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Václav Kubernát80aacc02018-08-22 17:41:54 +02001/*
2 * Copyright (C) 2018 CESNET, https://photonics.cesnet.cz/
3 * Copyright (C) 2018 FIT CVUT, https://fit.cvut.cz/
4 *
5 * Written by Václav Kubernát <kubervac@fit.cvut.cz>
6 *
7*/
8
Václav Kubernátab612e92019-11-26 19:51:31 +01009#include <libyang/Tree_Data.hpp>
10#include <libyang/Tree_Schema.hpp>
Jan Kundrát68d4a2c2018-10-01 17:17:09 +020011#include <sysrepo-cpp/Session.hpp>
Václav Kubernátab612e92019-11-26 19:51:31 +010012#include "libyang_utils.hpp"
Václav Kubernát80aacc02018-08-22 17:41:54 +020013#include "sysrepo_access.hpp"
Jan Kundrát6ee84792020-01-24 01:43:36 +010014#include "utils.hpp"
Václav Kubernáta6c5fff2018-09-07 15:16:25 +020015#include "yang_schema.hpp"
Václav Kubernát80aacc02018-08-22 17:41:54 +020016
Jan Kundrát68d4a2c2018-10-01 17:17:09 +020017leaf_data_ leafValueFromVal(const sysrepo::S_Val& value)
Václav Kubernátc89736b2018-08-30 16:14:05 +020018{
Václav Kubernátb6ff0b62018-08-30 16:14:53 +020019 using namespace std::string_literals;
Václav Kubernátc89736b2018-08-30 16:14:05 +020020 switch (value->type()) {
Ivona Oboňová88c78ca2019-07-02 18:40:07 +020021 case SR_INT8_T:
22 return value->data()->get_int8();
23 case SR_UINT8_T:
24 return value->data()->get_uint8();
25 case SR_INT16_T:
26 return value->data()->get_int16();
27 case SR_UINT16_T:
28 return value->data()->get_uint16();
Václav Kubernátb6ff0b62018-08-30 16:14:53 +020029 case SR_INT32_T:
30 return value->data()->get_int32();
31 case SR_UINT32_T:
32 return value->data()->get_uint32();
Ivona Oboňová88c78ca2019-07-02 18:40:07 +020033 case SR_INT64_T:
34 return value->data()->get_int64();
35 case SR_UINT64_T:
36 return value->data()->get_uint64();
Václav Kubernátb6ff0b62018-08-30 16:14:53 +020037 case SR_BOOL_T:
38 return value->data()->get_bool();
39 case SR_STRING_T:
40 return std::string(value->data()->get_string());
41 case SR_ENUM_T:
Václav Kubernát152ce222019-12-19 12:23:32 +010042 return enum_{std::string(value->data()->get_enum())};
Jan Kundrát0d8abd12020-05-07 02:00:14 +020043 case SR_IDENTITYREF_T:
44 {
45 auto pair = splitModuleNode(value->data()->get_identityref());
46 return identityRef_{*pair.first, pair.second};
47 }
Jan Kundrát68985442020-05-07 02:15:34 +020048 case SR_BINARY_T:
49 return binary_{value->data()->get_binary()};
Václav Kubernátb6ff0b62018-08-30 16:14:53 +020050 case SR_DECIMAL64_T:
51 return value->data()->get_decimal64();
52 case SR_CONTAINER_T:
Václav Kubernát144729d2020-01-08 15:20:35 +010053 return special_{SpecialValue::Container};
Václav Kubernátb6ff0b62018-08-30 16:14:53 +020054 case SR_CONTAINER_PRESENCE_T:
Václav Kubernát144729d2020-01-08 15:20:35 +010055 return special_{SpecialValue::PresenceContainer};
Václav Kubernátb6ff0b62018-08-30 16:14:53 +020056 case SR_LIST_T:
Václav Kubernát144729d2020-01-08 15:20:35 +010057 return special_{SpecialValue::List};
Václav Kubernátb6ff0b62018-08-30 16:14:53 +020058 default: // TODO: implement all types
59 return value->val_to_string();
Václav Kubernátc89736b2018-08-30 16:14:05 +020060 }
61}
Václav Kubernát80aacc02018-08-22 17:41:54 +020062
Jan Kundrát68d4a2c2018-10-01 17:17:09 +020063struct valFromValue : boost::static_visitor<sysrepo::S_Val> {
64 sysrepo::S_Val operator()(const enum_& value) const
Václav Kubernát80aacc02018-08-22 17:41:54 +020065 {
Jan Kundrát68d4a2c2018-10-01 17:17:09 +020066 return std::make_shared<sysrepo::Val>(value.m_value.c_str(), SR_ENUM_T);
Václav Kubernát80aacc02018-08-22 17:41:54 +020067 }
68
Václav Kubernátab538992019-03-06 15:30:50 +010069 sysrepo::S_Val operator()(const binary_& value) const
70 {
71 return std::make_shared<sysrepo::Val>(value.m_value.c_str(), SR_BINARY_T);
72 }
73
Václav Kubernáteeb38842019-03-20 19:46:05 +010074 sysrepo::S_Val operator()(const identityRef_& value) const
75 {
Jan Kundrát0d8abd12020-05-07 02:00:14 +020076 auto res = value.m_prefix ? (value.m_prefix.value().m_name + ":" + value.m_value) : value.m_value;
Václav Kubernáteeb38842019-03-20 19:46:05 +010077 return std::make_shared<sysrepo::Val>(res.c_str(), SR_IDENTITYREF_T);
78 }
79
Václav Kubernát144729d2020-01-08 15:20:35 +010080 sysrepo::S_Val operator()(const special_& value) const
81 {
82 throw std::runtime_error("Tried constructing S_Val from a " + specialValueToString(value));
83 }
84
Jan Kundrát68d4a2c2018-10-01 17:17:09 +020085 sysrepo::S_Val operator()(const std::string& value) const
Václav Kubernát80aacc02018-08-22 17:41:54 +020086 {
Jan Kundrát68d4a2c2018-10-01 17:17:09 +020087 return std::make_shared<sysrepo::Val>(value.c_str());
Václav Kubernát80aacc02018-08-22 17:41:54 +020088 }
89
Jan Kundrátbd178362019-02-05 19:00:04 +010090 template <typename T>
91 sysrepo::S_Val operator()(const T& value) const
Václav Kubernát80aacc02018-08-22 17:41:54 +020092 {
Jan Kundrát68d4a2c2018-10-01 17:17:09 +020093 return std::make_shared<sysrepo::Val>(value);
Václav Kubernát80aacc02018-08-22 17:41:54 +020094 }
95};
96
Jan Kundrát6ee84792020-01-24 01:43:36 +010097struct updateSrValFromValue : boost::static_visitor<void> {
98 std::string xpath;
99 sysrepo::S_Val v;
100 updateSrValFromValue(const std::string& xpath, sysrepo::S_Val v)
101 : xpath(xpath)
102 , v(v)
103 {
104 }
105
106 void operator()(const enum_& value) const
107 {
108 v->set(xpath.c_str(), value.m_value.c_str(), SR_ENUM_T);
109 }
110
111 void operator()(const binary_& value) const
112 {
113 v->set(xpath.c_str(), value.m_value.c_str(), SR_BINARY_T);
114 }
115
116 void operator()(const identityRef_& value) const
117 {
118 v->set(xpath.c_str(), (value.m_prefix.value().m_name + ":" + value.m_value).c_str(), SR_IDENTITYREF_T);
119 }
120
121 void operator()(const special_& value) const
122 {
123 throw std::runtime_error("Tried constructing S_Val from a " + specialValueToString(value));
124 }
125
126 void operator()(const std::string& value) const
127 {
128 v->set(xpath.c_str(), value.c_str(), SR_STRING_T);
129 }
130
131 template <typename T>
132 void operator()(const T value) const
133 {
134 v->set(xpath.c_str(), value);
135 }
136};
137
Václav Kubernát812ee282018-08-30 17:10:03 +0200138SysrepoAccess::~SysrepoAccess() = default;
Václav Kubernát80aacc02018-08-22 17:41:54 +0200139
Václav Kubernát715c85c2020-04-14 01:46:08 +0200140sr_datastore_t toSrDatastore(Datastore datastore)
141{
142 switch (datastore) {
143 case Datastore::Running:
144 return SR_DS_RUNNING;
145 case Datastore::Startup:
146 return SR_DS_STARTUP;
147 }
148 __builtin_unreachable();
149}
150
151SysrepoAccess::SysrepoAccess(const std::string& appname, const Datastore datastore)
Jan Kundrát68d4a2c2018-10-01 17:17:09 +0200152 : m_connection(new sysrepo::Connection(appname.c_str()))
Václav Kubernáta6c5fff2018-09-07 15:16:25 +0200153 , m_schema(new YangSchema())
Václav Kubernát80aacc02018-08-22 17:41:54 +0200154{
Václav Kubernátc58e4aa2019-04-03 18:37:32 +0200155 try {
Václav Kubernát715c85c2020-04-14 01:46:08 +0200156 m_session = std::make_shared<sysrepo::Session>(m_connection, toSrDatastore(datastore));
Václav Kubernátc58e4aa2019-04-03 18:37:32 +0200157 } catch (sysrepo::sysrepo_exception& ex) {
158 reportErrors();
159 }
Václav Kubernátb52dc252019-12-04 13:03:39 +0100160
161 // If fetching a submodule, sysrepo::Session::get_schema will determine the revision from the main module.
162 // That's why submoduleRevision is ignored.
163 m_schema->registerModuleCallback([this](const char* moduleName, const char* revision, const char* submodule, [[maybe_unused]] const char* submoduleRevision) {
Václav Kubernáta6c5fff2018-09-07 15:16:25 +0200164 return fetchSchema(moduleName, revision, submodule);
165 });
166
Václav Kubernátbf9c6112019-11-04 16:03:35 +0100167 for (const auto& it : listSchemas()) {
168 if (it->implemented()) {
169 m_schema->loadModule(it->module_name());
170 for (unsigned int i = 0; i < it->enabled_feature_cnt(); i++) {
171 m_schema->enableFeature(it->module_name(), it->enabled_features(i));
172 }
173 }
Václav Kubernáta6c5fff2018-09-07 15:16:25 +0200174 }
Václav Kubernát80aacc02018-08-22 17:41:54 +0200175}
176
Jan Kundrátb331b552020-01-23 15:25:29 +0100177DatastoreAccess::Tree SysrepoAccess::getItems(const std::string& path)
Václav Kubernát80aacc02018-08-22 17:41:54 +0200178{
Václav Kubernátb6ff0b62018-08-30 16:14:53 +0200179 using namespace std::string_literals;
Jan Kundrátb331b552020-01-23 15:25:29 +0100180 Tree res;
Václav Kubernát80aacc02018-08-22 17:41:54 +0200181
Václav Kubernátb6ff0b62018-08-30 16:14:53 +0200182 auto fillMap = [&res](auto items) {
183 if (!items)
184 return;
185 for (unsigned int i = 0; i < items->val_cnt(); i++) {
186 res.emplace(items->val(i)->xpath(), leafValueFromVal(items->val(i)));
187 }
188 };
Václav Kubernátc89736b2018-08-30 16:14:05 +0200189
Václav Kubernátc58e4aa2019-04-03 18:37:32 +0200190 try {
191 if (path == "/") {
192 // Sysrepo doesn't have a root node ("/"), so we take all top-level nodes from all schemas
193 auto schemas = m_session->list_schemas();
194 for (unsigned int i = 0; i < schemas->schema_cnt(); i++) {
195 fillMap(m_session->get_items(("/"s + schemas->schema(i)->module_name() + ":*//.").c_str()));
196 }
197 } else {
198 fillMap(m_session->get_items((path + "//.").c_str()));
Václav Kubernátb6ff0b62018-08-30 16:14:53 +0200199 }
Václav Kubernátc58e4aa2019-04-03 18:37:32 +0200200 } catch (sysrepo::sysrepo_exception& ex) {
201 reportErrors();
Václav Kubernátc89736b2018-08-30 16:14:05 +0200202 }
Václav Kubernát80aacc02018-08-22 17:41:54 +0200203 return res;
204}
205
206void SysrepoAccess::setLeaf(const std::string& path, leaf_data_ value)
207{
Václav Kubernátc58e4aa2019-04-03 18:37:32 +0200208 try {
209 m_session->set_item(path.c_str(), boost::apply_visitor(valFromValue(), value));
210 } catch (sysrepo::sysrepo_exception& ex) {
211 reportErrors();
212 }
Václav Kubernát80aacc02018-08-22 17:41:54 +0200213}
214
215void SysrepoAccess::createPresenceContainer(const std::string& path)
216{
Václav Kubernátc58e4aa2019-04-03 18:37:32 +0200217 try {
218 m_session->set_item(path.c_str());
219 } catch (sysrepo::sysrepo_exception& ex) {
220 reportErrors();
221 }
Václav Kubernát80aacc02018-08-22 17:41:54 +0200222}
223
224void SysrepoAccess::deletePresenceContainer(const std::string& path)
225{
Václav Kubernátc58e4aa2019-04-03 18:37:32 +0200226 try {
227 m_session->delete_item(path.c_str());
228 } catch (sysrepo::sysrepo_exception& ex) {
229 reportErrors();
230 }
Václav Kubernát80aacc02018-08-22 17:41:54 +0200231}
Václav Kubernát812ee282018-08-30 17:10:03 +0200232
Václav Kubernátf5f64f02019-03-19 17:15:47 +0100233void SysrepoAccess::createListInstance(const std::string& path)
234{
Václav Kubernátc58e4aa2019-04-03 18:37:32 +0200235 try {
236 m_session->set_item(path.c_str());
237 } catch (sysrepo::sysrepo_exception& ex) {
238 reportErrors();
239 }
Václav Kubernátf5f64f02019-03-19 17:15:47 +0100240}
241
242void SysrepoAccess::deleteListInstance(const std::string& path)
243{
Václav Kubernátc58e4aa2019-04-03 18:37:32 +0200244 try {
245 m_session->delete_item(path.c_str());
246 } catch (sysrepo::sysrepo_exception& ex) {
247 reportErrors();
248 }
Václav Kubernátf5f64f02019-03-19 17:15:47 +0100249}
250
Václav Kubernát812ee282018-08-30 17:10:03 +0200251void SysrepoAccess::commitChanges()
252{
Václav Kubernátc58e4aa2019-04-03 18:37:32 +0200253 try {
254 m_session->commit();
255 } catch (sysrepo::sysrepo_exception& ex) {
256 reportErrors();
257 }
Václav Kubernát812ee282018-08-30 17:10:03 +0200258}
Václav Kubernáta6c5fff2018-09-07 15:16:25 +0200259
Václav Kubernát6d791432018-10-25 16:00:35 +0200260void SysrepoAccess::discardChanges()
261{
Václav Kubernátc58e4aa2019-04-03 18:37:32 +0200262 try {
263 m_session->discard_changes();
264 } catch (sysrepo::sysrepo_exception& ex) {
265 reportErrors();
266 }
Václav Kubernát6d791432018-10-25 16:00:35 +0200267}
268
Jan Kundrát6ee84792020-01-24 01:43:36 +0100269DatastoreAccess::Tree SysrepoAccess::executeRpc(const std::string &path, const Tree &input)
270{
271 auto srInput = std::make_shared<sysrepo::Vals>(input.size());
272 {
273 size_t i = 0;
274 for (const auto& [k, v] : input) {
275 boost::apply_visitor(updateSrValFromValue(joinPaths(path, k), srInput->val(i)), v);
276 ++i;
277 }
278 }
279 auto output = m_session->rpc_send(path.c_str(), srInput);
280 Tree res;
281 for (size_t i = 0; i < output->val_cnt(); ++i) {
282 const auto& v = output->val(i);
283 res.emplace(std::string(v->xpath()).substr(joinPaths(path, "/").size()), leafValueFromVal(v));
284 }
285 return res;
286}
287
Václav Kubernát7160a132020-04-03 02:11:01 +0200288void SysrepoAccess::copyConfig(const Datastore source, const Datastore destination)
289{
290 m_session->copy_config(nullptr, toSrDatastore(source), toSrDatastore(destination));
291 if (destination == Datastore::Running) {
292 m_session->refresh();
293 }
294}
295
Václav Kubernáta6c5fff2018-09-07 15:16:25 +0200296std::string SysrepoAccess::fetchSchema(const char* module, const char* revision, const char* submodule)
297{
Václav Kubernátc58e4aa2019-04-03 18:37:32 +0200298 std::string schema;
299 try {
Václav Kubernátb52dc252019-12-04 13:03:39 +0100300 schema = m_session->get_schema(module, revision, submodule, SR_SCHEMA_YANG);
Václav Kubernátc58e4aa2019-04-03 18:37:32 +0200301 } catch (sysrepo::sysrepo_exception& ex) {
302 reportErrors();
303 }
304
Václav Kubernáta6c5fff2018-09-07 15:16:25 +0200305 if (schema.empty())
306 throw std::runtime_error(std::string("Module ") + module + " not available");
307
308 return schema;
309}
310
Václav Kubernátbf9c6112019-11-04 16:03:35 +0100311std::vector<std::shared_ptr<sysrepo::Yang_Schema>> SysrepoAccess::listSchemas()
Václav Kubernáta6c5fff2018-09-07 15:16:25 +0200312{
Václav Kubernátbf9c6112019-11-04 16:03:35 +0100313 std::vector<sysrepo::S_Yang_Schema> res;
Václav Kubernátc58e4aa2019-04-03 18:37:32 +0200314 std::shared_ptr<sysrepo::Yang_Schemas> schemas;
315 try {
316 schemas = m_session->list_schemas();
317 } catch (sysrepo::sysrepo_exception& ex) {
318 reportErrors();
319 }
Václav Kubernáta6c5fff2018-09-07 15:16:25 +0200320 for (unsigned int i = 0; i < schemas->schema_cnt(); i++) {
321 auto schema = schemas->schema(i);
Václav Kubernátbf9c6112019-11-04 16:03:35 +0100322 res.push_back(schema);
Václav Kubernáta6c5fff2018-09-07 15:16:25 +0200323 }
324 return res;
325}
326
327std::shared_ptr<Schema> SysrepoAccess::schema()
328{
329 return m_schema;
330}
Václav Kubernátc58e4aa2019-04-03 18:37:32 +0200331
332[[noreturn]] void SysrepoAccess::reportErrors()
333{
334 // I only use get_last_errors to get error info, since the error code from
335 // sysrepo_exception doesn't really give any meaningful information. For
336 // example an "invalid argument" error could mean a node isn't enabled, or
337 // it could mean something totally different and there is no documentation
338 // for that, so it's better to just use the message sysrepo gives me.
339 auto srErrors = m_session->get_last_errors();
340 std::vector<DatastoreError> res;
341
342 for (size_t i = 0; i < srErrors->error_cnt(); i++) {
343 auto error = srErrors->error(i);
344 res.emplace_back(error->message(), error->xpath() ? std::optional<std::string>{error->xpath()} : std::nullopt);
345 }
346
347 throw DatastoreException(res);
348}
Václav Kubernátab612e92019-11-26 19:51:31 +0100349
350std::vector<ListInstance> SysrepoAccess::listInstances(const std::string& path)
351{
352 std::vector<ListInstance> res;
353 auto lists = getItems(path);
354
355 decltype(lists) instances;
356 auto wantedTree = *(m_schema->dataNodeFromPath(path)->find_path(path.c_str())->data().begin());
357 std::copy_if(lists.begin(), lists.end(), std::inserter(instances, instances.end()), [this, pathToCheck=wantedTree->schema()->path()](const auto& item) {
358 // This filters out non-instances.
359 if (item.second.type() != typeid(special_) || boost::get<special_>(item.second).m_value != SpecialValue::List) {
360 return false;
361 }
362
363 // Now, getItems is recursive: it gives everything including nested lists. So I try create a tree from the instance...
364 auto instanceTree = *(m_schema->dataNodeFromPath(item.first)->find_path(item.first.c_str())->data().begin());
365 // And then check if its schema path matches the list we actually want. This filters out lists which are not the ones I requested.
366 return instanceTree->schema()->path() == pathToCheck;
367 });
368
369 // If there are no instances, then just return
370 if (instances.empty()) {
371 return res;
372 }
373
374 // I need to find out which keys does the list have. To do that, I create a
375 // tree from the first instance. This is gives me some top level node,
376 // which will be our list in case out list is a top-level node. In case it
377 // isn't, we have call find_path on the top level node. After that, I just
378 // retrieve the keys.
379 auto topLevelTree = m_schema->dataNodeFromPath(instances.begin()->first);
380 auto list = *(topLevelTree->find_path(path.c_str())->data().begin());
381 auto keys = libyang::Schema_Node_List{list->schema()}.keys();
382
383 // Creating a full tree at the same time from the values sysrepo gives me
384 // would be a pain (and after sysrepo switches to libyang meaningless), so
385 // I just use this algorithm to create data nodes one by one and get the
386 // key values from them.
387 for (const auto& instance : instances) {
388 auto wantedList = *(m_schema->dataNodeFromPath(instance.first)->find_path(path.c_str())->data().begin());
389 ListInstance instanceRes;
390 for (const auto& key : keys) {
391 auto vec = wantedList->find_path(key->name())->data();
392 auto leaf = libyang::Data_Node_Leaf_List{*(vec.begin())};
393 instanceRes.emplace(key->name(), leafValueFromValue(leaf.value(), leaf.leaf_type()->base()));
394 }
395 res.push_back(instanceRes);
396 }
397
398 return res;
399}