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527 lines
21 KiB
527 lines
21 KiB
// Copyright (c) 2009-2010 Satoshi Nakamoto |
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// Copyright (c) 2009-2017 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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#if defined(HAVE_CONFIG_H) |
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#include <config/bitcoin-config.h> |
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#endif |
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#include <chainparamsbase.h> |
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#include <clientversion.h> |
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#include <fs.h> |
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#include <rpc/client.h> |
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#include <rpc/protocol.h> |
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#include <util.h> |
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#include <utilstrencodings.h> |
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#include <memory> |
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#include <stdio.h> |
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#include <event2/buffer.h> |
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#include <event2/keyvalq_struct.h> |
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#include <support/events.h> |
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#include <univalue.h> |
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static const char DEFAULT_RPCCONNECT[] = "127.0.0.1"; |
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static const int DEFAULT_HTTP_CLIENT_TIMEOUT=900; |
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static const bool DEFAULT_NAMED=false; |
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static const int CONTINUE_EXECUTION=-1; |
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std::string HelpMessageCli() |
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{ |
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const auto defaultBaseParams = CreateBaseChainParams(CBaseChainParams::MAIN); |
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const auto testnetBaseParams = CreateBaseChainParams(CBaseChainParams::TESTNET); |
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std::string strUsage; |
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strUsage += HelpMessageGroup(_("Options:")); |
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strUsage += HelpMessageOpt("-?", _("This help message")); |
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strUsage += HelpMessageOpt("-conf=<file>", strprintf(_("Specify configuration file (default: %s)"), BITCOIN_CONF_FILENAME)); |
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strUsage += HelpMessageOpt("-datadir=<dir>", _("Specify data directory")); |
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strUsage += HelpMessageOpt("-getinfo", _("Get general information from the remote server. Note that unlike server-side RPC calls, the results of -getinfo is the result of multiple non-atomic requests. Some entries in the result may represent results from different states (e.g. wallet balance may be as of a different block from the chain state reported)")); |
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AppendParamsHelpMessages(strUsage); |
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strUsage += HelpMessageOpt("-named", strprintf(_("Pass named instead of positional arguments (default: %s)"), DEFAULT_NAMED)); |
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strUsage += HelpMessageOpt("-rpcconnect=<ip>", strprintf(_("Send commands to node running on <ip> (default: %s)"), DEFAULT_RPCCONNECT)); |
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strUsage += HelpMessageOpt("-rpcport=<port>", strprintf(_("Connect to JSON-RPC on <port> (default: %u or testnet: %u)"), defaultBaseParams->RPCPort(), testnetBaseParams->RPCPort())); |
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strUsage += HelpMessageOpt("-rpcwait", _("Wait for RPC server to start")); |
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strUsage += HelpMessageOpt("-rpcuser=<user>", _("Username for JSON-RPC connections")); |
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strUsage += HelpMessageOpt("-rpcpassword=<pw>", _("Password for JSON-RPC connections")); |
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strUsage += HelpMessageOpt("-rpcclienttimeout=<n>", strprintf(_("Timeout in seconds during HTTP requests, or 0 for no timeout. (default: %d)"), DEFAULT_HTTP_CLIENT_TIMEOUT)); |
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strUsage += HelpMessageOpt("-stdinrpcpass", strprintf(_("Read RPC password from standard input as a single line. When combined with -stdin, the first line from standard input is used for the RPC password."))); |
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strUsage += HelpMessageOpt("-stdin", _("Read extra arguments from standard input, one per line until EOF/Ctrl-D (recommended for sensitive information such as passphrases). When combined with -stdinrpcpass, the first line from standard input is used for the RPC password.")); |
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strUsage += HelpMessageOpt("-rpcwallet=<walletname>", _("Send RPC for non-default wallet on RPC server (argument is wallet filename in kevacoind directory, required if kevacoind/-Qt runs with multiple wallets)")); |
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return strUsage; |
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} |
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////////////////////////////////////////////////////////////////////////////// |
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// |
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// Start |
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// |
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// |
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// Exception thrown on connection error. This error is used to determine |
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// when to wait if -rpcwait is given. |
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// |
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class CConnectionFailed : public std::runtime_error |
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{ |
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public: |
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explicit inline CConnectionFailed(const std::string& msg) : |
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std::runtime_error(msg) |
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{} |
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}; |
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// |
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// This function returns either one of EXIT_ codes when it's expected to stop the process or |
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// CONTINUE_EXECUTION when it's expected to continue further. |
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// |
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static int AppInitRPC(int argc, char* argv[]) |
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{ |
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// |
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// Parameters |
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// |
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gArgs.ParseParameters(argc, argv); |
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if (argc<2 || gArgs.IsArgSet("-?") || gArgs.IsArgSet("-h") || gArgs.IsArgSet("-help") || gArgs.IsArgSet("-version")) { |
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std::string strUsage = strprintf(_("%s RPC client version"), _(PACKAGE_NAME)) + " " + FormatFullVersion() + "\n"; |
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if (!gArgs.IsArgSet("-version")) { |
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strUsage += "\n" + _("Usage:") + "\n" + |
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" kevacoin-cli [options] <command> [params] " + strprintf(_("Send command to %s"), _(PACKAGE_NAME)) + "\n" + |
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" kevacoin-cli [options] -named <command> [name=value] ... " + strprintf(_("Send command to %s (with named arguments)"), _(PACKAGE_NAME)) + "\n" + |
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" kevacoin-cli [options] help " + _("List commands") + "\n" + |
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" kevacoin-cli [options] help <command> " + _("Get help for a command") + "\n"; |
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strUsage += "\n" + HelpMessageCli(); |
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} |
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fprintf(stdout, "%s", strUsage.c_str()); |
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if (argc < 2) { |
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fprintf(stderr, "Error: too few parameters\n"); |
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return EXIT_FAILURE; |
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} |
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return EXIT_SUCCESS; |
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} |
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if (!fs::is_directory(GetDataDir(false))) { |
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fprintf(stderr, "Error: Specified data directory \"%s\" does not exist.\n", gArgs.GetArg("-datadir", "").c_str()); |
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return EXIT_FAILURE; |
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} |
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try { |
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gArgs.ReadConfigFile(gArgs.GetArg("-conf", BITCOIN_CONF_FILENAME)); |
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} catch (const std::exception& e) { |
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fprintf(stderr,"Error reading configuration file: %s\n", e.what()); |
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return EXIT_FAILURE; |
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} |
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#if 1 |
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if (ChainNameFromCommandLine() == CBaseChainParams::MAIN) { |
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printf("\nMainnet is not live yet, use \"-testnet\" option to connect to the testnet.\n\n"); |
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exit(1); |
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} |
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#endif |
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// Check for -testnet or -regtest parameter (BaseParams() calls are only valid after this clause) |
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try { |
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SelectBaseParams(ChainNameFromCommandLine()); |
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} catch (const std::exception& e) { |
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fprintf(stderr, "Error: %s\n", e.what()); |
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return EXIT_FAILURE; |
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} |
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if (gArgs.GetBoolArg("-rpcssl", false)) |
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{ |
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fprintf(stderr, "Error: SSL mode for RPC (-rpcssl) is no longer supported.\n"); |
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return EXIT_FAILURE; |
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} |
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return CONTINUE_EXECUTION; |
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} |
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/** Reply structure for request_done to fill in */ |
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struct HTTPReply |
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{ |
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HTTPReply(): status(0), error(-1) {} |
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int status; |
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int error; |
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std::string body; |
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}; |
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const char *http_errorstring(int code) |
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{ |
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switch(code) { |
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#if LIBEVENT_VERSION_NUMBER >= 0x02010300 |
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case EVREQ_HTTP_TIMEOUT: |
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return "timeout reached"; |
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case EVREQ_HTTP_EOF: |
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return "EOF reached"; |
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case EVREQ_HTTP_INVALID_HEADER: |
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return "error while reading header, or invalid header"; |
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case EVREQ_HTTP_BUFFER_ERROR: |
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return "error encountered while reading or writing"; |
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case EVREQ_HTTP_REQUEST_CANCEL: |
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return "request was canceled"; |
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case EVREQ_HTTP_DATA_TOO_LONG: |
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return "response body is larger than allowed"; |
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#endif |
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default: |
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return "unknown"; |
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} |
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} |
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static void http_request_done(struct evhttp_request *req, void *ctx) |
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{ |
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HTTPReply *reply = static_cast<HTTPReply*>(ctx); |
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if (req == nullptr) { |
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/* If req is nullptr, it means an error occurred while connecting: the |
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* error code will have been passed to http_error_cb. |
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*/ |
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reply->status = 0; |
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return; |
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} |
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reply->status = evhttp_request_get_response_code(req); |
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struct evbuffer *buf = evhttp_request_get_input_buffer(req); |
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if (buf) |
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{ |
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size_t size = evbuffer_get_length(buf); |
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const char *data = (const char*)evbuffer_pullup(buf, size); |
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if (data) |
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reply->body = std::string(data, size); |
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evbuffer_drain(buf, size); |
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} |
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} |
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#if LIBEVENT_VERSION_NUMBER >= 0x02010300 |
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static void http_error_cb(enum evhttp_request_error err, void *ctx) |
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{ |
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HTTPReply *reply = static_cast<HTTPReply*>(ctx); |
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reply->error = err; |
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} |
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#endif |
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/** Class that handles the conversion from a command-line to a JSON-RPC request, |
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* as well as converting back to a JSON object that can be shown as result. |
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*/ |
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class BaseRequestHandler |
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{ |
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public: |
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virtual UniValue PrepareRequest(const std::string& method, const std::vector<std::string>& args) = 0; |
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virtual UniValue ProcessReply(const UniValue &batch_in) = 0; |
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}; |
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/** Process getinfo requests */ |
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class GetinfoRequestHandler: public BaseRequestHandler |
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{ |
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public: |
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const int ID_NETWORKINFO = 0; |
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const int ID_BLOCKCHAININFO = 1; |
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const int ID_WALLETINFO = 2; |
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/** Create a simulated `getinfo` request. */ |
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UniValue PrepareRequest(const std::string& method, const std::vector<std::string>& args) override |
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{ |
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if (!args.empty()) { |
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throw std::runtime_error("-getinfo takes no arguments"); |
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} |
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UniValue result(UniValue::VARR); |
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result.push_back(JSONRPCRequestObj("getnetworkinfo", NullUniValue, ID_NETWORKINFO)); |
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result.push_back(JSONRPCRequestObj("getblockchaininfo", NullUniValue, ID_BLOCKCHAININFO)); |
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result.push_back(JSONRPCRequestObj("getwalletinfo", NullUniValue, ID_WALLETINFO)); |
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return result; |
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} |
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/** Collect values from the batch and form a simulated `getinfo` reply. */ |
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UniValue ProcessReply(const UniValue &batch_in) override |
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{ |
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UniValue result(UniValue::VOBJ); |
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std::vector<UniValue> batch = JSONRPCProcessBatchReply(batch_in, 3); |
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// Errors in getnetworkinfo() and getblockchaininfo() are fatal, pass them on |
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// getwalletinfo() is allowed to fail in case there is no wallet. |
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if (!batch[ID_NETWORKINFO]["error"].isNull()) { |
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return batch[ID_NETWORKINFO]; |
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} |
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if (!batch[ID_BLOCKCHAININFO]["error"].isNull()) { |
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return batch[ID_BLOCKCHAININFO]; |
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} |
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result.pushKV("version", batch[ID_NETWORKINFO]["result"]["version"]); |
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result.pushKV("protocolversion", batch[ID_NETWORKINFO]["result"]["protocolversion"]); |
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if (!batch[ID_WALLETINFO].isNull()) { |
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result.pushKV("walletversion", batch[ID_WALLETINFO]["result"]["walletversion"]); |
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result.pushKV("balance", batch[ID_WALLETINFO]["result"]["balance"]); |
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} |
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result.pushKV("blocks", batch[ID_BLOCKCHAININFO]["result"]["blocks"]); |
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result.pushKV("timeoffset", batch[ID_NETWORKINFO]["result"]["timeoffset"]); |
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result.pushKV("connections", batch[ID_NETWORKINFO]["result"]["connections"]); |
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result.pushKV("proxy", batch[ID_NETWORKINFO]["result"]["networks"][0]["proxy"]); |
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result.pushKV("difficulty", batch[ID_BLOCKCHAININFO]["result"]["difficulty"]); |
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result.pushKV("testnet", UniValue(batch[ID_BLOCKCHAININFO]["result"]["chain"].get_str() == "test")); |
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if (!batch[ID_WALLETINFO].isNull()) { |
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result.pushKV("walletversion", batch[ID_WALLETINFO]["result"]["walletversion"]); |
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result.pushKV("balance", batch[ID_WALLETINFO]["result"]["balance"]); |
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result.pushKV("keypoololdest", batch[ID_WALLETINFO]["result"]["keypoololdest"]); |
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result.pushKV("keypoolsize", batch[ID_WALLETINFO]["result"]["keypoolsize"]); |
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if (!batch[ID_WALLETINFO]["result"]["unlocked_until"].isNull()) { |
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result.pushKV("unlocked_until", batch[ID_WALLETINFO]["result"]["unlocked_until"]); |
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} |
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result.pushKV("paytxfee", batch[ID_WALLETINFO]["result"]["paytxfee"]); |
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} |
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result.pushKV("relayfee", batch[ID_NETWORKINFO]["result"]["relayfee"]); |
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result.pushKV("warnings", batch[ID_NETWORKINFO]["result"]["warnings"]); |
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return JSONRPCReplyObj(result, NullUniValue, 1); |
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} |
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}; |
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/** Process default single requests */ |
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class DefaultRequestHandler: public BaseRequestHandler { |
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public: |
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UniValue PrepareRequest(const std::string& method, const std::vector<std::string>& args) override |
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{ |
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UniValue params; |
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if(gArgs.GetBoolArg("-named", DEFAULT_NAMED)) { |
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params = RPCConvertNamedValues(method, args); |
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} else { |
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params = RPCConvertValues(method, args); |
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} |
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return JSONRPCRequestObj(method, params, 1); |
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} |
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UniValue ProcessReply(const UniValue &reply) override |
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{ |
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return reply.get_obj(); |
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} |
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}; |
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static UniValue CallRPC(BaseRequestHandler *rh, const std::string& strMethod, const std::vector<std::string>& args) |
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{ |
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std::string host; |
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// In preference order, we choose the following for the port: |
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// 1. -rpcport |
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// 2. port in -rpcconnect (ie following : in ipv4 or ]: in ipv6) |
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// 3. default port for chain |
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int port = BaseParams().RPCPort(); |
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SplitHostPort(gArgs.GetArg("-rpcconnect", DEFAULT_RPCCONNECT), port, host); |
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port = gArgs.GetArg("-rpcport", port); |
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// Obtain event base |
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raii_event_base base = obtain_event_base(); |
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// Synchronously look up hostname |
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raii_evhttp_connection evcon = obtain_evhttp_connection_base(base.get(), host, port); |
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evhttp_connection_set_timeout(evcon.get(), gArgs.GetArg("-rpcclienttimeout", DEFAULT_HTTP_CLIENT_TIMEOUT)); |
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HTTPReply response; |
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raii_evhttp_request req = obtain_evhttp_request(http_request_done, (void*)&response); |
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if (req == nullptr) |
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throw std::runtime_error("create http request failed"); |
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#if LIBEVENT_VERSION_NUMBER >= 0x02010300 |
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evhttp_request_set_error_cb(req.get(), http_error_cb); |
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#endif |
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// Get credentials |
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std::string strRPCUserColonPass; |
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if (gArgs.GetArg("-rpcpassword", "") == "") { |
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// Try fall back to cookie-based authentication if no password is provided |
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if (!GetAuthCookie(&strRPCUserColonPass)) { |
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throw std::runtime_error(strprintf( |
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_("Could not locate RPC credentials. No authentication cookie could be found, and RPC password is not set. See -rpcpassword and -stdinrpcpass. Configuration file: (%s)"), |
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GetConfigFile(gArgs.GetArg("-conf", BITCOIN_CONF_FILENAME)).string().c_str())); |
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} |
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} else { |
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strRPCUserColonPass = gArgs.GetArg("-rpcuser", "") + ":" + gArgs.GetArg("-rpcpassword", ""); |
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} |
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struct evkeyvalq* output_headers = evhttp_request_get_output_headers(req.get()); |
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assert(output_headers); |
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evhttp_add_header(output_headers, "Host", host.c_str()); |
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evhttp_add_header(output_headers, "Connection", "close"); |
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evhttp_add_header(output_headers, "Authorization", (std::string("Basic ") + EncodeBase64(strRPCUserColonPass)).c_str()); |
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// Attach request data |
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std::string strRequest = rh->PrepareRequest(strMethod, args).write() + "\n"; |
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struct evbuffer* output_buffer = evhttp_request_get_output_buffer(req.get()); |
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assert(output_buffer); |
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evbuffer_add(output_buffer, strRequest.data(), strRequest.size()); |
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// check if we should use a special wallet endpoint |
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std::string endpoint = "/"; |
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std::string walletName = gArgs.GetArg("-rpcwallet", ""); |
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if (!walletName.empty()) { |
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char *encodedURI = evhttp_uriencode(walletName.c_str(), walletName.size(), false); |
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if (encodedURI) { |
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endpoint = "/wallet/"+ std::string(encodedURI); |
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free(encodedURI); |
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} |
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else { |
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throw CConnectionFailed("uri-encode failed"); |
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} |
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} |
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int r = evhttp_make_request(evcon.get(), req.get(), EVHTTP_REQ_POST, endpoint.c_str()); |
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req.release(); // ownership moved to evcon in above call |
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if (r != 0) { |
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throw CConnectionFailed("send http request failed"); |
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} |
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event_base_dispatch(base.get()); |
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if (response.status == 0) |
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throw CConnectionFailed(strprintf("couldn't connect to server: %s (code %d)\n(make sure server is running and you are connecting to the correct RPC port)", http_errorstring(response.error), response.error)); |
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else if (response.status == HTTP_UNAUTHORIZED) |
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throw std::runtime_error("incorrect rpcuser or rpcpassword (authorization failed)"); |
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else if (response.status >= 400 && response.status != HTTP_BAD_REQUEST && response.status != HTTP_NOT_FOUND && response.status != HTTP_INTERNAL_SERVER_ERROR) |
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throw std::runtime_error(strprintf("server returned HTTP error %d", response.status)); |
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else if (response.body.empty()) |
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throw std::runtime_error("no response from server"); |
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// Parse reply |
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UniValue valReply(UniValue::VSTR); |
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if (!valReply.read(response.body)) |
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throw std::runtime_error("couldn't parse reply from server"); |
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const UniValue reply = rh->ProcessReply(valReply); |
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if (reply.empty()) |
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throw std::runtime_error("expected reply to have result, error and id properties"); |
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return reply; |
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} |
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int CommandLineRPC(int argc, char *argv[]) |
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{ |
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std::string strPrint; |
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int nRet = 0; |
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try { |
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// Skip switches |
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while (argc > 1 && IsSwitchChar(argv[1][0])) { |
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argc--; |
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argv++; |
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} |
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std::string rpcPass; |
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if (gArgs.GetBoolArg("-stdinrpcpass", false)) { |
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if (!std::getline(std::cin, rpcPass)) { |
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throw std::runtime_error("-stdinrpcpass specified but failed to read from standard input"); |
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} |
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gArgs.ForceSetArg("-rpcpassword", rpcPass); |
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} |
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std::vector<std::string> args = std::vector<std::string>(&argv[1], &argv[argc]); |
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if (gArgs.GetBoolArg("-stdin", false)) { |
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// Read one arg per line from stdin and append |
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std::string line; |
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while (std::getline(std::cin, line)) { |
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args.push_back(line); |
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} |
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} |
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std::unique_ptr<BaseRequestHandler> rh; |
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std::string method; |
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if (gArgs.GetBoolArg("-getinfo", false)) { |
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rh.reset(new GetinfoRequestHandler()); |
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method = ""; |
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} else { |
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rh.reset(new DefaultRequestHandler()); |
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if (args.size() < 1) { |
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throw std::runtime_error("too few parameters (need at least command)"); |
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} |
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method = args[0]; |
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args.erase(args.begin()); // Remove trailing method name from arguments vector |
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} |
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// Execute and handle connection failures with -rpcwait |
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const bool fWait = gArgs.GetBoolArg("-rpcwait", false); |
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do { |
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try { |
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const UniValue reply = CallRPC(rh.get(), method, args); |
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|
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// Parse reply |
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const UniValue& result = find_value(reply, "result"); |
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const UniValue& error = find_value(reply, "error"); |
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if (!error.isNull()) { |
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// Error |
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int code = error["code"].get_int(); |
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if (fWait && code == RPC_IN_WARMUP) |
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throw CConnectionFailed("server in warmup"); |
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strPrint = "error: " + error.write(); |
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nRet = abs(code); |
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if (error.isObject()) |
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{ |
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UniValue errCode = find_value(error, "code"); |
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UniValue errMsg = find_value(error, "message"); |
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strPrint = errCode.isNull() ? "" : "error code: "+errCode.getValStr()+"\n"; |
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|
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if (errMsg.isStr()) |
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strPrint += "error message:\n"+errMsg.get_str(); |
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if (errCode.isNum() && errCode.get_int() == RPC_WALLET_NOT_SPECIFIED) { |
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strPrint += "\nTry adding \"-rpcwallet=<filename>\" option to kevacoin-cli command line."; |
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} |
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} |
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} else { |
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// Result |
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if (result.isNull()) |
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strPrint = ""; |
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else if (result.isStr()) |
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strPrint = result.get_str(); |
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else |
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strPrint = result.write(2); |
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} |
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// Connection succeeded, no need to retry. |
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break; |
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} |
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catch (const CConnectionFailed&) { |
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if (fWait) |
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MilliSleep(1000); |
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else |
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throw; |
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} |
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} while (fWait); |
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} |
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catch (const boost::thread_interrupted&) { |
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throw; |
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} |
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catch (const std::exception& e) { |
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strPrint = std::string("error: ") + e.what(); |
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nRet = EXIT_FAILURE; |
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} |
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catch (...) { |
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PrintExceptionContinue(nullptr, "CommandLineRPC()"); |
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throw; |
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} |
|
|
|
if (strPrint != "") { |
|
fprintf((nRet == 0 ? stdout : stderr), "%s\n", strPrint.c_str()); |
|
} |
|
return nRet; |
|
} |
|
|
|
int main(int argc, char* argv[]) |
|
{ |
|
SetupEnvironment(); |
|
if (!SetupNetworking()) { |
|
fprintf(stderr, "Error: Initializing networking failed\n"); |
|
return EXIT_FAILURE; |
|
} |
|
|
|
try { |
|
int ret = AppInitRPC(argc, argv); |
|
if (ret != CONTINUE_EXECUTION) |
|
return ret; |
|
} |
|
catch (const std::exception& e) { |
|
PrintExceptionContinue(&e, "AppInitRPC()"); |
|
return EXIT_FAILURE; |
|
} catch (...) { |
|
PrintExceptionContinue(nullptr, "AppInitRPC()"); |
|
return EXIT_FAILURE; |
|
} |
|
|
|
int ret = EXIT_FAILURE; |
|
try { |
|
ret = CommandLineRPC(argc, argv); |
|
} |
|
catch (const std::exception& e) { |
|
PrintExceptionContinue(&e, "CommandLineRPC()"); |
|
} catch (...) { |
|
PrintExceptionContinue(nullptr, "CommandLineRPC()"); |
|
} |
|
return ret; |
|
}
|
|
|