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Václav Kubernátbddbb172018-06-13 16:27:39 +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 Kubernát9456b5c2019-10-02 21:14:52 +02009#include <boost/algorithm/string/predicate.hpp>
Václav Kubernátbddbb172018-06-13 16:27:39 +020010#include "static_schema.hpp"
11#include "utils.hpp"
12
Václav Kubernátbddbb172018-06-13 16:27:39 +020013StaticSchema::StaticSchema()
14{
Václav Kubernátabf52802020-05-19 01:31:17 +020015 m_nodes.emplace("/", std::unordered_map<std::string, NodeInfo>());
Václav Kubernátbddbb172018-06-13 16:27:39 +020016}
17
Václav Kubernátabf52802020-05-19 01:31:17 +020018const std::unordered_map<std::string, NodeInfo>& StaticSchema::children(const std::string& name) const
Václav Kubernátbddbb172018-06-13 16:27:39 +020019{
20 return m_nodes.at(name);
21}
22
Václav Kubernát75877de2019-11-20 17:43:02 +010023bool StaticSchema::isModule(const std::string& name) const
Václav Kubernátbddbb172018-06-13 16:27:39 +020024{
Václav Kubernát744f57f2018-06-29 22:46:26 +020025 return m_modules.find(name) != m_modules.end();
26}
27
Václav Kubernátbddbb172018-06-13 16:27:39 +020028void StaticSchema::addContainer(const std::string& location, const std::string& name, yang::ContainerTraits isPresence)
29{
Václav Kubernátabf52802020-05-19 01:31:17 +020030 m_nodes.at(location).emplace(name, NodeInfo{yang::container{isPresence}, yang::AccessType::Writable});
Václav Kubernátbddbb172018-06-13 16:27:39 +020031
32 //create a new set of children for the new node
33 std::string key = joinPaths(location, name);
Václav Kubernátabf52802020-05-19 01:31:17 +020034 m_nodes.emplace(key, std::unordered_map<std::string, NodeInfo>());
Václav Kubernátbddbb172018-06-13 16:27:39 +020035}
36
Václav Kubernáte7248b22020-06-26 15:38:59 +020037void StaticSchema::addRpc(const std::string& location, const std::string& name)
38{
39 m_nodes.at(location).emplace(name, NodeInfo{yang::rpc{}, yang::AccessType::Writable});
40
41 //create a new set of children for the new node
42 std::string key = joinPaths(location, name);
43 m_nodes.emplace(key, std::unordered_map<std::string, NodeInfo>());
44}
45
Václav Kubernát2db124c2020-05-28 21:58:36 +020046bool StaticSchema::listHasKey(const schemaPath_& listPath, const std::string& key) const
47{
48 return listKeys(listPath).count(key);
49}
50
Václav Kubernát2db124c2020-05-28 21:58:36 +020051std::string lastNodeOfSchemaPath(const std::string& path)
52{
53 std::string res = path;
54 if (auto pos = res.find_last_of('/'); pos != res.npos) {
55 res.erase(0, pos + 1);
56 }
57 return res;
58}
59
60const std::set<std::string> StaticSchema::listKeys(const schemaPath_& listPath) const
61{
62 auto listPathString = pathToSchemaString(listPath, Prefixes::Always);
63 const auto& child = children(stripLastNodeFromPath(listPathString)).at(lastNodeOfSchemaPath(listPathString));
64 const auto& list = std::get<yang::list>(child.m_nodeType);
65 return list.m_keys;
66}
67
Václav Kubernátbddbb172018-06-13 16:27:39 +020068void StaticSchema::addList(const std::string& location, const std::string& name, const std::set<std::string>& keys)
69{
Václav Kubernátabf52802020-05-19 01:31:17 +020070 m_nodes.at(location).emplace(name, NodeInfo{yang::list{keys}, yang::AccessType::Writable});
Václav Kubernátbddbb172018-06-13 16:27:39 +020071
Václav Kubernát1446fe12019-10-02 19:32:51 +020072 std::string key = joinPaths(location, name);
Václav Kubernátabf52802020-05-19 01:31:17 +020073 m_nodes.emplace(key, std::unordered_map<std::string, NodeInfo>());
Václav Kubernátbddbb172018-06-13 16:27:39 +020074}
75
Václav Kubernát3a99f002020-03-31 02:27:41 +020076std::set<identityRef_> StaticSchema::validIdentities(std::string_view module, std::string_view value)
Václav Kubernátbddbb172018-06-13 16:27:39 +020077{
Václav Kubernát222ecff2020-05-14 23:14:35 +020078 std::set<identityRef_> identities;
79 getIdentSet(identityRef_{std::string{module}, std::string{value}}, identities);
Václav Kubernát3a99f002020-03-31 02:27:41 +020080
Václav Kubernát222ecff2020-05-14 23:14:35 +020081 return identities;
Václav Kubernátbddbb172018-06-13 16:27:39 +020082}
83
Václav Kubernátabf52802020-05-19 01:31:17 +020084void StaticSchema::addLeaf(const std::string& location, const std::string& name, const yang::LeafDataType& type, const yang::AccessType accessType)
Václav Kubernátbddbb172018-06-13 16:27:39 +020085{
Václav Kubernátabf52802020-05-19 01:31:17 +020086 m_nodes.at(location).emplace(name, NodeInfo{yang::leaf{yang::TypeInfo{type, std::nullopt}}, accessType});
Václav Kubernáte69133a2019-11-01 19:01:34 +010087 std::string key = joinPaths(location, name);
Václav Kubernátabf52802020-05-19 01:31:17 +020088 m_nodes.emplace(key, std::unordered_map<std::string, NodeInfo>());
Václav Kubernát6a8d1d92019-04-24 20:30:36 +020089}
90
Václav Kubernát5b8a8f32020-05-20 00:57:22 +020091void StaticSchema::addLeafList(const std::string& location, const std::string& name, const yang::LeafDataType& type)
92{
93 m_nodes.at(location).emplace(name, NodeInfo{yang::leaflist{yang::TypeInfo{type, std::nullopt}}, yang::AccessType::Writable});
94 std::string key = joinPaths(location, name);
95 m_nodes.emplace(key, std::unordered_map<std::string, NodeInfo>());
96}
97
Václav Kubernát744f57f2018-06-29 22:46:26 +020098void StaticSchema::addModule(const std::string& name)
Václav Kubernátbddbb172018-06-13 16:27:39 +020099{
Václav Kubernát744f57f2018-06-29 22:46:26 +0200100 m_modules.emplace(name);
101}
Václav Kubernátbddbb172018-06-13 16:27:39 +0200102
Václav Kubernát222ecff2020-05-14 23:14:35 +0200103void StaticSchema::addIdentity(const std::optional<identityRef_>& base, const identityRef_& name)
Václav Kubernáteeb38842019-03-20 19:46:05 +0100104{
Václav Kubernát3a433232020-07-08 17:52:50 +0200105 if (base) {
Václav Kubernáteeb38842019-03-20 19:46:05 +0100106 m_identities.at(base.value()).emplace(name);
Václav Kubernát3a433232020-07-08 17:52:50 +0200107 }
Václav Kubernáteeb38842019-03-20 19:46:05 +0100108
Václav Kubernát222ecff2020-05-14 23:14:35 +0200109 m_identities.emplace(name, std::set<identityRef_>());
Václav Kubernáteeb38842019-03-20 19:46:05 +0100110}
Václav Kubernát744f57f2018-06-29 22:46:26 +0200111
Václav Kubernát222ecff2020-05-14 23:14:35 +0200112void StaticSchema::getIdentSet(const identityRef_& ident, std::set<identityRef_>& res) const
Václav Kubernáteeb38842019-03-20 19:46:05 +0100113{
114 res.insert(ident);
115 auto derivedIdentities = m_identities.at(ident);
116 for (auto it : derivedIdentities) {
117 getIdentSet(it, res);
118 }
119}
120
Václav Kubernát13b23d72020-04-16 21:49:51 +0200121yang::TypeInfo StaticSchema::leafType(const schemaPath_& location, const ModuleNodePair& node) const
Václav Kubernátbddbb172018-06-13 16:27:39 +0200122{
Václav Kubernátefcac932020-01-10 15:26:32 +0100123 std::string locationString = pathToSchemaString(location, Prefixes::Always);
Václav Kubernát5b8a8f32020-05-20 00:57:22 +0200124 auto nodeType = children(locationString).at(fullNodeName(location, node)).m_nodeType;
Václav Kubernát4d8a9c22020-05-26 23:56:10 +0200125 if (std::holds_alternative<yang::leaf>(nodeType)) {
126 return std::get<yang::leaf>(nodeType).m_type;
Václav Kubernát5b8a8f32020-05-20 00:57:22 +0200127 }
128
Václav Kubernát4d8a9c22020-05-26 23:56:10 +0200129 if (std::holds_alternative<yang::leaflist>(nodeType)) {
130 return std::get<yang::leaflist>(nodeType).m_type;
Václav Kubernát5b8a8f32020-05-20 00:57:22 +0200131 }
132
133 throw std::logic_error("StaticSchema::leafType: Path is not a leaf or a leaflist");
Václav Kubernát744f57f2018-06-29 22:46:26 +0200134}
135
Václav Kubernát13b23d72020-04-16 21:49:51 +0200136yang::TypeInfo StaticSchema::leafType(const std::string& path) const
Václav Kubernát9bf36852020-02-18 17:47:56 +0100137{
Václav Kubernát3a99f002020-03-31 02:27:41 +0200138 auto locationString = stripLastNodeFromPath(path);
139 auto node = lastNodeOfSchemaPath(path);
Václav Kubernát4d8a9c22020-05-26 23:56:10 +0200140 return std::get<yang::leaf>(children(locationString).at(node).m_nodeType).m_type;
Václav Kubernát989b5de2019-02-20 16:28:35 +0100141}
142
Václav Kubernát95b08872020-04-28 01:04:17 +0200143std::set<ModuleNodePair> StaticSchema::availableNodes(const boost::variant<dataPath_, schemaPath_, module_>& path, const Recursion recursion) const
Václav Kubernát744f57f2018-06-29 22:46:26 +0200144{
Václav Kubernát3a823f42020-04-29 23:40:21 +0200145 if (recursion == Recursion::Recursive) {
146 throw std::logic_error("Recursive StaticSchema::availableNodes is not implemented. It shouldn't be used in tests.");
147 }
148
Václav Kubernát95b08872020-04-28 01:04:17 +0200149 std::set<ModuleNodePair> res;
Václav Kubernát3a823f42020-04-29 23:40:21 +0200150 if (path.type() == typeid(module_)) {
151 auto topLevelNodes = m_nodes.at("");
152 auto modulePlusColon = boost::get<module_>(path).m_name + ":";
153 for (const auto& it : topLevelNodes) {
154 if (boost::algorithm::starts_with(it.first, modulePlusColon)) {
Václav Kubernát95b08872020-04-28 01:04:17 +0200155 res.insert(splitModuleNode(it.first));
Václav Kubernát3a823f42020-04-29 23:40:21 +0200156 }
157 }
158 return res;
159 }
160
Václav Kubernáte2d629f2020-04-28 11:01:54 +0200161 auto getTopLevelModule = [] (const auto& path) -> boost::optional<std::string> {
162 if (!path.m_nodes.empty()) {
163 return path.m_nodes.begin()->m_prefix.flat_map([] (const auto& module) {return boost::optional<std::string>(module.m_name);});
164 }
165
166 return boost::none;
167 };
168
169 std::string locationString;
170 boost::optional<std::string> topLevelModule;
171 if (path.type() == typeid(schemaPath_)) {
172 locationString = pathToSchemaString(boost::get<schemaPath_>(path), Prefixes::Always);
173 topLevelModule = getTopLevelModule(boost::get<schemaPath_>(path));
174 } else {
175 locationString = pathToSchemaString(boost::get<dataPath_>(path), Prefixes::Always);
176 topLevelModule = getTopLevelModule(boost::get<dataPath_>(path));
177 }
Václav Kubernát744f57f2018-06-29 22:46:26 +0200178
179 auto childrenRef = children(locationString);
180
Václav Kubernáte2d629f2020-04-28 11:01:54 +0200181 std::transform(childrenRef.begin(), childrenRef.end(), std::inserter(res, res.end()), [path, topLevelModule](const auto& it) {
182 auto res = splitModuleNode(it.first);
183 if (topLevelModule == res.first) {
184 res.first = boost::none;
185 }
186 return res;
Václav Kubernát95b08872020-04-28 01:04:17 +0200187 });
Václav Kubernát744f57f2018-06-29 22:46:26 +0200188 return res;
Václav Kubernátbddbb172018-06-13 16:27:39 +0200189}
Václav Kubernát9456b5c2019-10-02 21:14:52 +0200190
Václav Kubernát19a368b2020-05-27 00:05:23 +0200191struct impl_nodeType {
192
193 yang::NodeTypes operator()(const yang::container& cont)
194 {
195 if (cont.m_presence == yang::ContainerTraits::Presence) {
196 return yang::NodeTypes::PresenceContainer;
197 }
198 return yang::NodeTypes::Container;
199 }
200 yang::NodeTypes operator()(const yang::list&)
201 {
202 return yang::NodeTypes::List;
203 }
204 yang::NodeTypes operator()(const yang::leaf&)
205 {
206 return yang::NodeTypes::Leaf;
207
208 }
209 yang::NodeTypes operator()(const yang::leaflist&)
210 {
211 return yang::NodeTypes::LeafList;
212 }
Václav Kubernáte7248b22020-06-26 15:38:59 +0200213
214 yang::NodeTypes operator()(const yang::rpc)
215 {
216 return yang::NodeTypes::Rpc;
217 }
Václav Kubernát19a368b2020-05-27 00:05:23 +0200218};
219
Václav Kubernát34ee85a2020-02-18 17:12:12 +0100220yang::NodeTypes StaticSchema::nodeType(const schemaPath_& location, const ModuleNodePair& node) const
221{
222 std::string locationString = pathToSchemaString(location, Prefixes::Always);
223 auto fullName = fullNodeName(location, node);
224 try {
225 auto targetNode = children(locationString).at(fullName);
226
Václav Kubernát19a368b2020-05-27 00:05:23 +0200227 return std::visit(impl_nodeType{}, targetNode.m_nodeType);
Václav Kubernát34ee85a2020-02-18 17:12:12 +0100228 } catch (std::out_of_range&) {
229 throw InvalidNodeException();
230 }
231}
232
Václav Kubernátabf52802020-05-19 01:31:17 +0200233std::string fullNodeName(const std::string& location, const std::string& node)
234{
235 // If the node already contains a module name, just return it.
236 if (node.find_first_of(':') != std::string::npos) {
237 return node;
238 }
239
240 // Otherwise take the module name from the first node of location.
241 return location.substr(location.find_first_not_of('/'), location.find_first_of(':') - 1) + ":" + node;
242}
243
244bool StaticSchema::isConfig(const std::string& leafPath) const
245{
246 auto locationString = stripLastNodeFromPath(leafPath);
247
248 auto node = fullNodeName(locationString, lastNodeOfSchemaPath(leafPath));
249 return children(locationString).at(node).m_configType == yang::AccessType::Writable;
250}
251
Václav Kubernát1e09bd62020-02-17 15:13:38 +0100252std::optional<std::string> StaticSchema::description([[maybe_unused]] const std::string& path) const
253{
254 throw std::runtime_error{"StaticSchema::description not implemented"};
255}
256
Václav Kubernáta1c4c9e2020-04-22 00:37:52 +0200257yang::Status StaticSchema::status([[maybe_unused]] const std::string& location) const
258{
259 throw std::runtime_error{"Internal error: StaticSchema::status(std::string) not implemented. The tests should not have called this overload."};
260}
261
Václav Kubernáte811bfa2020-05-29 02:25:20 +0200262yang::NodeTypes StaticSchema::nodeType(const std::string& path) const
Václav Kubernát34ee85a2020-02-18 17:12:12 +0100263{
Václav Kubernáte811bfa2020-05-29 02:25:20 +0200264 auto locationString = stripLastNodeFromPath(path);
265
266 auto node = fullNodeName(locationString, lastNodeOfSchemaPath(path));
267 return std::visit(impl_nodeType{}, children(locationString).at(node).m_nodeType);
Václav Kubernát34ee85a2020-02-18 17:12:12 +0100268}
Václav Kubernátad87ece2020-02-19 15:20:56 +0100269
Václav Kubernátbd5e3c22020-02-19 15:22:00 +0100270std::string StaticSchema::leafrefPath([[maybe_unused]] const std::string& leafrefPath) const
271{
272 throw std::runtime_error{"Internal error: StaticSchema::leafrefPath(std::string) not implemented. The tests should not have called this overload."};
273}
Václav Kubernátc3866792020-02-20 14:12:56 +0100274
275bool StaticSchema::leafIsKey([[maybe_unused]] const std::string& leafPath) const
276{
277 throw std::runtime_error{"Internal error: StaticSchema::leafIsKey(std::string) not implemented. The tests should not have called this overload."};
278}
Václav Kubernát6fcd0282020-02-21 16:33:08 +0100279
280std::optional<std::string> StaticSchema::leafTypeName([[maybe_unused]] const std::string& path) const
281{
282 throw std::runtime_error{"Internal error: StaticSchema::leafTypeName(std::string) not implemented. The tests should not have called this overload."};
283}
Václav Kubernát0599e9f2020-04-21 09:51:33 +0200284
Václav Kubernátb1a75c62020-04-21 15:20:16 +0200285std::optional<std::string> StaticSchema::defaultValue([[maybe_unused]] const std::string& leafPath) const
286{
287 throw std::runtime_error{"Internal error: StaticSchema::defaultValue(std::string) not implemented. The tests should not have called this overload."};
288}