_("Invalid amount for %s=<amount>: '%s' (must be at least the minrelay fee of %s to prevent stuck transactions)"),
3074
0
                "-maxtxfee", *arg, chain->relayMinFee().ToString());
3075
0
            return false;
3076
0
        }
3077
3078
0
        wallet->m_default_max_tx_fee = max_fee.value();
3079
0
    }
3080
3081
0
    if (const auto arg{args.GetArg("-consolidatefeerate")}) {
  Branch (3081:20): [True: 0, False: 0]
3082
0
        if (std::optional<CAmount> consolidate_feerate = ParseMoney(*arg)) {
  Branch (3082:36): [True: 0, False: 0]
3083
0
            wallet->m_consolidate_feerate = CFeeRate(*consolidate_feerate);
3084
0
        } else {
3085
0
            error = AmountErrMsg("consolidatefeerate", *arg);
3086
0
            return false;
3087
0
        }
3088
0
    }
3089
3090
0
    if (chain && chain->relayMinFee().GetFeePerK() > HIGH_TX_FEE_PER_KB) {
  Branch (3090:9): [True: 0, False: 0]
  Branch (3090:9): [True: 0, False: 0]
  Branch (3090:18): [True: 0, False: 0]
3091
0
        warnings.push_back(AmountHighWarn("-minrelaytxfee") + Untranslated(" ") +
3092
0
                           _("The wallet will avoid paying less than the minimum relay fee."));
3093
0
    }
3094
3095
0
    wallet->m_confirm_target = args.GetIntArg("-txconfirmtarget", DEFAULT_TX_CONFIRM_TARGET);
3096
0
    wallet->m_spend_zero_conf_change = args.GetBoolArg("-spendzeroconfchange", DEFAULT_SPEND_ZEROCONF_CHANGE);
3097
0
    wallet->m_signal_rbf = DEFAULT_WALLET_RBF;
3098
0
    if (auto value{args.GetBoolArg("-walletrbf")}) {
  Branch (3098:14): [True: 0, False: 0]
3099
0
        warnings.push_back(_("-walletrbf is deprecated and will be fully removed in the next release."));
3100
0
        wallet->m_signal_rbf = *value;
3101
0
    }
3102
3103
0
    wallet->m_keypool_size = std::max(args.GetIntArg("-keypool", DEFAULT_KEYPOOL_SIZE), int64_t{1});
3104
0
    wallet->m_notify_tx_changed_script = args.GetArg("-walletnotify", "");
3105
0
    wallet->SetBroadcastTransactions(args.GetBoolArg("-walletbroadcast", DEFAULT_WALLETBROADCAST));
3106
3107
0
    return true;
3108
0
}
3109
3110
std::shared_ptr<CWallet> CWallet::CreateNew(WalletContext& context, const std::string& name, std::unique_ptr<WalletDatabase> database, uint64_t wallet_creation_flags, bool born_encrypted, bilingual_str& error, std::vector<bilingual_str>& warnings)
3111
0
{
3112
0
    interfaces::Chain* chain = context.chain;
3113
0
    const std::string& walletFile = database->Filename();
3114
3115
0
    const auto start{SteadyClock::now()};
3116
    // TODO: Can't use std::make_shared because we need a custom deleter but
3117
    // should be possible to use std::allocate_shared.
3118
0
    std::shared_ptr<CWallet> walletInstance(new CWallet(chain, name, std::move(database)), FlushAndDeleteWallet);
3119
3120
0
    if (!LoadWalletArgs(walletInstance, context, error, warnings)) {
  Branch (3120:9): [True: 0, False: 0]
3121
0
        return nullptr;
3122
0
    }
3123
3124
    // Initialize version key.
3125
0
    if(!WalletBatch(walletInstance->GetDatabase()).WriteVersion(CLIENT_VERSION)) {
  Branch (3125:8): [True: 0, False: 0]
3126
0
        error = strprintf(_("Error creating %s: Could not write version metadata."), walletFile);
3127
0
        return nullptr;
3128
0
    }
3129
0
    {
3130
0
        LOCK(walletInstance->cs_wallet);
3131
3132
        // Init with passed flags.
3133
        // Always set the cache upgrade flag as this feature is supported from the beginning.
3134
0
        walletInstance->InitWalletFlags(wallet_creation_flags | WALLET_FLAG_LAST_HARDENED_XPUB_CACHED);
3135
3136
        // Only descriptor wallets can be created
3137
0
        assert(walletInstance->IsWalletFlagSet(WALLET_FLAG_DESCRIPTORS));
  Branch (3137:9): [True: 0, False: 0]
3138
3139
        // Born encrypted wallets will have their keys generated later
3140
0
        if (!born_encrypted) {
  Branch (3140:13): [True: 0, False: 0]
3141
0
            walletInstance->SetupWalletGeneration();
3142
0
        }
3143
3144
0
        if (chain) {
  Branch (3144:13): [True: 0, False: 0]
3145
0
            std::optional<int> tip_height = chain->getHeight();
3146
0
            if (tip_height) {
  Branch (3146:17): [True: 0, False: 0]
3147
0
                walletInstance->SetLastBlockProcessed(*tip_height, chain->getBlockHash(*tip_height));
3148
0
            }
3149
0
        }
3150
0
    }
3151
3152
0
    walletInstance->WalletLogPrintf("Wallet completed creation in %15dms\n", Ticks<std::chrono::milliseconds>(SteadyClock::now() - start));
3153
3154
    // Try to top up keypool. No-op if the wallet is locked.
3155
0
    walletInstance->TopUpKeyPool();
3156
3157
0
    if (chain && !AttachChain(walletInstance, *chain, /*rescan_required=*/false, error, warnings)) {
  Branch (3157:9): [True: 0, False: 0]
  Branch (3157:18): [True: 0, False: 0]
3158
0
        walletInstance->DisconnectChainNotifications();
3159
0
        return nullptr;
3160
0
    }
3161
3162
0
    return walletInstance;
3163
0
}
3164
3165
std::shared_ptr<CWallet> CWallet::LoadExisting(WalletContext& context, const std::string& name, std::unique_ptr<WalletDatabase> database, bilingual_str& error, std::vector<bilingual_str>& warnings)
3166
0
{
3167
0
    interfaces::Chain* chain = context.chain;
3168
0
    const std::string& walletFile = database->Filename();
3169
3170
0
    const auto start{SteadyClock::now()};
3171
0
    std::shared_ptr<CWallet> walletInstance(new CWallet(chain, name, std::move(database)), FlushAndDeleteWallet);
3172
3173
0
    if (!LoadWalletArgs(walletInstance, context, error, warnings)) {
  Branch (3173:9): [True: 0, False: 0]
3174
0
        return nullptr;
3175
0
    }
3176
3177
    // Load wallet
3178
0
    auto nLoadWalletRet = walletInstance->PopulateWalletFromDB(error, warnings);
3179
0
    bool rescan_required = nLoadWalletRet == DBErrors::NEED_RESCAN;
3180
0
    if (nLoadWalletRet != DBErrors::LOAD_OK && nLoadWalletRet != DBErrors::NONCRITICAL_ERROR && !rescan_required) {
  Branch (3180:9): [True: 0, False: 0]
  Branch (3180:48): [True: 0, False: 0]
  Branch (3180:97): [True: 0, False: 0]
3181
0
        return nullptr;
3182
0
    }
3183
3184
0
    if (walletInstance->IsWalletFlagSet(WALLET_FLAG_DISABLE_PRIVATE_KEYS)) {
  Branch (3184:9): [True: 0, False: 0]
3185
0
        for (auto spk_man : walletInstance->GetActiveScriptPubKeyMans()) {
  Branch (3185:27): [True: 0, False: 0]
3186
0
            if (spk_man->HavePrivateKeys()) {
  Branch (3186:17): [True: 0, False: 0]
3187
0
                warnings.push_back(strprintf(_("Warning: Private keys detected in wallet {%s} with disabled private keys"), walletFile));
3188
0
                break;
3189
0
            }
3190
0
        }
3191
0
    }
3192
3193
0
    walletInstance->WalletLogPrintf("Wallet completed loading in %15dms\n", Ticks<std::chrono::milliseconds>(SteadyClock::now() - start));
3194
3195
    // Try to top up keypool. No-op if the wallet is locked.
3196
0
    walletInstance->TopUpKeyPool();
3197
3198
0
    if (chain && !AttachChain(walletInstance, *chain, rescan_required, error, warnings)) {
  Branch (3198:9): [True: 0, False: 0]
  Branch (3198:18): [True: 0, False: 0]
3199
0
        walletInstance->DisconnectChainNotifications();
3200
0
        return nullptr;
3201
0
    }
3202
3203
0
    WITH_LOCK(walletInstance->cs_wallet, walletInstance->LogStats());
3204
3205
0
    return walletInstance;
3206
0
}
3207
3208
3209
bool CWallet::AttachChain(const std::shared_ptr<CWallet>& walletInstance, interfaces::Chain& chain, const bool rescan_required, bilingual_str& error, std::vector<bilingual_str>& warnings)
3210
0
{
3211
0
    LOCK(walletInstance->cs_wallet);
3212
    // allow setting the chain if it hasn't been set already but prevent changing it
3213
0
    assert(!walletInstance->m_chain || walletInstance->m_chain == &chain);
  Branch (3213:5): [True: 0, False: 0]
  Branch (3213:5): [True: 0, False: 0]
  Branch (3213:5): [True: 0, False: 0]
3214
0
    walletInstance->m_chain = &chain;
3215
3216
    // Unless allowed, ensure wallet files are not reused across chains:
3217
0
    if (!gArgs.GetBoolArg("-walletcrosschain", DEFAULT_WALLETCROSSCHAIN)) {
  Branch (3217:9): [True: 0, False: 0]
3218
0
        WalletBatch batch(walletInstance->GetDatabase());
3219
0
        CBlockLocator locator;
3220
0
        if (batch.ReadBestBlock(locator) && locator.vHave.size() > 0 && chain.getHeight()) {
  Branch (3220:13): [True: 0, False: 0]
  Branch (3220:13): [True: 0, False: 0]
  Branch (3220:45): [True: 0, False: 0]
  Branch (3220:73): [True: 0, False: 0]
3221
            // Wallet is assumed to be from another chain, if genesis block in the active
3222
            // chain differs from the genesis block known to the wallet.
3223
0
            if (chain.getBlockHash(0) != locator.vHave.back()) {
  Branch (3223:17): [True: 0, False: 0]
3224
0
                error = Untranslated("Wallet files should not be reused across chains. Restart bitcoind with -walletcrosschain to override.");
3225
0
                return false;
3226
0
            }
3227
0
        }
3228
0
    }
3229
3230
    // Register wallet with validationinterface. It's done before rescan to avoid
3231
    // missing block connections during the rescan.
3232
    // Because of the wallet lock being held, block connection notifications are going to
3233
    // be pending on the validation-side until lock release. Blocks that are connected while the
3234
    // rescan is ongoing will not be processed in the rescan but with the block connected notifications,
3235
    // so the wallet will only be completeley synced after the notifications delivery.
3236
0
    walletInstance->m_chain_notifications_handler = walletInstance->chain().handleNotifications(walletInstance);
3237
3238
    // If rescan_required = true, rescan_height remains equal to 0
3239
0
    int rescan_height = 0;
3240
0
    if (!rescan_required)
  Branch (3240:9): [True: 0, False: 0]
3241
0
    {
3242
0
        WalletBatch batch(walletInstance->GetDatabase());
3243
0
        CBlockLocator locator;
3244
0
        if (batch.ReadBestBlock(locator)) {
  Branch (3244:13): [True: 0, False: 0]
3245
0
            if (const std::optional<int> fork_height = chain.findLocatorFork(locator)) {
  Branch (3245:42): [True: 0, False: 0]
3246
0
                rescan_height = *fork_height;
3247
0
            }
3248
0
        }
3249
0
    }
3250
3251
0
    const std::optional<int> tip_height = chain.getHeight();
3252
0
    if (tip_height) {
  Branch (3252:9): [True: 0, False: 0]
3253
0
        walletInstance->SetLastBlockProcessedInMem(*tip_height, chain.getBlockHash(*tip_height));
3254
0
    } else {
3255
0
        walletInstance->SetLastBlockProcessedInMem(-1, uint256());
3256
0
    }
3257
3258
0
    if (tip_height && *tip_height != rescan_height)
  Branch (3258:9): [True: 0, False: 0]
  Branch (3258:23): [True: 0, False: 0]
3259
0
    {
3260
        // No need to read and scan block if block was created before
3261
        // our wallet birthday (as adjusted for block time variability)
3262
0
        std::optional<int64_t> time_first_key = walletInstance->m_birth_time.load();
3263
0
        if (time_first_key) {
  Branch (3263:13): [True: 0, False: 0]
3264
0
            FoundBlock found = FoundBlock().height(rescan_height);
3265
0
            chain.findFirstBlockWithTimeAndHeight(*time_first_key - TIMESTAMP_WINDOW, rescan_height, found);
3266
0
            if (!found.found) {
  Branch (3266:17): [True: 0, False: 0]
3267
                // We were unable to find a block that had a time more recent than our earliest timestamp
3268
                // or a height higher than the wallet was synced to, indicating that the wallet is newer than the
3269
                // current chain tip. Skip rescanning in this case.
3270
0
                rescan_height = *tip_height;
3271
0
            }
3272
0
        }
3273
3274
        // Technically we could execute the code below in any case, but performing the
3275
        // `while` loop below can make startup very slow, so only check blocks on disk
3276
        // if necessary.
3277
0
        if (chain.havePruned() || chain.hasAssumedValidChain()) {
  Branch (3277:13): [True: 0, False: 0]
  Branch (3277:35): [True: 0, False: 0]
3278
0
            int block_height = *tip_height;
3279
0
            while (block_height > 0 && chain.haveBlockOnDisk(block_height - 1) && rescan_height != block_height) {
  Branch (3279:20): [True: 0, False: 0]
  Branch (3279:40): [True: 0, False: 0]
  Branch (3279:83): [True: 0, False: 0]
3280
0
                --block_height;
3281
0
            }
3282
3283
0
            if (rescan_height != block_height) {
  Branch (3283:17): [True: 0, False: 0]
3284
                // We can't rescan beyond blocks we don't have data for, stop and throw an error.
3285
                // This might happen if a user uses an old wallet within a pruned node
3286
                // or if they ran -disablewallet for a longer time, then decided to re-enable
3287
                // Exit early and print an error.
3288
                // It also may happen if an assumed-valid chain is in use and therefore not
3289
                // all block data is available.
3290
                // If a block is pruned after this check, we will load the wallet,
3291
                // but fail the rescan with a generic error.
3292
3293
0
                error = chain.havePruned() ?
  Branch (3293:25): [True: 0, False: 0]
3294
0
                     _("Prune: last wallet synchronisation goes beyond pruned data. You need to -reindex (download the whole blockchain again in case of a pruned node)") :
3295
0
                     strprintf(_(
3296
0
                        "Error loading wallet. Wallet requires blocks to be downloaded, "
3297
0
                        "and software does not currently support loading wallets while "
3298
0
                        "blocks are being downloaded out of order when using assumeutxo "
3299
0
                        "snapshots. Wallet should be able to load successfully after "
3300
0
                        "node sync reaches height %s"), block_height);
3301
0
                return false;
3302
0
            }
3303
0
        }
3304
3305
0
        chain.initMessage(_("Rescanning…"));
3306
0
        walletInstance->WalletLogPrintf("Rescanning last %i blocks (from block %i)...\n", *tip_height - rescan_height, rescan_height);
3307
3308
0
        {
3309
0
            WalletRescanReserver reserver(*walletInstance);
3310
0
            if (!reserver.reserve()) {
  Branch (3310:17): [True: 0, False: 0]
3311
0
                error = _("Failed to acquire rescan reserver during wallet initialization");
3312
0
                return false;
3313
0
            }
3314
0
            ScanResult scan_res = walletInstance->ScanForWalletTransactions(chain.getBlockHash(rescan_height), rescan_height, /*max_height=*/{}, reserver, /*save_progress=*/true);
3315
0
            if (ScanResult::SUCCESS != scan_res.status) {
  Branch (3315:17): [True: 0, False: 0]
3316
0
                error = _("Failed to rescan the wallet during initialization");
3317
0
                return false;
3318
0
            }
3319
            // Set and update the best block record
3320
            // Set last block scanned as the last block processed as it may be different in case of a reorg.
3321
            // Also save the best block locator because rescanning only updates it intermittently.
3322
0
            walletInstance->SetLastBlockProcessed(*scan_res.last_scanned_height, scan_res.last_scanned_block);
3323
0
        }
3324
0
    }
3325
3326
0
    return true;
3327
0
}
3328
3329
const CAddressBookData* CWallet::FindAddressBookEntry(const CTxDestination& dest, bool allow_change) const
3330
0
{
3331
0
    const auto& address_book_it = m_address_book.find(dest);
3332
0
    if (address_book_it == m_address_book.end()) return nullptr;
  Branch (3332:9): [True: 0, False: 0]
3333
0
    if ((!allow_change) && address_book_it->second.IsChange()) {
  Branch (3333:9): [True: 0, False: 0]
  Branch (3333:28): [True: 0, False: 0]
3334
0
        return nullptr;
3335
0
    }
3336
0
    return &address_book_it->second;
3337
0
}
3338
3339
void CWallet::postInitProcess()
3340
0
{
3341
    // Add wallet transactions that aren't already in a block to mempool
3342
    // Do this here as mempool requires genesis block to be loaded
3343
0
    ResubmitWalletTransactions(node::TxBroadcast::MEMPOOL_NO_BROADCAST, /*force=*/true);
3344
3345
    // Update wallet transactions with current mempool transactions.
3346
0
    WITH_LOCK(cs_wallet, chain().requestMempoolTransactions(*this));
3347
0
}
3348
3349
bool CWallet::BackupWallet(const std::string& strDest) const
3350
0
{
3351
0
    WITH_LOCK(cs_wallet, WriteBestBlock());
3352
0
    return GetDatabase().Backup(strDest);
3353
0
}
3354
3355
int CWallet::GetTxDepthInMainChain(const CWalletTx& wtx) const
3356
128k
{
3357
128k
    AssertLockHeld(cs_wallet);
3358
128k
    if (auto* conf = wtx.state<TxStateConfirmed>()) {
  Branch (3358:15): [True: 128k, False: 0]
3359
128k
        assert(conf->confirmed_block_height >= 0);
  Branch (3359:9): [True: 128k, False: 0]
3360
128k
        return GetLastBlockHeight() - conf->confirmed_block_height + 1;
3361
128k
    } else if (auto* conf = wtx.state<TxStateBlockConflicted>()) {
  Branch (3361:22): [True: 0, False: 0]
3362
0
        assert(conf->conflicting_block_height >= 0);
  Branch (3362:9): [True: 0, False: 0]
3363
0
        return -1 * (GetLastBlockHeight() - conf->conflicting_block_height + 1);
3364
0
    } else {
3365
0
        return 0;
3366
0
    }
3367
128k
}
3368
3369
int CWallet::GetTxBlocksToMaturity(const CWalletTx& wtx) const
3370
128k
{
3371
128k
    AssertLockHeld(cs_wallet);
3372
3373
128k
    if (!wtx.IsCoinBase()) {
  Branch (3373:9): [True: 128k, False: 0]
3374
128k
        return 0;
3375
128k
    }
3376
0
    int chain_depth = GetTxDepthInMainChain(wtx);
3377
0
    assert(chain_depth >= 0); // coinbase tx should not be conflicted
  Branch (3377:5): [True: 0, False: 0]
3378
0
    return std::max(0, (COINBASE_MATURITY+1) - chain_depth);
3379
0
}
3380
3381
bool CWallet::IsTxImmatureCoinBase(const CWalletTx& wtx) const
3382
128k
{
3383
128k
    AssertLockHeld(cs_wallet);
3384
3385
    // note GetBlocksToMaturity is 0 for non-coinbase tx
3386
128k
    return GetTxBlocksToMaturity(wtx) > 0;
3387
128k
}
3388
3389
bool CWallet::IsLocked() const
3390
1.21k
{
3391
1.21k
    if (!HasEncryptionKeys()) {
  Branch (3391:9): [True: 1.21k, False: 0]
3392
1.21k
        return false;
3393
1.21k
    }
3394
0
    LOCK(cs_wallet);
3395
0
    return vMasterKey.empty();
3396
1.21k
}
3397
3398
bool CWallet::Lock()
3399
0
{
3400
0
    if (!HasEncryptionKeys())
  Branch (3400:9): [True: 0, False: 0]
3401
0
        return false;
3402
3403
0
    {
3404
0
        LOCK2(m_relock_mutex, cs_wallet);
3405
0
        if (!vMasterKey.empty()) {
  Branch (3405:13): [True: 0, False: 0]
3406
0
            memory_cleanse(vMasterKey.data(), vMasterKey.size() * sizeof(decltype(vMasterKey)::value_type));
3407
0
            vMasterKey.clear();
3408
0
        }
3409
0
    }
3410
3411
0
    NotifyStatusChanged(this);
3412
0
    return true;
3413
0
}
3414
3415
bool CWallet::Unlock(const CKeyingMaterial& vMasterKeyIn)
3416
0
{
3417
0
    {
3418
0
        LOCK(cs_wallet);
3419
0
        for (const auto& spk_man_pair : m_spk_managers) {
  Branch (3419:39): [True: 0, False: 0]
3420
0
            if (!spk_man_pair.second->CheckDecryptionKey(vMasterKeyIn)) {
  Branch (3420:17): [True: 0, False: 0]
3421
0
                return false;
3422
0
            }
3423
0
        }
3424
0
        vMasterKey = vMasterKeyIn;
3425
0
    }
3426
0
    NotifyStatusChanged(this);
3427
0
    return true;
3428
0
}
3429
3430
std::set<ScriptPubKeyMan*> CWallet::GetActiveScriptPubKeyMans() const
3431
0
{
3432
0
    std::set<ScriptPubKeyMan*> spk_mans;
3433
0
    for (bool internal : {false, true}) {
  Branch (3433:24): [True: 0, False: 0]
3434
0
        for (OutputType t : OUTPUT_TYPES) {
  Branch (3434:27): [True: 0, False: 0]
3435
0
            auto spk_man = GetScriptPubKeyMan(t, internal);
3436
0
            if (spk_man) {
  Branch (3436:17): [True: 0, False: 0]
3437
0
                spk_mans.insert(spk_man);
3438
0
            }
3439
0
        }
3440
0
    }
3441
0
    return spk_mans;
3442
0
}
3443
3444
bool CWallet::IsActiveScriptPubKeyMan(const ScriptPubKeyMan& spkm) const
3445
0
{
3446
0
    for (const auto& [_, ext_spkm] : m_external_spk_managers) {
  Branch (3446:36): [True: 0, False: 0]
3447
0
        if (ext_spkm == &spkm) return true;
  Branch (3447:13): [True: 0, False: 0]
3448
0
    }
3449
0
    for (const auto& [_, int_spkm] : m_internal_spk_managers) {
  Branch (3449:36): [True: 0, False: 0]
3450
0
        if (int_spkm == &spkm) return true;
  Branch (3450:13): [True: 0, False: 0]
3451
0
    }
3452
0
    return false;
3453
0
}
3454
3455
std::set<ScriptPubKeyMan*> CWallet::GetAllScriptPubKeyMans() const
3456
1.03k
{
3457
1.03k
    std::set<ScriptPubKeyMan*> spk_mans;
3458
8.25k
    for (const auto& spk_man_pair : m_spk_managers) {
  Branch (3458:35): [True: 8.25k, False: 1.03k]
3459
8.25k
        spk_mans.insert(spk_man_pair.second.get());
3460
8.25k
    }
3461
1.03k
    return spk_mans;
3462
1.03k
}
3463
3464
ScriptPubKeyMan* CWallet::GetScriptPubKeyMan(const OutputType& type, bool internal) const
3465
212k
{
3466
212k
    const std::map<OutputType, ScriptPubKeyMan*>& spk_managers = internal ? m_internal_spk_managers : m_external_spk_managers;
  Branch (3466:66): [True: 49.0k, False: 163k]
3467
212k
    std::map<OutputType, ScriptPubKeyMan*>::const_iterator it = spk_managers.find(type);
3468
212k
    if (it == spk_managers.end()) {
  Branch (3468:9): [True: 0, False: 212k]
3469
0
        return nullptr;
3470
0
    }
3471
212k
    return it->second;
3472
212k
}
3473
3474
std::set<ScriptPubKeyMan*> CWallet::GetScriptPubKeyMans(const CScript& script) const
3475
38.1k
{
3476
38.1k
    std::set<ScriptPubKeyMan*> spk_mans;
3477
3478
    // Search the cache for relevant SPKMs instead of iterating m_spk_managers
3479
38.1k
    const auto& it = m_cached_spks.find(script);
3480
38.1k
    if (it != m_cached_spks.end()) {
  Branch (3480:9): [True: 38.1k, False: 0]
3481
38.1k
        spk_mans.insert(it->second.begin(), it->second.end());
3482
38.1k
    }
3483
38.1k
    SignatureData sigdata;
3484
38.1k
    Assume(std::all_of(spk_mans.begin(), spk_mans.end(), [&script, &sigdata](ScriptPubKeyMan* spkm) { return spkm->CanProvide(script, sigdata); }));
3485
3486
38.1k
    return spk_mans;
3487
38.1k
}
3488
3489
ScriptPubKeyMan* CWallet::GetScriptPubKeyMan(const uint256& id) const
3490
0
{
3491
0
    if (m_spk_managers.contains(id)) {
  Branch (3491:9): [True: 0, False: 0]
3492
0
        return m_spk_managers.at(id).get();
3493
0
    }
3494
0
    return nullptr;
3495
0
}
3496
3497
std::unique_ptr<SigningProvider> CWallet::GetSolvingProvider(const CScript& script) const
3498
108k
{
3499
108k
    SignatureData sigdata;
3500
108k
    return GetSolvingProvider(script, sigdata);
3501
108k
}
3502
3503
std::unique_ptr<SigningProvider> CWallet::GetSolvingProvider(const CScript& script, SignatureData& sigdata) const
3504
108k
{
3505
    // Search the cache for relevant SPKMs instead of iterating m_spk_managers
3506
108k
    const auto& it = m_cached_spks.find(script);
3507
108k
    if (it != m_cached_spks.end()) {
  Branch (3507:9): [True: 108k, False: 277]
3508
        // All spkms for a given script must already be able to make a SigningProvider for the script, so just return the first one.
3509
108k
        Assume(it->second.at(0)->CanProvide(script, sigdata));
3510
108k
        return it->second.at(0)->GetSolvingProvider(script);
3511
108k
    }
3512
3513
277
    return nullptr;
3514
108k
}
3515
3516
std::vector<WalletDescriptor> CWallet::GetWalletDescriptors(const CScript& script) const
3517
0
{
3518
0
    std::vector<WalletDescriptor> descs;
3519
0
    for (const auto spk_man: GetScriptPubKeyMans(script)) {
  Branch (3519:28): [True: 0, False: 0]
3520
0
        if (const auto desc_spk_man = dynamic_cast<DescriptorScriptPubKeyMan*>(spk_man)) {
  Branch (3520:24): [True: 0, False: 0]
3521
0
            LOCK(desc_spk_man->cs_desc_man);
3522
0
            descs.push_back(desc_spk_man->GetWalletDescriptor());
3523
0
        }
3524
0
    }
3525
0
    return descs;
3526
0
}
3527
3528
LegacyDataSPKM* CWallet::GetLegacyDataSPKM() const
3529
1.32k
{
3530
1.32k
    if (IsWalletFlagSet(WALLET_FLAG_DESCRIPTORS)) {
  Branch (3530:9): [True: 0, False: 1.32k]
3531
0
        return nullptr;
3532
0
    }
3533
1.32k
    auto it = m_internal_spk_managers.find(OutputType::LEGACY);
3534
1.32k
    if (it == m_internal_spk_managers.end()) return nullptr;
  Branch (3534:9): [True: 0, False: 1.32k]
3535
1.32k
    return dynamic_cast<LegacyDataSPKM*>(it->second);
3536
1.32k
}
3537
3538
void CWallet::AddScriptPubKeyMan(const uint256& id, std::unique_ptr<ScriptPubKeyMan> spkm_man)
3539
18.2k
{
3540
    // Add spkm_man to m_spk_managers before calling any method
3541
    // that might access it.
3542
18.2k
    const auto& spkm = m_spk_managers[id] = std::move(spkm_man);
3543
3544
    // Update birth time if needed
3545
18.2k
    MaybeUpdateBirthTime(spkm->GetTimeFirstKey());
3546
18.2k
}
3547
3548
LegacyDataSPKM* CWallet::GetOrCreateLegacyDataSPKM()
3549
1.32k
{
3550
1.32k
    SetupLegacyDataSPKM();
3551
1.32k
    return GetLegacyDataSPKM();
3552
1.32k
}
3553
3554
void CWallet::SetupLegacyDataSPKM()
3555
1.32k
{
3556
1.32k
    if (!m_internal_spk_managers.empty() || !m_external_spk_managers.empty() || !m_spk_managers.empty() || IsWalletFlagSet(WALLET_FLAG_DESCRIPTORS)) {
  Branch (3556:9): [True: 0, False: 1.32k]
  Branch (3556:45): [True: 0, False: 1.32k]
  Branch (3556:81): [True: 0, False: 1.32k]
  Branch (3556:108): [True: 0, False: 1.32k]
3557
0
        return;
3558
0
    }
3559
3560
1.32k
    Assert(m_database->Format() == "bdb_ro" || m_database->Format() == "sqlite-mock");
3561
1.32k
    std::unique_ptr<ScriptPubKeyMan> spk_manager = std::make_unique<LegacyDataSPKM>(*this);
3562
3563
3.98k
    for (const auto& type : LEGACY_OUTPUT_TYPES) {
  Branch (3563:27): [True: 3.98k, False: 1.32k]
3564
3.98k
        m_internal_spk_managers[type] = spk_manager.get();
3565
3.98k
        m_external_spk_managers[type] = spk_manager.get();
3566
3.98k
    }
3567
1.32k
    uint256 id = spk_manager->GetID();
3568
1.32k
    AddScriptPubKeyMan(id, std::move(spk_manager));
3569
1.32k
}
3570
3571
bool CWallet::WithEncryptionKey(std::function<bool (const CKeyingMaterial&)> cb) const
3572
0
{
3573
0
    LOCK(cs_wallet);
3574
0
    return cb(vMasterKey);
3575
0
}
3576
3577
bool CWallet::HasEncryptionKeys() const
3578
609k
{
3579
609k
    return !mapMasterKeys.empty();
3580
609k
}
3581
3582
bool CWallet::HaveCryptedKeys() const
3583
0
{
3584
0
    for (const auto& spkm : GetAllScriptPubKeyMans()) {
  Branch (3584:27): [True: 0, False: 0]
3585
0
        if (spkm->HaveCryptedKeys()) return true;
  Branch (3585:13): [True: 0, False: 0]
3586
0
    }
3587
0
    return false;
3588
0
}
3589
3590
void CWallet::ConnectScriptPubKeyManNotifiers()
3591
0
{
3592
0
    for (const auto& spk_man : GetActiveScriptPubKeyMans()) {
  Branch (3592:30): [True: 0, False: 0]
3593
0
        spk_man->NotifyCanGetAddressesChanged.connect([this] {
3594
0
            NotifyCanGetAddressesChanged();
3595
0
        });
3596
0
        spk_man->NotifyFirstKeyTimeChanged.connect([this](const ScriptPubKeyMan*, int64_t time) {
3597
0
            MaybeUpdateBirthTime(time);
3598
0
        });
3599
0
    }
3600
0
}
3601
3602
void CWallet::LoadDescriptorScriptPubKeyMan(uint256 id, WalletDescriptor& desc, const KeyMap& keys, const CryptedKeyMap& ckeys)
3603
0
{
3604
0
    std::unique_ptr<DescriptorScriptPubKeyMan> spk_manager;
3605
0
    if (IsWalletFlagSet(WALLET_FLAG_EXTERNAL_SIGNER)) {
  Branch (3605:9): [True: 0, False: 0]
3606
0
        spk_manager = ExternalSignerScriptPubKeyMan::LoadFromStorage(*this, desc, m_keypool_size, keys, ckeys);
3607
0
    } else {
3608
0
        spk_manager = DescriptorScriptPubKeyMan::LoadFromStorage(*this, desc, m_keypool_size, keys, ckeys);
3609
0
    }
3610
0
    AddScriptPubKeyMan(id, std::move(spk_manager));
3611
0
}
3612
3613
DescriptorScriptPubKeyMan& CWallet::SetupDescriptorScriptPubKeyMan(WalletBatch& batch, const CExtKey& master_key, const OutputType& output_type, bool internal)
3614
0
{
3615
0
    AssertLockHeld(cs_wallet);
3616
0
    if (IsLocked()) {
  Branch (3616:9): [True: 0, False: 0]
3617
0
        throw std::runtime_error(std::string(__func__) + ": Wallet is locked, cannot setup new descriptors");
3618
0
    }
3619
0
    auto spk_manager = DescriptorScriptPubKeyMan::GenerateNewSingleSig(*this, batch, m_keypool_size, master_key, output_type, internal);
3620
0
    DescriptorScriptPubKeyMan* out = spk_manager.get();
3621
0
    uint256 id = spk_manager->GetID();
3622
0
    AddScriptPubKeyMan(id, std::move(spk_manager));
3623
0
    AddActiveScriptPubKeyManWithDb(batch, id, output_type, internal);
3624
0
    return *out;
3625
0
}
3626
3627
void CWallet::SetupDescriptorScriptPubKeyMans(WalletBatch& batch, const CExtKey& master_key)
3628
0
{
3629
0
    AssertLockHeld(cs_wallet);
3630
0
    for (bool internal : {false, true}) {
  Branch (3630:24): [True: 0, False: 0]
3631
0
        for (OutputType t : OUTPUT_TYPES) {
  Branch (3631:27): [True: 0, False: 0]
3632
0
            SetupDescriptorScriptPubKeyMan(batch, master_key, t, internal);
3633
0
        }
3634
0
    }
3635
0
}
3636
3637
void CWallet::SetupOwnDescriptorScriptPubKeyMans(WalletBatch& batch)
3638
0
{
3639
0
    AssertLockHeld(cs_wallet);
3640
0
    assert(!IsWalletFlagSet(WALLET_FLAG_EXTERNAL_SIGNER));
  Branch (3640:5): [True: 0, False: 0]
3641
    // Make a seed
3642
0
    CKey seed_key = GenerateRandomKey();
3643
0
    CPubKey seed = seed_key.GetPubKey();
3644
0
    assert(seed_key.VerifyPubKey(seed));
  Branch (3644:5): [True: 0, False: 0]
3645
3646
    // Get the extended key
3647
0
    CExtKey master_key;
3648
0
    master_key.SetSeed(seed_key);
3649
3650
0
    SetupDescriptorScriptPubKeyMans(batch, master_key);
3651
0
}
3652
3653
void CWallet::SetupDescriptorScriptPubKeyMans()
3654
0
{
3655
0
    AssertLockHeld(cs_wallet);
3656
3657
0
    if (!IsWalletFlagSet(WALLET_FLAG_EXTERNAL_SIGNER)) {
  Branch (3657:9): [True: 0, False: 0]
3658
0
        if (!RunWithinTxn(GetDatabase(), /*process_desc=*/"setup descriptors", [&](WalletBatch& batch) EXCLUSIVE_LOCKS_REQUIRED(cs_wallet){
  Branch (3658:13): [True: 0, False: 0]
3659
0
            SetupOwnDescriptorScriptPubKeyMans(batch);
3660
0
            return true;
3661
0
        })) throw std::runtime_error("Error: cannot process db transaction for descriptors setup");
3662
0
    } else {
3663
0
        auto signer = ExternalSignerScriptPubKeyMan::GetExternalSigner();
3664
0
        if (!signer) throw std::runtime_error(util::ErrorString(signer).original);
  Branch (3664:13): [True: 0, False: 0]
3665
3666
        // TODO: add account parameter
3667
0
        int account = 0;
3668
0
        UniValue signer_res = signer->GetDescriptors(account);
3669
3670
0
        if (!signer_res.isObject()) throw std::runtime_error(std::string(__func__) + ": Unexpected result");
  Branch (3670:13): [True: 0, False: 0]
3671
3672
0
        WalletBatch batch(GetDatabase());
3673
0
        if (!batch.TxnBegin()) throw std::runtime_error("Error: cannot create db transaction for descriptors import");
  Branch (3673:13): [True: 0, False: 0]
3674
3675
0
        for (bool internal : {false, true}) {
  Branch (3675:28): [True: 0, False: 0]
3676
0
            const UniValue& descriptor_vals = signer_res.find_value(internal ? "internal" : "receive");
  Branch (3676:69): [True: 0, False: 0]
3677
0
            if (!descriptor_vals.isArray()) throw std::runtime_error(std::string(__func__) + ": Unexpected result");
  Branch (3677:17): [True: 0, False: 0]
3678
0
            for (const UniValue& desc_val : descriptor_vals.get_array().getValues()) {
  Branch (3678:43): [True: 0, False: 0]
3679
0
                const std::string& desc_str = desc_val.getValStr();
3680
0
                FlatSigningProvider keys;
3681
0
                std::string desc_error;
3682
0
                auto descs = Parse(desc_str, keys, desc_error, false);
3683
0
                if (descs.empty()) {
  Branch (3683:21): [True: 0, False: 0]
3684
0
                    throw std::runtime_error(std::string(__func__) + ": Invalid descriptor \"" + desc_str + "\" (" + desc_error + ")");
3685
0
                }
3686
0
                auto& desc = descs.at(0);
3687
0
                if (!desc->GetOutputType()) {
  Branch (3687:21): [True: 0, False: 0]
3688
0
                    continue;
3689
0
                }
3690
0
                OutputType t =  *desc->GetOutputType();
3691
0
                auto spk_manager = ExternalSignerScriptPubKeyMan::CreateNew(*this, batch, m_keypool_size, std::move(desc));
3692
0
                uint256 id = spk_manager->GetID();
3693
0
                AddScriptPubKeyMan(id, std::move(spk_manager));
3694
0
                AddActiveScriptPubKeyManWithDb(batch, id, t, internal);
3695
0
            }
3696
0
        }
3697
3698
        // Ensure imported descriptors are committed to disk
3699
0
        if (!batch.TxnCommit()) throw std::runtime_error("Error: cannot commit db transaction for descriptors import");
  Branch (3699:13): [True: 0, False: 0]
3700
0
    }
3701
0
}
3702
3703
void CWallet::SetupWalletGeneration()
3704
0
{
3705
0
    AssertLockHeld(cs_wallet);
3706
    // Skip setup for non-external-signer wallets that are either blank
3707
    // or have private keys disabled (not having private keys implies blank).
3708
0
    if (!IsWalletFlagSet(WALLET_FLAG_EXTERNAL_SIGNER) &&
  Branch (3708:9): [True: 0, False: 0]
3709
0
        (IsWalletFlagSet(WALLET_FLAG_BLANK_WALLET) || IsWalletFlagSet(WALLET_FLAG_DISABLE_PRIVATE_KEYS))) {
  Branch (3709:10): [True: 0, False: 0]
  Branch (3709:55): [True: 0, False: 0]
3710
0
        return;
3711
0
    }
3712
0
    SetupDescriptorScriptPubKeyMans();
3713
0
}
3714
3715
void CWallet::AddActiveScriptPubKeyMan(uint256 id, OutputType type, bool internal)
3716
11.3k
{
3717
11.3k
    WalletBatch batch(GetDatabase());
3718
11.3k
    return AddActiveScriptPubKeyManWithDb(batch, id, type, internal);
3719
11.3k
}
3720
3721
void CWallet::AddActiveScriptPubKeyManWithDb(WalletBatch& batch, uint256 id, OutputType type, bool internal)
3722
11.3k
{
3723
11.3k
    if (!batch.WriteActiveScriptPubKeyMan(static_cast<uint8_t>(type), id, internal)) {
  Branch (3723:9): [True: 0, False: 11.3k]
3724
0
        throw std::runtime_error(std::string(__func__) + ": writing active ScriptPubKeyMan id failed");
3725
0
    }
3726
11.3k
    LoadActiveScriptPubKeyMan(id, type, internal);
3727
11.3k
}
3728
3729
void CWallet::LoadActiveScriptPubKeyMan(uint256 id, OutputType type, bool internal)
3730
11.3k
{
3731
    // Activating ScriptPubKeyManager for a given output and change type is incompatible with legacy wallets.
3732
    // Legacy wallets have only one ScriptPubKeyManager and it's active for all output and change types.
3733
11.3k
    Assert(IsWalletFlagSet(WALLET_FLAG_DESCRIPTORS));
3734
3735
11.3k
    WalletLogPrintf("Setting spkMan to active: id = %s, type = %s, internal = %s\n", id.ToString(), FormatOutputType(type), internal ? "true" : "false");
  Branch (3735:125): [True: 5.67k, False: 5.67k]
3736
11.3k
    auto& spk_mans = internal ? m_internal_spk_managers : m_external_spk_managers;
  Branch (3736:22): [True: 5.67k, False: 5.67k]
3737
11.3k
    auto& spk_mans_other = internal ? m_external_spk_managers : m_internal_spk_managers;
  Branch (3737:28): [True: 5.67k, False: 5.67k]
3738
11.3k
    auto spk_man = m_spk_managers.at(id).get();
3739
11.3k
    spk_mans[type] = spk_man;
3740
3741
11.3k
    const auto it = spk_mans_other.find(type);
3742
11.3k
    if (it != spk_mans_other.end() && it->second == spk_man) {
  Branch (3742:9): [True: 5.67k, False: 5.67k]
  Branch (3742:9): [True: 0, False: 11.3k]
  Branch (3742:39): [True: 0, False: 5.67k]
3743
0
        spk_mans_other.erase(type);
3744
0
    }
3745
3746
11.3k
    NotifyCanGetAddressesChanged();
3747
11.3k
}
3748
3749
void CWallet::DeactivateScriptPubKeyMan(uint256 id, OutputType type, bool internal)
3750
0
{
3751
0
    auto spk_man = GetScriptPubKeyMan(type, internal);
3752
0
    if (spk_man != nullptr && spk_man->GetID() == id) {
  Branch (3752:9): [True: 0, False: 0]
  Branch (3752:9): [True: 0, False: 0]
  Branch (3752:31): [True: 0, False: 0]
3753
0
        WalletLogPrintf("Deactivate spkMan: id = %s, type = %s, internal = %s\n", id.ToString(), FormatOutputType(type), internal ? "true" : "false");
  Branch (3753:122): [True: 0, False: 0]
3754
0
        WalletBatch batch(GetDatabase());
3755
0
        if (!batch.EraseActiveScriptPubKeyMan(static_cast<uint8_t>(type), internal)) {
  Branch (3755:13): [True: 0, False: 0]
3756
0
            throw std::runtime_error(std::string(__func__) + ": erasing active ScriptPubKeyMan id failed");
3757
0
        }
3758
3759
0
        auto& spk_mans = internal ? m_internal_spk_managers : m_external_spk_managers;
  Branch (3759:26): [True: 0, False: 0]
3760
0
        spk_mans.erase(type);
3761
0
    }
3762
3763
0
    NotifyCanGetAddressesChanged();
3764
0
}
3765
3766
DescriptorScriptPubKeyMan* CWallet::GetDescriptorScriptPubKeyMan(const WalletDescriptor& desc) const
3767
28.3k
{
3768
28.3k
    auto spk_man_pair = m_spk_managers.find(desc.id);
3769
3770
28.3k
    if (spk_man_pair != m_spk_managers.end()) {
  Branch (3770:9): [True: 64, False: 28.2k]
3771
        // Try to downcast to DescriptorScriptPubKeyMan then check if the descriptors match
3772
64
        DescriptorScriptPubKeyMan* spk_manager = dynamic_cast<DescriptorScriptPubKeyMan*>(spk_man_pair->second.get());
3773
64
        if (spk_manager != nullptr && spk_manager->HasWalletDescriptor(desc)) {
  Branch (3773:13): [True: 64, False: 0]
  Branch (3773:39): [True: 64, False: 0]
3774
64
            return spk_manager;
3775
64
        }
3776
64
    }
3777
3778
28.2k
    return nullptr;
3779
28.3k
}
3780
3781
std::optional<bool> CWallet::IsInternalScriptPubKeyMan(ScriptPubKeyMan* spk_man) const
3782
0
{
3783
    // only active ScriptPubKeyMan can be internal
3784
0
    if (!GetActiveScriptPubKeyMans().contains(spk_man)) {
  Branch (3784:9): [True: 0, False: 0]
3785
0
        return std::nullopt;
3786
0
    }
3787
3788
0
    const auto desc_spk_man = dynamic_cast<DescriptorScriptPubKeyMan*>(spk_man);
3789
0
    if (!desc_spk_man) {
  Branch (3789:9): [True: 0, False: 0]
3790
0
        throw std::runtime_error(std::string(__func__) + ": unexpected ScriptPubKeyMan type.");
3791
0
    }
3792
3793
0
    LOCK(desc_spk_man->cs_desc_man);
3794
0
    const auto& type = desc_spk_man->GetWalletDescriptor().descriptor->GetOutputType();
3795
0
    assert(type.has_value());
  Branch (3795:5): [True: 0, False: 0]
3796
3797
0
    return GetScriptPubKeyMan(*type, /* internal= */ true) == desc_spk_man;
3798
0
}
3799
3800
util::Result<std::reference_wrapper<DescriptorScriptPubKeyMan>> CWallet::AddWalletDescriptor(WalletDescriptor& desc, const FlatSigningProvider& signing_provider, const std::string& label, bool internal)
3801
16.9k
{
3802
16.9k
    AssertLockHeld(cs_wallet);
3803
3804
16.9k
    Assert(IsWalletFlagSet(WALLET_FLAG_DESCRIPTORS));
3805
3806
16.9k
    auto spk_man = GetDescriptorScriptPubKeyMan(desc);
3807
16.9k
    if (spk_man) {
  Branch (3807:9): [True: 64, False: 16.8k]
3808
64
        WalletLogPrintf("Update existing descriptor: %s\n", desc.descriptor->ToString());
3809
64
        if (auto spkm_res = spk_man->UpdateWalletDescriptor(desc, signing_provider); !spkm_res) {
  Branch (3809:86): [True: 0, False: 64]
3810
0
            return util::Error{util::ErrorString(spkm_res)};
3811
0
        }
3812
16.8k
    } else {
3813
16.8k
        auto new_spk_man = DescriptorScriptPubKeyMan::CreateFromImport(*this, desc, m_keypool_size, signing_provider);
3814
16.8k
        spk_man = new_spk_man.get();
3815
3816
        // Save the descriptor to memory
3817
16.8k
        uint256 id = new_spk_man->GetID();
3818
16.8k
        AddScriptPubKeyMan(id, std::move(new_spk_man));
3819
3820
        // Write the existing cache to disk
3821
16.8k
        WalletBatch batch(GetDatabase());
3822
16.8k
        if (!batch.WriteDescriptorCacheItems(id, desc.cache)) {
  Branch (3822:13): [True: 0, False: 16.8k]
3823
0
            return util::Error{_("Unable to write descriptor cache")};
3824
0
        }
3825
16.8k
    }
3826
3827
    // Apply the label if necessary
3828
    // Note: we disable labels for descriptors that are ranged or that don't produce output scripts (i.e. unused())
3829
16.9k
    if (!desc.descriptor->IsRange() && desc.descriptor->HasScripts()) {
  Branch (3829:9): [True: 4.16k, False: 12.7k]
  Branch (3829:40): [True: 4.14k, False: 19]
3830
4.14k
        auto script_pub_keys = spk_man->GetScriptPubKeys();
3831
4.14k
        if (script_pub_keys.empty()) {
  Branch (3831:13): [True: 0, False: 4.14k]
3832
0
            return util::Error{_("Could not generate scriptPubKeys (cache is empty)")};
3833
0
        }
3834
3835
4.14k
        if (!internal) {
  Branch (3835:13): [True: 4.14k, False: 0]
3836
4.27k
            for (const auto& script : script_pub_keys) {
  Branch (3836:37): [True: 4.27k, False: 4.14k]
3837
4.27k
                CTxDestination dest;
3838
4.27k
                if (ExtractDestination(script, dest)) {
  Branch (3838:21): [True: 1.70k, False: 2.56k]
3839
1.70k
                    SetAddressBook(dest, label, AddressPurpose::RECEIVE);
3840
1.70k
                }
3841
4.27k
            }
3842
4.14k
        }
3843
4.14k
    }
3844
3845
    // Save the descriptor to DB
3846
16.9k
    spk_man->WriteDescriptor();
3847
3848
    // Break balance caches so that outputs that are now IsMine in already known txs will be included in the balance
3849
16.9k
    MarkDirty();
3850
3851
16.9k
    return std::reference_wrapper(*spk_man);
3852
16.9k
}
3853
3854
bool CWallet::MigrateToSQLite(bilingual_str& error)
3855
0
{
3856
0
    AssertLockHeld(cs_wallet);
3857
3858
0
    WalletLogPrintf("Migrating wallet storage database from BerkeleyDB to SQLite.\n");
3859
3860
0
    if (m_database->Format() == "sqlite") {
  Branch (3860:9): [True: 0, False: 0]
3861
0
        error = _("Error: This wallet already uses SQLite");
3862
0
        return false;
3863
0
    }
3864
3865
    // Get all of the records for DB type migration
3866
0
    std::unique_ptr<DatabaseBatch> batch = m_database->MakeBatch();
3867
0
    std::unique_ptr<DatabaseCursor> cursor = batch->GetNewCursor();
3868
0
    std::vector<std::pair<SerializeData, SerializeData>> records;
3869
0
    if (!cursor) {
  Branch (3869:9): [True: 0, False: 0]
3870
0
        error = _("Error: Unable to begin reading all records in the database");
3871
0
        return false;
3872
0
    }
3873
0
    DatabaseCursor::Status status = DatabaseCursor::Status::FAIL;
3874
0
    while (true) {
  Branch (3874:12): [Folded - Ignored]
3875
0
        DataStream ss_key{};
3876
0
        DataStream ss_value{};
3877
0
        status = cursor->Next(ss_key, ss_value);
3878
0
        if (status != DatabaseCursor::Status::MORE) {
  Branch (3878:13): [True: 0, False: 0]
3879
0
            break;
3880
0
        }
3881
0
        SerializeData key(ss_key.begin(), ss_key.end());
3882
0
        SerializeData value(ss_value.begin(), ss_value.end());
3883
0
        records.emplace_back(key, value);
3884
0
    }
3885
0
    cursor.reset();
3886
0
    batch.reset();
3887
0
    if (status != DatabaseCursor::Status::DONE) {
  Branch (3887:9): [True: 0, False: 0]
3888
0
        error = _("Error: Unable to read all records in the database");
3889
0
        return false;
3890
0
    }
3891
3892
    // Close this database and delete the file
3893
0
    fs::path db_path = fs::PathFromString(m_database->Filename());
3894
0
    m_database->Close();
3895
0
    fs::remove(db_path);
3896
3897
    // Generate the path for the location of the migrated wallet
3898
    // Wallets that are plain files rather than wallet directories will be migrated to be wallet directories.
3899
0
    const fs::path wallet_path = fsbridge::AbsPathJoin(GetWalletDir(), fs::PathFromString(m_name));
3900
3901
    // Make new DB
3902
0
    DatabaseOptions opts;
3903
0
    opts.require_create = true;
3904
0
    opts.require_format = DatabaseFormat::SQLITE;
3905
0
    DatabaseStatus db_status;
3906
0
    std::unique_ptr<WalletDatabase> new_db = MakeDatabase(wallet_path, opts, db_status, error);
3907
0
    assert(new_db); // This is to prevent doing anything further with this wallet. The original file was deleted, but a backup exists.
  Branch (3907:5): [True: 0, False: 0]
3908
0
    m_database.reset();
3909
0
    m_database = std::move(new_db);
3910
3911
    // Write existing records into the new DB
3912
0
    batch = m_database->MakeBatch();
3913
0
    bool began = batch->TxnBegin();
3914
0
    assert(began); // This is a critical error, the new db could not be written to. The original db exists as a backup, but we should not continue execution.
  Branch (3914:5): [True: 0, False: 0]
3915
0
    for (const auto& [key, value] : records) {
  Branch (3915:35): [True: 0, False: 0]
3916
0
        if (!batch->Write(std::span{key}, std::span{value})) {
  Branch (3916:13): [True: 0, False: 0]
3917
0
            batch->TxnAbort();
3918
0
            m_database->Close();
3919
0
            fs::remove(m_database->Filename());
3920
0
            assert(false); // This is a critical error, the new db could not be written to. The original db exists as a backup, but we should not continue execution.
  Branch (3920:13): [Folded - Ignored]
3921
0
        }
3922
0
    }
3923
0
    bool committed = batch->TxnCommit();
3924
0
    assert(committed); // This is a critical error, the new db could not be written to. The original db exists as a backup, but we should not continue execution.
  Branch (3924:5): [True: 0, False: 0]
3925
0
    return true;
3926
0
}
3927
3928
std::optional<MigrationData> CWallet::GetDescriptorsForLegacy(bilingual_str& error) const
3929
0
{
3930
0
    AssertLockHeld(cs_wallet);
3931
3932
0
    LegacyDataSPKM* legacy_spkm = GetLegacyDataSPKM();
3933
0
    if (!Assume(legacy_spkm)) {
  Branch (3933:9): [True: 0, False: 0]
3934
        // This shouldn't happen
3935
0
        error = Untranslated(STR_INTERNAL_BUG("Error: Legacy wallet data missing"));
3936
0
        return std::nullopt;
3937
0
    }
3938
3939
0
    std::optional<MigrationData> res = legacy_spkm->MigrateToDescriptor();
3940
0
    if (res == std::nullopt) {
  Branch (3940:9): [True: 0, False: 0]
3941
0
        error = _("Error: Unable to produce descriptors for this legacy wallet. Make sure to provide the wallet's passphrase if it is encrypted.");
3942
0
        return std::nullopt;
3943
0
    }
3944
0
    return res;
3945
0
}
3946
3947
util::Result<void> CWallet::ApplyMigrationData(WalletBatch& local_wallet_batch, MigrationData& data)
3948
0
{
3949
0
    AssertLockHeld(cs_wallet);
3950
3951
0
    LegacyDataSPKM* legacy_spkm = GetLegacyDataSPKM();
3952
0
    if (!Assume(legacy_spkm)) {
  Branch (3952:9): [True: 0, False: 0]
3953
        // This shouldn't happen
3954
0
        return util::Error{Untranslated(STR_INTERNAL_BUG("Error: Legacy wallet data missing"))};
3955
0
    }
3956
3957
    // Note: when the legacy wallet has no spendable scripts, it must be empty at the end of the process.
3958
0
    bool has_spendable_material = !data.desc_spkms.empty() || data.master_key.key.IsValid();
  Branch (3958:35): [True: 0, False: 0]
  Branch (3958:63): [True: 0, False: 0]
3959
3960
    // Get all invalid or non-watched scripts that will not be migrated
3961
0
    std::set<CTxDestination> not_migrated_dests;
3962
0
    for (const auto& script : legacy_spkm->GetNotMineScriptPubKeys()) {
  Branch (3962:29): [True: 0, False: 0]
3963
0
        CTxDestination dest;
3964
0
        if (ExtractDestination(script, dest)) not_migrated_dests.emplace(dest);
  Branch (3964:13): [True: 0, False: 0]
3965
0
    }
3966
3967
    // When the legacy wallet has no spendable scripts, the main wallet will be empty, leaving its script cache empty as well.
3968
    // The watch-only and/or solvable wallet(s) will contain the scripts in their respective caches.
3969
0
    if (!data.desc_spkms.empty()) Assume(!m_cached_spks.empty());
  Branch (3969:9): [True: 0, False: 0]
3970
0
    if (!data.watch_descs.empty()) Assume(!data.watchonly_wallet->m_cached_spks.empty());
  Branch (3970:9): [True: 0, False: 0]
3971
0
    if (!data.solvable_descs.empty()) Assume(!data.solvable_wallet->m_cached_spks.empty());
  Branch (3971:9): [True: 0, False: 0]
3972
3973
0
    for (auto& desc_spkm : data.desc_spkms) {
  Branch (3973:26): [True: 0, False: 0]
3974
0
        if (m_spk_managers.contains(desc_spkm->GetID())) {
  Branch (3974:13): [True: 0, False: 0]
3975
0
            return util::Error{_("Error: Duplicate descriptors created during migration. Your wallet may be corrupted.")};
3976
0
        }
3977
0
        uint256 id = desc_spkm->GetID();
3978
0
        AddScriptPubKeyMan(id, std::move(desc_spkm));
3979
0
    }
3980
3981
    // Remove the LegacyDataSPKM's records from disk
3982
0
    if (!legacy_spkm->DeleteRecordsWithDB(local_wallet_batch)) {
  Branch (3982:9): [True: 0, False: 0]
3983
0
        return util::Error{_("Error: cannot remove legacy wallet records")};
3984
0
    }
3985
3986
    // Remove the LegacyDataSPKM from memory
3987
0
    m_spk_managers.erase(legacy_spkm->GetID());
3988
0
    m_external_spk_managers.clear();
3989
0
    m_internal_spk_managers.clear();
3990
3991
    // Setup new descriptors (only if we are migrating any key material)
3992
0
    SetWalletFlagWithDB(local_wallet_batch, WALLET_FLAG_DESCRIPTORS | WALLET_FLAG_LAST_HARDENED_XPUB_CACHED);
3993
0
    if (has_spendable_material && !IsWalletFlagSet(WALLET_FLAG_DISABLE_PRIVATE_KEYS)) {
  Branch (3993:9): [True: 0, False: 0]
  Branch (3993:35): [True: 0, False: 0]
3994
        // Use the existing master key if we have it
3995
0
        if (data.master_key.key.IsValid()) {
  Branch (3995:13): [True: 0, False: 0]
3996
0
            SetupDescriptorScriptPubKeyMans(local_wallet_batch, data.master_key);
3997
0
        } else {
3998
            // Setup with a new seed if we don't.
3999
0
            SetupOwnDescriptorScriptPubKeyMans(local_wallet_batch);
4000
0
        }
4001
0
    }
4002
4003
    // Get best block locator so that we can copy it to the watchonly and solvables
4004
    // Note: The best block locator was introduced in #152 so ancient wallets do not have it
4005
0
    CBlockLocator best_block_locator;
4006
0
    (void)local_wallet_batch.ReadBestBlock(best_block_locator);
4007
4008
    // Update m_txos to match the descriptors remaining in this wallet
4009
0
    m_txos.clear();
4010
0
    RefreshAllTXOs();
4011
4012
    // Check if the transactions in the wallet are still ours. Either they belong here, or they belong in the watchonly wallet.
4013
    // We need to go through these in the tx insertion order so that lookups to spends works.
4014
0
    std::vector<Txid> txids_to_delete;
4015
0
    std::unique_ptr<WalletBatch> watchonly_batch;
4016
0
    if (data.watchonly_wallet) {
  Branch (4016:9): [True: 0, False: 0]
4017
0
        watchonly_batch = std::make_unique<WalletBatch>(data.watchonly_wallet->GetDatabase());
4018
0
        if (!watchonly_batch->TxnBegin()) return util::Error{strprintf(_("Error: database transaction cannot be executed for wallet %s"), data.watchonly_wallet->GetName())};
  Branch (4018:13): [True: 0, False: 0]
4019
        // Copy the next tx order pos to the watchonly wallet
4020
0
        LOCK(data.watchonly_wallet->cs_wallet);
4021
0
        data.watchonly_wallet->nOrderPosNext = nOrderPosNext;
4022
0
        watchonly_batch->WriteOrderPosNext(data.watchonly_wallet->nOrderPosNext);
4023
        // Write the locator record. An empty locator is valid and triggers rescan on load.
4024
0
        if (!watchonly_batch->WriteBestBlock(best_block_locator)) {
  Branch (4024:13): [True: 0, False: 0]
4025
0
            return util::Error{_("Error: Unable to write watchonly wallet best block locator record")};
4026
0
        }
4027
0
    }
4028
0
    std::unique_ptr<WalletBatch> solvables_batch;
4029
0
    if (data.solvable_wallet) {
  Branch (4029:9): [True: 0, False: 0]
4030
0
        solvables_batch = std::make_unique<WalletBatch>(data.solvable_wallet->GetDatabase());
4031
0
        if (!solvables_batch->TxnBegin()) return util::Error{strprintf(_("Error: database transaction cannot be executed for wallet %s"), data.solvable_wallet->GetName())};
  Branch (4031:13): [True: 0, False: 0]
4032
        // Write the locator record. An empty locator is valid and triggers rescan on load.
4033
0
        if (!solvables_batch->WriteBestBlock(best_block_locator)) {
  Branch (4033:13): [True: 0, False: 0]
4034
0
            return util::Error{_("Error: Unable to write solvable wallet best block locator record")};
4035
0
        }
4036
0
    }
4037
0
    for (const auto& [_pos, wtx] : wtxOrdered) {
  Branch (4037:34): [True: 0, False: 0]
4038
        // Check it is the watchonly wallet's
4039
        // solvable_wallet doesn't need to be checked because transactions for those scripts weren't being watched for
4040
0
        bool is_mine = IsMine(*wtx->GetTx()) || IsFromMe(*wtx->GetTx());
  Branch (4040:24): [True: 0, False: 0]
  Branch (4040:49): [True: 0, False: 0]
4041
0
        if (data.watchonly_wallet) {
  Branch (4041:13): [True: 0, False: 0]
4042
0
            LOCK(data.watchonly_wallet->cs_wallet);
4043
0
            if (data.watchonly_wallet->IsMine(*wtx->GetTx()) || data.watchonly_wallet->IsFromMe(*wtx->GetTx())) {
  Branch (4043:17): [True: 0, False: 0]
  Branch (4043:17): [True: 0, False: 0]
  Branch (4043:65): [True: 0, False: 0]
4044
                // Add to watchonly wallet
4045
0
                const Txid& hash = wtx->GetHash();
4046
0
                DataStream wtx_ser;
4047
0
                wtx_ser << *wtx;
4048
0
                CWalletTx copy_wtx(deserialize, wtx_ser, wtx->GetTxs());
4049
0
                if (!data.watchonly_wallet->LoadToWallet(std::move(copy_wtx))) {
  Branch (4049:21): [True: 0, False: 0]
4050
0
                    return util::Error{strprintf(_("Error: Could not add watchonly tx %s to watchonly wallet"), wtx->GetHash().GetHex())};
4051
0
                }
4052
0
                watchonly_batch->WriteTx(data.watchonly_wallet->mapWallet.at(hash));
4053
                // Mark as to remove from the migrated wallet only if it does not also belong to it
4054
0
                if (!is_mine) {
  Branch (4054:21): [True: 0, False: 0]
4055
0
                    txids_to_delete.push_back(hash);
4056
0
                    continue;
4057
0
                }
4058
0
            }
4059
0
        }
4060
0
        if (!is_mine) {
  Branch (4060:13): [True: 0, False: 0]
4061
            // Both not ours and not in the watchonly wallet
4062
0
            return util::Error{strprintf(_("Error: Transaction %s in wallet cannot be identified to belong to migrated wallets"), wtx->GetHash().GetHex())};
4063
0
        }
4064
        // Rewrite the transaction so that anything that may have changed about it in memory also persists to disk
4065
0
        local_wallet_batch.WriteTx(*wtx);
4066
0
    }
4067
4068
    // Do the removes
4069
0
    if (txids_to_delete.size() > 0) {
  Branch (4069:9): [True: 0, False: 0]
4070
0
        if (auto res = RemoveTxs(local_wallet_batch, txids_to_delete); !res) {
  Branch (4070:72): [True: 0, False: 0]
4071
0
            return util::Error{_("Error: Could not delete watchonly transactions. ") + util::ErrorString(res)};
4072
0
        }
4073
0
    }
4074
4075
    // Pair external wallets with their corresponding db handler
4076
0
    std::vector<std::pair<std::shared_ptr<CWallet>, std::unique_ptr<WalletBatch>>> wallets_vec;
4077
0
    if (data.watchonly_wallet) wallets_vec.emplace_back(data.watchonly_wallet, std::move(watchonly_batch));
  Branch (4077:9): [True: 0, False: 0]
4078
0
    if (data.solvable_wallet) wallets_vec.emplace_back(data.solvable_wallet, std::move(solvables_batch));
  Branch (4078:9): [True: 0, False: 0]
4079
4080
    // Write address book entry to disk
4081
0
    auto func_store_addr = [](WalletBatch& batch, const CTxDestination& dest, const CAddressBookData& entry) {
4082
0
        auto address{EncodeDestination(dest)};
4083
0
        if (entry.purpose) batch.WritePurpose(address, PurposeToString(*entry.purpose));
  Branch (4083:13): [True: 0, False: 0]
4084
0
        if (entry.label) batch.WriteName(address, *entry.label);
  Branch (4084:13): [True: 0, False: 0]
4085
0
        for (const auto& [id, request] : entry.receive_requests) {
  Branch (4085:40): [True: 0, False: 0]
4086
0
            batch.WriteAddressReceiveRequest(dest, id, request);
4087
0
        }
4088
0
        if (entry.previously_spent) batch.WriteAddressPreviouslySpent(dest, true);
  Branch (4088:13): [True: 0, False: 0]
4089
0
    };
4090
4091
    // Check the address book data in the same way we did for transactions
4092
0
    std::vector<CTxDestination> dests_to_delete;
4093
0
    for (const auto& [dest, record] : m_address_book) {
  Branch (4093:37): [True: 0, False: 0]
4094
        // Ensure "receive" entries that are no longer part of the original wallet are transferred to another wallet
4095
        // Entries for everything else ("send") will be cloned to all wallets.
4096
0
        bool require_transfer = record.purpose == AddressPurpose::RECEIVE && !IsMine(dest);
  Branch (4096:33): [True: 0, False: 0]
  Branch (4096:78): [True: 0, False: 0]
4097
0
        bool copied = false;
4098
0
        for (auto& [wallet, batch] : wallets_vec) {
  Branch (4098:36): [True: 0, False: 0]
4099
0
            LOCK(wallet->cs_wallet);
4100
0
            if (require_transfer && !wallet->IsMine(dest)) continue;
  Branch (4100:17): [True: 0, False: 0]
  Branch (4100:37): [True: 0, False: 0]
4101
4102
            // Copy the entire address book entry
4103
0
            wallet->m_address_book[dest] = record;
4104
0
            func_store_addr(*batch, dest, record);
4105
4106
0
            copied = true;
4107
            // Only delete 'receive' records that are no longer part of the original wallet
4108
0
            if (require_transfer) {
  Branch (4108:17): [True: 0, False: 0]
4109
0
                dests_to_delete.push_back(dest);
4110
0
                break;
4111
0
            }
4112
0
        }
4113
4114
        // Fail immediately if we ever found an entry that was ours and cannot be transferred
4115
        // to any of the created wallets (watch-only, solvable).
4116
        // Means that no inferred descriptor maps to the stored entry. Which mustn't happen.
4117
0
        if (require_transfer && !copied) {
  Branch (4117:13): [True: 0, False: 0]
  Branch (4117:33): [True: 0, False: 0]
4118
4119
            // Skip invalid/non-watched scripts that will not be migrated
4120
0
            if (not_migrated_dests.contains(dest)) {
  Branch (4120:17): [True: 0, False: 0]
4121
0
                dests_to_delete.push_back(dest);
4122
0
                continue;
4123
0
            }
4124
4125
0
            return util::Error{_("Error: Address book data in wallet cannot be identified to belong to migrated wallets")};
4126
0
        }
4127
0
    }
4128
4129
    // Persist external wallets address book entries
4130
0
    for (auto& [wallet, batch] : wallets_vec) {
  Branch (4130:32): [True: 0, False: 0]
4131
0
        if (!batch->TxnCommit()) {
  Branch (4131:13): [True: 0, False: 0]
4132
0
            return util::Error{strprintf(_("Error: Unable to write data to disk for wallet %s"), wallet->GetName())};
4133
0
        }
4134
0
    }
4135
4136
    // Remove the things to delete in this wallet
4137
0
    if (dests_to_delete.size() > 0) {
  Branch (4137:9): [True: 0, False: 0]
4138
0
        for (const auto& dest : dests_to_delete) {
  Branch (4138:31): [True: 0, False: 0]
4139
0
            if (!DelAddressBookWithDB(local_wallet_batch, dest)) {
  Branch (4139:17): [True: 0, False: 0]
4140
0
                return util::Error{_("Error: Unable to remove watchonly address book data")};
4141
0
            }
4142
0
        }
4143
0
    }
4144
4145
    // If there was no key material in the main wallet, there should be no records on it anymore.
4146
    // This wallet will be discarded at the end of the process. Only wallets that contain the
4147
    // migrated records will be presented to the user.
4148
0
    if (!has_spendable_material) {
  Branch (4148:9): [True: 0, False: 0]
4149
0
        if (!m_address_book.empty()) return util::Error{_("Error: Not all address book records were migrated")};
  Branch (4149:13): [True: 0, False: 0]
4150
0
        if (!mapWallet.empty()) return util::Error{_("Error: Not all transaction records were migrated")};
  Branch (4150:13): [True: 0, False: 0]
4151
0
    }
4152
4153
0
    return {}; // all good
4154
0
}
4155
4156
bool CWallet::CanGrindR() const
4157
39.3k
{
4158
39.3k
    return !IsWalletFlagSet(WALLET_FLAG_DISABLE_PRIVATE_KEYS);
4159
39.3k
}
4160
4161
// Returns wallet prefix for migration.
4162
// Used to name the backup file and newly created wallets.
4163
// E.g. a watch-only wallet is named "<prefix>_watchonly".
4164
static std::string MigrationPrefixName(CWallet& wallet)
4165
0
{
4166
0
    const std::string& name{wallet.GetName()};
4167
0
    return name.empty() ? "default_wallet" : name;
  Branch (4167:12): [True: 0, False: 0]
4168
0
}
4169
4170
bool DoMigration(CWallet& wallet, WalletContext& context, bilingual_str& error, MigrationResult& res, const bool load_on_startup = true) EXCLUSIVE_LOCKS_REQUIRED(wallet.cs_wallet)
4171
0
{
4172
0
    AssertLockHeld(wallet.cs_wallet);
4173
4174
    // Get all of the descriptors from the legacy wallet
4175
0
    std::optional<MigrationData> data = wallet.GetDescriptorsForLegacy(error);
4176
0
    if (data == std::nullopt) return false;
  Branch (4176:9): [True: 0, False: 0]
4177
4178
    // Create the watchonly and solvable wallets if necessary
4179
0
    if (data->watch_descs.size() > 0 || data->solvable_descs.size() > 0) {
  Branch (4179:9): [True: 0, False: 0]
  Branch (4179:41): [True: 0, False: 0]
4180
0
        DatabaseOptions options;
4181
0
        options.require_existing = false;
4182
0
        options.require_create = true;
4183
0
        options.require_format = DatabaseFormat::SQLITE;
4184
4185
0
        WalletContext empty_context;
4186
0
        empty_context.args = context.args;
4187
4188
        // Make the wallets
4189
0
        options.create_flags = WALLET_FLAG_DISABLE_PRIVATE_KEYS | WALLET_FLAG_BLANK_WALLET | WALLET_FLAG_DESCRIPTORS;
4190
0
        if (wallet.IsWalletFlagSet(WALLET_FLAG_AVOID_REUSE)) {
  Branch (4190:13): [True: 0, False: 0]
4191
0
            options.create_flags |= WALLET_FLAG_AVOID_REUSE;
4192
0
        }
4193
0
        if (wallet.IsWalletFlagSet(WALLET_FLAG_KEY_ORIGIN_METADATA)) {
  Branch (4193:13): [True: 0, False: 0]
4194
0
            options.create_flags |= WALLET_FLAG_KEY_ORIGIN_METADATA;
4195
0
        }
4196
0
        if (data->watch_descs.size() > 0) {
  Branch (4196:13): [True: 0, False: 0]
4197
0
            wallet.WalletLogPrintf("Making a new watchonly wallet containing the watched scripts\n");
4198
4199
0
            DatabaseStatus status;
4200
0
            std::vector<bilingual_str> warnings;
4201
0
            std::string wallet_name = MigrationPrefixName(wallet) + "_watchonly";
4202
0
            std::unique_ptr<WalletDatabase> database = MakeWalletDatabase(wallet_name, options, status, error);
4203
0
            if (!database) {
  Branch (4203:17): [True: 0, False: 0]
4204
0
                error = strprintf(_("Wallet file creation failed: %s"), error);
4205
0
                return false;
4206
0
            }
4207
4208
0
            data->watchonly_wallet = CWallet::CreateNew(empty_context, wallet_name, std::move(database), options.create_flags, /*born_encrypted=*/false, error, warnings);
4209
0
            if (!data->watchonly_wallet) {
  Branch (4209:17): [True: 0, False: 0]
4210
0
                error = _("Error: Failed to create new watchonly wallet");
4211
0
                return false;
4212
0
            }
4213
0
            res.watchonly_wallet = data->watchonly_wallet;
4214
0
            LOCK(data->watchonly_wallet->cs_wallet);
4215
4216
            // Parse the descriptors and add them to the new wallet
4217
0
            for (const auto& [desc_str, creation_time] : data->watch_descs) {
  Branch (4217:56): [True: 0, False: 0]
4218
                // Parse the descriptor
4219
0
                FlatSigningProvider keys;
4220
0
                std::string parse_err;
4221
0
                std::vector<std::unique_ptr<Descriptor>> descs = Parse(desc_str, keys, parse_err, /*require_checksum=*/ true);
4222
                // LegacyDataSPKM should not produce invalid, multipath, or ranged watch-only descriptors.
4223
0
                assert(descs.size() == 1);
  Branch (4223:17): [True: 0, False: 0]
4224
0
                assert(!descs.at(0)->IsRange());
  Branch (4224:17): [True: 0, False: 0]
4225
4226
                // Add to the wallet
4227
0
                WalletDescriptor w_desc(std::move(descs.at(0)), creation_time, 0, 0, 0);
4228
0
                if (auto spkm_res = data->watchonly_wallet->AddWalletDescriptor(w_desc, keys, "", false); !spkm_res) {
  Branch (4228:107): [True: 0, False: 0]
4229
0
                    throw std::runtime_error(util::ErrorString(spkm_res).original);
4230
0
                }
4231
0
            }
4232
4233
            // Add the wallet to settings
4234
0
            UpdateWalletSetting(*context.chain, wallet_name, load_on_startup, warnings);
4235
0
        }
4236
0
        if (data->solvable_descs.size() > 0) {
  Branch (4236:13): [True: 0, False: 0]
4237
0
            wallet.WalletLogPrintf("Making a new watchonly wallet containing the unwatched solvable scripts\n");
4238
4239
0
            DatabaseStatus status;
4240
0
            std::vector<bilingual_str> warnings;
4241
0
            std::string wallet_name = MigrationPrefixName(wallet) + "_solvables";
4242
0
            std::unique_ptr<WalletDatabase> database = MakeWalletDatabase(wallet_name, options, status, error);
4243
0
            if (!database) {
  Branch (4243:17): [True: 0, False: 0]
4244
0
                error = strprintf(_("Wallet file creation failed: %s"), error);
4245
0
                return false;
4246
0
            }
4247
4248
0
            data->solvable_wallet = CWallet::CreateNew(empty_context, wallet_name, std::move(database), options.create_flags, /*born_encrypted=*/false, error, warnings);
4249
0
            if (!data->solvable_wallet) {
  Branch (4249:17): [True: 0, False: 0]
4250
0
                error = _("Error: Failed to create new watchonly wallet");
4251
0
                return false;
4252
0
            }
4253
0
            res.solvables_wallet = data->solvable_wallet;
4254
0
            LOCK(data->solvable_wallet->cs_wallet);
4255
4256
            // Parse the descriptors and add them to the new wallet
4257
0
            for (const auto& [desc_str, creation_time] : data->solvable_descs) {
  Branch (4257:56): [True: 0, False: 0]
4258
                // Parse the descriptor
4259
0
                FlatSigningProvider keys;
4260
0
                std::string parse_err;
4261
0
                std::vector<std::unique_ptr<Descriptor>> descs = Parse(desc_str, keys, parse_err, /*require_checksum=*/ true);
4262
                // LegacyDataSPKM should not produce invalid, multipath, or ranged watch-only descriptors.
4263
0
                assert(descs.size() == 1);
  Branch (4263:17): [True: 0, False: 0]
4264
0
                assert(!descs.at(0)->IsRange());
  Branch (4264:17): [True: 0, False: 0]
4265
4266
                // Add to the wallet
4267
0
                WalletDescriptor w_desc(std::move(descs.at(0)), creation_time, 0, 0, 0);
4268
0
                if (auto spkm_res = data->solvable_wallet->AddWalletDescriptor(w_desc, keys, "", false); !spkm_res) {
  Branch (4268:106): [True: 0, False: 0]
4269
0
                    throw std::runtime_error(util::ErrorString(spkm_res).original);
4270
0
                }
4271
0
            }
4272
4273
            // Add the wallet to settings
4274
0
            UpdateWalletSetting(*context.chain, wallet_name, load_on_startup, warnings);
4275
0
        }
4276
0
    }
4277
4278
    // Add the descriptors to the wallet, remove the LegacyDataSPKM, and clean up transactions and address book data
4279
0
    return RunWithinTxn(wallet.GetDatabase(), /*process_desc=*/"apply migration process", [&](WalletBatch& batch) EXCLUSIVE_LOCKS_REQUIRED(wallet.cs_wallet){
4280
0
        if (auto res_migration = wallet.ApplyMigrationData(batch, *data); !res_migration) {
  Branch (4280:75): [True: 0, False: 0]
4281
0
            error = util::ErrorString(res_migration);
4282
0
            return false;
4283
0
        }
4284
0
        wallet.WalletLogPrintf("Wallet migration complete.\n");
4285
0
        return true;
4286
0
    });
4287
0
}
4288
4289
util::Result<MigrationResult> MigrateLegacyToDescriptor(const std::string& wallet_name, const SecureString& passphrase, WalletContext& context, bool load_wallet)
4290
0
{
4291
0
    std::vector<bilingual_str> warnings;
4292
0
    bilingual_str error;
4293
4294
    // The only kind of wallets that could be loaded are descriptor ones, which don't need to be migrated.
4295
0
    if (auto wallet = GetWallet(context, wallet_name)) {
  Branch (4295:14): [True: 0, False: 0]
4296
0
        assert(wallet->IsWalletFlagSet(WALLET_FLAG_DESCRIPTORS));
  Branch (4296:9): [True: 0, False: 0]
4297
0
        return util::Error{_("Error: This wallet is already a descriptor wallet")};
4298
0
    } else {
4299
        // Check if the wallet is BDB
4300
0
        const auto& wallet_path = GetWalletPath(wallet_name);
4301
0
        if (!wallet_path) {
  Branch (4301:13): [True: 0, False: 0]
4302
0
            return util::Error{util::ErrorString(wallet_path)};
4303
0
        }
4304
0
        if (!fs::exists(*wallet_path)) {
  Branch (4304:13): [True: 0, False: 0]
4305
0
            return util::Error{_("Error: Wallet does not exist")};
4306
0
        }
4307
0
        if (!IsBDBFile(BDBDataFile(*wallet_path))) {
  Branch (4307:13): [True: 0, False: 0]
4308
0
            return util::Error{_("Error: This wallet is already a descriptor wallet")};
4309
0
        }
4310
0
    }
4311
4312
    // Load the wallet but only in the context of this function.
4313
    // No signals should be connected nor should anything else be aware of this wallet
4314
0
    WalletContext empty_context;
4315
0
    empty_context.args = context.args;
4316
0
    DatabaseOptions options;
4317
0
    options.require_existing = true;
4318
0
    options.require_format = DatabaseFormat::BERKELEY_RO;
4319
0
    DatabaseStatus status;
4320
0
    std::unique_ptr<WalletDatabase> database = MakeWalletDatabase(wallet_name, options, status, error);
4321
0
    if (!database) {
  Branch (4321:9): [True: 0, False: 0]
4322
0
        return util::Error{Untranslated("Wallet file verification failed.") + Untranslated(" ") + error};
4323
0
    }
4324
4325
    // Make the local wallet
4326
0
    std::shared_ptr<CWallet> local_wallet = CWallet::LoadExisting(empty_context, wallet_name, std::move(database), error, warnings);
4327
0
    if (!local_wallet) {
  Branch (4327:9): [True: 0, False: 0]
4328
0
        return util::Error{Untranslated("Wallet loading failed.") + Untranslated(" ") + error};
4329
0
    }
4330
4331
0
    return MigrateLegacyToDescriptor(std::move(local_wallet), passphrase, context, load_wallet);
4332
0
}
4333
4334
util::Result<MigrationResult> MigrateLegacyToDescriptor(std::shared_ptr<CWallet> local_wallet, const SecureString& passphrase, WalletContext& context, bool load_wallet)
4335
0
{
4336
0
    MigrationResult res;
4337
0
    bilingual_str error;
4338
0
    std::vector<bilingual_str> warnings;
4339
4340
0
    DatabaseOptions options;
4341
0
    options.require_existing = true;
4342
0
    DatabaseStatus status;
4343
4344
0
    const std::string wallet_name = local_wallet->GetName();
4345
4346
    // Before anything else, check if there is something to migrate.
4347
0
    if (local_wallet->IsWalletFlagSet(WALLET_FLAG_DESCRIPTORS)) {
  Branch (4347:9): [True: 0, False: 0]
4348
0
        return util::Error{_("Error: This wallet is already a descriptor wallet")};
4349
0
    }
4350
4351
    // Make a backup of the DB in the wallet's directory with a unique filename
4352
    // using the wallet name and current timestamp. The backup filename is based
4353
    // on the name of the parent directory containing the wallet data in most
4354
    // cases, but in the case where the wallet name is a path to a data file,
4355
    // the name of the data file is used, and in the case where the wallet name
4356
    // is blank, "default_wallet" is used.
4357
0
    const std::string backup_prefix = wallet_name.empty() ? MigrationPrefixName(*local_wallet) : [&] {
  Branch (4357:39): [True: 0, False: 0]
4358
        // fs::weakly_canonical resolves relative specifiers and remove trailing slashes.
4359
0
        const auto legacy_wallet_path = fs::weakly_canonical(GetWalletDir() / fs::PathFromString(wallet_name));
4360
0
        return fs::PathToString(legacy_wallet_path.filename());
4361
0
    }();
4362
4363
0
    fs::path backup_filename = fs::PathFromString(strprintf("%s_%d.legacy.bak", backup_prefix, GetTime()));
4364
0
    fs::path backup_path = fsbridge::AbsPathJoin(GetWalletDir(), backup_filename);
4365
0
    if (!local_wallet->BackupWallet(fs::PathToString(backup_path))) {
  Branch (4365:9): [True: 0, False: 0]
4366
0
        return util::Error{_("Error: Unable to make a backup of your wallet")};
4367
0
    }
4368
0
    res.backup_path = backup_path;
4369
4370
0
    bool success = false;
4371
4372
    // Unlock the wallet if needed
4373
0
    if (local_wallet->IsLocked() && !local_wallet->Unlock(passphrase)) {
  Branch (4373:9): [True: 0, False: 0]
  Branch (4373:37): [True: 0, False: 0]
4374
0
        if (passphrase.find('\0') == std::string::npos) {
  Branch (4374:13): [True: 0, False: 0]
4375
0
            return util::Error{Untranslated("Error: Wallet decryption failed, the wallet passphrase was not provided or was incorrect.")};
4376
0
        } else {
4377
0
            return util::Error{Untranslated("Error: Wallet decryption failed, the wallet passphrase entered was incorrect. "
4378
0
                                            "The passphrase contains a null character (ie - a zero byte). "
4379
0
                                            "If this passphrase was set with a version of this software prior to 25.0, "
4380
0
                                            "please try again with only the characters up to — but not including — "
4381
0
                                            "the first null character.")};
4382
0
        }
4383
0
    }
4384
4385
    // Indicates whether the current wallet is empty after migration.
4386
    // Notes:
4387
    // When non-empty: the local wallet becomes the main spendable wallet.
4388
    // When empty: The local wallet is excluded from the result, as the
4389
    //             user does not expect an empty spendable wallet after
4390
    //             migrating only watch-only scripts.
4391
0
    bool empty_local_wallet = false;
4392
4393
0
    {
4394
0
        LOCK(local_wallet->cs_wallet);
4395
        // First change to using SQLite
4396
0
        if (!local_wallet->MigrateToSQLite(error)) return util::Error{error};
  Branch (4396:13): [True: 0, False: 0]
4397
4398
        // Do the migration of keys and scripts for non-empty wallets, and cleanup if it fails
4399
0
        if (HasLegacyRecords(*local_wallet)) {
  Branch (4399:13): [True: 0, False: 0]
4400
0
            success = DoMigration(*local_wallet, context, error, res, load_wallet);
4401
            // No scripts mean empty wallet after migration
4402
0
            empty_local_wallet = local_wallet->GetAllScriptPubKeyMans().empty();
4403
0
        } else {
4404
            // Make sure that descriptors flag is actually set
4405
0
            local_wallet->SetWalletFlag(WALLET_FLAG_DESCRIPTORS);
4406
0
            success = true;
4407
0
        }
4408
0
    }
4409
4410
    // In case of loading failure, we need to remember the wallet files we have created to remove.
4411
    // A `set` is used as it may be populated with the same wallet directory paths multiple times,
4412
    // both before and after loading. This ensures the set is complete even if one of the wallets
4413
    // fails to load.
4414
0
    std::set<fs::path> wallet_files_to_remove;
4415
0
    std::set<fs::path> wallet_empty_dirs_to_remove;
4416
4417
    // Helper to track wallet files and directories for cleanup on failure.
4418
    // Only directories of wallets created during migration (not the main wallet) are tracked.
4419
0
    auto track_for_cleanup = [&](const CWallet& wallet) {
4420
0
        const auto files = wallet.GetDatabase().Files();
4421
0
        wallet_files_to_remove.insert(files.begin(), files.end());
4422
0
        if (wallet.GetName() != wallet_name) {
  Branch (4422:13): [True: 0, False: 0]
4423
            // If this isn’t the main wallet, mark its directory for removal.
4424
            // This applies to the watch-only and solvable wallets.
4425
            // Wallets stored directly as files in the top-level directory
4426
            // (e.g. default unnamed wallets) don’t have a removable parent directory.
4427
0
            wallet_empty_dirs_to_remove.insert(fs::PathFromString(wallet.GetDatabase().Filename()).parent_path());
4428
0
        }
4429
0
    };
4430
4431
4432
0
    if (success) {
  Branch (4432:9): [True: 0, False: 0]
4433
0
        Assume(!res.wallet); // We will set it here.
4434
        // Check if the local wallet is empty after migration
4435
0
        if (empty_local_wallet) {
  Branch (4435:13): [True: 0, False: 0]
4436
            // This wallet has no records. We can safely remove it.
4437
0
            std::vector<fs::path> paths_to_remove = local_wallet->GetDatabase().Files();
4438
0
            local_wallet.reset();
4439
0
            for (const auto& path_to_remove : paths_to_remove) fs::remove(path_to_remove);
  Branch (4439:45): [True: 0, False: 0]
4440
0
        }
4441
4442
0
        if (load_wallet) {
  Branch (4442:13): [True: 0, False: 0]
4443
0
            LogInfo("Loading new wallets after migration...\n");
4444
            /** We only override the load_on_startup setting in case the user explicitly said
4445
             * that he does not want to load the wallet, otherwise keep the old wallet configuration */
4446
0
        } else {
4447
0
            UpdateWalletSetting(*context.chain, wallet_name, /*load_on_startup=*/false, warnings);
4448
0
        }
4449
        // Migration successful, if load_wallet is set load all the migrated wallets.
4450
0
        bool main_wallet_set{false};
4451
0
        for (std::shared_ptr<CWallet>* wallet_ptr : {&local_wallet, &res.watchonly_wallet, &res.solvables_wallet}) {
  Branch (4451:51): [True: 0, False: 0]
4452
0
            if (success && *wallet_ptr) {
  Branch (4452:17): [True: 0, False: 0]
  Branch (4452:28): [True: 0, False: 0]
4453
0
                std::shared_ptr<CWallet>& wallet = *wallet_ptr;
4454
                // Track db path
4455
0
                track_for_cleanup(*wallet);
4456
0
                assert(wallet.use_count() == 1);
  Branch (4456:17): [True: 0, False: 0]
4457
0
                std::string wallet_name = wallet->GetName();
4458
0
                wallet.reset();
4459
0
                if (load_wallet) {
  Branch (4459:21): [True: 0, False: 0]
4460
0
                    wallet = LoadWallet(context, wallet_name, /*load_on_start=*/std::nullopt, options, status, error, warnings);
4461
0
                    if (!wallet) {
  Branch (4461:25): [True: 0, False: 0]
4462
0
                        LogError("Failed to load wallet '%s' after migration. Rolling back migration to preserve consistency. "
4463
0
                                 "Error cause: %s\n", wallet_name, error.original);
4464
0
                        success = false;
4465
0
                        break;
4466
0
                    }
4467
0
                }
4468
                // Set the first wallet as the main one.
4469
                // The loop order is intentional and must always start with the local wallet.
4470
0
                if (!main_wallet_set) {
  Branch (4470:21): [True: 0, False: 0]
4471
0
                    res.wallet_name = wallet_name;
4472
0
                    if (load_wallet) res.wallet = std::move(wallet);
  Branch (4472:25): [True: 0, False: 0]
4473
0
                    main_wallet_set = true;
4474
0
                }
4475
0
                if (wallet_ptr == &res.watchonly_wallet) {
  Branch (4475:21): [True: 0, False: 0]
4476
0
                    res.watchonly_wallet_name = wallet_name;
4477
0
                } else if (wallet_ptr == &res.solvables_wallet) {
  Branch (4477:28): [True: 0, False: 0]
4478
0
                    res.solvables_wallet_name = wallet_name;
4479
0
                }
4480
0
            }
4481
0
        }
4482
0
    }
4483
0
    if (!success) {
  Branch (4483:9): [True: 0, False: 0]
4484
        // Make list of wallets to cleanup
4485
0
        std::vector<std::shared_ptr<CWallet>> created_wallets;
4486
0
        if (local_wallet) created_wallets.push_back(std::move(local_wallet));
  Branch (4486:13): [True: 0, False: 0]
4487
0
        if (res.watchonly_wallet) created_wallets.push_back(std::move(res.watchonly_wallet));
  Branch (4487:13): [True: 0, False: 0]
4488
0
        if (res.solvables_wallet) created_wallets.push_back(std::move(res.solvables_wallet));
  Branch (4488:13): [True: 0, False: 0]
4489
4490
        // Get the directories to remove after unloading
4491
0
        for (std::shared_ptr<CWallet>& wallet : created_wallets) {
  Branch (4491:47): [True: 0, False: 0]
4492
0
            track_for_cleanup(*wallet);
4493
0
        }
4494
4495
        // Unload the wallets
4496
0
        for (std::shared_ptr<CWallet>& w : created_wallets) {
  Branch (4496:42): [True: 0, False: 0]
4497
0
            if (w->HaveChain()) {
  Branch (4497:17): [True: 0, False: 0]
4498
                // Unloading for wallets that were loaded for normal use
4499
0
                if (!RemoveWallet(context, w, /*load_on_start=*/false)) {
  Branch (4499:21): [True: 0, False: 0]
4500
0
                    error += _("\nUnable to cleanup failed migration");
4501
0
                    return util::Error{error};
4502
0
                }
4503
0
                WaitForDeleteWallet(std::move(w));
4504
0
            } else {
4505
                // Unloading for wallets in local context
4506
0
                assert(w.use_count() == 1);
  Branch (4506:17): [True: 0, False: 0]
4507
0
                w.reset();
4508
0
            }
4509
0
        }
4510
4511
        // First, delete the db files we have created throughout this process and nothing else
4512
0
        for (const fs::path& file : wallet_files_to_remove) {
  Branch (4512:35): [True: 0, False: 0]
4513
0
            fs::remove(file);
4514
0
        }
4515
4516
        // Second, delete the created wallet directories and nothing else. They must be empty at this point.
4517
0
        for (const fs::path& dir : wallet_empty_dirs_to_remove) {
  Branch (4517:34): [True: 0, False: 0]
4518
0
            Assume(fs::is_empty(dir));
4519
0
            fs::remove(dir);
4520
0
        }
4521
4522
        // Restore the backup
4523
        // Convert the backup file to the wallet db file by renaming it and moving it into the wallet's directory.
4524
0
        bilingual_str restore_error;
4525
0
        const auto& ptr_wallet = RestoreWallet(context, backup_path, wallet_name, /*load_on_start=*/std::nullopt, status, restore_error, warnings, /*load_after_restore=*/false, /*allow_unnamed=*/true);
4526
0
        if (!restore_error.empty()) {
  Branch (4526:13): [True: 0, False: 0]
4527
0
            error += restore_error + _("\nUnable to restore backup of wallet.");
4528
0
            return util::Error{error};
4529
0
        }
4530
        // Verify that the legacy wallet is not loaded after restoring from the backup.
4531
0
        assert(!ptr_wallet);
  Branch (4531:9): [True: 0, False: 0]
4532
4533
0
        return util::Error{error};
4534
0
    }
4535
0
    return res;
4536
0
}
4537
4538
void CWallet::CacheNewScriptPubKeys(const std::set<CScript>& spks, ScriptPubKeyMan* spkm)
4539
251k
{
4540
262k
    for (const auto& script : spks) {
  Branch (4540:29): [True: 262k, False: 251k]
4541
262k
        m_cached_spks[script].push_back(spkm);
4542
262k
    }
4543
251k
}
4544
4545
void CWallet::TopUpCallback(const std::set<CScript>& spks, ScriptPubKeyMan* spkm)
4546
251k
{
4547
    // Update scriptPubKey cache
4548
251k
    CacheNewScriptPubKeys(spks, spkm);
4549
251k
}
4550
4551
CWallet::HDPubKeyMap CWallet::GetHDPubKeys(HDKeyFilter filter) const
4552
0
{
4553
0
    AssertLockHeld(cs_wallet);
4554
4555
0
    Assert(IsWalletFlagSet(WALLET_FLAG_DESCRIPTORS));
4556
4557
0
    HDPubKeyMap xpubs;
4558
0
    for (const auto& spkm : filter == HDKeyFilter::Active ? GetActiveScriptPubKeyMans() : GetAllScriptPubKeyMans()) {
  Branch (4558:27): [True: 0, False: 0]
  Branch (4558:29): [True: 0, False: 0]
4559
0
        auto* desc_spkm = Assert(dynamic_cast<DescriptorScriptPubKeyMan*>(spkm));
4560
0
        LOCK(desc_spkm->cs_desc_man);
4561
0
        WalletDescriptor w_desc = desc_spkm->GetWalletDescriptor();
4562
0
        if (filter == HDKeyFilter::UnusedKey && w_desc.descriptor->HasScripts()) continue;
  Branch (4562:13): [True: 0, False: 0]
  Branch (4562:49): [True: 0, False: 0]
4563
4564
0
        std::set<CPubKey> desc_pubkeys;
4565
0
        std::set<CExtPubKey> desc_xpubs;
4566
0
        w_desc.descriptor->GetPubKeys(desc_pubkeys, desc_xpubs);
4567
0
        for (const CExtPubKey& xpub : desc_xpubs) {
  Branch (4567:37): [True: 0, False: 0]
4568
0
            xpubs[xpub].insert(desc_spkm);
4569
0
        }
4570
0
    }
4571
0
    return xpubs;
4572
0
}
4573
4574
std::optional<CKey> CWallet::GetKey(const CKeyID& keyid) const
4575
0
{
4576
0
    Assert(IsWalletFlagSet(WALLET_FLAG_DESCRIPTORS));
4577
4578
0
    for (const auto& spkm : GetAllScriptPubKeyMans()) {
  Branch (4578:27): [True: 0, False: 0]
4579
0
        const DescriptorScriptPubKeyMan* desc_spkm = dynamic_cast<DescriptorScriptPubKeyMan*>(spkm);
4580
0
        assert(desc_spkm);
  Branch (4580:9): [True: 0, False: 0]
4581
0
        LOCK(desc_spkm->cs_desc_man);
4582
0
        if (std::optional<CKey> key = desc_spkm->GetKey(keyid)) {
  Branch (4582:33): [True: 0, False: 0]
4583
0
            return key;
4584
0
        }
4585
0
    }
4586
0
    return std::nullopt;
4587
0
}
4588
4589
std::optional<CExtKey> CWallet::GetExtKey(const CExtPubKey& xpub) const
4590
0
{
4591
0
    if (std::optional<CKey> key = GetKey(xpub.pubkey.GetID())) {
  Branch (4591:29): [True: 0, False: 0]
4592
0
        return CExtKey{xpub, *key};
4593
0
    }
4594
0
    return std::nullopt;
4595
0
}
4596
4597
void CWallet::WriteBestBlock() const
4598
9.68k
{
4599
9.68k
    AssertLockHeld(cs_wallet);
4600
4601
9.68k
    if (!m_last_block_processed.IsNull()) {
  Branch (4601:9): [True: 9.68k, False: 0]
4602
9.68k
        CBlockLocator loc;
4603
9.68k
        chain().findBlock(m_last_block_processed, FoundBlock().locator(loc));
4604
4605
9.68k
        if (!loc.IsNull()) {
  Branch (4605:13): [True: 9.68k, False: 0]
4606
9.68k
            WalletBatch batch(GetDatabase());
4607
9.68k
            batch.WriteBestBlock(loc);
4608
9.68k
        }
4609
9.68k
    }
4610
9.68k
}
4611
4612
void CWallet::RefreshTXOsFromTx(const CWalletTx& wtx)
4613
200k
{
4614
200k
    AssertLockHeld(cs_wallet);
4615
401k
    for (uint32_t i = 0; i < wtx.GetTx()->vout.size(); ++i) {
  Branch (4615:26): [True: 200k, False: 200k]
4616
200k
        const CTxOut& txout = wtx.GetTx()->vout.at(i);
4617
200k
        if (!IsMine(txout)) continue;
  Branch (4617:13): [True: 0, False: 200k]
4618
200k
        COutPoint outpoint(wtx.GetHash(), i);
4619
200k
        if (m_txos.contains(outpoint)) {
  Branch (4619:13): [True: 0, False: 200k]
4620
200k
        } else {
4621
200k
            m_txos.emplace(outpoint, WalletTXO{wtx, txout});
4622
200k
        }
4623
200k
    }
4624
200k
}
4625
4626
void CWallet::RefreshAllTXOs()
4627
0
{
4628
0
    AssertLockHeld(cs_wallet);
4629
0
    for (const auto& [_, wtx] : mapWallet) {
  Branch (4629:31): [True: 0, False: 0]
4630
0
        RefreshTXOsFromTx(wtx);
4631
0
    }
4632
0
}
4633
4634
std::optional<WalletTXO> CWallet::GetTXO(const COutPoint& outpoint) const
4635
0
{
4636
0
    AssertLockHeld(cs_wallet);
4637
0
    const auto& it = m_txos.find(outpoint);
4638
0
    if (it == m_txos.end()) {
  Branch (4638:9): [True: 0, False: 0]
4639
0
        return std::nullopt;
4640
0
    }
4641
0
    return it->second;
4642
0
}
4643
4644
void CWallet::DisconnectChainNotifications()
4645
0
{
4646
0
    if (m_chain_notifications_handler) {
  Branch (4646:9): [True: 0, False: 0]
4647
0
        m_chain_notifications_handler->disconnect();
4648
0
        chain().waitForNotifications();
4649
0
        m_chain_notifications_handler.reset();
4650
0
    }
4651
0
}
4652
4653
} // namespace wallet