Coverage Report

Created: 2026-09-01 13:33

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/root/bitcoin/src/wallet/walletdb.cpp
Line
Count
Source
1
// 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 <bitcoin-build-config.h> // IWYU pragma: keep
7
8
#include <wallet/walletdb.h>
9
10
#include <common/system.h>
11
#include <key_io.h>
12
#include <primitives/transaction_identifier.h>
13
#include <protocol.h>
14
#include <script/script.h>
15
#include <serialize.h>
16
#include <sync.h>
17
#include <util/bip32.h>
18
#include <util/check.h>
19
#include <util/fs.h>
20
#include <util/time.h>
21
#include <util/translation.h>
22
#include <wallet/migrate.h>
23
#include <wallet/sqlite.h>
24
#include <wallet/wallet.h>
25
26
#include <atomic>
27
#include <optional>
28
#include <string>
29
30
namespace wallet {
31
namespace DBKeys {
32
const std::string ACENTRY{"acentry"};
33
const std::string ACTIVEEXTERNALSPK{"activeexternalspk"};
34
const std::string ACTIVEINTERNALSPK{"activeinternalspk"};
35
const std::string BESTBLOCK_NOMERKLE{"bestblock_nomerkle"};
36
const std::string BESTBLOCK{"bestblock"};
37
const std::string CRYPTED_KEY{"ckey"};
38
const std::string CSCRIPT{"cscript"};
39
const std::string DEFAULTKEY{"defaultkey"};
40
const std::string DESTDATA{"destdata"};
41
const std::string FLAGS{"flags"};
42
const std::string HDCHAIN{"hdchain"};
43
const std::string KEYMETA{"keymeta"};
44
const std::string KEY{"key"};
45
const std::string LOCKED_UTXO{"lockedutxo"};
46
const std::string MASTER_KEY{"mkey"};
47
const std::string MINVERSION{"minversion"};
48
const std::string NAME{"name"};
49
const std::string OLD_KEY{"wkey"};
50
const std::string ORDERPOSNEXT{"orderposnext"};
51
const std::string POOL{"pool"};
52
const std::string PURPOSE{"purpose"};
53
const std::string SETTINGS{"settings"};
54
const std::string TX{"tx"};
55
const std::string WTX_VARIANT{"wtxvariant"};
56
const std::string VERSION{"version"};
57
const std::string WALLETDESCRIPTOR{"walletdescriptor"};
58
const std::string WALLETDESCRIPTORCACHE{"walletdescriptorcache"};
59
const std::string WALLETDESCRIPTORLHCACHE{"walletdescriptorlhcache"};
60
const std::string WALLETDESCRIPTORCKEY{"walletdescriptorckey"};
61
const std::string WALLETDESCRIPTORKEY{"walletdescriptorkey"};
62
const std::string WATCHMETA{"watchmeta"};
63
const std::string WATCHS{"watchs"};
64
const std::unordered_set<std::string> LEGACY_TYPES{CRYPTED_KEY, CSCRIPT, DEFAULTKEY, HDCHAIN, KEYMETA, KEY, OLD_KEY, POOL, WATCHMETA, WATCHS};
65
} // namespace DBKeys
66
67
void LogDBInfo()
68
0
{
69
    // Add useful DB information here. This will be printed during startup.
70
0
    LogInfo("Using SQLite Version %s", SQLiteDatabaseVersion());
71
0
}
72
73
//
74
// WalletBatch
75
//
76
77
bool WalletBatch::WriteName(const std::string& strAddress, const std::string& strName)
78
165k
{
79
165k
    return WriteIC(std::make_pair(DBKeys::NAME, strAddress), strName);
80
165k
}
81
82
bool WalletBatch::EraseName(const std::string& strAddress)
83
0
{
84
    // This should only be used for sending addresses, never for receiving addresses,
85
    // receiving addresses must always have an address book entry if they're not change return.
86
0
    return EraseIC(std::make_pair(DBKeys::NAME, strAddress));
87
0
}
88
89
bool WalletBatch::WritePurpose(const std::string& strAddress, const std::string& strPurpose)
90
165k
{
91
165k
    return WriteIC(std::make_pair(DBKeys::PURPOSE, strAddress), strPurpose);
92
165k
}
93
94
bool WalletBatch::ErasePurpose(const std::string& strAddress)
95
0
{
96
0
    return EraseIC(std::make_pair(DBKeys::PURPOSE, strAddress));
97
0
}
98
99
bool WalletBatch::WriteTx(const CWalletTx& wtx)
100
0
{
101
0
    const Txid txid = wtx.GetHash();
102
    // Persist all witness variants. Including the canonical one
103
0
    for (const auto& [wtxid, tx] : wtx.GetTxs()) {
  Branch (103:34): [True: 0, False: 0]
104
0
        if (!WriteWtxVariant(txid, tx)) return false;
  Branch (104:13): [True: 0, False: 0]
105
0
    }
106
0
    return WriteIC(std::make_pair(DBKeys::TX, txid), wtx);
107
0
}
108
109
bool WalletBatch::EraseTx(Txid hash)
110
0
{
111
0
    if (!EraseIC(std::make_pair(DBKeys::TX, hash.ToUint256()))) return false;
  Branch (111:9): [True: 0, False: 0]
112
    // Drop all witness variant records too, so none are left dangling
113
0
    return m_batch->ErasePrefix(DataStream() << DBKeys::WTX_VARIANT << hash);
114
0
}
115
116
bool WalletBatch::WriteWtxVariant(const Txid& txid, const CTransactionRef& tx)
117
0
{
118
0
    return WriteIC(std::make_pair(DBKeys::WTX_VARIANT, std::make_pair(txid, tx->GetWitnessHash())), TX_WITH_WITNESS(tx));
119
0
}
120
121
bool WalletBatch::WriteKeyMetadata(const CKeyMetadata& meta, const CPubKey& pubkey, const bool overwrite)
122
0
{
123
0
    return WriteIC(std::make_pair(DBKeys::KEYMETA, pubkey), meta, overwrite);
124
0
}
125
126
bool WalletBatch::WriteKey(const CPubKey& vchPubKey, const CPrivKey& vchPrivKey, const CKeyMetadata& keyMeta)
127
0
{
128
0
    if (!WriteKeyMetadata(keyMeta, vchPubKey, false)) {
  Branch (128:9): [True: 0, False: 0]
129
0
        return false;
130
0
    }
131
132
    // hash pubkey/privkey to accelerate wallet load
133
0
    const auto keypair_hash = Hash(vchPubKey, vchPrivKey);
134
135
0
    return WriteIC(std::make_pair(DBKeys::KEY, vchPubKey), std::make_pair(vchPrivKey, keypair_hash), false);
136
0
}
137
138
bool WalletBatch::WriteCryptedKey(const CPubKey& vchPubKey,
139
                                const std::vector<unsigned char>& vchCryptedSecret,
140
                                const CKeyMetadata &keyMeta)
141
0
{
142
0
    if (!WriteKeyMetadata(keyMeta, vchPubKey, true)) {
  Branch (142:9): [True: 0, False: 0]
143
0
        return false;
144
0
    }
145
146
    // Compute a checksum of the encrypted key
147
0
    uint256 checksum = Hash(vchCryptedSecret);
148
149
0
    const auto key = std::make_pair(DBKeys::CRYPTED_KEY, vchPubKey);
150
0
    if (!WriteIC(key, std::make_pair(vchCryptedSecret, checksum), false)) {
  Branch (150:9): [True: 0, False: 0]
151
        // It may already exist, so try writing just the checksum
152
0
        std::vector<unsigned char> val;
153
0
        if (!m_batch->Read(key, val)) {
  Branch (153:13): [True: 0, False: 0]
154
0
            return false;
155
0
        }
156
0
        if (!WriteIC(key, std::make_pair(val, checksum), true)) {
  Branch (156:13): [True: 0, False: 0]
157
0
            return false;
158
0
        }
159
0
    }
160
0
    EraseIC(std::make_pair(DBKeys::KEY, vchPubKey));
161
0
    return true;
162
0
}
163
164
bool WalletBatch::WriteMasterKey(unsigned int nID, const CMasterKey& kMasterKey)
165
0
{
166
0
    return WriteIC(std::make_pair(DBKeys::MASTER_KEY, nID), kMasterKey, true);
167
0
}
168
169
bool WalletBatch::EraseMasterKey(unsigned int id)
170
0
{
171
0
    return EraseIC(std::make_pair(DBKeys::MASTER_KEY, id));
172
0
}
173
174
bool WalletBatch::WriteWatchOnly(const CScript &dest, const CKeyMetadata& keyMeta)
175
0
{
176
0
    if (!WriteIC(std::make_pair(DBKeys::WATCHMETA, dest), keyMeta)) {
  Branch (176:9): [True: 0, False: 0]
177
0
        return false;
178
0
    }
179
0
    return WriteIC(std::make_pair(DBKeys::WATCHS, dest), uint8_t{'1'});
180
0
}
181
182
bool WalletBatch::WriteBestBlock(const CBlockLocator& locator)
183
9.68k
{
184
9.68k
    WriteIC(DBKeys::BESTBLOCK, CBlockLocator()); // Write empty block locator so versions that require a merkle branch automatically rescan
185
9.68k
    return WriteIC(DBKeys::BESTBLOCK_NOMERKLE, locator);
186
9.68k
}
187
188
bool WalletBatch::ReadBestBlock(CBlockLocator& locator)
189
0
{
190
0
    if (m_batch->Read(DBKeys::BESTBLOCK, locator) && !locator.vHave.empty()) return true;
  Branch (190:9): [True: 0, False: 0]
  Branch (190:54): [True: 0, False: 0]
191
0
    return m_batch->Read(DBKeys::BESTBLOCK_NOMERKLE, locator);
192
0
}
193
194
bool WalletBatch::IsEncrypted()
195
0
{
196
0
    DataStream prefix;
197
0
    prefix << DBKeys::MASTER_KEY;
198
0
    if (auto cursor = m_batch->GetNewPrefixCursor(prefix)) {
  Branch (198:14): [True: 0, False: 0]
199
0
        DataStream k, v;
200
0
        if (cursor->Next(k, v) == DatabaseCursor::Status::MORE) return true;
  Branch (200:13): [True: 0, False: 0]
201
0
    }
202
0
    return false;
203
0
}
204
205
bool WalletBatch::WriteOrderPosNext(int64_t nOrderPosNext)
206
0
{
207
0
    return WriteIC(DBKeys::ORDERPOSNEXT, nOrderPosNext);
208
0
}
209
210
bool WalletBatch::WriteActiveScriptPubKeyMan(uint8_t type, const uint256& id, bool internal)
211
11.3k
{
212
11.3k
    std::string key = internal ? DBKeys::ACTIVEINTERNALSPK : DBKeys::ACTIVEEXTERNALSPK;
  Branch (212:23): [True: 5.67k, False: 5.67k]
213
11.3k
    return WriteIC(make_pair(key, type), id);
214
11.3k
}
215
216
bool WalletBatch::EraseActiveScriptPubKeyMan(uint8_t type, bool internal)
217
0
{
218
0
    const std::string key{internal ? DBKeys::ACTIVEINTERNALSPK : DBKeys::ACTIVEEXTERNALSPK};
  Branch (218:27): [True: 0, False: 0]
219
0
    return EraseIC(make_pair(key, type));
220
0
}
221
222
bool WalletBatch::WriteDescriptorKey(const uint256& desc_id, const CPubKey& pubkey, const CPrivKey& privkey)
223
31.9k
{
224
    // hash pubkey/privkey to accelerate wallet load
225
31.9k
    const auto keypair_hash = Hash(pubkey, privkey);
226
227
31.9k
    return WriteIC(std::make_pair(DBKeys::WALLETDESCRIPTORKEY, std::make_pair(desc_id, pubkey)), std::make_pair(privkey, keypair_hash), false);
228
31.9k
}
229
230
bool WalletBatch::WriteCryptedDescriptorKey(const uint256& desc_id, const CPubKey& pubkey, const std::vector<unsigned char>& secret)
231
0
{
232
0
    if (!WriteIC(std::make_pair(DBKeys::WALLETDESCRIPTORCKEY, std::make_pair(desc_id, pubkey)), secret, false)) {
  Branch (232:9): [True: 0, False: 0]
233
0
        return false;
234
0
    }
235
0
    EraseIC(std::make_pair(DBKeys::WALLETDESCRIPTORKEY, std::make_pair(desc_id, pubkey)));
236
0
    return true;
237
0
}
238
239
bool WalletBatch::WriteDescriptor(const uint256& desc_id, const WalletDescriptor& descriptor)
240
489k
{
241
489k
    return WriteIC(make_pair(DBKeys::WALLETDESCRIPTOR, desc_id), descriptor);
242
489k
}
243
244
bool WalletBatch::WriteDescriptorDerivedCache(const CExtPubKey& xpub, const uint256& desc_id, uint32_t key_exp_index, uint32_t der_index)
245
39.3k
{
246
39.3k
    std::vector<unsigned char> ser_xpub(BIP32_EXTKEY_SIZE);
247
39.3k
    xpub.Encode(ser_xpub.data());
248
39.3k
    return WriteIC(std::make_pair(std::make_pair(DBKeys::WALLETDESCRIPTORCACHE, desc_id), std::make_pair(key_exp_index, der_index)), ser_xpub);
249
39.3k
}
250
251
bool WalletBatch::WriteDescriptorParentCache(const CExtPubKey& xpub, const uint256& desc_id, uint32_t key_exp_index)
252
37.1k
{
253
37.1k
    std::vector<unsigned char> ser_xpub(BIP32_EXTKEY_SIZE);
254
37.1k
    xpub.Encode(ser_xpub.data());
255
37.1k
    return WriteIC(std::make_pair(std::make_pair(DBKeys::WALLETDESCRIPTORCACHE, desc_id), key_exp_index), ser_xpub);
256
37.1k
}
257
258
bool WalletBatch::WriteDescriptorLastHardenedCache(const CExtPubKey& xpub, const uint256& desc_id, uint32_t key_exp_index)
259
2.30k
{
260
2.30k
    std::vector<unsigned char> ser_xpub(BIP32_EXTKEY_SIZE);
261
2.30k
    xpub.Encode(ser_xpub.data());
262
2.30k
    return WriteIC(std::make_pair(std::make_pair(DBKeys::WALLETDESCRIPTORLHCACHE, desc_id), key_exp_index), ser_xpub);
263
2.30k
}
264
265
bool WalletBatch::WriteDescriptorCacheItems(const uint256& desc_id, const DescriptorCache& cache)
266
260k
{
267
260k
    for (const auto& parent_xpub_pair : cache.GetCachedParentExtPubKeys()) {
  Branch (267:39): [True: 37.1k, False: 260k]
268
37.1k
        if (!WriteDescriptorParentCache(parent_xpub_pair.second, desc_id, parent_xpub_pair.first)) {
  Branch (268:13): [True: 0, False: 37.1k]
269
0
            return false;
270
0
        }
271
37.1k
    }
272
260k
    for (const auto& derived_xpub_map_pair : cache.GetCachedDerivedExtPubKeys()) {
  Branch (272:44): [True: 39.3k, False: 260k]
273
39.3k
        for (const auto& derived_xpub_pair : derived_xpub_map_pair.second) {
  Branch (273:44): [True: 39.3k, False: 39.3k]
274
39.3k
            if (!WriteDescriptorDerivedCache(derived_xpub_pair.second, desc_id, derived_xpub_map_pair.first, derived_xpub_pair.first)) {
  Branch (274:17): [True: 0, False: 39.3k]
275
0
                return false;
276
0
            }
277
39.3k
        }
278
39.3k
    }
279
260k
    for (const auto& lh_xpub_pair : cache.GetCachedLastHardenedExtPubKeys()) {
  Branch (279:35): [True: 2.30k, False: 260k]
280
2.30k
        if (!WriteDescriptorLastHardenedCache(lh_xpub_pair.second, desc_id, lh_xpub_pair.first)) {
  Branch (280:13): [True: 0, False: 2.30k]
281
0
            return false;
282
0
        }
283
2.30k
    }
284
260k
    return true;
285
260k
}
286
287
bool WalletBatch::WriteLockedUTXO(const COutPoint& output)
288
0
{
289
0
    return WriteIC(std::make_pair(DBKeys::LOCKED_UTXO, std::make_pair(output.hash, output.n)), uint8_t{'1'});
290
0
}
291
292
bool WalletBatch::EraseLockedUTXO(const COutPoint& output)
293
0
{
294
0
    return EraseIC(std::make_pair(DBKeys::LOCKED_UTXO, std::make_pair(output.hash, output.n)));
295
0
}
296
297
bool LoadKey(CWallet* pwallet, DataStream& ssKey, DataStream& ssValue, std::string& strErr)
298
0
{
299
0
    LOCK(pwallet->cs_wallet);
300
0
    try {
301
0
        CPubKey vchPubKey;
302
0
        ssKey >> vchPubKey;
303
0
        if (!vchPubKey.IsValid())
  Branch (303:13): [True: 0, False: 0]
304
0
        {
305
0
            strErr = "Error reading wallet database: CPubKey corrupt";
306
0
            return false;
307
0
        }
308
0
        CKey key;
309
0
        CPrivKey pkey;
310
0
        uint256 hash;
311
312
0
        ssValue >> pkey;
313
314
        // Old wallets store keys as DBKeys::KEY [pubkey] => [privkey]
315
        // ... which was slow for wallets with lots of keys, because the public key is re-derived from the private key
316
        // using EC operations as a checksum.
317
        // Newer wallets store keys as DBKeys::KEY [pubkey] => [privkey][hash(pubkey,privkey)], which is much faster while
318
        // remaining backwards-compatible.
319
0
        try
320
0
        {
321
0
            ssValue >> hash;
322
0
        }
323
0
        catch (const std::ios_base::failure&) {}
324
325
0
        bool fSkipCheck = false;
326
327
0
        if (!hash.IsNull())
  Branch (327:13): [True: 0, False: 0]
328
0
        {
329
            // hash pubkey/privkey to accelerate wallet load
330
0
            const auto keypair_hash = Hash(vchPubKey, pkey);
331
332
0
            if (keypair_hash != hash)
  Branch (332:17): [True: 0, False: 0]
333
0
            {
334
0
                strErr = "Error reading wallet database: CPubKey/CPrivKey corrupt";
335
0
                return false;
336
0
            }
337
338
0
            fSkipCheck = true;
339
0
        }
340
341
0
        if (!key.Load(pkey, vchPubKey, fSkipCheck))
  Branch (341:13): [True: 0, False: 0]
342
0
        {
343
0
            strErr = "Error reading wallet database: CPrivKey corrupt";
344
0
            return false;
345
0
        }
346
0
        if (!pwallet->GetOrCreateLegacyDataSPKM()->LoadKey(key, vchPubKey))
  Branch (346:13): [True: 0, False: 0]
347
0
        {
348
0
            strErr = "Error reading wallet database: LegacyDataSPKM::LoadKey failed";
349
0
            return false;
350
0
        }
351
0
    } catch (const std::exception& e) {
352
0
        if (strErr.empty()) {
  Branch (352:13): [True: 0, False: 0]
353
0
            strErr = e.what();
354
0
        }
355
0
        return false;
356
0
    }
357
0
    return true;
358
0
}
359
360
bool LoadCryptedKey(CWallet* pwallet, DataStream& ssKey, DataStream& ssValue, std::string& strErr)
361
0
{
362
0
    LOCK(pwallet->cs_wallet);
363
0
    try {
364
0
        CPubKey vchPubKey;
365
0
        ssKey >> vchPubKey;
366
0
        if (!vchPubKey.IsValid())
  Branch (366:13): [True: 0, False: 0]
367
0
        {
368
0
            strErr = "Error reading wallet database: CPubKey corrupt";
369
0
            return false;
370
0
        }
371
0
        std::vector<unsigned char> vchPrivKey;
372
0
        ssValue >> vchPrivKey;
373
374
        // Get the checksum and check it
375
0
        bool checksum_valid = false;
376
0
        if (!ssValue.empty()) {
  Branch (376:13): [True: 0, False: 0]
377
0
            uint256 checksum;
378
0
            ssValue >> checksum;
379
0
            if (!(checksum_valid = Hash(vchPrivKey) == checksum)) {
  Branch (379:17): [True: 0, False: 0]
380
0
                strErr = "Error reading wallet database: Encrypted key corrupt";
381
0
                return false;
382
0
            }
383
0
        }
384
385
0
        if (!pwallet->GetOrCreateLegacyDataSPKM()->LoadCryptedKey(vchPubKey, vchPrivKey, checksum_valid))
  Branch (385:13): [True: 0, False: 0]
386
0
        {
387
0
            strErr = "Error reading wallet database: LegacyDataSPKM::LoadCryptedKey failed";
388
0
            return false;
389
0
        }
390
0
    } catch (const std::exception& e) {
391
0
        if (strErr.empty()) {
  Branch (391:13): [True: 0, False: 0]
392
0
            strErr = e.what();
393
0
        }
394
0
        return false;
395
0
    }
396
0
    return true;
397
0
}
398
399
bool LoadEncryptionKey(CWallet* pwallet, DataStream& ssKey, DataStream& ssValue, std::string& strErr)
400
0
{
401
0
    LOCK(pwallet->cs_wallet);
402
0
    try {
403
        // Master encryption key is loaded into only the wallet and not any of the ScriptPubKeyMans.
404
0
        unsigned int nID;
405
0
        ssKey >> nID;
406
0
        CMasterKey kMasterKey;
407
0
        ssValue >> kMasterKey;
408
0
        if(pwallet->mapMasterKeys.contains(nID))
  Branch (408:12): [True: 0, False: 0]
409
0
        {
410
0
            strErr = strprintf("Error reading wallet database: duplicate CMasterKey id %u", nID);
411
0
            return false;
412
0
        }
413
0
        pwallet->mapMasterKeys[nID] = kMasterKey;
414
0
        if (pwallet->nMasterKeyMaxID < nID)
  Branch (414:13): [True: 0, False: 0]
415
0
            pwallet->nMasterKeyMaxID = nID;
416
417
0
    } catch (const std::exception& e) {
418
0
        if (strErr.empty()) {
  Branch (418:13): [True: 0, False: 0]
419
0
            strErr = e.what();
420
0
        }
421
0
        return false;
422
0
    }
423
0
    return true;
424
0
}
425
426
bool LoadHDChain(CWallet* pwallet, DataStream& ssValue, std::string& strErr)
427
0
{
428
0
    LOCK(pwallet->cs_wallet);
429
0
    try {
430
0
        CHDChain chain;
431
0
        ssValue >> chain;
432
0
        pwallet->GetOrCreateLegacyDataSPKM()->LoadHDChain(chain);
433
0
    } catch (const std::exception& e) {
434
0
        if (strErr.empty()) {
  Branch (434:13): [True: 0, False: 0]
435
0
            strErr = e.what();
436
0
        }
437
0
        return false;
438
0
    }
439
0
    return true;
440
0
}
441
442
static DBErrors LoadWalletFlags(CWallet* pwallet, DatabaseBatch& batch) EXCLUSIVE_LOCKS_REQUIRED(pwallet->cs_wallet)
443
0
{
444
0
    AssertLockHeld(pwallet->cs_wallet);
445
0
    uint64_t flags;
446
0
    if (batch.Read(DBKeys::FLAGS, flags)) {
  Branch (446:9): [True: 0, False: 0]
447
0
        if (!pwallet->LoadWalletFlags(flags)) {
  Branch (447:13): [True: 0, False: 0]
448
0
            pwallet->WalletLogPrintf("Error reading wallet database: Unknown non-tolerable wallet flags found\n");
449
0
            return DBErrors::TOO_NEW;
450
0
        }
451
        // All wallets must be descriptor wallets unless opened with a bdb_ro db
452
        // bdb_ro is only used for legacy to descriptor migration.
453
0
        if (pwallet->GetDatabase().Format() != "bdb_ro" && !pwallet->IsWalletFlagSet(WALLET_FLAG_DESCRIPTORS)) {
  Branch (453:13): [True: 0, False: 0]
  Branch (453:13): [True: 0, False: 0]
  Branch (453:60): [True: 0, False: 0]
454
0
            return DBErrors::LEGACY_WALLET;
455
0
        }
456
0
    }
457
0
    return DBErrors::LOAD_OK;
458
0
}
459
460
struct LoadResult
461
{
462
    DBErrors m_result{DBErrors::LOAD_OK};
463
    int m_records{0};
464
};
465
466
using LoadFunc = std::function<DBErrors(CWallet* pwallet, DataStream& key, DataStream& value, std::string& err)>;
467
static LoadResult LoadRecords(CWallet* pwallet, DatabaseBatch& batch, const std::string& key, DataStream& prefix, LoadFunc load_func)
468
0
{
469
0
    LoadResult result;
470
0
    DataStream ssKey;
471
0
    DataStream ssValue{};
472
473
0
    Assume(!prefix.empty());
474
0
    std::unique_ptr<DatabaseCursor> cursor = batch.GetNewPrefixCursor(prefix);
475
0
    if (!cursor) {
  Branch (475:9): [True: 0, False: 0]
476
0
        pwallet->WalletLogPrintf("Error getting database cursor for '%s' records\n", key);
477
0
        result.m_result = DBErrors::CORRUPT;
478
0
        return result;
479
0
    }
480
481
0
    while (true) {
  Branch (481:12): [Folded - Ignored]
482
0
        DatabaseCursor::Status status = cursor->Next(ssKey, ssValue);
483
0
        if (status == DatabaseCursor::Status::DONE) {
  Branch (483:13): [True: 0, False: 0]
484
0
            break;
485
0
        } else if (status == DatabaseCursor::Status::FAIL) {
  Branch (485:20): [True: 0, False: 0]
486
0
            pwallet->WalletLogPrintf("Error reading next '%s' record for wallet database\n", key);
487
0
            result.m_result = DBErrors::CORRUPT;
488
0
            return result;
489
0
        }
490
0
        std::string type;
491
0
        ssKey >> type;
492
0
        assert(type == key);
  Branch (492:9): [True: 0, False: 0]
493
0
        std::string error;
494
0
        DBErrors record_res = load_func(pwallet, ssKey, ssValue, error);
495
0
        if (record_res != DBErrors::LOAD_OK) {
  Branch (495:13): [True: 0, False: 0]
496
0
            pwallet->WalletLogPrintf("%s\n", error);
497
0
        }
498
0
        result.m_result = std::max(result.m_result, record_res);
499
0
        ++result.m_records;
500
0
    }
501
0
    return result;
502
0
}
503
504
static LoadResult LoadRecords(CWallet* pwallet, DatabaseBatch& batch, const std::string& key, LoadFunc load_func)
505
0
{
506
0
    DataStream prefix;
507
0
    prefix << key;
508
0
    return LoadRecords(pwallet, batch, key, prefix, load_func);
509
0
}
510
511
bool HasLegacyRecords(CWallet& wallet)
512
0
{
513
0
    const auto& batch = wallet.GetDatabase().MakeBatch();
514
0
    return HasLegacyRecords(wallet, *batch);
515
0
}
516
517
bool HasLegacyRecords(CWallet& wallet, DatabaseBatch& batch)
518
0
{
519
0
    for (const auto& type : DBKeys::LEGACY_TYPES) {
  Branch (519:27): [True: 0, False: 0]
520
0
        DataStream key;
521
0
        DataStream value{};
522
0
        DataStream prefix;
523
524
0
        prefix << type;
525
0
        std::unique_ptr<DatabaseCursor> cursor = batch.GetNewPrefixCursor(prefix);
526
0
        if (!cursor) {
  Branch (526:13): [True: 0, False: 0]
527
            // Could only happen on a closed db, which means there is an error in the code flow.
528
0
            throw std::runtime_error(strprintf("Error getting database cursor for '%s' records", type));
529
0
        }
530
531
0
        DatabaseCursor::Status status = cursor->Next(key, value);
532
0
        if (status != DatabaseCursor::Status::DONE) {
  Branch (532:13): [True: 0, False: 0]
533
0
            return true;
534
0
        }
535
0
    }
536
0
    return false;
537
0
}
538
539
static DBErrors LoadLegacyWalletRecords(CWallet* pwallet, DatabaseBatch& batch, int last_client) EXCLUSIVE_LOCKS_REQUIRED(pwallet->cs_wallet)
540
0
{
541
0
    AssertLockHeld(pwallet->cs_wallet);
542
0
    DBErrors result = DBErrors::LOAD_OK;
543
544
    // Make sure descriptor wallets don't have any legacy records
545
0
    if (pwallet->IsWalletFlagSet(WALLET_FLAG_DESCRIPTORS)) {
  Branch (545:9): [True: 0, False: 0]
546
0
        if (HasLegacyRecords(*pwallet, batch)) {
  Branch (546:13): [True: 0, False: 0]
547
0
            pwallet->WalletLogPrintf("Error: Unexpected legacy entry found in descriptor wallet %s. The wallet might have been tampered with or created with malicious intent.\n", pwallet->GetName());
548
0
            return DBErrors::UNEXPECTED_LEGACY_ENTRY;
549
0
        }
550
551
0
        return DBErrors::LOAD_OK;
552
0
    }
553
554
    // Load HD Chain
555
    // Note: There should only be one HDCHAIN record with no data following the type
556
0
    LoadResult hd_chain_res = LoadRecords(pwallet, batch, DBKeys::HDCHAIN,
557
0
        [] (CWallet* pwallet, DataStream& key, DataStream& value, std::string& err) {
558
0
        return LoadHDChain(pwallet, value, err) ? DBErrors:: LOAD_OK : DBErrors::CORRUPT;
  Branch (558:16): [True: 0, False: 0]
559
0
    });
560
0
    result = std::max(result, hd_chain_res.m_result);
561
562
    // Load unencrypted keys
563
0
    LoadResult key_res = LoadRecords(pwallet, batch, DBKeys::KEY,
564
0
        [] (CWallet* pwallet, DataStream& key, DataStream& value, std::string& err) {
565
0
        return LoadKey(pwallet, key, value, err) ? DBErrors::LOAD_OK : DBErrors::CORRUPT;
  Branch (565:16): [True: 0, False: 0]
566
0
    });
567
0
    result = std::max(result, key_res.m_result);
568
569
    // Load encrypted keys
570
0
    LoadResult ckey_res = LoadRecords(pwallet, batch, DBKeys::CRYPTED_KEY,
571
0
        [] (CWallet* pwallet, DataStream& key, DataStream& value, std::string& err) {
572
0
        return LoadCryptedKey(pwallet, key, value, err) ? DBErrors::LOAD_OK : DBErrors::CORRUPT;
  Branch (572:16): [True: 0, False: 0]
573
0
    });
574
0
    result = std::max(result, ckey_res.m_result);
575
576
    // Load scripts
577
0
    LoadResult script_res = LoadRecords(pwallet, batch, DBKeys::CSCRIPT,
578
0
        [] (CWallet* pwallet, DataStream& key, DataStream& value, std::string& strErr) {
579
0
        uint160 hash;
580
0
        key >> hash;
581
0
        CScript script;
582
0
        value >> script;
583
0
        if (!pwallet->GetOrCreateLegacyDataSPKM()->LoadCScript(script))
  Branch (583:13): [True: 0, False: 0]
584
0
        {
585
0
            strErr = "Error reading wallet database: LegacyDataSPKM::LoadCScript failed";
586
0
            return DBErrors::NONCRITICAL_ERROR;
587
0
        }
588
0
        return DBErrors::LOAD_OK;
589
0
    });
590
0
    result = std::max(result, script_res.m_result);
591
592
    // Load keymeta
593
0
    std::map<uint160, CHDChain> hd_chains;
594
0
    LoadResult keymeta_res = LoadRecords(pwallet, batch, DBKeys::KEYMETA,
595
0
        [&hd_chains] (CWallet* pwallet, DataStream& key, DataStream& value, std::string& strErr) {
596
0
        CPubKey vchPubKey;
597
0
        key >> vchPubKey;
598
0
        CKeyMetadata keyMeta;
599
0
        value >> keyMeta;
600
0
        pwallet->GetOrCreateLegacyDataSPKM()->LoadKeyMetadata(vchPubKey.GetID(), keyMeta);
601
602
        // Extract some CHDChain info from this metadata if it has any
603
0
        if (keyMeta.nVersion >= CKeyMetadata::VERSION_WITH_HDDATA && !keyMeta.hd_seed_id.IsNull() && keyMeta.hdKeypath.size() > 0) {
  Branch (603:13): [True: 0, False: 0]
  Branch (603:70): [True: 0, False: 0]
  Branch (603:102): [True: 0, False: 0]
604
            // Get the path from the key origin or from the path string
605
            // Not applicable when path is "s" or "m" as those indicate a seed
606
            // See https://github.com/bitcoin/bitcoin/pull/12924
607
0
            bool internal = false;
608
0
            uint32_t index = 0;
609
0
            if (keyMeta.hdKeypath != "s" && keyMeta.hdKeypath != "m") {
  Branch (609:17): [True: 0, False: 0]
  Branch (609:45): [True: 0, False: 0]
610
0
                std::vector<uint32_t> path;
611
0
                if (keyMeta.has_key_origin) {
  Branch (611:21): [True: 0, False: 0]
612
                    // We have a key origin, so pull it from its path vector
613
0
                    path = keyMeta.key_origin.path;
614
0
                } else {
615
                    // No key origin, have to parse the string
616
0
                    if (!ParseHDKeypath(keyMeta.hdKeypath, path)) {
  Branch (616:25): [True: 0, False: 0]
617
0
                        strErr = "Error reading wallet database: keymeta with invalid HD keypath";
618
0
                        return DBErrors::NONCRITICAL_ERROR;
619
0
                    }
620
0
                }
621
622
                // Extract the index and internal from the path
623
                // Path string is m/0'/k'/i'
624
                // Path vector is [0', k', i'] (but as ints OR'd with the hardened bit
625
                // k == 0 for external, 1 for internal. i is the index
626
0
                if (path.size() != 3) {
  Branch (626:21): [True: 0, False: 0]
627
0
                    strErr = "Error reading wallet database: keymeta found with unexpected path";
628
0
                    return DBErrors::NONCRITICAL_ERROR;
629
0
                }
630
0
                if (path[0] != BIP32_HARDENED_FLAG) {
  Branch (630:21): [True: 0, False: 0]
631
0
                    strErr = strprintf("Unexpected path index of 0x%08x (expected 0x80000000) for the element at index 0", path[0]);
632
0
                    return DBErrors::NONCRITICAL_ERROR;
633
0
                }
634
0
                if (path[1] != BIP32_HARDENED_FLAG && path[1] != (1 | BIP32_HARDENED_FLAG)) {
  Branch (634:21): [True: 0, False: 0]
  Branch (634:55): [True: 0, False: 0]
635
0
                    strErr = strprintf("Unexpected path index of 0x%08x (expected 0x80000000 or 0x80000001) for the element at index 1", path[1]);
636
0
                    return DBErrors::NONCRITICAL_ERROR;
637
0
                }
638
0
                if ((path[2] & BIP32_HARDENED_FLAG) == 0) {
  Branch (638:21): [True: 0, False: 0]
639
0
                    strErr = strprintf("Unexpected path index of 0x%08x (expected to be greater than or equal to 0x80000000)", path[2]);
640
0
                    return DBErrors::NONCRITICAL_ERROR;
641
0
                }
642
0
                internal = path[1] == (1 | BIP32_HARDENED_FLAG);
643
0
                index = path[2] & ~BIP32_HARDENED_FLAG;
644
0
            }
645
646
            // Insert a new CHDChain, or get the one that already exists
647
0
            auto [ins, inserted] = hd_chains.emplace(keyMeta.hd_seed_id, CHDChain());
648
0
            CHDChain& chain = ins->second;
649
0
            if (inserted) {
  Branch (649:17): [True: 0, False: 0]
650
                // For new chains, we want to default to VERSION_HD_BASE until we see an internal
651
0
                chain.nVersion = CHDChain::VERSION_HD_BASE;
652
0
                chain.seed_id = keyMeta.hd_seed_id;
653
0
            }
654
0
            if (internal) {
  Branch (654:17): [True: 0, False: 0]
655
0
                chain.nVersion = CHDChain::VERSION_HD_CHAIN_SPLIT;
656
0
                chain.nInternalChainCounter = std::max(chain.nInternalChainCounter, index + 1);
657
0
            } else {
658
0
                chain.nExternalChainCounter = std::max(chain.nExternalChainCounter, index + 1);
659
0
            }
660
0
        }
661
0
        return DBErrors::LOAD_OK;
662
0
    });
663
0
    result = std::max(result, keymeta_res.m_result);
664
665
    // Set inactive chains
666
0
    if (!hd_chains.empty()) {
  Branch (666:9): [True: 0, False: 0]
667
0
        LegacyDataSPKM* legacy_spkm = pwallet->GetLegacyDataSPKM();
668
0
        if (legacy_spkm) {
  Branch (668:13): [True: 0, False: 0]
669
0
            for (const auto& [hd_seed_id, chain] : hd_chains) {
  Branch (669:50): [True: 0, False: 0]
670
0
                if (hd_seed_id != legacy_spkm->GetHDChain().seed_id) {
  Branch (670:21): [True: 0, False: 0]
671
0
                    legacy_spkm->AddInactiveHDChain(chain);
672
0
                }
673
0
            }
674
0
        } else {
675
0
            pwallet->WalletLogPrintf("Inactive HD chains found but no LegacyDataSPKM\n");
676
0
            result = DBErrors::CORRUPT;
677
0
        }
678
0
    }
679
680
    // Load watchonly scripts
681
0
    LoadResult watch_script_res = LoadRecords(pwallet, batch, DBKeys::WATCHS,
682
0
        [] (CWallet* pwallet, DataStream& key, DataStream& value, std::string& err) {
683
0
        CScript script;
684
0
        key >> script;
685
0
        uint8_t fYes;
686
0
        value >> fYes;
687
0
        if (fYes == '1') {
  Branch (687:13): [True: 0, False: 0]
688
0
            pwallet->GetOrCreateLegacyDataSPKM()->LoadWatchOnly(script);
689
0
        }
690
0
        return DBErrors::LOAD_OK;
691
0
    });
692
0
    result = std::max(result, watch_script_res.m_result);
693
694
    // Load watchonly meta
695
0
    LoadResult watch_meta_res = LoadRecords(pwallet, batch, DBKeys::WATCHMETA,
696
0
        [] (CWallet* pwallet, DataStream& key, DataStream& value, std::string& err) {
697
0
        CScript script;
698
0
        key >> script;
699
0
        CKeyMetadata keyMeta;
700
0
        value >> keyMeta;
701
0
        pwallet->GetOrCreateLegacyDataSPKM()->LoadScriptMetadata(CScriptID(script), keyMeta);
702
0
        return DBErrors::LOAD_OK;
703
0
    });
704
0
    result = std::max(result, watch_meta_res.m_result);
705
706
    // Deal with old "wkey" and "defaultkey" records.
707
    // These are not actually loaded, but we need to check for them
708
709
    // We don't want or need the default key, but if there is one set,
710
    // we want to make sure that it is valid so that we can detect corruption
711
    // Note: There should only be one DEFAULTKEY with nothing trailing the type
712
0
    LoadResult default_key_res = LoadRecords(pwallet, batch, DBKeys::DEFAULTKEY,
713
0
        [] (CWallet* pwallet, DataStream& key, DataStream& value, std::string& err) {
714
0
        CPubKey default_pubkey;
715
0
        try {
716
0
            value >> default_pubkey;
717
0
        } catch (const std::exception& e) {
718
0
            err = e.what();
719
0
            return DBErrors::CORRUPT;
720
0
        }
721
0
        if (!default_pubkey.IsValid()) {
  Branch (721:13): [True: 0, False: 0]
722
0
            err = "Error reading wallet database: Default Key corrupt";
723
0
            return DBErrors::CORRUPT;
724
0
        }
725
0
        return DBErrors::LOAD_OK;
726
0
    });
727
0
    result = std::max(result, default_key_res.m_result);
728
729
    // "wkey" records are unsupported, if we see any, throw an error
730
0
    LoadResult wkey_res = LoadRecords(pwallet, batch, DBKeys::OLD_KEY,
731
0
        [] (CWallet* pwallet, DataStream& key, DataStream& value, std::string& err) {
732
0
        err = "Found unsupported 'wkey' record, try loading with version 0.18";
733
0
        return DBErrors::LOAD_FAIL;
734
0
    });
735
0
    result = std::max(result, wkey_res.m_result);
736
737
0
    if (result <= DBErrors::NONCRITICAL_ERROR) {
  Branch (737:9): [True: 0, False: 0]
738
        // Only do logging and time first key update if there were no critical errors
739
0
        pwallet->WalletLogPrintf("Legacy Wallet Keys: %u plaintext, %u encrypted, %u w/ metadata, %u total.\n",
740
0
               key_res.m_records, ckey_res.m_records, keymeta_res.m_records, key_res.m_records + ckey_res.m_records);
741
0
    }
742
743
0
    return result;
744
0
}
745
746
template<typename... Args>
747
static DataStream PrefixStream(const Args&... args)
748
0
{
749
0
    DataStream prefix;
750
0
    SerializeMany(prefix, args...);
751
0
    return prefix;
752
0
}
753
754
static DBErrors LoadDescriptorWalletRecords(CWallet* pwallet, DatabaseBatch& batch, int last_client) EXCLUSIVE_LOCKS_REQUIRED(pwallet->cs_wallet)
755
0
{
756
0
    AssertLockHeld(pwallet->cs_wallet);
757
758
    // Load descriptor record
759
0
    int num_keys = 0;
760
0
    int num_ckeys= 0;
761
0
    LoadResult desc_res = LoadRecords(pwallet, batch, DBKeys::WALLETDESCRIPTOR,
762
0
        [&batch, &num_keys, &num_ckeys, &last_client] (CWallet* pwallet, DataStream& key, DataStream& value, std::string& strErr) {
763
0
        DBErrors result = DBErrors::LOAD_OK;
764
765
0
        uint256 id;
766
0
        key >> id;
767
0
        WalletDescriptor desc;
768
0
        try {
769
0
            value >> desc;
770
0
        } catch (const std::ios_base::failure& e) {
771
0
            strErr = strprintf("Error: Unrecognized descriptor found in wallet %s. ", pwallet->GetName());
772
0
            strErr += (last_client > CLIENT_VERSION) ? "The wallet might have been created on a newer version. " :
  Branch (772:23): [True: 0, False: 0]
773
0
                    "The database might be corrupted or the software version is not compatible with one of your wallet descriptors. ";
774
0
            strErr += "Please try running the latest software version";
775
            // Also include error details
776
0
            strErr = strprintf("%s\nDetails: %s", strErr, e.what());
777
0
            return DBErrors::UNKNOWN_DESCRIPTOR;
778
0
        }
779
780
0
        if (id != desc.id) {
  Branch (780:13): [True: 0, False: 0]
781
0
            strErr = "The descriptor ID calculated by the wallet differs from the one in DB";
782
0
            return DBErrors::CORRUPT;
783
0
        }
784
785
0
        DescriptorCache cache;
786
787
        // Get key cache for this descriptor
788
0
        DataStream prefix = PrefixStream(DBKeys::WALLETDESCRIPTORCACHE, id);
789
0
        LoadResult key_cache_res = LoadRecords(pwallet, batch, DBKeys::WALLETDESCRIPTORCACHE, prefix,
790
0
            [&id, &cache] (CWallet* pwallet, DataStream& key, DataStream& value, std::string& err) {
791
0
            bool parent = true;
792
0
            uint256 desc_id;
793
0
            uint32_t key_exp_index;
794
0
            uint32_t der_index;
795
0
            key >> desc_id;
796
0
            assert(desc_id == id);
  Branch (796:13): [True: 0, False: 0]
797
0
            key >> key_exp_index;
798
799
            // if the der_index exists, it's a derived xpub
800
0
            try
801
0
            {
802
0
                key >> der_index;
803
0
                parent = false;
804
0
            }
805
0
            catch (...) {}
806
807
0
            std::vector<unsigned char> ser_xpub(BIP32_EXTKEY_SIZE);
808
0
            value >> ser_xpub;
809
0
            CExtPubKey xpub;
810
0
            xpub.Decode(ser_xpub.data());
811
0
            if (parent) {
  Branch (811:17): [True: 0, False: 0]
812
0
                cache.CacheParentExtPubKey(key_exp_index, xpub);
813
0
            } else {
814
0
                cache.CacheDerivedExtPubKey(key_exp_index, der_index, xpub);
815
0
            }
816
0
            return DBErrors::LOAD_OK;
817
0
        });
818
0
        result = std::max(result, key_cache_res.m_result);
819
820
        // Get last hardened cache for this descriptor
821
0
        prefix = PrefixStream(DBKeys::WALLETDESCRIPTORLHCACHE, id);
822
0
        LoadResult lh_cache_res = LoadRecords(pwallet, batch, DBKeys::WALLETDESCRIPTORLHCACHE, prefix,
823
0
            [&id, &cache] (CWallet* pwallet, DataStream& key, DataStream& value, std::string& err) {
824
0
            uint256 desc_id;
825
0
            uint32_t key_exp_index;
826
0
            key >> desc_id;
827
0
            assert(desc_id == id);
  Branch (827:13): [True: 0, False: 0]
828
0
            key >> key_exp_index;
829
830
0
            std::vector<unsigned char> ser_xpub(BIP32_EXTKEY_SIZE);
831
0
            value >> ser_xpub;
832
0
            CExtPubKey xpub;
833
0
            xpub.Decode(ser_xpub.data());
834
0
            cache.CacheLastHardenedExtPubKey(key_exp_index, xpub);
835
0
            return DBErrors::LOAD_OK;
836
0
        });
837
0
        result = std::max(result, lh_cache_res.m_result);
838
839
        // Set the cache to the WalletDescriptor
840
0
        desc.cache = cache;
841
842
        // Get unencrypted keys
843
0
        KeyMap keys;
844
0
        prefix = PrefixStream(DBKeys::WALLETDESCRIPTORKEY, id);
845
0
        LoadResult key_res = LoadRecords(pwallet, batch, DBKeys::WALLETDESCRIPTORKEY, prefix,
846
0
            [&id, &keys] (CWallet* pwallet, DataStream& key, DataStream& value, std::string& strErr) {
847
0
            uint256 desc_id;
848
0
            CPubKey pubkey;
849
0
            key >> desc_id;
850
0
            assert(desc_id == id);
  Branch (850:13): [True: 0, False: 0]
851
0
            key >> pubkey;
852
0
            if (!pubkey.IsValid())
  Branch (852:17): [True: 0, False: 0]
853
0
            {
854
0
                strErr = "Error reading wallet database: descriptor unencrypted key CPubKey corrupt";
855
0
                return DBErrors::CORRUPT;
856
0
            }
857
0
            CKey privkey;
858
0
            CPrivKey pkey;
859
0
            uint256 hash;
860
861
0
            value >> pkey;
862
0
            value >> hash;
863
864
            // hash pubkey/privkey to accelerate wallet load
865
0
            const auto keypair_hash = Hash(pubkey, pkey);
866
867
0
            if (keypair_hash != hash)
  Branch (867:17): [True: 0, False: 0]
868
0
            {
869
0
                strErr = "Error reading wallet database: descriptor unencrypted key CPubKey/CPrivKey corrupt";
870
0
                return DBErrors::CORRUPT;
871
0
            }
872
873
0
            if (!privkey.Load(pkey, pubkey, true))
  Branch (873:17): [True: 0, False: 0]
874
0
            {
875
0
                strErr = "Error reading wallet database: descriptor unencrypted key CPrivKey corrupt";
876
0
                return DBErrors::CORRUPT;
877
0
            }
878
0
            keys[pubkey.GetID()] = privkey;
879
0
            return DBErrors::LOAD_OK;
880
0
        });
881
0
        result = std::max(result, key_res.m_result);
882
0
        num_keys = key_res.m_records;
883
884
        // Get encrypted keys
885
0
        CryptedKeyMap ckeys;
886
0
        prefix = PrefixStream(DBKeys::WALLETDESCRIPTORCKEY, id);
887
0
        LoadResult ckey_res = LoadRecords(pwallet, batch, DBKeys::WALLETDESCRIPTORCKEY, prefix,
888
0
            [&id, &ckeys] (CWallet* pwallet, DataStream& key, DataStream& value, std::string& err) {
889
0
            uint256 desc_id;
890
0
            CPubKey pubkey;
891
0
            key >> desc_id;
892
0
            assert(desc_id == id);
  Branch (892:13): [True: 0, False: 0]
893
0
            key >> pubkey;
894
0
            if (!pubkey.IsValid())
  Branch (894:17): [True: 0, False: 0]
895
0
            {
896
0
                err = "Error reading wallet database: descriptor encrypted key CPubKey corrupt";
897
0
                return DBErrors::CORRUPT;
898
0
            }
899
0
            std::vector<unsigned char> privkey;
900
0
            value >> privkey;
901
902
0
            ckeys[pubkey.GetID()] = std::make_pair(pubkey, privkey);
903
0
            return DBErrors::LOAD_OK;
904
0
        });
905
0
        result = std::max(result, ckey_res.m_result);
906
0
        num_ckeys = ckey_res.m_records;
907
908
0
        try {
909
0
            pwallet->LoadDescriptorScriptPubKeyMan(id, desc, keys, ckeys);
910
0
        } catch (std::runtime_error& e) {
911
0
            strErr = e.what();
912
0
            return DBErrors::CORRUPT;
913
0
        }
914
915
0
        return result;
916
0
    });
917
918
0
    if (desc_res.m_result <= DBErrors::NONCRITICAL_ERROR) {
  Branch (918:9): [True: 0, False: 0]
919
        // Only log if there are no critical errors
920
0
        pwallet->WalletLogPrintf("Descriptors: %u, Descriptor Keys: %u plaintext, %u encrypted, %u total.\n",
921
0
               desc_res.m_records, num_keys, num_ckeys, num_keys + num_ckeys);
922
0
    }
923
924
0
    return desc_res.m_result;
925
0
}
926
927
static DBErrors LoadAddressBookRecords(CWallet* pwallet, DatabaseBatch& batch) EXCLUSIVE_LOCKS_REQUIRED(pwallet->cs_wallet)
928
0
{
929
0
    AssertLockHeld(pwallet->cs_wallet);
930
0
    DBErrors result = DBErrors::LOAD_OK;
931
932
    // Load name record
933
0
    LoadResult name_res = LoadRecords(pwallet, batch, DBKeys::NAME,
934
0
        [] (CWallet* pwallet, DataStream& key, DataStream& value, std::string& err) EXCLUSIVE_LOCKS_REQUIRED(pwallet->cs_wallet) {
935
0
        std::string strAddress;
936
0
        key >> strAddress;
937
0
        std::string label;
938
0
        value >> label;
939
0
        pwallet->m_address_book[DecodeDestination(strAddress)].SetLabel(label);
940
0
        return DBErrors::LOAD_OK;
941
0
    });
942
0
    result = std::max(result, name_res.m_result);
943
944
    // Load purpose record
945
0
    LoadResult purpose_res = LoadRecords(pwallet, batch, DBKeys::PURPOSE,
946
0
        [] (CWallet* pwallet, DataStream& key, DataStream& value, std::string& err) EXCLUSIVE_LOCKS_REQUIRED(pwallet->cs_wallet) {
947
0
        std::string strAddress;
948
0
        key >> strAddress;
949
0
        std::string purpose_str;
950
0
        value >> purpose_str;
951
0
        std::optional<AddressPurpose> purpose{PurposeFromString(purpose_str)};
952
0
        if (!purpose) {
  Branch (952:13): [True: 0, False: 0]
953
0
            pwallet->WalletLogPrintf("Warning: nonstandard purpose string '%s' for address '%s'\n", purpose_str, strAddress);
954
0
        }
955
0
        pwallet->m_address_book[DecodeDestination(strAddress)].purpose = purpose;
956
0
        return DBErrors::LOAD_OK;
957
0
    });
958
0
    result = std::max(result, purpose_res.m_result);
959
960
    // Load destination data record
961
0
    LoadResult dest_res = LoadRecords(pwallet, batch, DBKeys::DESTDATA,
962
0
        [] (CWallet* pwallet, DataStream& key, DataStream& value, std::string& err) EXCLUSIVE_LOCKS_REQUIRED(pwallet->cs_wallet) {
963
0
        std::string strAddress, strKey, strValue;
964
0
        key >> strAddress;
965
0
        key >> strKey;
966
0
        value >> strValue;
967
0
        const CTxDestination& dest{DecodeDestination(strAddress)};
968
0
        if (strKey.compare("used") == 0) {
  Branch (968:13): [True: 0, False: 0]
969
            // Load "used" key indicating if an IsMine address has
970
            // previously been spent from with avoid_reuse option enabled.
971
            // The strValue is not used for anything currently, but could
972
            // hold more information in the future. Current values are just
973
            // "1" or "p" for present (which was written prior to
974
            // f5ba424cd44619d9b9be88b8593d69a7ba96db26).
975
0
            pwallet->LoadAddressPreviouslySpent(dest);
976
0
        } else if (strKey.starts_with("rr")) {
  Branch (976:20): [True: 0, False: 0]
977
            // Load "rr##" keys where ## is a decimal number, and strValue
978
            // is a serialized RecentRequestEntry object.
979
0
            pwallet->LoadAddressReceiveRequest(dest, strKey.substr(2), strValue);
980
0
        }
981
0
        return DBErrors::LOAD_OK;
982
0
    });
983
0
    result = std::max(result, dest_res.m_result);
984
985
0
    return result;
986
0
}
987
988
static std::map<Wtxid, CTransactionRef> ReadWtxVariants(DatabaseBatch& batch, const Txid& txid)
989
0
{
990
0
    std::map<Wtxid, CTransactionRef> variants;
991
992
0
    DataStream prefix;
993
0
    prefix << DBKeys::WTX_VARIANT << txid;
994
0
    std::unique_ptr<DatabaseCursor> cursor = batch.GetNewPrefixCursor(prefix);
995
0
    if (!cursor) {
  Branch (995:9): [True: 0, False: 0]
996
0
        throw std::runtime_error(strprintf("Error getting database cursor for '%s' records", DBKeys::WTX_VARIANT));
997
0
    }
998
999
0
    DataStream key;
1000
0
    DataStream value;
1001
0
    while (true) {
  Branch (1001:12): [Folded - Ignored]
1002
0
        DatabaseCursor::Status status = cursor->Next(key, value);
1003
0
        if (status == DatabaseCursor::Status::DONE) break;
  Branch (1003:13): [True: 0, False: 0]
1004
0
        if (status == DatabaseCursor::Status::FAIL) {
  Branch (1004:13): [True: 0, False: 0]
1005
0
            throw std::runtime_error(strprintf("Error reading '%s' record", DBKeys::WTX_VARIANT));
1006
0
        }
1007
0
        CTransactionRef tx;
1008
0
        value >> TX_WITH_WITNESS(tx);
1009
0
        if (tx->GetHash() != txid) {
  Branch (1009:13): [True: 0, False: 0]
1010
0
            throw std::runtime_error(strprintf("Corrupted witness variant, tx hash differs"));
1011
0
        }
1012
0
        if (!variants.emplace(tx->GetWitnessHash(), std::move(tx)).second) {
  Branch (1012:13): [True: 0, False: 0]
1013
0
            throw std::runtime_error(strprintf("Duplicate witness variant"));
1014
0
        }
1015
0
    }
1016
0
    return variants;
1017
0
}
1018
1019
static DBErrors LoadTxRecords(CWallet* pwallet, DatabaseBatch& batch, bool& any_unordered) EXCLUSIVE_LOCKS_REQUIRED(pwallet->cs_wallet)
1020
0
{
1021
0
    AssertLockHeld(pwallet->cs_wallet);
1022
0
    DBErrors result = DBErrors::LOAD_OK;
1023
1024
    // Load tx record
1025
0
    any_unordered = false;
1026
0
    LoadResult tx_res = LoadRecords(pwallet, batch, DBKeys::TX,
1027
0
        [&any_unordered, &batch] (CWallet* pwallet, DataStream& key, DataStream& value, std::string& err) EXCLUSIVE_LOCKS_REQUIRED(pwallet->cs_wallet) {
1028
0
        DBErrors result = DBErrors::LOAD_OK;
1029
0
        Txid hash;
1030
0
        key >> hash;
1031
0
        try {
1032
0
            CWalletTx wtx{deserialize, value, ReadWtxVariants(batch, hash)};
1033
0
            if (wtx.GetHash() != hash) {
  Branch (1033:17): [True: 0, False: 0]
1034
0
                result = std::max(result, DBErrors::NEED_RESCAN);
1035
0
            }
1036
1037
0
            if (wtx.nOrderPos == -1) {
  Branch (1037:17): [True: 0, False: 0]
1038
0
                any_unordered = true;
1039
0
            }
1040
1041
0
            if (!pwallet->LoadToWallet(std::move(wtx))) {
  Branch (1041:17): [True: 0, False: 0]
1042
0
                err = "Error: Corrupt transaction found. This can be fixed by removing transactions from wallet and rescanning.";
1043
0
                return DBErrors::CORRUPT;
1044
0
            }
1045
0
        } catch (const std::exception& e) {
1046
0
            err = strprintf("Error: Corrupt tx record found: %s" ,e.what());
1047
0
            return DBErrors::CORRUPT;
1048
0
        }
1049
0
        return result;
1050
0
    });
1051
0
    result = std::max(result, tx_res.m_result);
1052
1053
    // Load locked utxo record
1054
0
    LoadResult locked_utxo_res = LoadRecords(pwallet, batch, DBKeys::LOCKED_UTXO,
1055
0
        [] (CWallet* pwallet, DataStream& key, DataStream& value, std::string& err) EXCLUSIVE_LOCKS_REQUIRED(pwallet->cs_wallet) {
1056
0
        Txid hash;
1057
0
        uint32_t n;
1058
0
        key >> hash;
1059
0
        key >> n;
1060
0
        pwallet->LoadLockedCoin(COutPoint(hash, n), /*persistent=*/true);
1061
0
        return DBErrors::LOAD_OK;
1062
0
    });
1063
0
    result = std::max(result, locked_utxo_res.m_result);
1064
1065
    // Load orderposnext record
1066
    // Note: There should only be one ORDERPOSNEXT record with nothing trailing the type
1067
0
    LoadResult order_pos_res = LoadRecords(pwallet, batch, DBKeys::ORDERPOSNEXT,
1068
0
        [] (CWallet* pwallet, DataStream& key, DataStream& value, std::string& err) EXCLUSIVE_LOCKS_REQUIRED(pwallet->cs_wallet) {
1069
0
        try {
1070
0
            value >> pwallet->nOrderPosNext;
1071
0
        } catch (const std::exception& e) {
1072
0
            err = e.what();
1073
0
            return DBErrors::NONCRITICAL_ERROR;
1074
0
        }
1075
0
        return DBErrors::LOAD_OK;
1076
0
    });
1077
0
    result = std::max(result, order_pos_res.m_result);
1078
1079
    // After loading all tx records, abandon any coinbase that is no longer in the active chain.
1080
    // This could happen during an external wallet load, or if the user replaced the chain data.
1081
0
    for (auto& [id, wtx] : pwallet->mapWallet) {
  Branch (1081:26): [True: 0, False: 0]
1082
0
        if (wtx.IsCoinBase() && wtx.isInactive()) {
  Branch (1082:13): [True: 0, False: 0]
  Branch (1082:33): [True: 0, False: 0]
1083
0
            pwallet->AbandonTransaction(wtx);
1084
0
        }
1085
0
    }
1086
1087
0
    return result;
1088
0
}
1089
1090
static DBErrors LoadActiveSPKMs(CWallet* pwallet, DatabaseBatch& batch) EXCLUSIVE_LOCKS_REQUIRED(pwallet->cs_wallet)
1091
0
{
1092
0
    AssertLockHeld(pwallet->cs_wallet);
1093
0
    DBErrors result = DBErrors::LOAD_OK;
1094
1095
    // Load spk records
1096
0
    std::set<std::pair<OutputType, bool>> seen_spks;
1097
0
    for (const auto& spk_key : {DBKeys::ACTIVEEXTERNALSPK, DBKeys::ACTIVEINTERNALSPK}) {
  Branch (1097:30): [True: 0, False: 0]
1098
0
        LoadResult spkm_res = LoadRecords(pwallet, batch, spk_key,
1099
0
            [&seen_spks, &spk_key] (CWallet* pwallet, DataStream& key, DataStream& value, std::string& strErr) {
1100
0
            uint8_t output_type;
1101
0
            key >> output_type;
1102
0
            uint256 id;
1103
0
            value >> id;
1104
1105
0
            bool internal = spk_key == DBKeys::ACTIVEINTERNALSPK;
1106
0
            auto [it, insert] = seen_spks.emplace(static_cast<OutputType>(output_type), internal);
1107
0
            if (!insert) {
  Branch (1107:17): [True: 0, False: 0]
1108
0
                strErr = "Multiple ScriptpubKeyMans specified for a single type";
1109
0
                return DBErrors::CORRUPT;
1110
0
            }
1111
0
            pwallet->LoadActiveScriptPubKeyMan(id, static_cast<OutputType>(output_type), /*internal=*/internal);
1112
0
            return DBErrors::LOAD_OK;
1113
0
        });
1114
0
        result = std::max(result, spkm_res.m_result);
1115
0
    }
1116
0
    return result;
1117
0
}
1118
1119
static DBErrors LoadDecryptionKeys(CWallet* pwallet, DatabaseBatch& batch) EXCLUSIVE_LOCKS_REQUIRED(pwallet->cs_wallet)
1120
0
{
1121
0
    AssertLockHeld(pwallet->cs_wallet);
1122
1123
    // Load decryption key (mkey) records
1124
0
    LoadResult mkey_res = LoadRecords(pwallet, batch, DBKeys::MASTER_KEY,
1125
0
        [] (CWallet* pwallet, DataStream& key, DataStream& value, std::string& err) {
1126
0
        if (!LoadEncryptionKey(pwallet, key, value, err)) {
  Branch (1126:13): [True: 0, False: 0]
1127
0
            return DBErrors::CORRUPT;
1128
0
        }
1129
0
        return DBErrors::LOAD_OK;
1130
0
    });
1131
0
    return mkey_res.m_result;
1132
0
}
1133
1134
DBErrors WalletBatch::LoadWallet(CWallet* pwallet)
1135
0
{
1136
0
    DBErrors result = DBErrors::LOAD_OK;
1137
0
    bool any_unordered = false;
1138
1139
0
    LOCK(pwallet->cs_wallet);
1140
1141
    // Last client version to open this wallet
1142
0
    int last_client = CLIENT_VERSION;
1143
0
    bool has_last_client = m_batch->Read(DBKeys::VERSION, last_client);
1144
0
    if (has_last_client) pwallet->WalletLogPrintf("Last client version = %d\n", last_client);
  Branch (1144:9): [True: 0, False: 0]
1145
1146
0
    try {
1147
        // Load wallet flags, so they are known when processing other records.
1148
        // The FLAGS key is absent during wallet creation.
1149
0
        if ((result = LoadWalletFlags(pwallet, *m_batch)) != DBErrors::LOAD_OK) return result;
  Branch (1149:13): [True: 0, False: 0]
1150
1151
0
#ifndef ENABLE_EXTERNAL_SIGNER
1152
0
        if (pwallet->IsWalletFlagSet(WALLET_FLAG_EXTERNAL_SIGNER)) {
  Branch (1152:13): [True: 0, False: 0]
1153
0
            pwallet->WalletLogPrintf("Error: External signer wallet being loaded without external signer support compiled\n");
1154
0
            return DBErrors::EXTERNAL_SIGNER_SUPPORT_REQUIRED;
1155
0
        }
1156
0
#endif
1157
1158
        // Load legacy wallet keys
1159
0
        result = std::max(LoadLegacyWalletRecords(pwallet, *m_batch, last_client), result);
1160
1161
        // Load descriptors
1162
0
        result = std::max(LoadDescriptorWalletRecords(pwallet, *m_batch, last_client), result);
1163
        // Early return if there are unknown descriptors. Later loading of ACTIVEINTERNALSPK and ACTIVEEXTERNALEXPK
1164
        // may reference the unknown descriptor's ID which can result in a misleading corruption error
1165
        // when in reality the wallet is simply too new.
1166
0
        if (result == DBErrors::UNKNOWN_DESCRIPTOR) return result;
  Branch (1166:13): [True: 0, False: 0]
1167
1168
        // Load address book
1169
0
        result = std::max(LoadAddressBookRecords(pwallet, *m_batch), result);
1170
1171
        // Load SPKMs
1172
0
        result = std::max(LoadActiveSPKMs(pwallet, *m_batch), result);
1173
1174
        // Load decryption keys
1175
0
        result = std::max(LoadDecryptionKeys(pwallet, *m_batch), result);
1176
1177
        // Load tx records
1178
0
        result = std::max(LoadTxRecords(pwallet, *m_batch, any_unordered), result);
1179
0
    } catch (std::runtime_error& e) {
1180
        // Exceptions that can be ignored or treated as non-critical are handled by the individual loading functions.
1181
        // Any uncaught exceptions will be caught here and treated as critical.
1182
        // Catch std::runtime_error specifically as many functions throw these and they at least have some message that
1183
        // we can log
1184
0
        pwallet->WalletLogPrintf("%s\n", e.what());
1185
0
        result = DBErrors::CORRUPT;
1186
0
    } catch (...) {
1187
        // All other exceptions are still problematic, but we can't log them
1188
0
        result = DBErrors::CORRUPT;
1189
0
    }
1190
1191
    // Any wallet corruption at all: skip any rewriting or
1192
    // upgrading, we don't want to make it worse.
1193
0
    if (result != DBErrors::LOAD_OK)
  Branch (1193:9): [True: 0, False: 0]
1194
0
        return result;
1195
1196
0
    if (!has_last_client || last_client != CLIENT_VERSION) // Update
  Branch (1196:9): [True: 0, False: 0]
  Branch (1196:29): [True: 0, False: 0]
1197
0
        this->WriteVersion(CLIENT_VERSION);
1198
1199
0
    if (any_unordered)
  Branch (1199:9): [True: 0, False: 0]
1200
0
        result = pwallet->ReorderTransactions();
1201
1202
    // Upgrade all of the descriptor caches to cache the last hardened xpub
1203
    // This operation is not atomic, but if it fails, only new entries are added so it is backwards compatible
1204
0
    try {
1205
0
        pwallet->UpgradeDescriptorCache();
1206
0
    } catch (...) {
1207
0
        result = DBErrors::CORRUPT;
1208
0
    }
1209
1210
    // Since it was accidentally possible to "encrypt" a wallet with private keys disabled, we should check if this is
1211
    // such a wallet and remove the encryption key records to avoid any future issues.
1212
    // Although wallets without private keys should not have *ckey records, we should double check that.
1213
    // Removing the mkey records is only safe if there are no *ckey records.
1214
0
    if (pwallet->IsWalletFlagSet(WALLET_FLAG_DISABLE_PRIVATE_KEYS) && pwallet->HasEncryptionKeys() && !pwallet->HaveCryptedKeys()) {
  Branch (1214:9): [True: 0, False: 0]
  Branch (1214:71): [True: 0, False: 0]
  Branch (1214:103): [True: 0, False: 0]
1215
0
        pwallet->WalletLogPrintf("Detected extraneous encryption keys in this wallet without private keys. Removing extraneous encryption keys.\n");
1216
0
        for (const auto& [id, _] : pwallet->mapMasterKeys) {
  Branch (1216:34): [True: 0, False: 0]
1217
0
            if (!EraseMasterKey(id)) {
  Branch (1217:17): [True: 0, False: 0]
1218
0
                pwallet->WalletLogPrintf("Error: Unable to remove extraneous encryption key '%u'. Wallet corrupt.\n", id);
1219
0
                return DBErrors::CORRUPT;
1220
0
            }
1221
0
        }
1222
0
        pwallet->mapMasterKeys.clear();
1223
0
    }
1224
1225
0
    return result;
1226
0
}
1227
1228
static bool RunWithinTxn(WalletBatch& batch, std::string_view process_desc, const std::function<bool(WalletBatch&)>& func)
1229
0
{
1230
0
    if (!batch.TxnBegin()) {
  Branch (1230:9): [True: 0, False: 0]
1231
0
        LogDebug(BCLog::WALLETDB, "Error: cannot create db txn for %s\n", process_desc);
1232
0
        return false;
1233
0
    }
1234
1235
    // Run procedure
1236
0
    if (!func(batch)) {
  Branch (1236:9): [True: 0, False: 0]
1237
0
        LogDebug(BCLog::WALLETDB, "Error: %s failed\n", process_desc);
1238
0
        batch.TxnAbort();
1239
0
        return false;
1240
0
    }
1241
1242
0
    if (!batch.TxnCommit()) {
  Branch (1242:9): [True: 0, False: 0]
1243
0
        LogDebug(BCLog::WALLETDB, "Error: cannot commit db txn for %s\n", process_desc);
1244
0
        return false;
1245
0
    }
1246
1247
    // All good
1248
0
    return true;
1249
0
}
1250
1251
bool RunWithinTxn(WalletDatabase& database, std::string_view process_desc, const std::function<bool(WalletBatch&)>& func)
1252
0
{
1253
0
    WalletBatch batch(database);
1254
0
    return RunWithinTxn(batch, process_desc, func);
1255
0
}
1256
1257
bool WalletBatch::WriteAddressPreviouslySpent(const CTxDestination& dest, bool previously_spent)
1258
0
{
1259
0
    auto key{std::make_pair(DBKeys::DESTDATA, std::make_pair(EncodeDestination(dest), std::string("used")))};
1260
0
    return previously_spent ? WriteIC(key, std::string("1")) : EraseIC(key);
  Branch (1260:12): [True: 0, False: 0]
1261
0
}
1262
1263
bool WalletBatch::WriteAddressReceiveRequest(const CTxDestination& dest, const std::string& id, const std::string& receive_request)
1264
0
{
1265
0
    return WriteIC(std::make_pair(DBKeys::DESTDATA, std::make_pair(EncodeDestination(dest), "rr" + id)), receive_request);
1266
0
}
1267
1268
bool WalletBatch::EraseAddressReceiveRequest(const CTxDestination& dest, const std::string& id)
1269
0
{
1270
0
    return EraseIC(std::make_pair(DBKeys::DESTDATA, std::make_pair(EncodeDestination(dest), "rr" + id)));
1271
0
}
1272
1273
bool WalletBatch::EraseAddressData(const CTxDestination& dest)
1274
0
{
1275
0
    DataStream prefix;
1276
0
    prefix << DBKeys::DESTDATA << EncodeDestination(dest);
1277
0
    return m_batch->ErasePrefix(prefix);
1278
0
}
1279
1280
bool WalletBatch::WriteWalletFlags(const uint64_t flags)
1281
9.53k
{
1282
9.53k
    return WriteIC(DBKeys::FLAGS, flags);
1283
9.53k
}
1284
1285
bool WalletBatch::EraseRecords(const std::unordered_set<std::string>& types)
1286
0
{
1287
0
    return std::all_of(types.begin(), types.end(), [&](const std::string& type) {
1288
0
        return m_batch->ErasePrefix(DataStream() << type);
1289
0
    });
1290
0
}
1291
1292
bool WalletBatch::TxnBegin()
1293
224k
{
1294
224k
    return m_batch->TxnBegin();
1295
224k
}
1296
1297
bool WalletBatch::TxnCommit()
1298
224k
{
1299
224k
    bool res = m_batch->TxnCommit();
1300
224k
    if (res) {
  Branch (1300:9): [True: 224k, False: 0]
1301
224k
        for (const auto& listener : m_txn_listeners) {
  Branch (1301:35): [True: 0, False: 224k]
1302
0
            listener.on_commit();
1303
0
        }
1304
        // txn finished, clear listeners
1305
224k
        m_txn_listeners.clear();
1306
224k
    }
1307
224k
    return res;
1308
224k
}
1309
1310
bool WalletBatch::TxnAbort()
1311
0
{
1312
0
    bool res = m_batch->TxnAbort();
1313
0
    if (res) {
  Branch (1313:9): [True: 0, False: 0]
1314
0
        for (const auto& listener : m_txn_listeners) {
  Branch (1314:35): [True: 0, False: 0]
1315
0
            listener.on_abort();
1316
0
        }
1317
        // txn finished, clear listeners
1318
0
        m_txn_listeners.clear();
1319
0
    }
1320
0
    return res;
1321
0
}
1322
1323
void WalletBatch::RegisterTxnListener(const DbTxnListener& l)
1324
0
{
1325
0
    assert(m_batch->HasActiveTxn());
  Branch (1325:5): [True: 0, False: 0]
1326
0
    m_txn_listeners.emplace_back(l);
1327
0
}
1328
1329
std::unique_ptr<WalletDatabase> MakeDatabase(const fs::path& path, const DatabaseOptions& options, DatabaseStatus& status, bilingual_str& error)
1330
0
{
1331
0
    bool exists;
1332
0
    try {
1333
0
        exists = fs::symlink_status(path).type() != fs::file_type::not_found;
1334
0
    } catch (const fs::filesystem_error& e) {
1335
0
        error = Untranslated(strprintf("Failed to access database path '%s': %s", fs::PathToString(path), e.code().message()));
1336
0
        status = DatabaseStatus::FAILED_BAD_PATH;
1337
0
        return nullptr;
1338
0
    }
1339
1340
0
    std::optional<DatabaseFormat> format;
1341
0
    if (exists) {
  Branch (1341:9): [True: 0, False: 0]
1342
0
        if (IsBDBFile(BDBDataFile(path))) {
  Branch (1342:13): [True: 0, False: 0]
1343
0
            format = DatabaseFormat::BERKELEY_RO;
1344
0
        }
1345
0
        if (IsSQLiteFile(SQLiteDataFile(path))) {
  Branch (1345:13): [True: 0, False: 0]
1346
0
            if (format) {
  Branch (1346:17): [True: 0, False: 0]
1347
0
                error = Untranslated(strprintf("Failed to load database path '%s'. Data is in ambiguous format.", fs::PathToString(path)));
1348
0
                status = DatabaseStatus::FAILED_BAD_FORMAT;
1349
0
                return nullptr;
1350
0
            }
1351
0
            format = DatabaseFormat::SQLITE;
1352
0
        }
1353
0
    } else if (options.require_existing) {
  Branch (1353:16): [True: 0, False: 0]
1354
0
        error = Untranslated(strprintf("Failed to load database path '%s'. Path does not exist.", fs::PathToString(path)));
1355
0
        status = DatabaseStatus::FAILED_NOT_FOUND;
1356
0
        return nullptr;
1357
0
    }
1358
1359
0
    if (!format && options.require_existing) {
  Branch (1359:9): [True: 0, False: 0]
  Branch (1359:20): [True: 0, False: 0]
1360
0
        error = Untranslated(strprintf("Failed to load database path '%s'. Data is not in recognized format.", fs::PathToString(path)));
1361
0
        status = DatabaseStatus::FAILED_BAD_FORMAT;
1362
0
        return nullptr;
1363
0
    }
1364
1365
0
    if (format && options.require_create) {
  Branch (1365:9): [True: 0, False: 0]
  Branch (1365:19): [True: 0, False: 0]
1366
0
        error = Untranslated(strprintf("Failed to create database path '%s'. Database already exists.", fs::PathToString(path)));
1367
0
        status = DatabaseStatus::FAILED_ALREADY_EXISTS;
1368
0
        return nullptr;
1369
0
    }
1370
1371
    // BERKELEY_RO can only be opened if require_format was set, which only occurs in migration.
1372
0
    if (format && format == DatabaseFormat::BERKELEY_RO && (!options.require_format || options.require_format != DatabaseFormat::BERKELEY_RO)) {
  Branch (1372:9): [True: 0, False: 0]
  Branch (1372:9): [True: 0, False: 0]
  Branch (1372:19): [True: 0, False: 0]
  Branch (1372:61): [True: 0, False: 0]
  Branch (1372:88): [True: 0, False: 0]
1373
0
        error = Untranslated(strprintf("Failed to open database path '%s'. The wallet appears to be a Legacy wallet, please use the wallet migration tool (migratewallet RPC or the GUI option).", fs::PathToString(path)));
1374
0
        status = DatabaseStatus::FAILED_LEGACY_DISABLED;
1375
0
        return nullptr;
1376
0
    }
1377
1378
    // A db already exists so format is set, but options also specifies the format, so make sure they agree
1379
0
    if (format && options.require_format && format != options.require_format) {
  Branch (1379:9): [True: 0, False: 0]
  Branch (1379:19): [True: 0, False: 0]
  Branch (1379:45): [True: 0, False: 0]
1380
0
        error = Untranslated(strprintf("Failed to load database path '%s'. Data is not in required format.", fs::PathToString(path)));
1381
0
        status = DatabaseStatus::FAILED_BAD_FORMAT;
1382
0
        return nullptr;
1383
0
    }
1384
1385
    // Format is not set when a db doesn't already exist, so use the format specified by the options if it is set.
1386
0
    if (!format && options.require_format) format = options.require_format;
  Branch (1386:9): [True: 0, False: 0]
  Branch (1386:20): [True: 0, False: 0]
1387
1388
0
    if (!format) {
  Branch (1388:9): [True: 0, False: 0]
1389
0
        format = DatabaseFormat::SQLITE;
1390
0
    }
1391
1392
0
    if (format == DatabaseFormat::SQLITE) {
  Branch (1392:9): [True: 0, False: 0]
1393
0
        return MakeSQLiteDatabase(path, options, status, error);
1394
0
    }
1395
1396
0
    if (format == DatabaseFormat::BERKELEY_RO) {
  Branch (1396:9): [True: 0, False: 0]
1397
0
        return MakeBerkeleyRODatabase(path, options, status, error);
1398
0
    }
1399
1400
0
    error = Untranslated(STR_INTERNAL_BUG("Could not determine wallet format"));
1401
0
    status = DatabaseStatus::FAILED_BAD_FORMAT;
1402
0
    return nullptr;
1403
0
}
1404
} // namespace wallet