/Users/eugenesiegel/btc/bitcoin/src/rpc/output_script.cpp
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1 | | // Copyright (c) 2010 Satoshi Nakamoto |
2 | | // Copyright (c) 2009-2022 The Bitcoin Core developers |
3 | | // Distributed under the MIT software license, see the accompanying |
4 | | // file COPYING or http://www.opensource.org/licenses/mit-license.php. |
5 | | |
6 | | #include <key_io.h> |
7 | | #include <outputtype.h> |
8 | | #include <pubkey.h> |
9 | | #include <rpc/protocol.h> |
10 | | #include <rpc/request.h> |
11 | | #include <rpc/server.h> |
12 | | #include <rpc/util.h> |
13 | | #include <script/descriptor.h> |
14 | | #include <script/script.h> |
15 | | #include <script/signingprovider.h> |
16 | | #include <tinyformat.h> |
17 | | #include <univalue.h> |
18 | | #include <util/check.h> |
19 | | #include <util/strencodings.h> |
20 | | |
21 | | #include <cstdint> |
22 | | #include <memory> |
23 | | #include <optional> |
24 | | #include <string> |
25 | | #include <tuple> |
26 | | #include <vector> |
27 | | |
28 | | static RPCHelpMan validateaddress() |
29 | 2 | { |
30 | 2 | return RPCHelpMan{ |
31 | 2 | "validateaddress", |
32 | 2 | "\nReturn information about the given bitcoin address.\n", |
33 | 2 | { |
34 | 2 | {"address", RPCArg::Type::STR, RPCArg::Optional::NO, "The bitcoin address to validate"}, |
35 | 2 | }, |
36 | 2 | RPCResult{ |
37 | 2 | RPCResult::Type::OBJ, "", "", |
38 | 2 | { |
39 | 2 | {RPCResult::Type::BOOL, "isvalid", "If the address is valid or not"}, |
40 | 2 | {RPCResult::Type::STR, "address", /*optional=*/true, "The bitcoin address validated"}, |
41 | 2 | {RPCResult::Type::STR_HEX, "scriptPubKey", /*optional=*/true, "The hex-encoded output script generated by the address"}, |
42 | 2 | {RPCResult::Type::BOOL, "isscript", /*optional=*/true, "If the key is a script"}, |
43 | 2 | {RPCResult::Type::BOOL, "iswitness", /*optional=*/true, "If the address is a witness address"}, |
44 | 2 | {RPCResult::Type::NUM, "witness_version", /*optional=*/true, "The version number of the witness program"}, |
45 | 2 | {RPCResult::Type::STR_HEX, "witness_program", /*optional=*/true, "The hex value of the witness program"}, |
46 | 2 | {RPCResult::Type::STR, "error", /*optional=*/true, "Error message, if any"}, |
47 | 2 | {RPCResult::Type::ARR, "error_locations", /*optional=*/true, "Indices of likely error locations in address, if known (e.g. Bech32 errors)", |
48 | 2 | { |
49 | 2 | {RPCResult::Type::NUM, "index", "index of a potential error"}, |
50 | 2 | }}, |
51 | 2 | } |
52 | 2 | }, |
53 | 2 | RPCExamples{ |
54 | 2 | HelpExampleCli("validateaddress", "\"" + EXAMPLE_ADDRESS[0] + "\"") + |
55 | 2 | HelpExampleRpc("validateaddress", "\"" + EXAMPLE_ADDRESS[0] + "\"") |
56 | 2 | }, |
57 | 2 | [&](const RPCHelpMan& self, const JSONRPCRequest& request) -> UniValue |
58 | 2 | { |
59 | 0 | std::string error_msg; |
60 | 0 | std::vector<int> error_locations; |
61 | 0 | CTxDestination dest = DecodeDestination(request.params[0].get_str(), error_msg, &error_locations); |
62 | 0 | const bool isValid = IsValidDestination(dest); |
63 | 0 | CHECK_NONFATAL(isValid == error_msg.empty()); Line | Count | Source | 103 | 0 | inline_check_non_fatal(condition, __FILE__, __LINE__, __func__, #condition) |
|
64 | |
|
65 | 0 | UniValue ret(UniValue::VOBJ); |
66 | 0 | ret.pushKV("isvalid", isValid); |
67 | 0 | if (isValid) { |
68 | 0 | std::string currentAddress = EncodeDestination(dest); |
69 | 0 | ret.pushKV("address", currentAddress); |
70 | |
|
71 | 0 | CScript scriptPubKey = GetScriptForDestination(dest); |
72 | 0 | ret.pushKV("scriptPubKey", HexStr(scriptPubKey)); |
73 | |
|
74 | 0 | UniValue detail = DescribeAddress(dest); |
75 | 0 | ret.pushKVs(std::move(detail)); |
76 | 0 | } else { |
77 | 0 | UniValue error_indices(UniValue::VARR); |
78 | 0 | for (int i : error_locations) error_indices.push_back(i); |
79 | 0 | ret.pushKV("error_locations", std::move(error_indices)); |
80 | 0 | ret.pushKV("error", error_msg); |
81 | 0 | } |
82 | |
|
83 | 0 | return ret; |
84 | 0 | }, |
85 | 2 | }; |
86 | 2 | } |
87 | | |
88 | | static RPCHelpMan createmultisig() |
89 | 2 | { |
90 | 2 | return RPCHelpMan{"createmultisig", |
91 | 2 | "\nCreates a multi-signature address with n signature of m keys required.\n" |
92 | 2 | "It returns a json object with the address and redeemScript.\n", |
93 | 2 | { |
94 | 2 | {"nrequired", RPCArg::Type::NUM, RPCArg::Optional::NO, "The number of required signatures out of the n keys."}, |
95 | 2 | {"keys", RPCArg::Type::ARR, RPCArg::Optional::NO, "The hex-encoded public keys.", |
96 | 2 | { |
97 | 2 | {"key", RPCArg::Type::STR_HEX, RPCArg::Optional::OMITTED, "The hex-encoded public key"}, |
98 | 2 | }}, |
99 | 2 | {"address_type", RPCArg::Type::STR, RPCArg::Default{"legacy"}, "The address type to use. Options are \"legacy\", \"p2sh-segwit\", and \"bech32\"."}, |
100 | 2 | }, |
101 | 2 | RPCResult{ |
102 | 2 | RPCResult::Type::OBJ, "", "", |
103 | 2 | { |
104 | 2 | {RPCResult::Type::STR, "address", "The value of the new multisig address."}, |
105 | 2 | {RPCResult::Type::STR_HEX, "redeemScript", "The string value of the hex-encoded redemption script."}, |
106 | 2 | {RPCResult::Type::STR, "descriptor", "The descriptor for this multisig"}, |
107 | 2 | {RPCResult::Type::ARR, "warnings", /*optional=*/true, "Any warnings resulting from the creation of this multisig", |
108 | 2 | { |
109 | 2 | {RPCResult::Type::STR, "", ""}, |
110 | 2 | }}, |
111 | 2 | } |
112 | 2 | }, |
113 | 2 | RPCExamples{ |
114 | 2 | "\nCreate a multisig address from 2 public keys\n" |
115 | 2 | + HelpExampleCli("createmultisig", "2 \"[\\\"03789ed0bb717d88f7d321a368d905e7430207ebbd82bd342cf11ae157a7ace5fd\\\",\\\"03dbc6764b8884a92e871274b87583e6d5c2a58819473e17e107ef3f6aa5a61626\\\"]\"") + |
116 | 2 | "\nAs a JSON-RPC call\n" |
117 | 2 | + HelpExampleRpc("createmultisig", "2, [\"03789ed0bb717d88f7d321a368d905e7430207ebbd82bd342cf11ae157a7ace5fd\",\"03dbc6764b8884a92e871274b87583e6d5c2a58819473e17e107ef3f6aa5a61626\"]") |
118 | 2 | }, |
119 | 2 | [&](const RPCHelpMan& self, const JSONRPCRequest& request) -> UniValue |
120 | 2 | { |
121 | 0 | int required = request.params[0].getInt<int>(); |
122 | | |
123 | | // Get the public keys |
124 | 0 | const UniValue& keys = request.params[1].get_array(); |
125 | 0 | std::vector<CPubKey> pubkeys; |
126 | 0 | pubkeys.reserve(keys.size()); |
127 | 0 | for (unsigned int i = 0; i < keys.size(); ++i) { |
128 | 0 | pubkeys.push_back(HexToPubKey(keys[i].get_str())); |
129 | 0 | } |
130 | | |
131 | | // Get the output type |
132 | 0 | OutputType output_type = OutputType::LEGACY; |
133 | 0 | if (!request.params[2].isNull()) { |
134 | 0 | std::optional<OutputType> parsed = ParseOutputType(request.params[2].get_str()); |
135 | 0 | if (!parsed) { |
136 | 0 | throw JSONRPCError(RPC_INVALID_ADDRESS_OR_KEY, strprintf("Unknown address type '%s'", request.params[2].get_str())); Line | Count | Source | 1172 | 0 | #define strprintf tfm::format |
|
137 | 0 | } else if (parsed.value() == OutputType::BECH32M) { |
138 | 0 | throw JSONRPCError(RPC_INVALID_ADDRESS_OR_KEY, "createmultisig cannot create bech32m multisig addresses"); |
139 | 0 | } |
140 | 0 | output_type = parsed.value(); |
141 | 0 | } |
142 | | |
143 | 0 | FlatSigningProvider keystore; |
144 | 0 | CScript inner; |
145 | 0 | const CTxDestination dest = AddAndGetMultisigDestination(required, pubkeys, output_type, keystore, inner); |
146 | | |
147 | | // Make the descriptor |
148 | 0 | std::unique_ptr<Descriptor> descriptor = InferDescriptor(GetScriptForDestination(dest), keystore); |
149 | |
|
150 | 0 | UniValue result(UniValue::VOBJ); |
151 | 0 | result.pushKV("address", EncodeDestination(dest)); |
152 | 0 | result.pushKV("redeemScript", HexStr(inner)); |
153 | 0 | result.pushKV("descriptor", descriptor->ToString()); |
154 | |
|
155 | 0 | UniValue warnings(UniValue::VARR); |
156 | 0 | if (descriptor->GetOutputType() != output_type) { |
157 | | // Only warns if the user has explicitly chosen an address type we cannot generate |
158 | 0 | warnings.push_back("Unable to make chosen address type, please ensure no uncompressed public keys are present."); |
159 | 0 | } |
160 | 0 | PushWarnings(warnings, result); |
161 | |
|
162 | 0 | return result; |
163 | 0 | }, |
164 | 2 | }; |
165 | 2 | } |
166 | | |
167 | | static RPCHelpMan getdescriptorinfo() |
168 | 2 | { |
169 | 2 | const std::string EXAMPLE_DESCRIPTOR = "wpkh([d34db33f/84h/0h/0h]0279be667ef9dcbbac55a06295Ce870b07029Bfcdb2dce28d959f2815b16f81798)"; |
170 | | |
171 | 2 | return RPCHelpMan{"getdescriptorinfo", |
172 | 2 | {"\nAnalyses a descriptor.\n"}, |
173 | 2 | { |
174 | 2 | {"descriptor", RPCArg::Type::STR, RPCArg::Optional::NO, "The descriptor."}, |
175 | 2 | }, |
176 | 2 | RPCResult{ |
177 | 2 | RPCResult::Type::OBJ, "", "", |
178 | 2 | { |
179 | 2 | {RPCResult::Type::STR, "descriptor", "The descriptor in canonical form, without private keys. For a multipath descriptor, only the first will be returned."}, |
180 | 2 | {RPCResult::Type::ARR, "multipath_expansion", /*optional=*/true, "All descriptors produced by expanding multipath derivation elements. Only if the provided descriptor specifies multipath derivation elements.", |
181 | 2 | { |
182 | 2 | {RPCResult::Type::STR, "", ""}, |
183 | 2 | }}, |
184 | 2 | {RPCResult::Type::STR, "checksum", "The checksum for the input descriptor"}, |
185 | 2 | {RPCResult::Type::BOOL, "isrange", "Whether the descriptor is ranged"}, |
186 | 2 | {RPCResult::Type::BOOL, "issolvable", "Whether the descriptor is solvable"}, |
187 | 2 | {RPCResult::Type::BOOL, "hasprivatekeys", "Whether the input descriptor contained at least one private key"}, |
188 | 2 | } |
189 | 2 | }, |
190 | 2 | RPCExamples{ |
191 | 2 | "Analyse a descriptor\n" + |
192 | 2 | HelpExampleCli("getdescriptorinfo", "\"" + EXAMPLE_DESCRIPTOR + "\"") + |
193 | 2 | HelpExampleRpc("getdescriptorinfo", "\"" + EXAMPLE_DESCRIPTOR + "\"") |
194 | 2 | }, |
195 | 2 | [&](const RPCHelpMan& self, const JSONRPCRequest& request) -> UniValue |
196 | 2 | { |
197 | 0 | FlatSigningProvider provider; |
198 | 0 | std::string error; |
199 | 0 | auto descs = Parse(request.params[0].get_str(), provider, error); |
200 | 0 | if (descs.empty()) { |
201 | 0 | throw JSONRPCError(RPC_INVALID_ADDRESS_OR_KEY, error); |
202 | 0 | } |
203 | | |
204 | 0 | UniValue result(UniValue::VOBJ); |
205 | 0 | result.pushKV("descriptor", descs.at(0)->ToString()); |
206 | |
|
207 | 0 | if (descs.size() > 1) { |
208 | 0 | UniValue multipath_descs(UniValue::VARR); |
209 | 0 | for (const auto& d : descs) { |
210 | 0 | multipath_descs.push_back(d->ToString()); |
211 | 0 | } |
212 | 0 | result.pushKV("multipath_expansion", multipath_descs); |
213 | 0 | } |
214 | |
|
215 | 0 | result.pushKV("checksum", GetDescriptorChecksum(request.params[0].get_str())); |
216 | 0 | result.pushKV("isrange", descs.at(0)->IsRange()); |
217 | 0 | result.pushKV("issolvable", descs.at(0)->IsSolvable()); |
218 | 0 | result.pushKV("hasprivatekeys", provider.keys.size() > 0); |
219 | 0 | return result; |
220 | 0 | }, |
221 | 2 | }; |
222 | 2 | } |
223 | | |
224 | | static UniValue DeriveAddresses(const Descriptor* desc, int64_t range_begin, int64_t range_end, FlatSigningProvider& key_provider) |
225 | 0 | { |
226 | 0 | UniValue addresses(UniValue::VARR); |
227 | |
|
228 | 0 | for (int64_t i = range_begin; i <= range_end; ++i) { |
229 | 0 | FlatSigningProvider provider; |
230 | 0 | std::vector<CScript> scripts; |
231 | 0 | if (!desc->Expand(i, key_provider, scripts, provider)) { |
232 | 0 | throw JSONRPCError(RPC_INVALID_ADDRESS_OR_KEY, "Cannot derive script without private keys"); |
233 | 0 | } |
234 | | |
235 | 0 | for (const CScript& script : scripts) { |
236 | 0 | CTxDestination dest; |
237 | 0 | if (!ExtractDestination(script, dest)) { |
238 | | // ExtractDestination no longer returns true for P2PK since it doesn't have a corresponding address |
239 | | // However combo will output P2PK and should just ignore that script |
240 | 0 | if (scripts.size() > 1 && std::get_if<PubKeyDestination>(&dest)) { |
241 | 0 | continue; |
242 | 0 | } |
243 | 0 | throw JSONRPCError(RPC_INVALID_ADDRESS_OR_KEY, "Descriptor does not have a corresponding address"); |
244 | 0 | } |
245 | | |
246 | 0 | addresses.push_back(EncodeDestination(dest)); |
247 | 0 | } |
248 | 0 | } |
249 | | |
250 | | // This should not be possible, but an assert seems overkill: |
251 | 0 | if (addresses.empty()) { |
252 | 0 | throw JSONRPCError(RPC_MISC_ERROR, "Unexpected empty result"); |
253 | 0 | } |
254 | | |
255 | 0 | return addresses; |
256 | 0 | } |
257 | | |
258 | | static RPCHelpMan deriveaddresses() |
259 | 2 | { |
260 | 2 | const std::string EXAMPLE_DESCRIPTOR = "wpkh([d34db33f/84h/0h/0h]xpub6DJ2dNUysrn5Vt36jH2KLBT2i1auw1tTSSomg8PhqNiUtx8QX2SvC9nrHu81fT41fvDUnhMjEzQgXnQjKEu3oaqMSzhSrHMxyyoEAmUHQbY/0/*)#cjjspncu"; |
261 | | |
262 | 2 | return RPCHelpMan{"deriveaddresses", |
263 | 2 | {"\nDerives one or more addresses corresponding to an output descriptor.\n" |
264 | 2 | "Examples of output descriptors are:\n" |
265 | 2 | " pkh(<pubkey>) P2PKH outputs for the given pubkey\n" |
266 | 2 | " wpkh(<pubkey>) Native segwit P2PKH outputs for the given pubkey\n" |
267 | 2 | " sh(multi(<n>,<pubkey>,<pubkey>,...)) P2SH-multisig outputs for the given threshold and pubkeys\n" |
268 | 2 | " raw(<hex script>) Outputs whose output script equals the specified hex-encoded bytes\n" |
269 | 2 | " tr(<pubkey>,multi_a(<n>,<pubkey>,<pubkey>,...)) P2TR-multisig outputs for the given threshold and pubkeys\n" |
270 | 2 | "\nIn the above, <pubkey> either refers to a fixed public key in hexadecimal notation, or to an xpub/xprv optionally followed by one\n" |
271 | 2 | "or more path elements separated by \"/\", where \"h\" represents a hardened child key.\n" |
272 | 2 | "For more information on output descriptors, see the documentation in the doc/descriptors.md file.\n"}, |
273 | 2 | { |
274 | 2 | {"descriptor", RPCArg::Type::STR, RPCArg::Optional::NO, "The descriptor."}, |
275 | 2 | {"range", RPCArg::Type::RANGE, RPCArg::Optional::OMITTED, "If a ranged descriptor is used, this specifies the end or the range (in [begin,end] notation) to derive."}, |
276 | 2 | }, |
277 | 2 | { |
278 | 2 | RPCResult{"for single derivation descriptors", |
279 | 2 | RPCResult::Type::ARR, "", "", |
280 | 2 | { |
281 | 2 | {RPCResult::Type::STR, "address", "the derived addresses"}, |
282 | 2 | } |
283 | 2 | }, |
284 | 2 | RPCResult{"for multipath descriptors", |
285 | 2 | RPCResult::Type::ARR, "", "The derived addresses for each of the multipath expansions of the descriptor, in multipath specifier order", |
286 | 2 | { |
287 | 2 | { |
288 | 2 | RPCResult::Type::ARR, "", "The derived addresses for a multipath descriptor expansion", |
289 | 2 | { |
290 | 2 | {RPCResult::Type::STR, "address", "the derived address"}, |
291 | 2 | }, |
292 | 2 | }, |
293 | 2 | }, |
294 | 2 | }, |
295 | 2 | }, |
296 | 2 | RPCExamples{ |
297 | 2 | "First three native segwit receive addresses\n" + |
298 | 2 | HelpExampleCli("deriveaddresses", "\"" + EXAMPLE_DESCRIPTOR + "\" \"[0,2]\"") + |
299 | 2 | HelpExampleRpc("deriveaddresses", "\"" + EXAMPLE_DESCRIPTOR + "\", \"[0,2]\"") |
300 | 2 | }, |
301 | 2 | [&](const RPCHelpMan& self, const JSONRPCRequest& request) -> UniValue |
302 | 2 | { |
303 | 0 | const std::string desc_str = request.params[0].get_str(); |
304 | |
|
305 | 0 | int64_t range_begin = 0; |
306 | 0 | int64_t range_end = 0; |
307 | |
|
308 | 0 | if (request.params.size() >= 2 && !request.params[1].isNull()) { |
309 | 0 | std::tie(range_begin, range_end) = ParseDescriptorRange(request.params[1]); |
310 | 0 | } |
311 | |
|
312 | 0 | FlatSigningProvider key_provider; |
313 | 0 | std::string error; |
314 | 0 | auto descs = Parse(desc_str, key_provider, error, /* require_checksum = */ true); |
315 | 0 | if (descs.empty()) { |
316 | 0 | throw JSONRPCError(RPC_INVALID_ADDRESS_OR_KEY, error); |
317 | 0 | } |
318 | 0 | auto& desc = descs.at(0); |
319 | 0 | if (!desc->IsRange() && request.params.size() > 1) { |
320 | 0 | throw JSONRPCError(RPC_INVALID_PARAMETER, "Range should not be specified for an un-ranged descriptor"); |
321 | 0 | } |
322 | | |
323 | 0 | if (desc->IsRange() && request.params.size() == 1) { |
324 | 0 | throw JSONRPCError(RPC_INVALID_PARAMETER, "Range must be specified for a ranged descriptor"); |
325 | 0 | } |
326 | | |
327 | 0 | UniValue addresses = DeriveAddresses(desc.get(), range_begin, range_end, key_provider); |
328 | |
|
329 | 0 | if (descs.size() == 1) { |
330 | 0 | return addresses; |
331 | 0 | } |
332 | | |
333 | 0 | UniValue ret(UniValue::VARR); |
334 | 0 | ret.push_back(addresses); |
335 | 0 | for (size_t i = 1; i < descs.size(); ++i) { |
336 | 0 | ret.push_back(DeriveAddresses(descs.at(i).get(), range_begin, range_end, key_provider)); |
337 | 0 | } |
338 | 0 | return ret; |
339 | 0 | }, |
340 | 2 | }; |
341 | 2 | } |
342 | | |
343 | | void RegisterOutputScriptRPCCommands(CRPCTable& t) |
344 | 49.9k | { |
345 | 49.9k | static const CRPCCommand commands[]{ |
346 | 49.9k | {"util", &validateaddress}, |
347 | 49.9k | {"util", &createmultisig}, |
348 | 49.9k | {"util", &deriveaddresses}, |
349 | 49.9k | {"util", &getdescriptorinfo}, |
350 | 49.9k | }; |
351 | 199k | for (const auto& c : commands) { |
352 | 199k | t.appendCommand(c.name, &c); |
353 | 199k | } |
354 | 49.9k | } |