Coverage Report

Created: 2026-07-23 20:35

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/tmp/bitcoin/src/httprpc.cpp
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// Copyright (c) 2015-present 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 <httprpc.h>
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#include <common/args.h>
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#include <crypto/hmac_sha256.h>
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#include <httpserver.h>
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#include <netaddress.h>
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#include <rpc/protocol.h>
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#include <rpc/server.h>
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#include <util/fs.h>
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#include <util/fs_helpers.h>
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#include <util/log.h>
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#include <util/strencodings.h>
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#include <util/string.h>
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#include <walletinitinterface.h>
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#include <algorithm>
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#include <iterator>
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#include <map>
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#include <memory>
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#include <optional>
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#include <set>
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#include <string>
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#include <vector>
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using http_bitcoin::HTTPRequest;
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using util::SplitString;
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using util::TrimStringView;
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/** WWW-Authenticate to present with 401 Unauthorized response */
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static const char* WWW_AUTH_HEADER_DATA = "Basic realm=\"jsonrpc\"";
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/* List of -rpcauth values */
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static std::vector<std::vector<std::string>> g_rpcauth;
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/* RPC Auth Whitelist */
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static std::map<std::string, std::set<std::string>> g_rpc_whitelist;
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static bool g_rpc_whitelist_default = false;
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static UniValue JSONErrorReply(UniValue objError, const JSONRPCRequest& jreq, HTTPStatusCode& nStatus)
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6
{
44
    // HTTP errors should never be returned if JSON-RPC v2 was requested. This
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    // function should only be called when a v1 request fails or when a request
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    // cannot be parsed, so the version is unknown.
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6
    Assume(jreq.m_json_version != JSONRPCVersion::V2);
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    // Send error reply from json-rpc error object
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6
    nStatus = HTTP_INTERNAL_SERVER_ERROR;
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6
    int code = objError.find_value("code").getInt<int>();
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6
    if (code == RPC_INVALID_REQUEST)
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2
        nStatus = HTTP_BAD_REQUEST;
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4
    else if (code == RPC_METHOD_NOT_FOUND)
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1
        nStatus = HTTP_NOT_FOUND;
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6
    return JSONRPCReplyObj(NullUniValue, std::move(objError), jreq.id, jreq.m_json_version);
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6
}
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//This function checks username and password against -rpcauth
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//entries from config file.
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static bool CheckUserAuthorized(std::string_view user, std::string_view pass)
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183k
{
65
183k
    for (const auto& fields : g_rpcauth) {
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183k
        if (!TimingResistantEqual(std::string_view(fields[0]), user)) {
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159
            continue;
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159
        }
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183k
        const std::string& salt = fields[1];
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183k
        const std::string& hash = fields[2];
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183k
        std::array<unsigned char, CHMAC_SHA256::OUTPUT_SIZE> out;
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183k
        CHMAC_SHA256(UCharCast(salt.data()), salt.size()).Write(UCharCast(pass.data()), pass.size()).Finalize(out.data());
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183k
        std::string hash_from_pass = HexStr(out);
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183k
        if (TimingResistantEqual(hash_from_pass, hash)) {
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183k
            return true;
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183k
        }
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183k
    }
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23
    return false;
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183k
}
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static bool RPCAuthorized(const std::string& strAuth, std::string& strAuthUsernameOut)
85
183k
{
86
183k
    if (!strAuth.starts_with("Basic "))
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6
        return false;
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183k
    std::string_view strUserPass64 = TrimStringView(std::string_view{strAuth}.substr(6));
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183k
    auto userpass_data = DecodeBase64(strUserPass64);
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183k
    std::string strUserPass;
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183k
    if (!userpass_data) return false;
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183k
    strUserPass.assign(userpass_data->begin(), userpass_data->end());
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183k
    size_t colon_pos = strUserPass.find(':');
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183k
    if (colon_pos == std::string::npos) {
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2
        return false; // Invalid basic auth.
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2
    }
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183k
    std::string user = strUserPass.substr(0, colon_pos);
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183k
    std::string pass = strUserPass.substr(colon_pos + 1);
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183k
    strAuthUsernameOut = user;
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183k
    return CheckUserAuthorized(user, pass);
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183k
}
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UniValue ExecuteHTTPRPC(const UniValue& valRequest, JSONRPCRequest& jreq, HTTPStatusCode& status)
105
183k
{
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183k
    status = HTTP_OK;
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183k
    try {
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183k
        bool user_has_whitelist = g_rpc_whitelist.contains(jreq.authUser);
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183k
        if (!user_has_whitelist && g_rpc_whitelist_default) {
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4
            LogWarning("RPC User %s not allowed to call any methods", jreq.authUser);
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4
            status = HTTP_FORBIDDEN;
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            return {};
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        // singleton request
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183k
        } else if (valRequest.isObject()) {
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182k
            jreq.parse(valRequest);
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182k
            if (user_has_whitelist && !g_rpc_whitelist[jreq.authUser].contains(jreq.strMethod)) {
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                LogWarning("RPC User %s not allowed to call method %s", jreq.authUser, jreq.strMethod);
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                status = HTTP_FORBIDDEN;
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                return {};
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            }
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            // Legacy 1.0/1.1 behavior is for failed requests to throw
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            // exceptions which return HTTP errors and RPC errors to the client.
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            // 2.0 behavior is to catch exceptions and return HTTP success with
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            // RPC errors, as long as there is not an actual HTTP server error.
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182k
            const bool catch_errors{jreq.m_json_version == JSONRPCVersion::V2};
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            UniValue reply{JSONRPCExec(jreq, catch_errors)};
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            if (jreq.IsNotification()) {
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                // Even though we do execute notifications, we do not respond to them
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                status = HTTP_NO_CONTENT;
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                return {};
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            }
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182k
            return reply;
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        // array of requests
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        } else if (valRequest.isArray()) {
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            // Check authorization for each request's method
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            if (user_has_whitelist) {
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                for (unsigned int reqIdx = 0; reqIdx < valRequest.size(); reqIdx++) {
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                    if (!valRequest[reqIdx].isObject()) {
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                        throw JSONRPCError(RPC_INVALID_REQUEST, "Invalid Request object");
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                    } else {
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                        const UniValue& request = valRequest[reqIdx].get_obj();
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                        // Parse method
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                        std::string strMethod = request.find_value("method").get_str();
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                        if (!g_rpc_whitelist[jreq.authUser].contains(strMethod)) {
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                            LogWarning("RPC User %s not allowed to call method %s", jreq.authUser, strMethod);
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                            status = HTTP_FORBIDDEN;
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                            return {};
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0
                        }
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0
                    }
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                }
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            }
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            // Execute each request
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            UniValue reply = UniValue::VARR;
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13.1k
            for (size_t i{0}; i < valRequest.size(); ++i) {
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                // Batches never throw HTTP errors, they are always just included
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                // in "HTTP OK" responses. Notifications never get any response.
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13.0k
                UniValue response;
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                try {
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                    jreq.parse(valRequest[i]);
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                    response = JSONRPCExec(jreq, /*catch_errors=*/true);
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                } catch (UniValue& e) {
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                    response = JSONRPCReplyObj(NullUniValue, std::move(e), jreq.id, jreq.m_json_version);
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                } catch (const std::exception& e) {
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                    response = JSONRPCReplyObj(NullUniValue, JSONRPCError(RPC_PARSE_ERROR, e.what()), jreq.id, jreq.m_json_version);
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0
                }
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13.0k
                if (!jreq.IsNotification()) {
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13.0k
                    reply.push_back(std::move(response));
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13.0k
                }
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            }
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            // Return no response for an all-notification batch, but only if the
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            // batch request is non-empty. Technically according to the JSON-RPC
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            // 2.0 spec, an empty batch request should also return no response,
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            // However, if the batch request is empty, it means the request did
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            // not contain any JSON-RPC version numbers, so returning an empty
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            // response could break backwards compatibility with old RPC clients
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            // relying on previous behavior. Return an empty array instead of an
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            // empty response in this case to favor being backwards compatible
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            // over complying with the JSON-RPC 2.0 spec in this case.
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            if (reply.size() == 0 && valRequest.size() > 0) {
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1
                status = HTTP_NO_CONTENT;
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                return {};
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1
            }
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            return reply;
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        }
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        else
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            throw JSONRPCError(RPC_PARSE_ERROR, "Top-level object parse error");
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    } catch (UniValue& e) {
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        return JSONErrorReply(std::move(e), jreq, status);
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    } catch (const std::exception& e) {
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        return JSONErrorReply(JSONRPCError(RPC_PARSE_ERROR, e.what()), jreq, status);
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0
    }
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}
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static void HTTPReq_JSONRPC(const std::any& context, HTTPRequest* req)
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183k
{
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    // JSONRPC handles only POST
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183k
    if (req->GetRequestMethod() != HTTPRequestMethod::POST) {
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        req->WriteReply(HTTP_BAD_METHOD, "JSONRPC server handles only POST requests");
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        return;
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    }
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    // Check authorization
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183k
    std::pair<bool, std::string> authHeader = req->GetHeader("authorization");
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    if (!authHeader.first) {
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1
        req->WriteHeader("WWW-Authenticate", WWW_AUTH_HEADER_DATA);
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        req->WriteReply(HTTP_UNAUTHORIZED);
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        return;
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    }
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183k
    JSONRPCRequest jreq;
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    jreq.context = context;
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    jreq.peerAddr = req->GetPeer().ToStringAddrPort();
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    jreq.URI = req->GetURI();
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    if (!RPCAuthorized(authHeader.second, jreq.authUser)) {
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        LogWarning("ThreadRPCServer incorrect password attempt from %s", jreq.peerAddr);
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        /* Deter brute-forcing
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           If this results in a DoS the user really
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           shouldn't have their RPC port exposed. */
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        UninterruptibleSleep(std::chrono::milliseconds{250});
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        req->WriteHeader("WWW-Authenticate", WWW_AUTH_HEADER_DATA);
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        req->WriteReply(HTTP_UNAUTHORIZED);
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        return;
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    }
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    // Generate reply
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183k
    HTTPStatusCode status;
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    UniValue reply;
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    UniValue request;
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183k
    if (request.read(req->ReadBody())) {
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183k
        reply = ExecuteHTTPRPC(request, jreq, status);
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    } else {
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2
        reply = JSONErrorReply(JSONRPCError(RPC_PARSE_ERROR, "Parse error"), jreq, status);
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    }
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    // Write reply
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183k
    if (reply.isNull()) {
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        // Error case or no-content notification reply.
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18
        req->WriteReply(status);
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183k
    } else {
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183k
        req->WriteHeader("Content-Type", "application/json");
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183k
        req->WriteReply(status, reply.write() + "\n");
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183k
    }
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183k
}
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static bool InitRPCAuthentication()
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1.12k
{
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1.12k
    std::string user;
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1.12k
    std::string pass;
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254
1.12k
    if (gArgs.GetArg("-rpcpassword", "") == "")
255
1.12k
    {
256
1.12k
        std::optional<fs::perms> cookie_perms{std::nullopt};
257
1.12k
        auto cookie_perms_arg{gArgs.GetArg("-rpccookieperms")};
258
1.12k
        if (cookie_perms_arg) {
259
3
            auto perm_opt = InterpretPermString(*cookie_perms_arg);
260
3
            if (!perm_opt) {
261
0
                LogError("Invalid -rpccookieperms=%s; must be one of 'owner', 'group', or 'all'.", *cookie_perms_arg);
262
0
                return false;
263
0
            }
264
3
            cookie_perms = *perm_opt;
265
3
        }
266
267
1.12k
        switch (GenerateAuthCookie(cookie_perms, user, pass)) {
268
1
        case AuthCookieResult::Error:
269
1
            return false;
270
1
        case AuthCookieResult::Disabled:
271
1
            LogInfo("RPC authentication cookie file generation is disabled.");
272
1
            break;
273
1.12k
        case AuthCookieResult::Ok:
274
1.12k
            LogInfo("Using random cookie authentication.");
275
1.12k
            break;
276
1.12k
        }
277
1.12k
    } else {
278
1
        LogInfo("Using rpcuser/rpcpassword authentication.");
279
1
        LogWarning("The use of rpcuser/rpcpassword is less secure, because credentials are configured in plain text. It is recommended that locally-run instances switch to cookie-based auth, or otherwise to use hashed rpcauth credentials. See share/rpcauth in the source directory for more information.");
280
1
        user = gArgs.GetArg("-rpcuser", "");
281
1
        pass = gArgs.GetArg("-rpcpassword", "");
282
1
    }
283
284
    // If there is a plaintext credential, hash it with a random salt before storage.
285
1.12k
    if (!user.empty() || !pass.empty()) {
286
        // Generate a random 16 byte hex salt.
287
1.12k
        std::array<unsigned char, 16> raw_salt;
288
1.12k
        GetStrongRandBytes(raw_salt);
289
1.12k
        std::string salt = HexStr(raw_salt);
290
291
        // Compute HMAC.
292
1.12k
        std::array<unsigned char, CHMAC_SHA256::OUTPUT_SIZE> out;
293
1.12k
        CHMAC_SHA256(UCharCast(salt.data()), salt.size()).Write(UCharCast(pass.data()), pass.size()).Finalize(out.data());
294
1.12k
        std::string hash = HexStr(out);
295
296
1.12k
        g_rpcauth.push_back({user, salt, hash});
297
1.12k
    }
298
299
1.12k
    if (!gArgs.GetArgs("-rpcauth").empty()) {
300
18
        LogInfo("Using rpcauth authentication.\n");
301
51
        for (const std::string& rpcauth : gArgs.GetArgs("-rpcauth")) {
302
51
            std::vector<std::string> fields{SplitString(rpcauth, ':')};
303
51
            const std::vector<std::string> salt_hmac{SplitString(fields.back(), '$')};
304
51
            if (fields.size() == 2 && salt_hmac.size() == 2) {
305
40
                fields.pop_back();
306
40
                fields.insert(fields.end(), salt_hmac.begin(), salt_hmac.end());
307
40
                g_rpcauth.push_back(fields);
308
40
            } else {
309
11
                LogWarning("Invalid -rpcauth argument.");
310
11
                return false;
311
11
            }
312
51
        }
313
18
    }
314
315
1.11k
    g_rpc_whitelist_default = gArgs.GetBoolArg("-rpcwhitelistdefault", !gArgs.GetArgs("-rpcwhitelist").empty());
316
1.11k
    for (const std::string& strRPCWhitelist : gArgs.GetArgs("-rpcwhitelist")) {
317
26
        auto pos = strRPCWhitelist.find(':');
318
26
        std::string strUser = strRPCWhitelist.substr(0, pos);
319
26
        bool intersect = g_rpc_whitelist.contains(strUser);
320
26
        std::set<std::string>& whitelist = g_rpc_whitelist[strUser];
321
26
        if (pos != std::string::npos) {
322
23
            std::string strWhitelist = strRPCWhitelist.substr(pos + 1);
323
23
            std::vector<std::string> whitelist_split = SplitString(strWhitelist, ", ");
324
23
            std::set<std::string> new_whitelist{
325
23
                std::make_move_iterator(whitelist_split.begin()),
326
23
                std::make_move_iterator(whitelist_split.end())};
327
23
            if (intersect) {
328
3
                std::set<std::string> tmp_whitelist;
329
3
                std::set_intersection(new_whitelist.begin(), new_whitelist.end(),
330
3
                       whitelist.begin(), whitelist.end(), std::inserter(tmp_whitelist, tmp_whitelist.end()));
331
3
                new_whitelist = std::move(tmp_whitelist);
332
3
            }
333
23
            whitelist = std::move(new_whitelist);
334
23
        }
335
26
    }
336
337
1.11k
    return true;
338
1.12k
}
339
340
bool StartHTTPRPC(const std::any& context)
341
1.12k
{
342
1.12k
    LogDebug(BCLog::RPC, "Starting HTTP RPC server\n");
343
1.12k
    if (!InitRPCAuthentication())
344
12
        return false;
345
346
183k
    auto handle_rpc = [context](HTTPRequest* req, const std::string&) { return HTTPReq_JSONRPC(context, req); };
347
1.11k
    RegisterHTTPHandler("/", true, handle_rpc);
348
1.11k
    if (g_wallet_init_interface.HasWalletSupport()) {
349
1.11k
        RegisterHTTPHandler("/wallet/", false, handle_rpc);
350
1.11k
    }
351
1.11k
    return true;
352
1.12k
}
353
354
void InterruptHTTPRPC()
355
1.16k
{
356
1.16k
    LogDebug(BCLog::RPC, "Interrupting HTTP RPC server\n");
357
1.16k
}
358
359
void StopHTTPRPC()
360
1.16k
{
361
1.16k
    LogDebug(BCLog::RPC, "Stopping HTTP RPC server\n");
362
1.16k
    UnregisterHTTPHandler("/", true);
363
1.16k
    if (g_wallet_init_interface.HasWalletSupport()) {
364
1.16k
        UnregisterHTTPHandler("/wallet/", false);
365
1.16k
    }
366
1.16k
}