Coverage Report

Created: 2025-02-21 14:37

/root/bitcoin/src/httpserver.cpp
Line
Count
Source (jump to first uncovered line)
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// Copyright (c) 2015-2022 The Bitcoin Core developers
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// Distributed under the MIT software license, see the accompanying
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// file COPYING or http://www.opensource.org/licenses/mit-license.php.
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#include <httpserver.h>
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#include <chainparamsbase.h>
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#include <common/args.h>
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#include <common/messages.h>
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#include <compat/compat.h>
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#include <logging.h>
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#include <netbase.h>
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#include <node/interface_ui.h>
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#include <rpc/protocol.h> // For HTTP status codes
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#include <sync.h>
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#include <util/check.h>
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#include <util/signalinterrupt.h>
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#include <util/strencodings.h>
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#include <util/threadnames.h>
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#include <util/translation.h>
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#include <condition_variable>
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#include <cstdio>
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#include <cstdlib>
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#include <deque>
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#include <memory>
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#include <optional>
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#include <span>
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#include <string>
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#include <unordered_map>
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#include <sys/types.h>
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#include <sys/stat.h>
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#include <event2/buffer.h>
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#include <event2/bufferevent.h>
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#include <event2/http.h>
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#include <event2/http_struct.h>
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#include <event2/keyvalq_struct.h>
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#include <event2/thread.h>
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#include <event2/util.h>
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#include <support/events.h>
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using common::InvalidPortErrMsg;
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/** Maximum size of http request (request line + headers) */
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static const size_t MAX_HEADERS_SIZE = 8192;
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/** HTTP request work item */
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class HTTPWorkItem final : public HTTPClosure
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{
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public:
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    HTTPWorkItem(std::unique_ptr<HTTPRequest> _req, const std::string &_path, const HTTPRequestHandler& _func):
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0
        req(std::move(_req)), path(_path), func(_func)
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0
    {
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0
    }
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    void operator()() override
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0
    {
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0
        func(req.get(), path);
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0
    }
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    std::unique_ptr<HTTPRequest> req;
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private:
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    std::string path;
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    HTTPRequestHandler func;
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};
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/** Simple work queue for distributing work over multiple threads.
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 * Work items are simply callable objects.
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 */
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template <typename WorkItem>
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class WorkQueue
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{
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private:
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    Mutex cs;
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    std::condition_variable cond GUARDED_BY(cs);
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    std::deque<std::unique_ptr<WorkItem>> queue GUARDED_BY(cs);
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    bool running GUARDED_BY(cs){true};
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    const size_t maxDepth;
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public:
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0
    explicit WorkQueue(size_t _maxDepth) : maxDepth(_maxDepth)
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0
    {
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0
    }
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    /** Precondition: worker threads have all stopped (they have been joined).
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     */
89
0
    ~WorkQueue() = default;
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    /** Enqueue a work item */
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    bool Enqueue(WorkItem* item) EXCLUSIVE_LOCKS_REQUIRED(!cs)
92
0
    {
93
0
        LOCK(cs);
94
0
        if (!running || queue.size() >= maxDepth) {
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0
            return false;
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0
        }
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0
        queue.emplace_back(std::unique_ptr<WorkItem>(item));
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0
        cond.notify_one();
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0
        return true;
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0
    }
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    /** Thread function */
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    void Run() EXCLUSIVE_LOCKS_REQUIRED(!cs)
103
0
    {
104
0
        while (true) {
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0
            std::unique_ptr<WorkItem> i;
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0
            {
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0
                WAIT_LOCK(cs, lock);
108
0
                while (running && queue.empty())
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0
                    cond.wait(lock);
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                if (!running && queue.empty())
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                    break;
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0
                i = std::move(queue.front());
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0
                queue.pop_front();
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0
            }
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0
            (*i)();
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0
        }
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0
    }
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    /** Interrupt and exit loops */
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    void Interrupt() EXCLUSIVE_LOCKS_REQUIRED(!cs)
120
0
    {
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0
        LOCK(cs);
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0
        running = false;
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0
        cond.notify_all();
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0
    }
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};
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struct HTTPPathHandler
128
{
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    HTTPPathHandler(std::string _prefix, bool _exactMatch, HTTPRequestHandler _handler):
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0
        prefix(_prefix), exactMatch(_exactMatch), handler(_handler)
131
0
    {
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0
    }
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    std::string prefix;
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    bool exactMatch;
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    HTTPRequestHandler handler;
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};
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/** HTTP module state */
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//! libevent event loop
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static struct event_base* eventBase = nullptr;
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//! HTTP server
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static struct evhttp* eventHTTP = nullptr;
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//! List of subnets to allow RPC connections from
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static std::vector<CSubNet> rpc_allow_subnets;
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//! Work queue for handling longer requests off the event loop thread
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static std::unique_ptr<WorkQueue<HTTPClosure>> g_work_queue{nullptr};
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//! Handlers for (sub)paths
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static GlobalMutex g_httppathhandlers_mutex;
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static std::vector<HTTPPathHandler> pathHandlers GUARDED_BY(g_httppathhandlers_mutex);
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//! Bound listening sockets
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static std::vector<evhttp_bound_socket *> boundSockets;
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/**
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 * @brief Helps keep track of open `evhttp_connection`s with active `evhttp_requests`
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 *
157
 */
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class HTTPRequestTracker
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{
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private:
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    mutable Mutex m_mutex;
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    mutable std::condition_variable m_cv;
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    //! For each connection, keep a counter of how many requests are open
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    std::unordered_map<const evhttp_connection*, size_t> m_tracker GUARDED_BY(m_mutex);
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    void RemoveConnectionInternal(const decltype(m_tracker)::iterator it) EXCLUSIVE_LOCKS_REQUIRED(m_mutex)
167
0
    {
168
0
        m_tracker.erase(it);
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0
        if (m_tracker.empty()) m_cv.notify_all();
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0
    }
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public:
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    //! Increase request counter for the associated connection by 1
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    void AddRequest(evhttp_request* req) EXCLUSIVE_LOCKS_REQUIRED(!m_mutex)
174
0
    {
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0
        const evhttp_connection* conn{Assert(evhttp_request_get_connection(Assert(req)))};
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0
        WITH_LOCK(m_mutex, ++m_tracker[conn]);
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0
    }
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    //! Decrease request counter for the associated connection by 1, remove connection if counter is 0
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    void RemoveRequest(evhttp_request* req) EXCLUSIVE_LOCKS_REQUIRED(!m_mutex)
180
0
    {
181
0
        const evhttp_connection* conn{Assert(evhttp_request_get_connection(Assert(req)))};
182
0
        LOCK(m_mutex);
183
0
        auto it{m_tracker.find(conn)};
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0
        if (it != m_tracker.end() && it->second > 0) {
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0
            if (--(it->second) == 0) RemoveConnectionInternal(it);
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0
        }
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0
    }
188
    //! Remove a connection entirely
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    void RemoveConnection(const evhttp_connection* conn) EXCLUSIVE_LOCKS_REQUIRED(!m_mutex)
190
0
    {
191
0
        LOCK(m_mutex);
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0
        auto it{m_tracker.find(Assert(conn))};
193
0
        if (it != m_tracker.end()) RemoveConnectionInternal(it);
194
0
    }
195
    size_t CountActiveConnections() const EXCLUSIVE_LOCKS_REQUIRED(!m_mutex)
196
0
    {
197
0
        return WITH_LOCK(m_mutex, return m_tracker.size());
198
0
    }
199
    //! Wait until there are no more connections with active requests in the tracker
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    void WaitUntilEmpty() const EXCLUSIVE_LOCKS_REQUIRED(!m_mutex)
201
0
    {
202
0
        WAIT_LOCK(m_mutex, lock);
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0
        m_cv.wait(lock, [this]() EXCLUSIVE_LOCKS_REQUIRED(m_mutex) { return m_tracker.empty(); });
204
0
    }
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};
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//! Track active requests
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static HTTPRequestTracker g_requests;
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/** Check if a network address is allowed to access the HTTP server */
210
static bool ClientAllowed(const CNetAddr& netaddr)
211
0
{
212
0
    if (!netaddr.IsValid())
213
0
        return false;
214
0
    for(const CSubNet& subnet : rpc_allow_subnets)
215
0
        if (subnet.Match(netaddr))
216
0
            return true;
217
0
    return false;
218
0
}
219
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/** Initialize ACL list for HTTP server */
221
static bool InitHTTPAllowList()
222
0
{
223
0
    rpc_allow_subnets.clear();
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0
    rpc_allow_subnets.emplace_back(LookupHost("127.0.0.1", false).value(), 8);  // always allow IPv4 local subnet
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0
    rpc_allow_subnets.emplace_back(LookupHost("::1", false).value());  // always allow IPv6 localhost
226
0
    for (const std::string& strAllow : gArgs.GetArgs("-rpcallowip")) {
227
0
        const CSubNet subnet{LookupSubNet(strAllow)};
228
0
        if (!subnet.IsValid()) {
229
0
            uiInterface.ThreadSafeMessageBox(
230
0
                Untranslated(strprintf("Invalid -rpcallowip subnet specification: %s. Valid are a single IP (e.g. 1.2.3.4), a network/netmask (e.g. 1.2.3.4/255.255.255.0) or a network/CIDR (e.g. 1.2.3.4/24).", strAllow)),
231
0
                "", CClientUIInterface::MSG_ERROR);
232
0
            return false;
233
0
        }
234
0
        rpc_allow_subnets.push_back(subnet);
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0
    }
236
0
    std::string strAllowed;
237
0
    for (const CSubNet& subnet : rpc_allow_subnets)
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0
        strAllowed += subnet.ToString() + " ";
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    LogDebug(BCLog::HTTP, "Allowing HTTP connections from: %s\n", strAllowed);
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0
    return true;
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0
}
242
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/** HTTP request method as string - use for logging only */
244
std::string RequestMethodString(HTTPRequest::RequestMethod m)
245
0
{
246
0
    switch (m) {
247
0
    case HTTPRequest::GET:
248
0
        return "GET";
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0
    case HTTPRequest::POST:
250
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        return "POST";
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0
    case HTTPRequest::HEAD:
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        return "HEAD";
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0
    case HTTPRequest::PUT:
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        return "PUT";
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0
    case HTTPRequest::UNKNOWN:
256
0
        return "unknown";
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0
    } // no default case, so the compiler can warn about missing cases
258
0
    assert(false);
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0
}
260
261
/** HTTP request callback */
262
static void http_request_cb(struct evhttp_request* req, void* arg)
263
0
{
264
0
    evhttp_connection* conn{evhttp_request_get_connection(req)};
265
    // Track active requests
266
0
    {
267
0
        g_requests.AddRequest(req);
268
0
        evhttp_request_set_on_complete_cb(req, [](struct evhttp_request* req, void*) {
269
0
            g_requests.RemoveRequest(req);
270
0
        }, nullptr);
271
0
        evhttp_connection_set_closecb(conn, [](evhttp_connection* conn, void* arg) {
272
0
            g_requests.RemoveConnection(conn);
273
0
        }, nullptr);
274
0
    }
275
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    // Disable reading to work around a libevent bug, fixed in 2.1.9
277
    // See https://github.com/libevent/libevent/commit/5ff8eb26371c4dc56f384b2de35bea2d87814779
278
    // and https://github.com/bitcoin/bitcoin/pull/11593.
279
0
    if (event_get_version_number() >= 0x02010600 && event_get_version_number() < 0x02010900) {
280
0
        if (conn) {
281
0
            bufferevent* bev = evhttp_connection_get_bufferevent(conn);
282
0
            if (bev) {
283
0
                bufferevent_disable(bev, EV_READ);
284
0
            }
285
0
        }
286
0
    }
287
0
    auto hreq{std::make_unique<HTTPRequest>(req, *static_cast<const util::SignalInterrupt*>(arg))};
288
289
    // Early address-based allow check
290
0
    if (!ClientAllowed(hreq->GetPeer())) {
291
0
        LogDebug(BCLog::HTTP, "HTTP request from %s rejected: Client network is not allowed RPC access\n",
292
0
                 hreq->GetPeer().ToStringAddrPort());
293
0
        hreq->WriteReply(HTTP_FORBIDDEN);
294
0
        return;
295
0
    }
296
297
    // Early reject unknown HTTP methods
298
0
    if (hreq->GetRequestMethod() == HTTPRequest::UNKNOWN) {
299
0
        LogDebug(BCLog::HTTP, "HTTP request from %s rejected: Unknown HTTP request method\n",
300
0
                 hreq->GetPeer().ToStringAddrPort());
301
0
        hreq->WriteReply(HTTP_BAD_METHOD);
302
0
        return;
303
0
    }
304
305
0
    LogDebug(BCLog::HTTP, "Received a %s request for %s from %s\n",
306
0
             RequestMethodString(hreq->GetRequestMethod()), SanitizeString(hreq->GetURI(), SAFE_CHARS_URI).substr(0, 100), hreq->GetPeer().ToStringAddrPort());
307
308
    // Find registered handler for prefix
309
0
    std::string strURI = hreq->GetURI();
310
0
    std::string path;
311
0
    LOCK(g_httppathhandlers_mutex);
312
0
    std::vector<HTTPPathHandler>::const_iterator i = pathHandlers.begin();
313
0
    std::vector<HTTPPathHandler>::const_iterator iend = pathHandlers.end();
314
0
    for (; i != iend; ++i) {
315
0
        bool match = false;
316
0
        if (i->exactMatch)
317
0
            match = (strURI == i->prefix);
318
0
        else
319
0
            match = strURI.starts_with(i->prefix);
320
0
        if (match) {
321
0
            path = strURI.substr(i->prefix.size());
322
0
            break;
323
0
        }
324
0
    }
325
326
    // Dispatch to worker thread
327
0
    if (i != iend) {
328
0
        std::unique_ptr<HTTPWorkItem> item(new HTTPWorkItem(std::move(hreq), path, i->handler));
329
0
        assert(g_work_queue);
330
0
        if (g_work_queue->Enqueue(item.get())) {
331
0
            item.release(); /* if true, queue took ownership */
332
0
        } else {
333
0
            LogPrintf("WARNING: request rejected because http work queue depth exceeded, it can be increased with the -rpcworkqueue= setting\n");
334
0
            item->req->WriteReply(HTTP_SERVICE_UNAVAILABLE, "Work queue depth exceeded");
335
0
        }
336
0
    } else {
337
0
        hreq->WriteReply(HTTP_NOT_FOUND);
338
0
    }
339
0
}
340
341
/** Callback to reject HTTP requests after shutdown. */
342
static void http_reject_request_cb(struct evhttp_request* req, void*)
343
0
{
344
0
    LogDebug(BCLog::HTTP, "Rejecting request while shutting down\n");
345
0
    evhttp_send_error(req, HTTP_SERVUNAVAIL, nullptr);
346
0
}
347
348
/** Event dispatcher thread */
349
static void ThreadHTTP(struct event_base* base)
350
0
{
351
0
    util::ThreadRename("http");
352
0
    LogDebug(BCLog::HTTP, "Entering http event loop\n");
353
0
    event_base_dispatch(base);
354
    // Event loop will be interrupted by InterruptHTTPServer()
355
0
    LogDebug(BCLog::HTTP, "Exited http event loop\n");
356
0
}
357
358
/** Bind HTTP server to specified addresses */
359
static bool HTTPBindAddresses(struct evhttp* http)
360
0
{
361
0
    uint16_t http_port{static_cast<uint16_t>(gArgs.GetIntArg("-rpcport", BaseParams().RPCPort()))};
362
0
    std::vector<std::pair<std::string, uint16_t>> endpoints;
363
364
    // Determine what addresses to bind to
365
    // To prevent misconfiguration and accidental exposure of the RPC
366
    // interface, require -rpcallowip and -rpcbind to both be specified
367
    // together. If either is missing, ignore both values, bind to localhost
368
    // instead, and log warnings.
369
0
    if (gArgs.GetArgs("-rpcallowip").empty() || gArgs.GetArgs("-rpcbind").empty()) { // Default to loopback if not allowing external IPs
370
0
        endpoints.emplace_back("::1", http_port);
371
0
        endpoints.emplace_back("127.0.0.1", http_port);
372
0
        if (!gArgs.GetArgs("-rpcallowip").empty()) {
373
0
            LogPrintf("WARNING: option -rpcallowip was specified without -rpcbind; this doesn't usually make sense\n");
374
0
        }
375
0
        if (!gArgs.GetArgs("-rpcbind").empty()) {
376
0
            LogPrintf("WARNING: option -rpcbind was ignored because -rpcallowip was not specified, refusing to allow everyone to connect\n");
377
0
        }
378
0
    } else { // Specific bind addresses
379
0
        for (const std::string& strRPCBind : gArgs.GetArgs("-rpcbind")) {
380
0
            uint16_t port{http_port};
381
0
            std::string host;
382
0
            if (!SplitHostPort(strRPCBind, port, host)) {
383
0
                LogError("%s\n", InvalidPortErrMsg("-rpcbind", strRPCBind).original);
384
0
                return false;
385
0
            }
386
0
            endpoints.emplace_back(host, port);
387
0
        }
388
0
    }
389
390
    // Bind addresses
391
0
    for (std::vector<std::pair<std::string, uint16_t> >::iterator i = endpoints.begin(); i != endpoints.end(); ++i) {
392
0
        LogPrintf("Binding RPC on address %s port %i\n", i->first, i->second);
393
0
        evhttp_bound_socket *bind_handle = evhttp_bind_socket_with_handle(http, i->first.empty() ? nullptr : i->first.c_str(), i->second);
394
0
        if (bind_handle) {
395
0
            const std::optional<CNetAddr> addr{LookupHost(i->first, false)};
396
0
            if (i->first.empty() || (addr.has_value() && addr->IsBindAny())) {
397
0
                LogPrintf("WARNING: the RPC server is not safe to expose to untrusted networks such as the public internet\n");
398
0
            }
399
            // Set the no-delay option (disable Nagle's algorithm) on the TCP socket.
400
0
            evutil_socket_t fd = evhttp_bound_socket_get_fd(bind_handle);
401
0
            int one = 1;
402
0
            if (setsockopt(fd, IPPROTO_TCP, TCP_NODELAY, (sockopt_arg_type)&one, sizeof(one)) == SOCKET_ERROR) {
403
0
                LogInfo("WARNING: Unable to set TCP_NODELAY on RPC server socket, continuing anyway\n");
404
0
            }
405
0
            boundSockets.push_back(bind_handle);
406
0
        } else {
407
0
            LogPrintf("Binding RPC on address %s port %i failed.\n", i->first, i->second);
408
0
        }
409
0
    }
410
0
    return !boundSockets.empty();
411
0
}
412
413
/** Simple wrapper to set thread name and run work queue */
414
static void HTTPWorkQueueRun(WorkQueue<HTTPClosure>* queue, int worker_num)
415
0
{
416
0
    util::ThreadRename(strprintf("httpworker.%i", worker_num));
417
0
    queue->Run();
418
0
}
419
420
/** libevent event log callback */
421
static void libevent_log_cb(int severity, const char *msg)
422
0
{
423
0
    BCLog::Level level;
424
0
    switch (severity) {
425
0
    case EVENT_LOG_DEBUG:
426
0
        level = BCLog::Level::Debug;
427
0
        break;
428
0
    case EVENT_LOG_MSG:
429
0
        level = BCLog::Level::Info;
430
0
        break;
431
0
    case EVENT_LOG_WARN:
432
0
        level = BCLog::Level::Warning;
433
0
        break;
434
0
    default: // EVENT_LOG_ERR and others are mapped to error
435
0
        level = BCLog::Level::Error;
436
0
        break;
437
0
    }
438
0
    LogPrintLevel(BCLog::LIBEVENT, level, "%s\n", msg);
439
0
}
440
441
bool InitHTTPServer(const util::SignalInterrupt& interrupt)
442
0
{
443
0
    if (!InitHTTPAllowList())
444
0
        return false;
445
446
    // Redirect libevent's logging to our own log
447
0
    event_set_log_callback(&libevent_log_cb);
448
    // Update libevent's log handling.
449
0
    UpdateHTTPServerLogging(LogInstance().WillLogCategory(BCLog::LIBEVENT));
450
451
#ifdef WIN32
452
    evthread_use_windows_threads();
453
#else
454
0
    evthread_use_pthreads();
455
0
#endif
456
457
0
    raii_event_base base_ctr = obtain_event_base();
458
459
    /* Create a new evhttp object to handle requests. */
460
0
    raii_evhttp http_ctr = obtain_evhttp(base_ctr.get());
461
0
    struct evhttp* http = http_ctr.get();
462
0
    if (!http) {
463
0
        LogPrintf("couldn't create evhttp. Exiting.\n");
464
0
        return false;
465
0
    }
466
467
0
    evhttp_set_timeout(http, gArgs.GetIntArg("-rpcservertimeout", DEFAULT_HTTP_SERVER_TIMEOUT));
468
0
    evhttp_set_max_headers_size(http, MAX_HEADERS_SIZE);
469
0
    evhttp_set_max_body_size(http, MAX_SIZE);
470
0
    evhttp_set_gencb(http, http_request_cb, (void*)&interrupt);
471
472
0
    if (!HTTPBindAddresses(http)) {
473
0
        LogPrintf("Unable to bind any endpoint for RPC server\n");
474
0
        return false;
475
0
    }
476
477
0
    LogDebug(BCLog::HTTP, "Initialized HTTP server\n");
478
0
    int workQueueDepth = std::max((long)gArgs.GetIntArg("-rpcworkqueue", DEFAULT_HTTP_WORKQUEUE), 1L);
479
0
    LogDebug(BCLog::HTTP, "creating work queue of depth %d\n", workQueueDepth);
480
481
0
    g_work_queue = std::make_unique<WorkQueue<HTTPClosure>>(workQueueDepth);
482
    // transfer ownership to eventBase/HTTP via .release()
483
0
    eventBase = base_ctr.release();
484
0
    eventHTTP = http_ctr.release();
485
0
    return true;
486
0
}
487
488
0
void UpdateHTTPServerLogging(bool enable) {
489
0
    if (enable) {
490
0
        event_enable_debug_logging(EVENT_DBG_ALL);
491
0
    } else {
492
0
        event_enable_debug_logging(EVENT_DBG_NONE);
493
0
    }
494
0
}
495
496
static std::thread g_thread_http;
497
static std::vector<std::thread> g_thread_http_workers;
498
499
void StartHTTPServer()
500
0
{
501
0
    int rpcThreads = std::max((long)gArgs.GetIntArg("-rpcthreads", DEFAULT_HTTP_THREADS), 1L);
502
0
    LogInfo("Starting HTTP server with %d worker threads\n", rpcThreads);
503
0
    g_thread_http = std::thread(ThreadHTTP, eventBase);
504
505
0
    for (int i = 0; i < rpcThreads; i++) {
506
0
        g_thread_http_workers.emplace_back(HTTPWorkQueueRun, g_work_queue.get(), i);
507
0
    }
508
0
}
509
510
void InterruptHTTPServer()
511
0
{
512
0
    LogDebug(BCLog::HTTP, "Interrupting HTTP server\n");
513
0
    if (eventHTTP) {
514
        // Reject requests on current connections
515
0
        evhttp_set_gencb(eventHTTP, http_reject_request_cb, nullptr);
516
0
    }
517
0
    if (g_work_queue) {
518
0
        g_work_queue->Interrupt();
519
0
    }
520
0
}
521
522
void StopHTTPServer()
523
0
{
524
0
    LogDebug(BCLog::HTTP, "Stopping HTTP server\n");
525
0
    if (g_work_queue) {
526
0
        LogDebug(BCLog::HTTP, "Waiting for HTTP worker threads to exit\n");
527
0
        for (auto& thread : g_thread_http_workers) {
528
0
            thread.join();
529
0
        }
530
0
        g_thread_http_workers.clear();
531
0
    }
532
    // Unlisten sockets, these are what make the event loop running, which means
533
    // that after this and all connections are closed the event loop will quit.
534
0
    for (evhttp_bound_socket *socket : boundSockets) {
535
0
        evhttp_del_accept_socket(eventHTTP, socket);
536
0
    }
537
0
    boundSockets.clear();
538
0
    {
539
0
        if (const auto n_connections{g_requests.CountActiveConnections()}; n_connections != 0) {
540
0
            LogDebug(BCLog::HTTP, "Waiting for %d connections to stop HTTP server\n", n_connections);
541
0
        }
542
0
        g_requests.WaitUntilEmpty();
543
0
    }
544
0
    if (eventHTTP) {
545
        // Schedule a callback to call evhttp_free in the event base thread, so
546
        // that evhttp_free does not need to be called again after the handling
547
        // of unfinished request connections that follows.
548
0
        event_base_once(eventBase, -1, EV_TIMEOUT, [](evutil_socket_t, short, void*) {
549
0
            evhttp_free(eventHTTP);
550
0
            eventHTTP = nullptr;
551
0
        }, nullptr, nullptr);
552
0
    }
553
0
    if (eventBase) {
554
0
        LogDebug(BCLog::HTTP, "Waiting for HTTP event thread to exit\n");
555
0
        if (g_thread_http.joinable()) g_thread_http.join();
556
0
        event_base_free(eventBase);
557
0
        eventBase = nullptr;
558
0
    }
559
0
    g_work_queue.reset();
560
0
    LogDebug(BCLog::HTTP, "Stopped HTTP server\n");
561
0
}
562
563
struct event_base* EventBase()
564
0
{
565
0
    return eventBase;
566
0
}
567
568
static void httpevent_callback_fn(evutil_socket_t, short, void* data)
569
0
{
570
    // Static handler: simply call inner handler
571
0
    HTTPEvent *self = static_cast<HTTPEvent*>(data);
572
0
    self->handler();
573
0
    if (self->deleteWhenTriggered)
574
0
        delete self;
575
0
}
576
577
HTTPEvent::HTTPEvent(struct event_base* base, bool _deleteWhenTriggered, const std::function<void()>& _handler):
578
0
    deleteWhenTriggered(_deleteWhenTriggered), handler(_handler)
579
0
{
580
0
    ev = event_new(base, -1, 0, httpevent_callback_fn, this);
581
0
    assert(ev);
582
0
}
583
HTTPEvent::~HTTPEvent()
584
0
{
585
0
    event_free(ev);
586
0
}
587
void HTTPEvent::trigger(struct timeval* tv)
588
0
{
589
0
    if (tv == nullptr)
590
0
        event_active(ev, 0, 0); // immediately trigger event in main thread
591
0
    else
592
0
        evtimer_add(ev, tv); // trigger after timeval passed
593
0
}
594
HTTPRequest::HTTPRequest(struct evhttp_request* _req, const util::SignalInterrupt& interrupt, bool _replySent)
595
0
    : req(_req), m_interrupt(interrupt), replySent(_replySent)
596
0
{
597
0
}
598
599
HTTPRequest::~HTTPRequest()
600
0
{
601
0
    if (!replySent) {
602
        // Keep track of whether reply was sent to avoid request leaks
603
0
        LogPrintf("%s: Unhandled request\n", __func__);
604
0
        WriteReply(HTTP_INTERNAL_SERVER_ERROR, "Unhandled request");
605
0
    }
606
    // evhttpd cleans up the request, as long as a reply was sent.
607
0
}
608
609
std::pair<bool, std::string> HTTPRequest::GetHeader(const std::string& hdr) const
610
0
{
611
0
    const struct evkeyvalq* headers = evhttp_request_get_input_headers(req);
612
0
    assert(headers);
613
0
    const char* val = evhttp_find_header(headers, hdr.c_str());
614
0
    if (val)
615
0
        return std::make_pair(true, val);
616
0
    else
617
0
        return std::make_pair(false, "");
618
0
}
619
620
std::string HTTPRequest::ReadBody()
621
0
{
622
0
    struct evbuffer* buf = evhttp_request_get_input_buffer(req);
623
0
    if (!buf)
624
0
        return "";
625
0
    size_t size = evbuffer_get_length(buf);
626
    /** Trivial implementation: if this is ever a performance bottleneck,
627
     * internal copying can be avoided in multi-segment buffers by using
628
     * evbuffer_peek and an awkward loop. Though in that case, it'd be even
629
     * better to not copy into an intermediate string but use a stream
630
     * abstraction to consume the evbuffer on the fly in the parsing algorithm.
631
     */
632
0
    const char* data = (const char*)evbuffer_pullup(buf, size);
633
0
    if (!data) // returns nullptr in case of empty buffer
634
0
        return "";
635
0
    std::string rv(data, size);
636
0
    evbuffer_drain(buf, size);
637
0
    return rv;
638
0
}
639
640
void HTTPRequest::WriteHeader(const std::string& hdr, const std::string& value)
641
0
{
642
0
    struct evkeyvalq* headers = evhttp_request_get_output_headers(req);
643
0
    assert(headers);
644
0
    evhttp_add_header(headers, hdr.c_str(), value.c_str());
645
0
}
646
647
/** Closure sent to main thread to request a reply to be sent to
648
 * a HTTP request.
649
 * Replies must be sent in the main loop in the main http thread,
650
 * this cannot be done from worker threads.
651
 */
652
void HTTPRequest::WriteReply(int nStatus, std::span<const std::byte> reply)
653
0
{
654
0
    assert(!replySent && req);
655
0
    if (m_interrupt) {
656
0
        WriteHeader("Connection", "close");
657
0
    }
658
    // Send event to main http thread to send reply message
659
0
    struct evbuffer* evb = evhttp_request_get_output_buffer(req);
660
0
    assert(evb);
661
0
    evbuffer_add(evb, reply.data(), reply.size());
662
0
    auto req_copy = req;
663
0
    HTTPEvent* ev = new HTTPEvent(eventBase, true, [req_copy, nStatus]{
664
0
        evhttp_send_reply(req_copy, nStatus, nullptr, nullptr);
665
        // Re-enable reading from the socket. This is the second part of the libevent
666
        // workaround above.
667
0
        if (event_get_version_number() >= 0x02010600 && event_get_version_number() < 0x02010900) {
668
0
            evhttp_connection* conn = evhttp_request_get_connection(req_copy);
669
0
            if (conn) {
670
0
                bufferevent* bev = evhttp_connection_get_bufferevent(conn);
671
0
                if (bev) {
672
0
                    bufferevent_enable(bev, EV_READ | EV_WRITE);
673
0
                }
674
0
            }
675
0
        }
676
0
    });
677
0
    ev->trigger(nullptr);
678
0
    replySent = true;
679
0
    req = nullptr; // transferred back to main thread
680
0
}
681
682
CService HTTPRequest::GetPeer() const
683
0
{
684
0
    evhttp_connection* con = evhttp_request_get_connection(req);
685
0
    CService peer;
686
0
    if (con) {
687
        // evhttp retains ownership over returned address string
688
0
        const char* address = "";
689
0
        uint16_t port = 0;
690
691
#ifdef HAVE_EVHTTP_CONNECTION_GET_PEER_CONST_CHAR
692
        evhttp_connection_get_peer(con, &address, &port);
693
#else
694
0
        evhttp_connection_get_peer(con, (char**)&address, &port);
695
0
#endif // HAVE_EVHTTP_CONNECTION_GET_PEER_CONST_CHAR
696
697
0
        peer = MaybeFlipIPv6toCJDNS(LookupNumeric(address, port));
698
0
    }
699
0
    return peer;
700
0
}
701
702
std::string HTTPRequest::GetURI() const
703
0
{
704
0
    return evhttp_request_get_uri(req);
705
0
}
706
707
HTTPRequest::RequestMethod HTTPRequest::GetRequestMethod() const
708
0
{
709
0
    switch (evhttp_request_get_command(req)) {
710
0
    case EVHTTP_REQ_GET:
711
0
        return GET;
712
0
    case EVHTTP_REQ_POST:
713
0
        return POST;
714
0
    case EVHTTP_REQ_HEAD:
715
0
        return HEAD;
716
0
    case EVHTTP_REQ_PUT:
717
0
        return PUT;
718
0
    default:
719
0
        return UNKNOWN;
720
0
    }
721
0
}
722
723
std::optional<std::string> HTTPRequest::GetQueryParameter(const std::string& key) const
724
0
{
725
0
    const char* uri{evhttp_request_get_uri(req)};
726
727
0
    return GetQueryParameterFromUri(uri, key);
728
0
}
729
730
std::optional<std::string> GetQueryParameterFromUri(const char* uri, const std::string& key)
731
0
{
732
0
    evhttp_uri* uri_parsed{evhttp_uri_parse(uri)};
733
0
    if (!uri_parsed) {
734
0
        throw std::runtime_error("URI parsing failed, it likely contained RFC 3986 invalid characters");
735
0
    }
736
0
    const char* query{evhttp_uri_get_query(uri_parsed)};
737
0
    std::optional<std::string> result;
738
739
0
    if (query) {
740
        // Parse the query string into a key-value queue and iterate over it
741
0
        struct evkeyvalq params_q;
742
0
        evhttp_parse_query_str(query, &params_q);
743
744
0
        for (struct evkeyval* param{params_q.tqh_first}; param != nullptr; param = param->next.tqe_next) {
745
0
            if (param->key == key) {
746
0
                result = param->value;
747
0
                break;
748
0
            }
749
0
        }
750
0
        evhttp_clear_headers(&params_q);
751
0
    }
752
0
    evhttp_uri_free(uri_parsed);
753
754
0
    return result;
755
0
}
756
757
void RegisterHTTPHandler(const std::string &prefix, bool exactMatch, const HTTPRequestHandler &handler)
758
0
{
759
0
    LogDebug(BCLog::HTTP, "Registering HTTP handler for %s (exactmatch %d)\n", prefix, exactMatch);
760
0
    LOCK(g_httppathhandlers_mutex);
761
0
    pathHandlers.emplace_back(prefix, exactMatch, handler);
762
0
}
763
764
void UnregisterHTTPHandler(const std::string &prefix, bool exactMatch)
765
0
{
766
0
    LOCK(g_httppathhandlers_mutex);
767
0
    std::vector<HTTPPathHandler>::iterator i = pathHandlers.begin();
768
0
    std::vector<HTTPPathHandler>::iterator iend = pathHandlers.end();
769
0
    for (; i != iend; ++i)
770
0
        if (i->prefix == prefix && i->exactMatch == exactMatch)
771
0
            break;
772
0
    if (i != iend)
773
0
    {
774
0
        LogDebug(BCLog::HTTP, "Unregistering HTTP handler for %s (exactmatch %d)\n", prefix, exactMatch);
775
0
        pathHandlers.erase(i);
776
0
    }
777
0
}