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Václav Kubernát0d4db442018-07-18 17:18:43 +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
9#include <libyang/Libyang.hpp>
Václav Kubernátc31bd602019-03-07 11:44:48 +010010#include <libyang/Tree_Data.hpp>
Václav Kubernát0d4db442018-07-18 17:18:43 +020011#include <libyang/Tree_Schema.hpp>
12#include <string_view>
Václav Kubernát26b56082020-02-03 18:28:56 +010013#include "UniqueResource.hpp"
Václav Kubernát0d4db442018-07-18 17:18:43 +020014#include "utils.hpp"
15#include "yang_schema.hpp"
16
17class YangLoadError : public std::runtime_error {
18public:
19 using std::runtime_error::runtime_error;
20 ~YangLoadError() override = default;
21};
22
23class UnsupportedYangTypeException : public std::runtime_error {
24public:
25 using std::runtime_error::runtime_error;
26 ~UnsupportedYangTypeException() override = default;
27};
28
29class InvalidSchemaQueryException : public std::runtime_error {
30public:
31 using std::runtime_error::runtime_error;
32 ~InvalidSchemaQueryException() override = default;
33};
34
Václav Kubernát2eaceb82018-10-08 19:56:30 +020035template <typename T>
36std::string pathToYangAbsSchemPath(const T& path)
Václav Kubernát0d4db442018-07-18 17:18:43 +020037{
38 std::string res = "/";
39 std::string currentModule;
40
41 for (const auto& it : path.m_nodes) {
42 const auto name = nodeToSchemaString(it);
43
44 if (it.m_suffix.type() == typeid(module_)) {
45 currentModule = name;
46 continue;
47 } else {
48 res += currentModule + ":";
49 res += name + "/";
50 }
51 }
52
53 return res;
54}
55
56YangSchema::YangSchema()
Václav Kubernáta6c5fff2018-09-07 15:16:25 +020057 : m_context(std::make_shared<libyang::Context>(nullptr, LY_CTX_DISABLE_SEARCHDIRS | LY_CTX_DISABLE_SEARCHDIR_CWD))
Václav Kubernát0d4db442018-07-18 17:18:43 +020058{
Václav Kubernát0d4db442018-07-18 17:18:43 +020059}
60
Václav Kubernát1d50a5b2020-02-03 16:44:22 +010061YangSchema::YangSchema(std::shared_ptr<libyang::Context> lyCtx)
62 : m_context(lyCtx)
63{
64
65}
66
Václav Kubernát0d4db442018-07-18 17:18:43 +020067YangSchema::~YangSchema() = default;
68
69void YangSchema::addSchemaString(const char* schema)
70{
71 if (!m_context->parse_module_mem(schema, LYS_IN_YANG)) {
72 throw YangLoadError("Couldn't load schema");
73 }
74}
75
76void YangSchema::addSchemaDirectory(const char* directoryName)
77{
78 if (m_context->set_searchdir(directoryName)) {
79 throw YangLoadError("Couldn't add schema search directory");
80 }
81}
82
83void YangSchema::addSchemaFile(const char* filename)
84{
85 if (!m_context->parse_module_path(filename, LYS_IN_YANG)) {
86 throw YangLoadError("Couldn't load schema");
87 }
88}
89
Václav Kubernát75877de2019-11-20 17:43:02 +010090bool YangSchema::isModule(const std::string& name) const
Václav Kubernát0d4db442018-07-18 17:18:43 +020091{
92 const auto set = modules();
93 return set.find(name) != set.end();
94}
95
Václav Kubernát2eaceb82018-10-08 19:56:30 +020096bool YangSchema::listHasKey(const schemaPath_& location, const ModuleNodePair& node, const std::string& key) const
Václav Kubernát0d4db442018-07-18 17:18:43 +020097{
98 if (!isList(location, node))
99 return false;
100 const auto keys = listKeys(location, node);
101 return keys.find(key) != keys.end();
102}
103
Václav Kubernátc3866792020-02-20 14:12:56 +0100104bool YangSchema::leafIsKey(const std::string& leafPath) const
105{
106 auto node = getSchemaNode(leafPath);
107 if (!node || node->nodetype() != LYS_LEAF)
108 return false;
109
110 return libyang::Schema_Node_Leaf{node}.is_key().get();
111}
112
Václav Kubernát47a3f672019-11-08 15:42:43 +0100113libyang::S_Schema_Node YangSchema::impl_getSchemaNode(const std::string& node) const
Václav Kubernát0d4db442018-07-18 17:18:43 +0200114{
Václav Kubernátf2b91e02019-04-11 15:36:48 +0200115 // If no node is found find_path prints an error message, so we have to
116 // disable logging
117 // https://github.com/CESNET/libyang/issues/753
118 {
119 int oldOptions;
120 auto logBlocker = make_unique_resource(
121 [&oldOptions]() {
122 oldOptions = libyang::set_log_options(0);
123 },
124 [&oldOptions]() {
125 libyang::set_log_options(oldOptions);
126 });
Václav Kubernát47a3f672019-11-08 15:42:43 +0100127 return m_context->get_node(nullptr, node.c_str());
Václav Kubernátf2b91e02019-04-11 15:36:48 +0200128 }
Václav Kubernát0d4db442018-07-18 17:18:43 +0200129}
130
Václav Kubernát47a3f672019-11-08 15:42:43 +0100131
132libyang::S_Schema_Node YangSchema::getSchemaNode(const std::string& node) const
133{
134 return impl_getSchemaNode(node);
135}
136
137libyang::S_Schema_Node YangSchema::getSchemaNode(const schemaPath_& location, const ModuleNodePair& node) const
138{
Václav Kubernátefcac932020-01-10 15:26:32 +0100139 std::string absPath = joinPaths(pathToSchemaString(location, Prefixes::Always), fullNodeName(location, node));
Václav Kubernát47a3f672019-11-08 15:42:43 +0100140
141 return impl_getSchemaNode(absPath);
142}
143
Václav Kubernát2eaceb82018-10-08 19:56:30 +0200144const std::set<std::string> YangSchema::listKeys(const schemaPath_& location, const ModuleNodePair& node) const
Václav Kubernát0d4db442018-07-18 17:18:43 +0200145{
146 std::set<std::string> keys;
147 if (!isList(location, node))
148 return keys;
Jan Kundrát4ed0e9f2018-08-23 16:56:58 +0200149 libyang::Schema_Node_List list(getSchemaNode(location, node));
Jan Kundrát4030b772018-08-23 15:54:56 +0200150 const auto& keysVec = list.keys();
Václav Kubernát0d4db442018-07-18 17:18:43 +0200151
Václav Kubernát90de9502019-11-20 17:19:44 +0100152 std::transform(keysVec.begin(), keysVec.end(), std::inserter(keys, keys.begin()), [](const auto& it) { return it->name(); });
Václav Kubernát0d4db442018-07-18 17:18:43 +0200153 return keys;
154}
155
Václav Kubernát3a99f002020-03-31 02:27:41 +0200156namespace {
157std::set<enum_> enumValues(const libyang::S_Schema_Node_Leaf& leaf)
Václav Kubernát0d4db442018-07-18 17:18:43 +0200158{
Václav Kubernát3a99f002020-03-31 02:27:41 +0200159 auto type = leaf->type();
160 auto enm = type->info()->enums()->enm();
161 // The enum can be a derived type and enm() only returns values,
162 // if that specific typedef changed the possible values. So we go
163 // up the hierarchy until we find a typedef that defined these values.
164 while (enm.empty()) {
165 type = type->der()->type();
166 enm = type->info()->enums()->enm();
Václav Kubernát6a8d1d92019-04-24 20:30:36 +0200167 }
Václav Kubernát3a99f002020-03-31 02:27:41 +0200168
169 std::vector<libyang::S_Type_Enum> enabled;
170 std::copy_if(enm.begin(), enm.end(), std::back_inserter(enabled), [](const libyang::S_Type_Enum& it) {
171 auto iffeatures = it->iffeature();
172 return std::all_of(iffeatures.begin(), iffeatures.end(), [](auto it) { return it->value(); });
173 });
174
175 std::set<enum_> enumSet;
176 std::transform(enabled.begin(), enabled.end(), std::inserter(enumSet, enumSet.end()), [](auto it) { return enum_{it->name()}; });
177 return enumSet;
Václav Kubernát6a8d1d92019-04-24 20:30:36 +0200178}
179
Václav Kubernát3a99f002020-03-31 02:27:41 +0200180std::set<identityRef_> validIdentities(const libyang::S_Schema_Node_Leaf& leaf)
181{
182 std::set<identityRef_> identSet;
183
184 // auto topLevelModule = leaf->module();
185
186 auto info = leaf->type()->info();
187 for (auto base : info->ident()->ref()) { // Iterate over all bases
188 identSet.emplace(base->module()->name(), base->name());
189 // Iterate over derived identities (this is recursive!)
190 for (auto derived : base->der()->schema()) {
191 identSet.emplace(derived->module()->name(), derived->name());
192 }
193 }
194
195 return identSet;
196}
197
198std::string leafrefPath(const libyang::S_Schema_Node_Leaf& leaf)
199{
200 return leaf->type()->info()->lref()->target()->path(LYS_PATH_FIRST_PREFIX);
201}
202}
203
204yang::LeafDataType YangSchema::impl_leafType(const libyang::S_Schema_Node& node) const
Václav Kubernát6a8d1d92019-04-24 20:30:36 +0200205{
206 using namespace std::string_literals;
Václav Kubernát3a99f002020-03-31 02:27:41 +0200207 auto leaf = std::make_shared<libyang::Schema_Node_Leaf>(node);
208 auto baseType{leaf->type()->base()};
209 switch (baseType) {
210 case LY_TYPE_STRING:
211 return yang::String{};
212 case LY_TYPE_DEC64:
213 return yang::Decimal{};
214 case LY_TYPE_BOOL:
215 return yang::Bool{};
216 case LY_TYPE_INT8:
217 return yang::Int8{};
218 case LY_TYPE_INT16:
219 return yang::Int16{};
220 case LY_TYPE_INT32:
221 return yang::Int32{};
222 case LY_TYPE_INT64:
223 return yang::Int64{};
224 case LY_TYPE_UINT8:
225 return yang::Uint8{};
226 case LY_TYPE_UINT16:
227 return yang::Uint16{};
228 case LY_TYPE_UINT32:
229 return yang::Uint32{};
230 case LY_TYPE_UINT64:
231 return yang::Uint64{};
232 case LY_TYPE_BINARY:
233 return yang::Binary{};
234 case LY_TYPE_ENUM:
235 return yang::Enum{enumValues(leaf)};
236 case LY_TYPE_IDENT:
237 return yang::IdentityRef{validIdentities(leaf)};
238 case LY_TYPE_LEAFREF:
239 return yang::LeafRef{::leafrefPath(leaf), std::make_unique<yang::LeafDataType>(leafType(::leafrefPath(leaf)))};
240 default:
241 using namespace std::string_literals;
242 throw UnsupportedYangTypeException("the type of "s + node->name() + " is not supported: " + std::to_string(baseType));
Václav Kubernát6a8d1d92019-04-24 20:30:36 +0200243 }
244}
245
Václav Kubernát3a99f002020-03-31 02:27:41 +0200246yang::LeafDataType YangSchema::leafType(const schemaPath_& location, const ModuleNodePair& node) const
Václav Kubernát9bf36852020-02-18 17:47:56 +0100247{
248 return impl_leafType(getSchemaNode(location, node));
249}
250
Václav Kubernát3a99f002020-03-31 02:27:41 +0200251yang::LeafDataType YangSchema::leafType(const std::string& path) const
Václav Kubernát9bf36852020-02-18 17:47:56 +0100252{
253 return impl_leafType(getSchemaNode(path));
254}
Václav Kubernát6a8d1d92019-04-24 20:30:36 +0200255
Václav Kubernát6fcd0282020-02-21 16:33:08 +0100256std::optional<std::string> YangSchema::leafTypeName(const std::string& path) const
257{
258 libyang::Schema_Node_Leaf leaf(getSchemaNode(path));
259 return leaf.type()->der().get() ? std::optional{leaf.type()->der()->name()} : std::nullopt;
260}
261
Václav Kubernátbd5e3c22020-02-19 15:22:00 +0100262std::string YangSchema::leafrefPath(const std::string& leafrefPath) const
263{
264 using namespace std::string_literals;
265 libyang::Schema_Node_Leaf leaf(getSchemaNode(leafrefPath));
266 return leaf.type()->info()->lref()->target()->path(LYS_PATH_FIRST_PREFIX);
267}
Václav Kubernát0d4db442018-07-18 17:18:43 +0200268
269std::set<std::string> YangSchema::modules() const
270{
Jan Kundrát4030b772018-08-23 15:54:56 +0200271 const auto& modules = m_context->get_module_iter();
Václav Kubernát0d4db442018-07-18 17:18:43 +0200272
273 std::set<std::string> res;
Václav Kubernát90de9502019-11-20 17:19:44 +0100274 std::transform(modules.begin(), modules.end(), std::inserter(res, res.end()), [](const auto module) { return module->name(); });
Václav Kubernát0d4db442018-07-18 17:18:43 +0200275 return res;
276}
277
Václav Kubernát2eaceb82018-10-08 19:56:30 +0200278std::set<std::string> YangSchema::childNodes(const schemaPath_& path, const Recursion recursion) const
Václav Kubernát0d4db442018-07-18 17:18:43 +0200279{
280 using namespace std::string_view_literals;
281 std::set<std::string> res;
Václav Kubernáte7d4aea2018-09-11 18:15:48 +0200282 std::vector<libyang::S_Schema_Node> nodes;
283
Václav Kubernát0d4db442018-07-18 17:18:43 +0200284 if (path.m_nodes.empty()) {
Václav Kubernáte7d4aea2018-09-11 18:15:48 +0200285 nodes = m_context->data_instantiables(0);
Václav Kubernát0d4db442018-07-18 17:18:43 +0200286 } else {
Václav Kubernátefcac932020-01-10 15:26:32 +0100287 const auto pathString = pathToSchemaString(path, Prefixes::Always);
288 const auto node = getSchemaNode(pathString);
Václav Kubernát47a3f672019-11-08 15:42:43 +0100289 nodes = node->child_instantiables(0);
Václav Kubernát0d4db442018-07-18 17:18:43 +0200290 }
Václav Kubernáte7d4aea2018-09-11 18:15:48 +0200291
292 for (const auto node : nodes) {
293 if (node->module()->name() == "ietf-yang-library"sv)
Václav Kubernát89728d82018-09-13 16:28:28 +0200294 continue;
Václav Kubernátfa81c8c2020-02-13 17:22:46 +0100295 // FIXME: This is a temporary fix to filter out RPC nodes in
296 // tab-completion. The method will have to be changed/reworked when RPC
297 // support gets added.
298 if (node->nodetype() == LYS_RPC)
299 continue;
Václav Kubernáte7d4aea2018-09-11 18:15:48 +0200300 if (recursion == Recursion::Recursive) {
301 for (auto it : node->tree_dfs()) {
302 res.insert(it->path(LYS_PATH_FIRST_PREFIX));
303 }
304 } else {
Václav Kubernát4f77a252019-02-19 16:51:30 +0100305 std::string toInsert;
306 if (path.m_nodes.empty() || path.m_nodes.front().m_prefix.get().m_name != node->module()->name()) {
307 toInsert += node->module()->name();
308 toInsert += ":";
309 }
310 toInsert += node->name();
311 res.insert(toInsert);
Václav Kubernáte7d4aea2018-09-11 18:15:48 +0200312 }
313 }
314
Václav Kubernát0d4db442018-07-18 17:18:43 +0200315 return res;
316}
Václav Kubernáta6c5fff2018-09-07 15:16:25 +0200317
Václav Kubernát9456b5c2019-10-02 21:14:52 +0200318std::set<std::string> YangSchema::moduleNodes(const module_& module, const Recursion recursion) const
319{
320 std::set<std::string> res;
321 const auto yangModule = m_context->get_module(module.m_name.c_str());
322
323 std::vector<libyang::S_Schema_Node> nodes;
324
325 for (const auto node : yangModule->data_instantiables(0)) {
326 if (recursion == Recursion::Recursive) {
327 for (const auto it : node->tree_dfs()) {
328 res.insert(it->path(LYS_PATH_FIRST_PREFIX));
329 }
330 } else {
331 res.insert(module.m_name + ":" + node->name());
332 }
333 }
334
335 return res;
336}
337
Václav Kubernáta6c5fff2018-09-07 15:16:25 +0200338void YangSchema::loadModule(const std::string& moduleName)
339{
340 m_context->load_module(moduleName.c_str());
341}
342
Václav Kubernátbf9c6112019-11-04 16:03:35 +0100343void YangSchema::enableFeature(const std::string& moduleName, const std::string& featureName)
344{
345 m_context->get_module(moduleName.c_str())->feature_enable(featureName.c_str());
346}
347
Václav Kubernátb52dc252019-12-04 13:03:39 +0100348void YangSchema::registerModuleCallback(const std::function<std::string(const char*, const char*, const char*, const char*)>& clb)
Václav Kubernáta6c5fff2018-09-07 15:16:25 +0200349{
350 auto lambda = [clb](const char* mod_name, const char* mod_revision, const char* submod_name, const char* submod_revision) {
351 (void)submod_revision;
Václav Kubernátb52dc252019-12-04 13:03:39 +0100352 auto moduleSource = clb(mod_name, mod_revision, submod_name, submod_revision);
Václav Kubernáta6c5fff2018-09-07 15:16:25 +0200353 if (moduleSource.empty()) {
354 return libyang::Context::mod_missing_cb_return{LYS_IN_YANG, nullptr};
355 }
356 return libyang::Context::mod_missing_cb_return{LYS_IN_YANG, strdup(moduleSource.c_str())};
357 };
358
359 auto deleter = [](void* data) {
360 free(data);
361 };
362 m_context->add_missing_module_callback(lambda, deleter);
363}
Václav Kubernátc31bd602019-03-07 11:44:48 +0100364
365std::shared_ptr<libyang::Data_Node> YangSchema::dataNodeFromPath(const std::string& path, const std::optional<const std::string> value) const
366{
367 return std::make_shared<libyang::Data_Node>(m_context,
368 path.c_str(),
369 value ? value.value().c_str() : nullptr,
370 LYD_ANYDATA_CONSTSTRING,
Václav Kubernátab612e92019-11-26 19:51:31 +0100371 LYD_PATH_OPT_EDIT);
Václav Kubernátc31bd602019-03-07 11:44:48 +0100372}
373
374std::shared_ptr<libyang::Module> YangSchema::getYangModule(const std::string& name)
375{
376 return m_context->get_module(name.c_str(), nullptr, 0);
377}
Václav Kubernát34ee85a2020-02-18 17:12:12 +0100378
379namespace {
380yang::NodeTypes impl_nodeType(const libyang::S_Schema_Node& node)
381{
382 if (!node) {
383 throw InvalidNodeException();
384 }
385 switch (node->nodetype()) {
386 case LYS_CONTAINER:
387 return libyang::Schema_Node_Container{node}.presence() ? yang::NodeTypes::PresenceContainer : yang::NodeTypes::Container;
388 case LYS_LEAF:
389 return yang::NodeTypes::Leaf;
390 case LYS_LIST:
391 return yang::NodeTypes::List;
392 default:
Václav Kubernát2a141392020-02-18 17:12:32 +0100393 throw InvalidNodeException(); // FIXME: Implement all types.
Václav Kubernát34ee85a2020-02-18 17:12:12 +0100394 }
395}
396}
397
398yang::NodeTypes YangSchema::nodeType(const schemaPath_& location, const ModuleNodePair& node) const
399{
400 return impl_nodeType(getSchemaNode(location, node));
401}
402
403yang::NodeTypes YangSchema::nodeType(const std::string& path) const
404{
405 return impl_nodeType(getSchemaNode(path));
406}
Václav Kubernát1e09bd62020-02-17 15:13:38 +0100407
408std::optional<std::string> YangSchema::description(const std::string& path) const
409{
410 auto node = getSchemaNode(path.c_str());
411 return node->dsc() ? std::optional{node->dsc()} : std::nullopt;
412}
413
414std::optional<std::string> YangSchema::units(const std::string& path) const
415{
416 auto node = getSchemaNode(path.c_str());
417 if (node->nodetype() != LYS_LEAF) {
418 return std::nullopt;
419 }
420 libyang::Schema_Node_Leaf leaf{node};
421 auto units = leaf.units();
422
423 // A leaf can specify units as part of its definition.
424 if (units) {
425 return units;
426 }
427
428 // A typedef (or its parent typedefs) can specify units too. We'll use the first `units` we find.
429 for (auto parentTypedef = leaf.type()->der(); parentTypedef; parentTypedef = parentTypedef->type()->der()) {
430 units = parentTypedef->units();
431 if (units) {
432 return units;
433 }
434 }
435
436 return std::nullopt;
437}