fuzz coverage

Coverage Report

Created: 2026-04-24 13:48

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/root/bitcoin/src/rest.cpp
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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 <rest.h>
7
8
#include <blockfilter.h>
9
#include <chain.h>
10
#include <chainparams.h>
11
#include <core_io.h>
12
#include <flatfile.h>
13
#include <httpserver.h>
14
#include <index/blockfilterindex.h>
15
#include <index/txindex.h>
16
#include <node/blockstorage.h>
17
#include <node/context.h>
18
#include <primitives/block.h>
19
#include <primitives/transaction.h>
20
#include <rpc/blockchain.h>
21
#include <rpc/mempool.h>
22
#include <rpc/protocol.h>
23
#include <rpc/server.h>
24
#include <rpc/server_util.h>
25
#include <streams.h>
26
#include <sync.h>
27
#include <txmempool.h>
28
#include <undo.h>
29
#include <util/any.h>
30
#include <util/check.h>
31
#include <util/overflow.h>
32
#include <util/strencodings.h>
33
#include <validation.h>
34
35
#include <any>
36
#include <vector>
37
38
#include <univalue.h>
39
40
using node::GetTransaction;
41
using node::NodeContext;
42
using util::SplitString;
43
44
static const size_t MAX_GETUTXOS_OUTPOINTS = 15; //allow a max of 15 outpoints to be queried at once
45
static constexpr unsigned int MAX_REST_HEADERS_RESULTS = 2000;
46
47
static const struct {
48
    RESTResponseFormat rf;
49
    const char* name;
50
} rf_names[] = {
51
      {RESTResponseFormat::UNDEF, ""},
52
      {RESTResponseFormat::BINARY, "bin"},
53
      {RESTResponseFormat::HEX, "hex"},
54
      {RESTResponseFormat::JSON, "json"},
55
};
56
57
struct CCoin {
58
    uint32_t nHeight;
59
    CTxOut out;
60
61
0
    CCoin() : nHeight(0) {}
62
0
    explicit CCoin(Coin&& in) : nHeight(in.nHeight), out(std::move(in.out)) {}
63
64
    SERIALIZE_METHODS(CCoin, obj)
65
0
    {
66
0
        uint32_t nTxVerDummy = 0;
67
0
        READWRITE(nTxVerDummy, obj.nHeight, obj.out);
Line
Count
Source
147
0
#define READWRITE(...) (ser_action.SerReadWriteMany(s, __VA_ARGS__))
68
0
    }
69
};
70
71
static bool RESTERR(HTTPRequest* req, enum HTTPStatusCode status, std::string message)
72
0
{
73
0
    req->WriteHeader("Content-Type", "text/plain");
74
0
    req->WriteReply(status, message + "\r\n");
75
0
    return false;
76
0
}
77
78
/**
79
 * Get the node context.
80
 *
81
 * @param[in]  req  The HTTP request, whose status code will be set if node
82
 *                  context is not found.
83
 * @returns         Pointer to the node context or nullptr if not found.
84
 */
85
static NodeContext* GetNodeContext(const std::any& context, HTTPRequest* req)
86
0
{
87
0
    auto node_context = util::AnyPtr<NodeContext>(context);
88
0
    if (!node_context) {
89
0
        RESTERR(req, HTTP_INTERNAL_SERVER_ERROR, STR_INTERNAL_BUG("Node context not found!"));
Line
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Source
96
0
#define STR_INTERNAL_BUG(msg) StrFormatInternalBug((msg), std::source_location::current())
90
0
        return nullptr;
91
0
    }
92
0
    return node_context;
93
0
}
94
95
/**
96
 * Get the node context mempool.
97
 *
98
 * @param[in]  req The HTTP request, whose status code will be set if node
99
 *                 context mempool is not found.
100
 * @returns        Pointer to the mempool or nullptr if no mempool found.
101
 */
102
static CTxMemPool* GetMemPool(const std::any& context, HTTPRequest* req)
103
0
{
104
0
    auto node_context = util::AnyPtr<NodeContext>(context);
105
0
    if (!node_context || !node_context->mempool) {
106
0
        RESTERR(req, HTTP_NOT_FOUND, "Mempool disabled or instance not found");
107
0
        return nullptr;
108
0
    }
109
0
    return node_context->mempool.get();
110
0
}
111
112
/**
113
 * Get the node context chainstatemanager.
114
 *
115
 * @param[in]  req The HTTP request, whose status code will be set if node
116
 *                 context chainstatemanager is not found.
117
 * @returns        Pointer to the chainstatemanager or nullptr if none found.
118
 */
119
static ChainstateManager* GetChainman(const std::any& context, HTTPRequest* req)
120
0
{
121
0
    auto node_context = util::AnyPtr<NodeContext>(context);
122
0
    if (!node_context || !node_context->chainman) {
123
0
        RESTERR(req, HTTP_INTERNAL_SERVER_ERROR, STR_INTERNAL_BUG("Chainman disabled or instance not found!"));
Line
Count
Source
96
0
#define STR_INTERNAL_BUG(msg) StrFormatInternalBug((msg), std::source_location::current())
124
0
        return nullptr;
125
0
    }
126
0
    return node_context->chainman.get();
127
0
}
128
129
RESTResponseFormat ParseDataFormat(std::string& param, const std::string& strReq)
130
0
{
131
    // Remove query string (if any, separated with '?') as it should not interfere with
132
    // parsing param and data format
133
0
    param = strReq.substr(0, strReq.rfind('?'));
134
0
    const std::string::size_type pos_format{param.rfind('.')};
135
136
    // No format string is found
137
0
    if (pos_format == std::string::npos) {
138
0
        return RESTResponseFormat::UNDEF;
139
0
    }
140
141
    // Match format string to available formats
142
0
    const std::string suffix(param, pos_format + 1);
143
0
    for (const auto& rf_name : rf_names) {
144
0
        if (suffix == rf_name.name) {
145
0
            param.erase(pos_format);
146
0
            return rf_name.rf;
147
0
        }
148
0
    }
149
150
    // If no suffix is found, return RESTResponseFormat::UNDEF and original string without query string
151
0
    return RESTResponseFormat::UNDEF;
152
0
}
153
154
static std::string AvailableDataFormatsString()
155
0
{
156
0
    std::string formats;
157
0
    for (const auto& rf_name : rf_names) {
158
0
        if (strlen(rf_name.name) > 0) {
159
0
            formats.append(".");
160
0
            formats.append(rf_name.name);
161
0
            formats.append(", ");
162
0
        }
163
0
    }
164
165
0
    if (formats.length() > 0)
166
0
        return formats.substr(0, formats.length() - 2);
167
168
0
    return formats;
169
0
}
170
171
static bool CheckWarmup(HTTPRequest* req)
172
0
{
173
0
    std::string statusmessage;
174
0
    if (RPCIsInWarmup(&statusmessage))
175
0
         return RESTERR(req, HTTP_SERVICE_UNAVAILABLE, "Service temporarily unavailable: " + statusmessage);
176
0
    return true;
177
0
}
178
179
static bool rest_headers(const std::any& context,
180
                         HTTPRequest* req,
181
                         const std::string& uri_part)
182
0
{
183
0
    if (!CheckWarmup(req))
184
0
        return false;
185
0
    std::string param;
186
0
    const RESTResponseFormat rf = ParseDataFormat(param, uri_part);
187
0
    std::vector<std::string> path = SplitString(param, '/');
188
189
0
    std::string raw_count;
190
0
    std::string hashStr;
191
0
    if (path.size() == 2) {
192
        // deprecated path: /rest/headers/<count>/<hash>
193
0
        hashStr = path[1];
194
0
        raw_count = path[0];
195
0
    } else if (path.size() == 1) {
196
        // new path with query parameter: /rest/headers/<hash>?count=<count>
197
0
        hashStr = path[0];
198
0
        try {
199
0
            raw_count = req->GetQueryParameter("count").value_or("5");
200
0
        } catch (const std::runtime_error& e) {
201
0
            return RESTERR(req, HTTP_BAD_REQUEST, e.what());
202
0
        }
203
0
    } else {
204
0
        return RESTERR(req, HTTP_BAD_REQUEST, "Invalid URI format. Expected /rest/headers/<hash>.<ext>?count=<count>");
205
0
    }
206
207
0
    const auto parsed_count{ToIntegral<size_t>(raw_count)};
208
0
    if (!parsed_count.has_value() || *parsed_count < 1 || *parsed_count > MAX_REST_HEADERS_RESULTS) {
209
0
        return RESTERR(req, HTTP_BAD_REQUEST, strprintf("Header count is invalid or out of acceptable range (1-%u): %s", MAX_REST_HEADERS_RESULTS, raw_count));
Line
Count
Source
1172
0
#define strprintf tfm::format
210
0
    }
211
212
0
    auto hash{uint256::FromHex(hashStr)};
213
0
    if (!hash) {
214
0
        return RESTERR(req, HTTP_BAD_REQUEST, "Invalid hash: " + hashStr);
215
0
    }
216
217
0
    const CBlockIndex* tip = nullptr;
218
0
    std::vector<const CBlockIndex*> headers;
219
0
    headers.reserve(*parsed_count);
220
0
    ChainstateManager* maybe_chainman = GetChainman(context, req);
221
0
    if (!maybe_chainman) return false;
222
0
    ChainstateManager& chainman = *maybe_chainman;
223
0
    {
224
0
        LOCK(cs_main);
Line
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Source
268
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
225
0
        CChain& active_chain = chainman.ActiveChain();
226
0
        tip = active_chain.Tip();
227
0
        const CBlockIndex* pindex{chainman.m_blockman.LookupBlockIndex(*hash)};
228
0
        while (pindex != nullptr && active_chain.Contains(pindex)) {
229
0
            headers.push_back(pindex);
230
0
            if (headers.size() == *parsed_count) {
231
0
                break;
232
0
            }
233
0
            pindex = active_chain.Next(pindex);
234
0
        }
235
0
    }
236
237
0
    switch (rf) {
238
0
    case RESTResponseFormat::BINARY: {
239
0
        DataStream ssHeader{};
240
0
        for (const CBlockIndex *pindex : headers) {
241
0
            ssHeader << pindex->GetBlockHeader();
242
0
        }
243
244
0
        req->WriteHeader("Content-Type", "application/octet-stream");
245
0
        req->WriteReply(HTTP_OK, ssHeader);
246
0
        return true;
247
0
    }
248
249
0
    case RESTResponseFormat::HEX: {
250
0
        DataStream ssHeader{};
251
0
        for (const CBlockIndex *pindex : headers) {
252
0
            ssHeader << pindex->GetBlockHeader();
253
0
        }
254
255
0
        std::string strHex = HexStr(ssHeader) + "\n";
256
0
        req->WriteHeader("Content-Type", "text/plain");
257
0
        req->WriteReply(HTTP_OK, strHex);
258
0
        return true;
259
0
    }
260
0
    case RESTResponseFormat::JSON: {
261
0
        UniValue jsonHeaders(UniValue::VARR);
262
0
        for (const CBlockIndex *pindex : headers) {
263
0
            jsonHeaders.push_back(blockheaderToJSON(*tip, *pindex, chainman.GetConsensus().powLimit));
264
0
        }
265
0
        std::string strJSON = jsonHeaders.write() + "\n";
266
0
        req->WriteHeader("Content-Type", "application/json");
267
0
        req->WriteReply(HTTP_OK, strJSON);
268
0
        return true;
269
0
    }
270
0
    default: {
271
0
        return RESTERR(req, HTTP_NOT_FOUND, "output format not found (available: " + AvailableDataFormatsString() + ")");
272
0
    }
273
0
    }
274
0
}
275
276
/**
277
 * Serialize spent outputs as a list of per-transaction CTxOut lists using binary format.
278
 */
279
static void SerializeBlockUndo(DataStream& stream, const CBlockUndo& block_undo)
280
0
{
281
0
    WriteCompactSize(stream, block_undo.vtxundo.size() + 1);
282
0
    WriteCompactSize(stream, 0); // block_undo.vtxundo doesn't contain coinbase tx
283
0
    for (const CTxUndo& tx_undo : block_undo.vtxundo) {
284
0
        WriteCompactSize(stream, tx_undo.vprevout.size());
285
0
        for (const Coin& coin : tx_undo.vprevout) {
286
0
            coin.out.Serialize(stream);
287
0
        }
288
0
    }
289
0
}
290
291
/**
292
 * Serialize spent outputs as a list of per-transaction CTxOut lists using JSON format.
293
 */
294
static void BlockUndoToJSON(const CBlockUndo& block_undo, UniValue& result)
295
0
{
296
0
    result.push_back({UniValue::VARR}); // block_undo.vtxundo doesn't contain coinbase tx
297
0
    for (const CTxUndo& tx_undo : block_undo.vtxundo) {
298
0
        UniValue tx_prevouts(UniValue::VARR);
299
0
        for (const Coin& coin : tx_undo.vprevout) {
300
0
            UniValue prevout(UniValue::VOBJ);
301
0
            prevout.pushKV("value", ValueFromAmount(coin.out.nValue));
302
303
0
            UniValue script_pub_key(UniValue::VOBJ);
304
0
            ScriptToUniv(coin.out.scriptPubKey, /*out=*/script_pub_key, /*include_hex=*/true, /*include_address=*/true);
305
0
            prevout.pushKV("scriptPubKey", std::move(script_pub_key));
306
307
0
            tx_prevouts.push_back(std::move(prevout));
308
0
        }
309
0
        result.push_back(std::move(tx_prevouts));
310
0
    }
311
0
}
312
313
static bool rest_spent_txouts(const std::any& context, HTTPRequest* req, const std::string& uri_part)
314
0
{
315
0
    if (!CheckWarmup(req)) {
316
0
        return false;
317
0
    }
318
0
    std::string param;
319
0
    const RESTResponseFormat rf = ParseDataFormat(param, uri_part);
320
0
    std::vector<std::string> path = SplitString(param, '/');
321
322
0
    std::string hashStr;
323
0
    if (path.size() == 1) {
324
        // path with query parameter: /rest/spenttxouts/<hash>
325
0
        hashStr = path[0];
326
0
    } else {
327
0
        return RESTERR(req, HTTP_BAD_REQUEST, "Invalid URI format. Expected /rest/spenttxouts/<hash>.<ext>");
328
0
    }
329
330
0
    auto hash{uint256::FromHex(hashStr)};
331
0
    if (!hash) {
332
0
        return RESTERR(req, HTTP_BAD_REQUEST, "Invalid hash: " + hashStr);
333
0
    }
334
335
0
    ChainstateManager* chainman = GetChainman(context, req);
336
0
    if (!chainman) {
337
0
        return false;
338
0
    }
339
340
0
    const CBlockIndex* pblockindex = WITH_LOCK(cs_main, return chainman->m_blockman.LookupBlockIndex(*hash));
Line
Count
Source
299
0
#define WITH_LOCK(cs, code) (MaybeCheckNotHeld(cs), [&]() -> decltype(auto) { LOCK(cs); code; }())
341
0
    if (!pblockindex) {
342
0
        return RESTERR(req, HTTP_NOT_FOUND, hashStr + " not found");
343
0
    }
344
345
0
    CBlockUndo block_undo;
346
0
    if (pblockindex->nHeight > 0 && !chainman->m_blockman.ReadBlockUndo(block_undo, *pblockindex)) {
347
0
        return RESTERR(req, HTTP_NOT_FOUND, hashStr + " undo not available");
348
0
    }
349
350
0
    switch (rf) {
351
0
    case RESTResponseFormat::BINARY: {
352
0
        DataStream ssSpentResponse{};
353
0
        SerializeBlockUndo(ssSpentResponse, block_undo);
354
0
        req->WriteHeader("Content-Type", "application/octet-stream");
355
0
        req->WriteReply(HTTP_OK, ssSpentResponse);
356
0
        return true;
357
0
    }
358
359
0
    case RESTResponseFormat::HEX: {
360
0
        DataStream ssSpentResponse{};
361
0
        SerializeBlockUndo(ssSpentResponse, block_undo);
362
0
        const std::string strHex{HexStr(ssSpentResponse) + "\n"};
363
0
        req->WriteHeader("Content-Type", "text/plain");
364
0
        req->WriteReply(HTTP_OK, strHex);
365
0
        return true;
366
0
    }
367
368
0
    case RESTResponseFormat::JSON: {
369
0
        UniValue result(UniValue::VARR);
370
0
        BlockUndoToJSON(block_undo, result);
371
0
        std::string strJSON = result.write() + "\n";
372
0
        req->WriteHeader("Content-Type", "application/json");
373
0
        req->WriteReply(HTTP_OK, strJSON);
374
0
        return true;
375
0
    }
376
377
0
    default: {
378
0
        return RESTERR(req, HTTP_NOT_FOUND, "output format not found (available: " + AvailableDataFormatsString() + ")");
379
0
    }
380
0
    }
381
0
}
382
383
/**
384
 * This handler is used by multiple HTTP endpoints:
385
 * - `/block/` via `rest_block_extended()`
386
 * - `/block/notxdetails/` via `rest_block_notxdetails()`
387
 * - `/blockpart/` via `rest_block_part()` (doesn't support JSON response, so `tx_verbosity` is unset)
388
 */
389
static bool rest_block(const std::any& context,
390
                       HTTPRequest* req,
391
                       const std::string& uri_part,
392
                       std::optional<TxVerbosity> tx_verbosity,
393
                       std::optional<std::pair<size_t, size_t>> block_part = std::nullopt)
394
0
{
395
0
    if (!CheckWarmup(req))
396
0
        return false;
397
0
    std::string hashStr;
398
0
    const RESTResponseFormat rf = ParseDataFormat(hashStr, uri_part);
399
400
0
    auto hash{uint256::FromHex(hashStr)};
401
0
    if (!hash) {
402
0
        return RESTERR(req, HTTP_BAD_REQUEST, "Invalid hash: " + hashStr);
403
0
    }
404
405
0
    FlatFilePos pos{};
406
0
    const CBlockIndex* pblockindex = nullptr;
407
0
    const CBlockIndex* tip = nullptr;
408
0
    ChainstateManager* maybe_chainman = GetChainman(context, req);
409
0
    if (!maybe_chainman) return false;
410
0
    ChainstateManager& chainman = *maybe_chainman;
411
0
    {
412
0
        LOCK(cs_main);
Line
Count
Source
268
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
413
0
        tip = chainman.ActiveChain().Tip();
414
0
        pblockindex = chainman.m_blockman.LookupBlockIndex(*hash);
415
0
        if (!pblockindex) {
416
0
            return RESTERR(req, HTTP_NOT_FOUND, hashStr + " not found");
417
0
        }
418
0
        if (!(pblockindex->nStatus & BLOCK_HAVE_DATA)) {
419
0
            if (chainman.m_blockman.IsBlockPruned(*pblockindex)) {
420
0
                return RESTERR(req, HTTP_NOT_FOUND, hashStr + " not available (pruned data)");
421
0
            }
422
0
            return RESTERR(req, HTTP_NOT_FOUND, hashStr + " not available (not fully downloaded)");
423
0
        }
424
0
        pos = pblockindex->GetBlockPos();
425
0
    }
426
427
0
    const auto block_data{chainman.m_blockman.ReadRawBlock(pos, block_part)};
428
0
    if (!block_data) {
429
0
        switch (block_data.error()) {
430
0
        case node::ReadRawError::IO: return RESTERR(req, HTTP_INTERNAL_SERVER_ERROR, "I/O error reading " + hashStr);
431
0
        case node::ReadRawError::BadPartRange:
432
0
            assert(block_part);
433
0
            return RESTERR(req, HTTP_BAD_REQUEST, strprintf("Bad block part offset/size %d/%d for %s", block_part->first, block_part->second, hashStr));
Line
Count
Source
1172
0
#define strprintf tfm::format
434
0
        } // no default case, so the compiler can warn about missing cases
435
0
        assert(false);
436
0
    }
437
438
0
    switch (rf) {
439
0
    case RESTResponseFormat::BINARY: {
440
0
        req->WriteHeader("Content-Type", "application/octet-stream");
441
0
        req->WriteReply(HTTP_OK, *block_data);
442
0
        return true;
443
0
    }
444
445
0
    case RESTResponseFormat::HEX: {
446
0
        const std::string strHex{HexStr(*block_data) + "\n"};
447
0
        req->WriteHeader("Content-Type", "text/plain");
448
0
        req->WriteReply(HTTP_OK, strHex);
449
0
        return true;
450
0
    }
451
452
0
    case RESTResponseFormat::JSON: {
453
0
        if (tx_verbosity) {
454
0
            CBlock block{};
455
0
            SpanReader{*block_data} >> TX_WITH_WITNESS(block);
456
0
            UniValue objBlock = blockToJSON(chainman.m_blockman, block, *tip, *pblockindex, *tx_verbosity, chainman.GetConsensus().powLimit);
457
0
            std::string strJSON = objBlock.write() + "\n";
458
0
            req->WriteHeader("Content-Type", "application/json");
459
0
            req->WriteReply(HTTP_OK, strJSON);
460
0
            return true;
461
0
        }
462
0
        return RESTERR(req, HTTP_BAD_REQUEST, "JSON output is not supported for this request type");
463
0
    }
464
465
0
    default: {
466
0
        return RESTERR(req, HTTP_NOT_FOUND, "output format not found (available: " + AvailableDataFormatsString() + ")");
467
0
    }
468
0
    }
469
0
}
470
471
static bool rest_block_extended(const std::any& context, HTTPRequest* req, const std::string& uri_part)
472
0
{
473
0
    return rest_block(context, req, uri_part, TxVerbosity::SHOW_DETAILS_AND_PREVOUT);
474
0
}
475
476
static bool rest_block_notxdetails(const std::any& context, HTTPRequest* req, const std::string& uri_part)
477
0
{
478
0
    return rest_block(context, req, uri_part, TxVerbosity::SHOW_TXID);
479
0
}
480
481
static bool rest_block_part(const std::any& context, HTTPRequest* req, const std::string& uri_part)
482
0
{
483
0
    try {
484
0
        if (const auto opt_offset{ToIntegral<size_t>(req->GetQueryParameter("offset").value_or(""))}) {
485
0
            if (const auto opt_size{ToIntegral<size_t>(req->GetQueryParameter("size").value_or(""))}) {
486
0
                return rest_block(context, req, uri_part,
487
0
                                  /*tx_verbosity=*/std::nullopt,
488
0
                                  /*block_part=*/{{*opt_offset, *opt_size}});
489
0
            } else {
490
0
                return RESTERR(req, HTTP_BAD_REQUEST, "Block part size missing or invalid");
491
0
            }
492
0
        } else {
493
0
            return RESTERR(req, HTTP_BAD_REQUEST, "Block part offset missing or invalid");
494
0
        }
495
0
    } catch (const std::runtime_error& e) {
496
0
        return RESTERR(req, HTTP_BAD_REQUEST, e.what());
497
0
    }
498
0
}
499
500
static bool rest_filter_header(const std::any& context, HTTPRequest* req, const std::string& uri_part)
501
0
{
502
0
    if (!CheckWarmup(req)) return false;
503
504
0
    std::string param;
505
0
    const RESTResponseFormat rf = ParseDataFormat(param, uri_part);
506
507
0
    std::vector<std::string> uri_parts = SplitString(param, '/');
508
0
    std::string raw_count;
509
0
    std::string raw_blockhash;
510
0
    if (uri_parts.size() == 3) {
511
        // deprecated path: /rest/blockfilterheaders/<filtertype>/<count>/<blockhash>
512
0
        raw_blockhash = uri_parts[2];
513
0
        raw_count = uri_parts[1];
514
0
    } else if (uri_parts.size() == 2) {
515
        // new path with query parameter: /rest/blockfilterheaders/<filtertype>/<blockhash>?count=<count>
516
0
        raw_blockhash = uri_parts[1];
517
0
        try {
518
0
            raw_count = req->GetQueryParameter("count").value_or("5");
519
0
        } catch (const std::runtime_error& e) {
520
0
            return RESTERR(req, HTTP_BAD_REQUEST, e.what());
521
0
        }
522
0
    } else {
523
0
        return RESTERR(req, HTTP_BAD_REQUEST, "Invalid URI format. Expected /rest/blockfilterheaders/<filtertype>/<blockhash>.<ext>?count=<count>");
524
0
    }
525
526
0
    const auto parsed_count{ToIntegral<size_t>(raw_count)};
527
0
    if (!parsed_count.has_value() || *parsed_count < 1 || *parsed_count > MAX_REST_HEADERS_RESULTS) {
528
0
        return RESTERR(req, HTTP_BAD_REQUEST, strprintf("Header count is invalid or out of acceptable range (1-%u): %s", MAX_REST_HEADERS_RESULTS, raw_count));
Line
Count
Source
1172
0
#define strprintf tfm::format
529
0
    }
530
531
0
    auto block_hash{uint256::FromHex(raw_blockhash)};
532
0
    if (!block_hash) {
533
0
        return RESTERR(req, HTTP_BAD_REQUEST, "Invalid hash: " + raw_blockhash);
534
0
    }
535
536
0
    BlockFilterType filtertype;
537
0
    if (!BlockFilterTypeByName(uri_parts[0], filtertype)) {
538
0
        return RESTERR(req, HTTP_BAD_REQUEST, "Unknown filtertype " + uri_parts[0]);
539
0
    }
540
541
0
    BlockFilterIndex* index = GetBlockFilterIndex(filtertype);
542
0
    if (!index) {
543
0
        return RESTERR(req, HTTP_BAD_REQUEST, "Index is not enabled for filtertype " + uri_parts[0]);
544
0
    }
545
546
0
    std::vector<const CBlockIndex*> headers;
547
0
    headers.reserve(*parsed_count);
548
0
    {
549
0
        ChainstateManager* maybe_chainman = GetChainman(context, req);
550
0
        if (!maybe_chainman) return false;
551
0
        ChainstateManager& chainman = *maybe_chainman;
552
0
        LOCK(cs_main);
Line
Count
Source
268
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
553
0
        CChain& active_chain = chainman.ActiveChain();
554
0
        const CBlockIndex* pindex{chainman.m_blockman.LookupBlockIndex(*block_hash)};
555
0
        while (pindex != nullptr && active_chain.Contains(pindex)) {
556
0
            headers.push_back(pindex);
557
0
            if (headers.size() == *parsed_count)
558
0
                break;
559
0
            pindex = active_chain.Next(pindex);
560
0
        }
561
0
    }
562
563
0
    bool index_ready = index->BlockUntilSyncedToCurrentChain();
564
565
0
    std::vector<uint256> filter_headers;
566
0
    filter_headers.reserve(*parsed_count);
567
0
    for (const CBlockIndex* pindex : headers) {
568
0
        uint256 filter_header;
569
0
        if (!index->LookupFilterHeader(pindex, filter_header)) {
570
0
            std::string errmsg = "Filter not found.";
571
572
0
            if (!index_ready) {
573
0
                errmsg += " Block filters are still in the process of being indexed.";
574
0
            } else {
575
0
                errmsg += " This error is unexpected and indicates index corruption.";
576
0
            }
577
578
0
            return RESTERR(req, HTTP_NOT_FOUND, errmsg);
579
0
        }
580
0
        filter_headers.push_back(filter_header);
581
0
    }
582
583
0
    switch (rf) {
584
0
    case RESTResponseFormat::BINARY: {
585
0
        DataStream ssHeader{};
586
0
        for (const uint256& header : filter_headers) {
587
0
            ssHeader << header;
588
0
        }
589
590
0
        req->WriteHeader("Content-Type", "application/octet-stream");
591
0
        req->WriteReply(HTTP_OK, ssHeader);
592
0
        return true;
593
0
    }
594
0
    case RESTResponseFormat::HEX: {
595
0
        DataStream ssHeader{};
596
0
        for (const uint256& header : filter_headers) {
597
0
            ssHeader << header;
598
0
        }
599
600
0
        std::string strHex = HexStr(ssHeader) + "\n";
601
0
        req->WriteHeader("Content-Type", "text/plain");
602
0
        req->WriteReply(HTTP_OK, strHex);
603
0
        return true;
604
0
    }
605
0
    case RESTResponseFormat::JSON: {
606
0
        UniValue jsonHeaders(UniValue::VARR);
607
0
        for (const uint256& header : filter_headers) {
608
0
            jsonHeaders.push_back(header.GetHex());
609
0
        }
610
611
0
        std::string strJSON = jsonHeaders.write() + "\n";
612
0
        req->WriteHeader("Content-Type", "application/json");
613
0
        req->WriteReply(HTTP_OK, strJSON);
614
0
        return true;
615
0
    }
616
0
    default: {
617
0
        return RESTERR(req, HTTP_NOT_FOUND, "output format not found (available: " + AvailableDataFormatsString() + ")");
618
0
    }
619
0
    }
620
0
}
621
622
static bool rest_block_filter(const std::any& context, HTTPRequest* req, const std::string& uri_part)
623
0
{
624
0
    if (!CheckWarmup(req)) return false;
625
626
0
    std::string param;
627
0
    const RESTResponseFormat rf = ParseDataFormat(param, uri_part);
628
629
    // request is sent over URI scheme /rest/blockfilter/filtertype/blockhash
630
0
    std::vector<std::string> uri_parts = SplitString(param, '/');
631
0
    if (uri_parts.size() != 2) {
632
0
        return RESTERR(req, HTTP_BAD_REQUEST, "Invalid URI format. Expected /rest/blockfilter/<filtertype>/<blockhash>");
633
0
    }
634
635
0
    auto block_hash{uint256::FromHex(uri_parts[1])};
636
0
    if (!block_hash) {
637
0
        return RESTERR(req, HTTP_BAD_REQUEST, "Invalid hash: " + uri_parts[1]);
638
0
    }
639
640
0
    BlockFilterType filtertype;
641
0
    if (!BlockFilterTypeByName(uri_parts[0], filtertype)) {
642
0
        return RESTERR(req, HTTP_BAD_REQUEST, "Unknown filtertype " + uri_parts[0]);
643
0
    }
644
645
0
    BlockFilterIndex* index = GetBlockFilterIndex(filtertype);
646
0
    if (!index) {
647
0
        return RESTERR(req, HTTP_BAD_REQUEST, "Index is not enabled for filtertype " + uri_parts[0]);
648
0
    }
649
650
0
    const CBlockIndex* block_index;
651
0
    bool block_was_connected;
652
0
    {
653
0
        ChainstateManager* maybe_chainman = GetChainman(context, req);
654
0
        if (!maybe_chainman) return false;
655
0
        ChainstateManager& chainman = *maybe_chainman;
656
0
        LOCK(cs_main);
Line
Count
Source
268
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
657
0
        block_index = chainman.m_blockman.LookupBlockIndex(*block_hash);
658
0
        if (!block_index) {
659
0
            return RESTERR(req, HTTP_NOT_FOUND, uri_parts[1] + " not found");
660
0
        }
661
0
        block_was_connected = block_index->IsValid(BLOCK_VALID_SCRIPTS);
662
0
    }
663
664
0
    bool index_ready = index->BlockUntilSyncedToCurrentChain();
665
666
0
    BlockFilter filter;
667
0
    if (!index->LookupFilter(block_index, filter)) {
668
0
        std::string errmsg = "Filter not found.";
669
670
0
        if (!block_was_connected) {
671
0
            errmsg += " Block was not connected to active chain.";
672
0
        } else if (!index_ready) {
673
0
            errmsg += " Block filters are still in the process of being indexed.";
674
0
        } else {
675
0
            errmsg += " This error is unexpected and indicates index corruption.";
676
0
        }
677
678
0
        return RESTERR(req, HTTP_NOT_FOUND, errmsg);
679
0
    }
680
681
0
    switch (rf) {
682
0
    case RESTResponseFormat::BINARY: {
683
0
        DataStream ssResp{};
684
0
        ssResp << filter;
685
686
0
        req->WriteHeader("Content-Type", "application/octet-stream");
687
0
        req->WriteReply(HTTP_OK, ssResp);
688
0
        return true;
689
0
    }
690
0
    case RESTResponseFormat::HEX: {
691
0
        DataStream ssResp{};
692
0
        ssResp << filter;
693
694
0
        std::string strHex = HexStr(ssResp) + "\n";
695
0
        req->WriteHeader("Content-Type", "text/plain");
696
0
        req->WriteReply(HTTP_OK, strHex);
697
0
        return true;
698
0
    }
699
0
    case RESTResponseFormat::JSON: {
700
0
        UniValue ret(UniValue::VOBJ);
701
0
        ret.pushKV("filter", HexStr(filter.GetEncodedFilter()));
702
0
        std::string strJSON = ret.write() + "\n";
703
0
        req->WriteHeader("Content-Type", "application/json");
704
0
        req->WriteReply(HTTP_OK, strJSON);
705
0
        return true;
706
0
    }
707
0
    default: {
708
0
        return RESTERR(req, HTTP_NOT_FOUND, "output format not found (available: " + AvailableDataFormatsString() + ")");
709
0
    }
710
0
    }
711
0
}
712
713
// A bit of a hack - dependency on a function defined in rpc/blockchain.cpp
714
RPCHelpMan getblockchaininfo();
715
716
static bool rest_chaininfo(const std::any& context, HTTPRequest* req, const std::string& uri_part)
717
0
{
718
0
    if (!CheckWarmup(req))
719
0
        return false;
720
0
    std::string param;
721
0
    const RESTResponseFormat rf = ParseDataFormat(param, uri_part);
722
723
0
    switch (rf) {
724
0
    case RESTResponseFormat::JSON: {
725
0
        JSONRPCRequest jsonRequest;
726
0
        jsonRequest.context = context;
727
0
        jsonRequest.params = UniValue(UniValue::VARR);
728
0
        UniValue chainInfoObject = getblockchaininfo().HandleRequest(jsonRequest);
729
0
        std::string strJSON = chainInfoObject.write() + "\n";
730
0
        req->WriteHeader("Content-Type", "application/json");
731
0
        req->WriteReply(HTTP_OK, strJSON);
732
0
        return true;
733
0
    }
734
0
    default: {
735
0
        return RESTERR(req, HTTP_NOT_FOUND, "output format not found (available: json)");
736
0
    }
737
0
    }
738
0
}
739
740
741
RPCHelpMan getdeploymentinfo();
742
743
static bool rest_deploymentinfo(const std::any& context, HTTPRequest* req, const std::string& str_uri_part)
744
0
{
745
0
    if (!CheckWarmup(req)) return false;
746
747
0
    std::string hash_str;
748
0
    const RESTResponseFormat rf = ParseDataFormat(hash_str, str_uri_part);
749
750
0
    switch (rf) {
751
0
    case RESTResponseFormat::JSON: {
752
0
        JSONRPCRequest jsonRequest;
753
0
        jsonRequest.context = context;
754
0
        jsonRequest.params = UniValue(UniValue::VARR);
755
756
0
        if (!hash_str.empty()) {
757
0
            auto hash{uint256::FromHex(hash_str)};
758
0
            if (!hash) {
759
0
                return RESTERR(req, HTTP_BAD_REQUEST, "Invalid hash: " + hash_str);
760
0
            }
761
762
0
            const ChainstateManager* chainman = GetChainman(context, req);
763
0
            if (!chainman) return false;
764
0
            if (!WITH_LOCK(::cs_main, return chainman->m_blockman.LookupBlockIndex(*hash))) {
Line
Count
Source
299
0
#define WITH_LOCK(cs, code) (MaybeCheckNotHeld(cs), [&]() -> decltype(auto) { LOCK(cs); code; }())
765
0
                return RESTERR(req, HTTP_BAD_REQUEST, "Block not found");
766
0
            }
767
768
0
            jsonRequest.params.push_back(hash_str);
769
0
        }
770
771
0
        req->WriteHeader("Content-Type", "application/json");
772
0
        req->WriteReply(HTTP_OK, getdeploymentinfo().HandleRequest(jsonRequest).write() + "\n");
773
0
        return true;
774
0
    }
775
0
    default: {
776
0
        return RESTERR(req, HTTP_NOT_FOUND, "output format not found (available: json)");
777
0
    }
778
0
    }
779
780
0
}
781
782
static bool rest_mempool(const std::any& context, HTTPRequest* req, const std::string& str_uri_part)
783
0
{
784
0
    if (!CheckWarmup(req))
785
0
        return false;
786
787
0
    std::string param;
788
0
    const RESTResponseFormat rf = ParseDataFormat(param, str_uri_part);
789
0
    if (param != "contents" && param != "info") {
790
0
        return RESTERR(req, HTTP_BAD_REQUEST, "Invalid URI format. Expected /rest/mempool/<info|contents>.json");
791
0
    }
792
793
0
    const CTxMemPool* mempool = GetMemPool(context, req);
794
0
    if (!mempool) return false;
795
796
0
    switch (rf) {
797
0
    case RESTResponseFormat::JSON: {
798
0
        std::string str_json;
799
0
        if (param == "contents") {
800
0
            std::string raw_verbose;
801
0
            try {
802
0
                raw_verbose = req->GetQueryParameter("verbose").value_or("true");
803
0
            } catch (const std::runtime_error& e) {
804
0
                return RESTERR(req, HTTP_BAD_REQUEST, e.what());
805
0
            }
806
0
            if (raw_verbose != "true" && raw_verbose != "false") {
807
0
                return RESTERR(req, HTTP_BAD_REQUEST, "The \"verbose\" query parameter must be either \"true\" or \"false\".");
808
0
            }
809
0
            std::string raw_mempool_sequence;
810
0
            try {
811
0
                raw_mempool_sequence = req->GetQueryParameter("mempool_sequence").value_or("false");
812
0
            } catch (const std::runtime_error& e) {
813
0
                return RESTERR(req, HTTP_BAD_REQUEST, e.what());
814
0
            }
815
0
            if (raw_mempool_sequence != "true" && raw_mempool_sequence != "false") {
816
0
                return RESTERR(req, HTTP_BAD_REQUEST, "The \"mempool_sequence\" query parameter must be either \"true\" or \"false\".");
817
0
            }
818
0
            const bool verbose{raw_verbose == "true"};
819
0
            const bool mempool_sequence{raw_mempool_sequence == "true"};
820
0
            if (verbose && mempool_sequence) {
821
0
                return RESTERR(req, HTTP_BAD_REQUEST, "Verbose results cannot contain mempool sequence values. (hint: set \"verbose=false\")");
822
0
            }
823
0
            str_json = MempoolToJSON(*mempool, verbose, mempool_sequence).write() + "\n";
824
0
        } else {
825
0
            str_json = MempoolInfoToJSON(*mempool).write() + "\n";
826
0
        }
827
828
0
        req->WriteHeader("Content-Type", "application/json");
829
0
        req->WriteReply(HTTP_OK, str_json);
830
0
        return true;
831
0
    }
832
0
    default: {
833
0
        return RESTERR(req, HTTP_NOT_FOUND, "output format not found (available: json)");
834
0
    }
835
0
    }
836
0
}
837
838
static bool rest_tx(const std::any& context, HTTPRequest* req, const std::string& uri_part)
839
0
{
840
0
    if (!CheckWarmup(req))
841
0
        return false;
842
0
    std::string hashStr;
843
0
    const RESTResponseFormat rf = ParseDataFormat(hashStr, uri_part);
844
845
0
    auto hash{Txid::FromHex(hashStr)};
846
0
    if (!hash) {
847
0
        return RESTERR(req, HTTP_BAD_REQUEST, "Invalid hash: " + hashStr);
848
0
    }
849
850
0
    if (g_txindex) {
851
0
        g_txindex->BlockUntilSyncedToCurrentChain();
852
0
    }
853
854
0
    const NodeContext* const node = GetNodeContext(context, req);
855
0
    if (!node) return false;
856
0
    uint256 hashBlock = uint256();
857
0
    const CTransactionRef tx{GetTransaction(/*block_index=*/nullptr, node->mempool.get(), *hash,  node->chainman->m_blockman, hashBlock)};
858
0
    if (!tx) {
859
0
        return RESTERR(req, HTTP_NOT_FOUND, hashStr + " not found");
860
0
    }
861
862
0
    switch (rf) {
863
0
    case RESTResponseFormat::BINARY: {
864
0
        DataStream ssTx;
865
0
        ssTx << TX_WITH_WITNESS(tx);
866
867
0
        req->WriteHeader("Content-Type", "application/octet-stream");
868
0
        req->WriteReply(HTTP_OK, ssTx);
869
0
        return true;
870
0
    }
871
872
0
    case RESTResponseFormat::HEX: {
873
0
        DataStream ssTx;
874
0
        ssTx << TX_WITH_WITNESS(tx);
875
876
0
        std::string strHex = HexStr(ssTx) + "\n";
877
0
        req->WriteHeader("Content-Type", "text/plain");
878
0
        req->WriteReply(HTTP_OK, strHex);
879
0
        return true;
880
0
    }
881
882
0
    case RESTResponseFormat::JSON: {
883
0
        UniValue objTx(UniValue::VOBJ);
884
0
        TxToUniv(*tx, /*block_hash=*/hashBlock, /*entry=*/ objTx);
885
0
        std::string strJSON = objTx.write() + "\n";
886
0
        req->WriteHeader("Content-Type", "application/json");
887
0
        req->WriteReply(HTTP_OK, strJSON);
888
0
        return true;
889
0
    }
890
891
0
    default: {
892
0
        return RESTERR(req, HTTP_NOT_FOUND, "output format not found (available: " + AvailableDataFormatsString() + ")");
893
0
    }
894
0
    }
895
0
}
896
897
static bool rest_getutxos(const std::any& context, HTTPRequest* req, const std::string& uri_part)
898
0
{
899
0
    if (!CheckWarmup(req))
900
0
        return false;
901
0
    std::string param;
902
0
    const RESTResponseFormat rf = ParseDataFormat(param, uri_part);
903
904
0
    std::vector<std::string> uriParts;
905
0
    if (param.length() > 1)
906
0
    {
907
0
        std::string strUriParams = param.substr(1);
908
0
        uriParts = SplitString(strUriParams, '/');
909
0
    }
910
911
    // throw exception in case of an empty request
912
0
    std::string strRequestMutable = req->ReadBody();
913
0
    if (strRequestMutable.length() == 0 && uriParts.size() == 0)
914
0
        return RESTERR(req, HTTP_BAD_REQUEST, "Error: empty request");
915
916
0
    bool fInputParsed = false;
917
0
    bool fCheckMemPool = false;
918
0
    std::vector<COutPoint> vOutPoints;
919
920
    // parse/deserialize input
921
    // input-format = output-format, rest/getutxos/bin requires binary input, gives binary output, ...
922
923
0
    if (uriParts.size() > 0)
924
0
    {
925
        //inputs is sent over URI scheme (/rest/getutxos/checkmempool/txid1-n/txid2-n/...)
926
0
        if (uriParts[0] == "checkmempool") fCheckMemPool = true;
927
928
0
        for (size_t i = (fCheckMemPool) ? 1 : 0; i < uriParts.size(); i++)
929
0
        {
930
0
            const auto txid_out{util::Split<std::string_view>(uriParts[i], '-')};
931
0
            if (txid_out.size() != 2) {
932
0
                return RESTERR(req, HTTP_BAD_REQUEST, "Parse error");
933
0
            }
934
0
            auto txid{Txid::FromHex(txid_out.at(0))};
935
0
            auto output{ToIntegral<uint32_t>(txid_out.at(1))};
936
937
0
            if (!txid || !output) {
938
0
                return RESTERR(req, HTTP_BAD_REQUEST, "Parse error");
939
0
            }
940
941
0
            vOutPoints.emplace_back(*txid, *output);
942
0
        }
943
944
0
        if (vOutPoints.size() > 0)
945
0
            fInputParsed = true;
946
0
        else
947
0
            return RESTERR(req, HTTP_BAD_REQUEST, "Error: empty request");
948
0
    }
949
950
0
    switch (rf) {
951
0
    case RESTResponseFormat::HEX: {
952
        // convert hex to bin, continue then with bin part
953
0
        std::vector<unsigned char> strRequestV = ParseHex(strRequestMutable);
954
0
        strRequestMutable.assign(strRequestV.begin(), strRequestV.end());
955
0
        [[fallthrough]];
956
0
    }
957
958
0
    case RESTResponseFormat::BINARY: {
959
0
        try {
960
            //deserialize only if user sent a request
961
0
            if (strRequestMutable.size() > 0)
962
0
            {
963
0
                if (fInputParsed) //don't allow sending input over URI and HTTP RAW DATA
964
0
                    return RESTERR(req, HTTP_BAD_REQUEST, "Combination of URI scheme inputs and raw post data is not allowed");
965
966
0
                DataStream oss{};
967
0
                oss << strRequestMutable;
968
0
                oss >> fCheckMemPool;
969
0
                oss >> vOutPoints;
970
0
            }
971
0
        } catch (const std::ios_base::failure&) {
972
            // abort in case of unreadable binary data
973
0
            return RESTERR(req, HTTP_BAD_REQUEST, "Parse error");
974
0
        }
975
0
        break;
976
0
    }
977
978
0
    case RESTResponseFormat::JSON: {
979
0
        if (!fInputParsed)
980
0
            return RESTERR(req, HTTP_BAD_REQUEST, "Error: empty request");
981
0
        break;
982
0
    }
983
0
    default: {
984
0
        return RESTERR(req, HTTP_NOT_FOUND, "output format not found (available: " + AvailableDataFormatsString() + ")");
985
0
    }
986
0
    }
987
988
    // limit max outpoints
989
0
    if (vOutPoints.size() > MAX_GETUTXOS_OUTPOINTS)
990
0
        return RESTERR(req, HTTP_BAD_REQUEST, strprintf("Error: max outpoints exceeded (max: %d, tried: %d)", MAX_GETUTXOS_OUTPOINTS, vOutPoints.size()));
Line
Count
Source
1172
0
#define strprintf tfm::format
991
992
    // check spentness and form a bitmap (as well as a JSON capable human-readable string representation)
993
0
    std::vector<unsigned char> bitmap;
994
0
    std::vector<CCoin> outs;
995
0
    std::string bitmapStringRepresentation;
996
0
    std::vector<bool> hits;
997
0
    bitmap.resize(CeilDiv(vOutPoints.size(), 8u));
998
0
    ChainstateManager* maybe_chainman = GetChainman(context, req);
999
0
    if (!maybe_chainman) return false;
1000
0
    ChainstateManager& chainman = *maybe_chainman;
1001
0
    decltype(chainman.ActiveHeight()) active_height;
1002
0
    uint256 active_hash;
1003
0
    {
1004
0
        auto process_utxos = [&vOutPoints, &outs, &hits, &active_height, &active_hash, &chainman](const CCoinsView& view, const CTxMemPool* mempool) EXCLUSIVE_LOCKS_REQUIRED(chainman.GetMutex()) {
1005
0
            for (const COutPoint& vOutPoint : vOutPoints) {
1006
0
                auto coin = !mempool || !mempool->isSpent(vOutPoint) ? view.GetCoin(vOutPoint) : std::nullopt;
1007
0
                hits.push_back(coin.has_value());
1008
0
                if (coin) outs.emplace_back(std::move(*coin));
1009
0
            }
1010
0
            active_height = chainman.ActiveHeight();
1011
0
            active_hash = chainman.ActiveTip()->GetBlockHash();
1012
0
        };
1013
1014
0
        if (fCheckMemPool) {
1015
0
            const CTxMemPool* mempool = GetMemPool(context, req);
1016
0
            if (!mempool) return false;
1017
            // use db+mempool as cache backend in case user likes to query mempool
1018
0
            LOCK2(cs_main, mempool->cs);
Line
Count
Source
270
0
    UniqueLock criticalblock1(MaybeCheckNotHeld(cs1), #cs1, __FILE__, __LINE__); \
271
0
    UniqueLock criticalblock2(MaybeCheckNotHeld(cs2), #cs2, __FILE__, __LINE__)
1019
0
            CCoinsViewCache& viewChain = chainman.ActiveChainstate().CoinsTip();
1020
0
            CCoinsViewMemPool viewMempool(&viewChain, *mempool);
1021
0
            process_utxos(viewMempool, mempool);
1022
0
        } else {
1023
0
            LOCK(cs_main);
Line
Count
Source
268
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
1024
0
            process_utxos(chainman.ActiveChainstate().CoinsTip(), nullptr);
1025
0
        }
1026
1027
0
        for (size_t i = 0; i < hits.size(); ++i) {
1028
0
            const bool hit = hits[i];
1029
0
            bitmapStringRepresentation.append(hit ? "1" : "0"); // form a binary string representation (human-readable for json output)
1030
0
            bitmap[i / 8] |= ((uint8_t)hit) << (i % 8);
1031
0
        }
1032
0
    }
1033
1034
0
    switch (rf) {
1035
0
    case RESTResponseFormat::BINARY: {
1036
        // serialize data
1037
        // use exact same output as mentioned in Bip64
1038
0
        DataStream ssGetUTXOResponse{};
1039
0
        ssGetUTXOResponse << active_height << active_hash << bitmap << outs;
1040
1041
0
        req->WriteHeader("Content-Type", "application/octet-stream");
1042
0
        req->WriteReply(HTTP_OK, ssGetUTXOResponse);
1043
0
        return true;
1044
0
    }
1045
1046
0
    case RESTResponseFormat::HEX: {
1047
0
        DataStream ssGetUTXOResponse{};
1048
0
        ssGetUTXOResponse << active_height << active_hash << bitmap << outs;
1049
0
        std::string strHex = HexStr(ssGetUTXOResponse) + "\n";
1050
1051
0
        req->WriteHeader("Content-Type", "text/plain");
1052
0
        req->WriteReply(HTTP_OK, strHex);
1053
0
        return true;
1054
0
    }
1055
1056
0
    case RESTResponseFormat::JSON: {
1057
0
        UniValue objGetUTXOResponse(UniValue::VOBJ);
1058
1059
        // pack in some essentials
1060
        // use more or less the same output as mentioned in Bip64
1061
0
        objGetUTXOResponse.pushKV("chainHeight", active_height);
1062
0
        objGetUTXOResponse.pushKV("chaintipHash", active_hash.GetHex());
1063
0
        objGetUTXOResponse.pushKV("bitmap", bitmapStringRepresentation);
1064
1065
0
        UniValue utxos(UniValue::VARR);
1066
0
        for (const CCoin& coin : outs) {
1067
0
            UniValue utxo(UniValue::VOBJ);
1068
0
            utxo.pushKV("height", coin.nHeight);
1069
0
            utxo.pushKV("value", ValueFromAmount(coin.out.nValue));
1070
1071
            // include the script in a json output
1072
0
            UniValue o(UniValue::VOBJ);
1073
0
            ScriptToUniv(coin.out.scriptPubKey, /*out=*/o, /*include_hex=*/true, /*include_address=*/true);
1074
0
            utxo.pushKV("scriptPubKey", std::move(o));
1075
0
            utxos.push_back(std::move(utxo));
1076
0
        }
1077
0
        objGetUTXOResponse.pushKV("utxos", std::move(utxos));
1078
1079
        // return json string
1080
0
        std::string strJSON = objGetUTXOResponse.write() + "\n";
1081
0
        req->WriteHeader("Content-Type", "application/json");
1082
0
        req->WriteReply(HTTP_OK, strJSON);
1083
0
        return true;
1084
0
    }
1085
0
    default: {
1086
0
        return RESTERR(req, HTTP_NOT_FOUND, "output format not found (available: " + AvailableDataFormatsString() + ")");
1087
0
    }
1088
0
    }
1089
0
}
1090
1091
static bool rest_blockhash_by_height(const std::any& context, HTTPRequest* req,
1092
                       const std::string& str_uri_part)
1093
0
{
1094
0
    if (!CheckWarmup(req)) return false;
1095
0
    std::string height_str;
1096
0
    const RESTResponseFormat rf = ParseDataFormat(height_str, str_uri_part);
1097
1098
0
    const auto blockheight{ToIntegral<int32_t>(height_str)};
1099
0
    if (!blockheight || *blockheight < 0) {
1100
0
        return RESTERR(req, HTTP_BAD_REQUEST, "Invalid height: " + SanitizeString(height_str, SAFE_CHARS_URI));
1101
0
    }
1102
1103
0
    CBlockIndex* pblockindex = nullptr;
1104
0
    {
1105
0
        ChainstateManager* maybe_chainman = GetChainman(context, req);
1106
0
        if (!maybe_chainman) return false;
1107
0
        ChainstateManager& chainman = *maybe_chainman;
1108
0
        LOCK(cs_main);
Line
Count
Source
268
0
#define LOCK(cs) UniqueLock UNIQUE_NAME(criticalblock)(MaybeCheckNotHeld(cs), #cs, __FILE__, __LINE__)
Line
Count
Source
11
0
#define UNIQUE_NAME(name) PASTE2(name, __COUNTER__)
Line
Count
Source
9
0
#define PASTE2(x, y) PASTE(x, y)
Line
Count
Source
8
0
#define PASTE(x, y) x ## y
1109
0
        const CChain& active_chain = chainman.ActiveChain();
1110
0
        if (*blockheight > active_chain.Height()) {
1111
0
            return RESTERR(req, HTTP_NOT_FOUND, "Block height out of range");
1112
0
        }
1113
0
        pblockindex = active_chain[*blockheight];
1114
0
    }
1115
0
    switch (rf) {
1116
0
    case RESTResponseFormat::BINARY: {
1117
0
        DataStream ss_blockhash{};
1118
0
        ss_blockhash << pblockindex->GetBlockHash();
1119
0
        req->WriteHeader("Content-Type", "application/octet-stream");
1120
0
        req->WriteReply(HTTP_OK, ss_blockhash);
1121
0
        return true;
1122
0
    }
1123
0
    case RESTResponseFormat::HEX: {
1124
0
        req->WriteHeader("Content-Type", "text/plain");
1125
0
        req->WriteReply(HTTP_OK, pblockindex->GetBlockHash().GetHex() + "\n");
1126
0
        return true;
1127
0
    }
1128
0
    case RESTResponseFormat::JSON: {
1129
0
        req->WriteHeader("Content-Type", "application/json");
1130
0
        UniValue resp = UniValue(UniValue::VOBJ);
1131
0
        resp.pushKV("blockhash", pblockindex->GetBlockHash().GetHex());
1132
0
        req->WriteReply(HTTP_OK, resp.write() + "\n");
1133
0
        return true;
1134
0
    }
1135
0
    default: {
1136
0
        return RESTERR(req, HTTP_NOT_FOUND, "output format not found (available: " + AvailableDataFormatsString() + ")");
1137
0
    }
1138
0
    }
1139
0
}
1140
1141
static const struct {
1142
    const char* prefix;
1143
    bool (*handler)(const std::any& context, HTTPRequest* req, const std::string& strReq);
1144
} uri_prefixes[] = {
1145
    {"/rest/tx/", rest_tx},
1146
    {"/rest/block/notxdetails/", rest_block_notxdetails},
1147
    {"/rest/block/", rest_block_extended},
1148
    {"/rest/blockpart/", rest_block_part},
1149
    {"/rest/blockfilter/", rest_block_filter},
1150
    {"/rest/blockfilterheaders/", rest_filter_header},
1151
    {"/rest/chaininfo", rest_chaininfo},
1152
    {"/rest/mempool/", rest_mempool},
1153
    {"/rest/headers/", rest_headers},
1154
    {"/rest/getutxos", rest_getutxos},
1155
    {"/rest/deploymentinfo/", rest_deploymentinfo},
1156
    {"/rest/deploymentinfo", rest_deploymentinfo},
1157
    {"/rest/blockhashbyheight/", rest_blockhash_by_height},
1158
    {"/rest/spenttxouts/", rest_spent_txouts},
1159
};
1160
1161
void StartREST(const std::any& context)
1162
0
{
1163
0
    for (const auto& up : uri_prefixes) {
1164
0
        auto handler = [context, up](HTTPRequest* req, const std::string& prefix) { return up.handler(context, req, prefix); };
1165
0
        RegisterHTTPHandler(up.prefix, false, handler);
1166
0
    }
1167
0
}
1168
1169
void InterruptREST()
1170
0
{
1171
0
}
1172
1173
void StopREST()
1174
0
{
1175
0
    for (const auto& up : uri_prefixes) {
1176
0
        UnregisterHTTPHandler(up.prefix, false);
1177
0
    }
1178
0
}