Chromium Code Reviews
chromiumcodereview-hr@appspot.gserviceaccount.com (chromiumcodereview-hr) | Please choose your nickname with Settings | Help | Chromium Project | Gerrit Changes | Sign out
(147)

Side by Side Diff: chrome/browser/chromeos/cros/onc_network_parser.cc

Issue 8759014: Add ONC VPN support for OpenVPN and L2TP/IPsec VPNs (Closed) Base URL: svn://svn.chromium.org/chrome/trunk/src/
Patch Set: '' Created 9 years ago
Use n/p to move between diff chunks; N/P to move between comments. Draft comments are only viewable by you.
Jump to:
View unified diff | Download patch | Annotate | Revision Log
OLDNEW
1 // Copyright (c) 2011 The Chromium Authors. All rights reserved. 1 // Copyright (c) 2011 The Chromium Authors. All rights reserved.
2 // Use of this source code is governed by a BSD-style license that can be 2 // Use of this source code is governed by a BSD-style license that can be
3 // found in the LICENSE file. 3 // found in the LICENSE file.
4 4
5 #include "chrome/browser/chromeos/cros/onc_network_parser.h" 5 #include "chrome/browser/chromeos/cros/onc_network_parser.h"
6 6
7 #include "base/base64.h" 7 #include "base/base64.h"
8 #include "base/json/json_value_serializer.h" 8 #include "base/json/json_value_serializer.h"
9 #include "base/json/json_writer.h" // for debug output only.
9 #include "base/stringprintf.h" 10 #include "base/stringprintf.h"
10 #include "base/values.h" 11 #include "base/values.h"
11 #include "chrome/browser/chromeos/cros/native_network_constants.h" 12 #include "chrome/browser/chromeos/cros/native_network_constants.h"
12 #include "chrome/browser/chromeos/cros/native_network_parser.h" 13 #include "chrome/browser/chromeos/cros/native_network_parser.h"
13 #include "chrome/browser/chromeos/cros/network_library.h" 14 #include "chrome/browser/chromeos/cros/network_library.h"
14 #include "net/base/cert_database.h" 15 #include "net/base/cert_database.h"
15 #include "net/base/crypto_module.h" 16 #include "net/base/crypto_module.h"
16 #include "net/base/net_errors.h" 17 #include "net/base/net_errors.h"
17 #include "net/base/x509_certificate.h" 18 #include "net/base/x509_certificate.h"
18 #include "third_party/cros_system_api/dbus/service_constants.h" 19 #include "third_party/cros_system_api/dbus/service_constants.h"
19 20
20 namespace chromeos { 21 namespace chromeos {
21 22
22 // Local constants. 23 // Local constants.
23 namespace { 24 namespace {
24 25
25 EnumMapper<PropertyIndex>::Pair property_index_table[] = { 26 const base::Value::Type TYPE_BOOLEAN = base::Value::TYPE_BOOLEAN;
26 { "GUID", PROPERTY_INDEX_GUID }, 27 const base::Value::Type TYPE_DICTIONARY = base::Value::TYPE_DICTIONARY;
27 { "Name", PROPERTY_INDEX_NAME }, 28 const base::Value::Type TYPE_INTEGER = base::Value::TYPE_INTEGER;
28 { "Remove", PROPERTY_INDEX_REMOVE }, 29 const base::Value::Type TYPE_LIST = base::Value::TYPE_LIST;
29 { "ProxyURL", PROPERTY_INDEX_PROXY_CONFIG }, 30 const base::Value::Type TYPE_STRING = base::Value::TYPE_STRING;
30 { "Type", PROPERTY_INDEX_TYPE }, 31
31 { "SSID", PROPERTY_INDEX_SSID }, 32 // Only used currently to keep NetworkParser superclass happy.
32 { "Passphrase", PROPERTY_INDEX_PASSPHRASE }, 33 EnumMapper<PropertyIndex>::Pair network_configuration_table[] = {
33 { "AutoConnect", PROPERTY_INDEX_AUTO_CONNECT }, 34 { "GUID", PROPERTY_INDEX_GUID }
34 { "HiddenSSID", PROPERTY_INDEX_HIDDEN_SSID }, 35 };
35 { "Security", PROPERTY_INDEX_SECURITY }, 36
36 { "EAP", PROPERTY_INDEX_EAP }, 37 OncValueSignature network_configuration_signature[] = {
37 { "Outer", PROPERTY_INDEX_EAP_METHOD }, 38 // TODO(crosbug.com/23673): Support Ethernet settings.
38 { "Inner", PROPERTY_INDEX_EAP_PHASE_2_AUTH }, 39 { "GUID", PROPERTY_INDEX_GUID, TYPE_STRING },
39 { "UseSystemCAs", PROPERTY_INDEX_EAP_USE_SYSTEM_CAS }, 40 { "Name", PROPERTY_INDEX_NAME, TYPE_STRING },
40 { "ServerCARef", PROPERTY_INDEX_EAP_CA_CERT }, 41 // TODO(crosbug.com/23674): Support ProxySettings.
41 { "ClientCARef", PROPERTY_INDEX_EAP_CLIENT_CERT }, 42 // TODO(crosbug.com/23604): Handle removing networks.
42 { "ClientCertPattern", PROPERTY_INDEX_EAP_CLIENT_CERT_PATTERN }, 43 { "Remove", PROPERTY_INDEX_ONC_REMOVE, TYPE_BOOLEAN },
43 { "Identity", PROPERTY_INDEX_EAP_IDENTITY }, 44 { "Type", PROPERTY_INDEX_TYPE, TYPE_STRING },
44 { "Password", PROPERTY_INDEX_EAP_PASSWORD }, 45 { "WiFi", PROPERTY_INDEX_ONC_WIFI, TYPE_DICTIONARY },
45 { "AnonymousIdentity", PROPERTY_INDEX_EAP_ANONYMOUS_IDENTITY }, 46 { "VPN", PROPERTY_INDEX_ONC_VPN, TYPE_DICTIONARY }
47 };
48
49 OncValueSignature wifi_signature[] = {
50 { "AutoConnect", PROPERTY_INDEX_AUTO_CONNECT, TYPE_BOOLEAN },
51 { "EAP", PROPERTY_INDEX_EAP, TYPE_DICTIONARY },
52 { "HiddenSSID", PROPERTY_INDEX_HIDDEN_SSID, TYPE_BOOLEAN },
53 { "Passphrase", PROPERTY_INDEX_PASSPHRASE, TYPE_STRING },
54 { "ProxyURL", PROPERTY_INDEX_PROXY_CONFIG, TYPE_STRING },
55 { "Security", PROPERTY_INDEX_SECURITY, TYPE_STRING },
56 { "SSID", PROPERTY_INDEX_SSID, TYPE_STRING },
57 { NULL }
58 };
59
60 OncValueSignature eap_signature[] = {
61 { "AnonymousIdentity", PROPERTY_INDEX_EAP_ANONYMOUS_IDENTITY, TYPE_STRING },
62 { "ClientCertPattern", PROPERTY_INDEX_ONC_CLIENT_CERT_PATTERN,
63 TYPE_DICTIONARY },
64 { "ClientCertRef", PROPERTY_INDEX_ONC_CLIENT_CERT_REF, TYPE_STRING },
65 { "ClientCertType", PROPERTY_INDEX_ONC_CLIENT_CERT_TYPE, TYPE_STRING },
66 { "Identity", PROPERTY_INDEX_EAP_IDENTITY, TYPE_STRING },
67 { "Inner", PROPERTY_INDEX_EAP_PHASE_2_AUTH, TYPE_STRING },
68 { "Outer", PROPERTY_INDEX_EAP_METHOD, TYPE_STRING },
69 { "Password", PROPERTY_INDEX_EAP_PASSWORD, TYPE_STRING },
70 { "ServerCARef", PROPERTY_INDEX_EAP_CA_CERT, TYPE_STRING },
71 { "UseSystemCAs", PROPERTY_INDEX_EAP_USE_SYSTEM_CAS, TYPE_BOOLEAN },
72 { NULL }
73 };
74
75 OncValueSignature vpn_signature[] = {
76 { "Host", PROPERTY_INDEX_PROVIDER_HOST, TYPE_STRING },
77 { "IPsec", PROPERTY_INDEX_ONC_IPSEC, TYPE_DICTIONARY },
78 { "L2TP", PROPERTY_INDEX_ONC_L2TP, TYPE_DICTIONARY },
79 { "OpenVPN", PROPERTY_INDEX_ONC_OPENVPN, TYPE_DICTIONARY },
80 { "Type", PROPERTY_INDEX_PROVIDER_TYPE, TYPE_STRING },
81 { NULL }
82 };
83
84 OncValueSignature ipsec_signature[] = {
85 { "AuthenticationType", PROPERTY_INDEX_IPSEC_AUTHENTICATIONTYPE,
86 TYPE_STRING },
87 { "Group", PROPERTY_INDEX_L2TPIPSEC_GROUP_NAME, TYPE_STRING },
88 { "IKEVersion", PROPERTY_INDEX_IPSEC_IKEVERSION, TYPE_INTEGER },
89 { "ClientCertPattern", PROPERTY_INDEX_ONC_CLIENT_CERT_PATTERN,
90 TYPE_DICTIONARY },
91 { "ClientCertRef", PROPERTY_INDEX_ONC_CLIENT_CERT_REF, TYPE_STRING },
92 { "ClientCertType", PROPERTY_INDEX_ONC_CLIENT_CERT_TYPE, TYPE_STRING },
93 // Note: EAP and XAUTH not yet supported.
94 { "PSK", PROPERTY_INDEX_L2TPIPSEC_PSK, TYPE_STRING },
95 { "SaveCredentials", PROPERTY_INDEX_SAVE_CREDENTIALS, TYPE_BOOLEAN },
96 { "ServerCARef", PROPERTY_INDEX_L2TPIPSEC_CA_CERT_NSS, TYPE_STRING },
97 { NULL }
98 };
99
100 OncValueSignature l2tp_signature[] = {
101 { "Password", PROPERTY_INDEX_L2TPIPSEC_PASSWORD, TYPE_STRING },
102 { "SaveCredentials", PROPERTY_INDEX_SAVE_CREDENTIALS, TYPE_BOOLEAN },
103 { "Username", PROPERTY_INDEX_L2TPIPSEC_USER, TYPE_STRING },
104 { NULL }
105 };
106
107 OncValueSignature openvpn_signature[] = {
108 { "Auth", PROPERTY_INDEX_OPEN_VPN_AUTH, TYPE_STRING },
109 { "AuthRetry", PROPERTY_INDEX_OPEN_VPN_AUTHRETRY, TYPE_STRING },
110 { "AuthNoCache", PROPERTY_INDEX_OPEN_VPN_AUTHNOCACHE, TYPE_BOOLEAN },
111 { "Cipher", PROPERTY_INDEX_OPEN_VPN_CIPHER, TYPE_STRING },
112 { "ClientCertPattern", PROPERTY_INDEX_ONC_CLIENT_CERT_PATTERN,
113 TYPE_DICTIONARY },
114 { "ClientCertRef", PROPERTY_INDEX_ONC_CLIENT_CERT_REF, TYPE_STRING },
115 { "ClientCertType", PROPERTY_INDEX_ONC_CLIENT_CERT_TYPE, TYPE_STRING },
116 { "CompLZO", PROPERTY_INDEX_OPEN_VPN_COMPLZO, TYPE_STRING },
117 { "CompNoAdapt", PROPERTY_INDEX_OPEN_VPN_COMPNOADAPT, TYPE_BOOLEAN },
118 { "KeyDirection", PROPERTY_INDEX_OPEN_VPN_KEYDIRECTION, TYPE_STRING },
119 { "NsCertType", PROPERTY_INDEX_OPEN_VPN_NSCERTTYPE, TYPE_STRING },
120 { "Password", PROPERTY_INDEX_OPEN_VPN_PASSWORD, TYPE_STRING },
121 { "Port", PROPERTY_INDEX_OPEN_VPN_PORT, TYPE_INTEGER },
122 { "Proto", PROPERTY_INDEX_OPEN_VPN_PROTO, TYPE_STRING },
123 { "PushPeerInfo", PROPERTY_INDEX_OPEN_VPN_PUSHPEERINFO, TYPE_BOOLEAN },
124 { "RemoteCertEKU", PROPERTY_INDEX_OPEN_VPN_REMOTECERTEKU, TYPE_STRING },
125 { "RemoteCertKU", PROPERTY_INDEX_OPEN_VPN_REMOTECERTKU, TYPE_LIST },
126 { "RemoteCertTLS", PROPERTY_INDEX_OPEN_VPN_REMOTECERTTLS, TYPE_STRING },
127 { "RenegSec", PROPERTY_INDEX_OPEN_VPN_RENEGSEC, TYPE_INTEGER },
128 { "SaveCredentials", PROPERTY_INDEX_SAVE_CREDENTIALS, TYPE_BOOLEAN },
129 { "ServerCARef", PROPERTY_INDEX_OPEN_VPN_CACERT, TYPE_STRING },
130 { "ServerCertRef", PROPERTY_INDEX_OPEN_VPN_CERT, TYPE_STRING },
131 { "ServerPollTimeout", PROPERTY_INDEX_OPEN_VPN_SERVERPOLLTIMEOUT,
132 TYPE_INTEGER },
133 { "Shaper", PROPERTY_INDEX_OPEN_VPN_SHAPER, TYPE_INTEGER },
134 { "StaticChallenge", PROPERTY_INDEX_OPEN_VPN_STATICCHALLENGE, TYPE_STRING },
135 { "TLSAuthContents", PROPERTY_INDEX_OPEN_VPN_TLSAUTHCONTENTS, TYPE_STRING },
136 { "TLSRemote", PROPERTY_INDEX_OPEN_VPN_TLSREMOTE, TYPE_STRING },
137 { "Username", PROPERTY_INDEX_OPEN_VPN_USER, TYPE_STRING },
138 { NULL }
46 }; 139 };
47 140
48 // Serve the singleton mapper instance. 141 // Serve the singleton mapper instance.
49 const EnumMapper<PropertyIndex>* get_onc_mapper() { 142 const EnumMapper<PropertyIndex>* get_onc_mapper() {
50 CR_DEFINE_STATIC_LOCAL(const EnumMapper<PropertyIndex>, mapper, 143 CR_DEFINE_STATIC_LOCAL(const EnumMapper<PropertyIndex>, mapper,
51 (property_index_table, 144 (network_configuration_table,
52 arraysize(property_index_table), 145 arraysize(network_configuration_table),
53 PROPERTY_INDEX_UNKNOWN)); 146 PROPERTY_INDEX_UNKNOWN));
54 return &mapper; 147 return &mapper;
55 } 148 }
56 149
57 ConnectionType ParseNetworkType(const std::string& type) { 150 ConnectionType ParseNetworkType(const std::string& type) {
58 static EnumMapper<ConnectionType>::Pair table[] = { 151 static EnumMapper<ConnectionType>::Pair table[] = {
59 { "WiFi", TYPE_WIFI }, 152 { "WiFi", TYPE_WIFI },
60 { "VPN", TYPE_VPN }, 153 { "VPN", TYPE_VPN },
61 }; 154 };
62 CR_DEFINE_STATIC_LOCAL(EnumMapper<ConnectionType>, parser, 155 CR_DEFINE_STATIC_LOCAL(EnumMapper<ConnectionType>, parser,
63 (table, arraysize(table), TYPE_UNKNOWN)); 156 (table, arraysize(table), TYPE_UNKNOWN));
64 return parser.Get(type); 157 return parser.Get(type);
65 } 158 }
66 159
67 } // namespace 160 } // namespace
68 161
69 // -------------------- OncNetworkParser -------------------- 162 // -------------------- OncNetworkParser --------------------
70 163
71 OncNetworkParser::OncNetworkParser(const std::string& onc_blob) 164 OncNetworkParser::OncNetworkParser(const std::string& onc_blob)
72 : NetworkParser(get_onc_mapper()), 165 : NetworkParser(get_onc_mapper()),
73 network_configs_(NULL), 166 network_configs_(NULL),
74 certificates_(NULL) { 167 certificates_(NULL) {
168 VLOG(2) << __func__ << ": OncNetworkParser called on " << onc_blob;
75 JSONStringValueSerializer deserializer(onc_blob); 169 JSONStringValueSerializer deserializer(onc_blob);
76 deserializer.set_allow_trailing_comma(true); 170 deserializer.set_allow_trailing_comma(true);
77 scoped_ptr<base::Value> root(deserializer.Deserialize(NULL, &parse_error_)); 171 scoped_ptr<base::Value> root(deserializer.Deserialize(NULL, &parse_error_));
78 172
79 if (!root.get() || root->GetType() != base::Value::TYPE_DICTIONARY) { 173 if (!root.get() || root->GetType() != base::Value::TYPE_DICTIONARY) {
80 LOG(WARNING) << "OncNetworkParser received bad ONC file: " << parse_error_; 174 LOG(WARNING) << "OncNetworkParser received bad ONC file: " << parse_error_;
81 } else { 175 } else {
82 root_dict_.reset(static_cast<DictionaryValue*>(root.release())); 176 root_dict_.reset(static_cast<DictionaryValue*>(root.release()));
83 // At least one of NetworkConfigurations or Certificates is required. 177 // At least one of NetworkConfigurations or Certificates is required.
84 if (!root_dict_->GetList("NetworkConfigurations", &network_configs_) && 178 bool has_network_configurations =
85 !root_dict_->GetList("Certificates", &certificates_)) { 179 root_dict_->GetList("NetworkConfigurations", &network_configs_);
180 bool has_certificates =
181 root_dict_->GetList("Certificates", &certificates_);
182 VLOG(2) << "ONC file has " << GetNetworkConfigsSize() << " networks and "
183 << GetCertificatesSize() << " certificates";
184 if (!has_network_configurations || !has_certificates) {
86 LOG(WARNING) << "ONC file has no NetworkConfigurations or Certificates."; 185 LOG(WARNING) << "ONC file has no NetworkConfigurations or Certificates.";
87 } 186 }
88 } 187 }
89 } 188 }
90 189
91 OncNetworkParser::OncNetworkParser() 190 OncNetworkParser::OncNetworkParser()
92 : NetworkParser(get_onc_mapper()), 191 : NetworkParser(get_onc_mapper()),
93 network_configs_(NULL), 192 network_configs_(NULL),
94 certificates_(NULL) { 193 certificates_(NULL) {
95 } 194 }
(...skipping 15 matching lines...) Expand all
111 } 210 }
112 211
113 bool OncNetworkParser::ParseCertificate(int cert_index) { 212 bool OncNetworkParser::ParseCertificate(int cert_index) {
114 CHECK(certificates_); 213 CHECK(certificates_);
115 CHECK(static_cast<size_t>(cert_index) < certificates_->GetSize()); 214 CHECK(static_cast<size_t>(cert_index) < certificates_->GetSize());
116 CHECK(cert_index >= 0); 215 CHECK(cert_index >= 0);
117 base::DictionaryValue* certificate = NULL; 216 base::DictionaryValue* certificate = NULL;
118 certificates_->GetDictionary(cert_index, &certificate); 217 certificates_->GetDictionary(cert_index, &certificate);
119 CHECK(certificate); 218 CHECK(certificate);
120 219
220 if (VLOG_IS_ON(2)) {
221 std::string certificate_json;
222 base::JSONWriter::Write(static_cast<base::Value*>(certificate),
223 true, &certificate_json);
224 VLOG(2) << "Parsing certificate at index " << cert_index
225 << ": " << certificate_json;
226 }
227
121 // Get out the attributes of the given cert. 228 // Get out the attributes of the given cert.
122 std::string guid; 229 std::string guid;
123 bool remove = false; 230 bool remove = false;
124 if (!certificate->GetString("GUID", &guid) || guid.empty()) { 231 if (!certificate->GetString("GUID", &guid) || guid.empty()) {
125 LOG(WARNING) << "ONC File: certificate missing identifier at index" 232 LOG(WARNING) << "ONC File: certificate missing identifier at index"
126 << cert_index; 233 << cert_index;
127 return false; 234 return false;
128 } 235 }
129 236
130 if (!certificate->GetBoolean("Remove", &remove)) 237 if (!certificate->GetBoolean("Remove", &remove))
(...skipping 17 matching lines...) Expand all
148 << " at index " << cert_index; 255 << " at index " << cert_index;
149 return false; 256 return false;
150 } 257 }
151 258
152 Network* OncNetworkParser::ParseNetwork(int n) { 259 Network* OncNetworkParser::ParseNetwork(int n) {
153 if (!network_configs_) 260 if (!network_configs_)
154 return NULL; 261 return NULL;
155 DictionaryValue* info = NULL; 262 DictionaryValue* info = NULL;
156 if (!network_configs_->GetDictionary(n, &info)) 263 if (!network_configs_->GetDictionary(n, &info))
157 return NULL; 264 return NULL;
158 // Parse Open Network Configuration blob into a temporary Network object. 265 if (VLOG_IS_ON(2)) {
266 std::string network_json;
267 base::JSONWriter::Write(static_cast<base::Value*>(info),
268 true, &network_json);
269 VLOG(2) << "Parsing network at index " << n
270 << ": " << network_json;
271 }
272
159 return CreateNetworkFromInfo(std::string(), *info); 273 return CreateNetworkFromInfo(std::string(), *info);
160 } 274 }
161 275
162 Network* OncNetworkParser::CreateNetworkFromInfo( 276 Network* OncNetworkParser::CreateNetworkFromInfo(
163 const std::string& service_path, 277 const std::string& service_path,
164 const DictionaryValue& info) { 278 const DictionaryValue& info) {
165 ConnectionType type = ParseTypeFromDictionary(info); 279 ConnectionType type = ParseTypeFromDictionary(info);
166 if (type == TYPE_UNKNOWN) // Return NULL if cannot parse network type. 280 if (type == TYPE_UNKNOWN) // Return NULL if cannot parse network type.
167 return NULL; 281 return NULL;
168 scoped_ptr<Network> network(CreateNewNetwork(type, service_path)); 282 scoped_ptr<Network> network(CreateNewNetwork(type, service_path));
169 // Update property with native value for type. 283 if (!ParseNestedObject(network.get(),
170 std::string str = NativeNetworkParser::network_type_mapper()->GetKey(type); 284 "NetworkConfiguration",
171 scoped_ptr<StringValue> val(Value::CreateStringValue(str)); 285 static_cast<const base::Value&>(info),
172 network->UpdatePropertyMap(PROPERTY_INDEX_TYPE, *val.get()); 286 network_configuration_signature,
173 287 ParseNetworkConfigurationValue)) {
174 // Get the child dictionary with properties for the network. 288 LOG(WARNING) << "Network " << network->name() << " had problems.";
175 // And copy all the values from this network type dictionary to parent.
176 DictionaryValue* dict;
177 if (!info.GetDictionary(GetTypeFromDictionary(info), &dict))
178 return NULL; 289 return NULL;
179 290 }
180 // Add GUID from the parent dictionary. 291 if (VLOG_IS_ON(2)) {
181 dict->SetString("GUID", GetGuidFromDictionary(info)); 292 VLOG(2) << "Created Network '" << network->name()
182 293 << "' from info. Path:" << service_path
183 UpdateNetworkFromInfo(*dict, network.get()); 294 << " Type:" << ConnectionTypeToString(type);
184 VLOG(2) << "Created Network '" << network->name() 295 }
185 << "' from info. Path:" << service_path
186 << " Type:" << ConnectionTypeToString(type);
187 return network.release(); 296 return network.release();
188 } 297 }
189 298
190 Network* OncNetworkParser::CreateNewNetwork( 299 Network* OncNetworkParser::CreateNewNetwork(
191 ConnectionType type, const std::string& service_path) { 300 ConnectionType type, const std::string& service_path) {
192 Network* network = NetworkParser::CreateNewNetwork(type, service_path); 301 Network* network = NetworkParser::CreateNewNetwork(type, service_path);
193 if (network) { 302 if (network) {
194 if (type == TYPE_WIFI) 303 if (type == TYPE_WIFI)
195 network->SetNetworkParser(new OncWifiNetworkParser()); 304 network->SetNetworkParser(new OncWifiNetworkParser());
196 else if (type == TYPE_VPN) 305 else if (type == TYPE_VPN)
(...skipping 90 matching lines...) Expand 10 before | Expand all | Expand 10 after
287 << net::ErrorToString(failures[0].net_error) 396 << net::ErrorToString(failures[0].net_error)
288 << ") importing " << cert_type << " certificate at index " 397 << ") importing " << cert_type << " certificate at index "
289 << cert_index; 398 << cert_index;
290 return false; 399 return false;
291 } 400 }
292 if (!success) { 401 if (!success) {
293 LOG(WARNING) << "ONC File: Unknown error importing " << cert_type 402 LOG(WARNING) << "ONC File: Unknown error importing " << cert_type
294 << " certificate at index " << cert_index; 403 << " certificate at index " << cert_index;
295 return false; 404 return false;
296 } 405 }
406 VLOG(2) << "Successfully imported server/ca certificate at index "
407 << cert_index;
297 return true; 408 return true;
298 } 409 }
299 410
300 bool OncNetworkParser::ParseClientCertificate( 411 bool OncNetworkParser::ParseClientCertificate(
301 int cert_index, 412 int cert_index,
302 base::DictionaryValue* certificate) { 413 base::DictionaryValue* certificate) {
303 net::CertDatabase cert_database; 414 net::CertDatabase cert_database;
304 std::string pkcs12_data; 415 std::string pkcs12_data;
305 if (!certificate->GetString("PKCS12", &pkcs12_data) || 416 if (!certificate->GetString("PKCS12", &pkcs12_data) ||
306 pkcs12_data.empty()) { 417 pkcs12_data.empty()) {
(...skipping 12 matching lines...) Expand all
319 // Since this has a private key, always use the private module. 430 // Since this has a private key, always use the private module.
320 scoped_refptr<net::CryptoModule> module(cert_database.GetPrivateModule()); 431 scoped_refptr<net::CryptoModule> module(cert_database.GetPrivateModule());
321 int result = cert_database.ImportFromPKCS12( 432 int result = cert_database.ImportFromPKCS12(
322 module.get(), decoded_pkcs12, string16(), false); 433 module.get(), decoded_pkcs12, string16(), false);
323 if (result != net::OK) { 434 if (result != net::OK) {
324 LOG(WARNING) << "ONC File: Unable to import Client certificate at index " 435 LOG(WARNING) << "ONC File: Unable to import Client certificate at index "
325 << cert_index 436 << cert_index
326 << " (error " << net::ErrorToString(result) << ")."; 437 << " (error " << net::ErrorToString(result) << ").";
327 return false; 438 return false;
328 } 439 }
440 VLOG(2) << "Successfully imported client certificate at index "
441 << cert_index;
329 return true; 442 return true;
330 } 443 }
331 444
445 bool OncNetworkParser::ParseNestedObject(Network* network,
446 const std::string& onc_type,
447 const base::Value& value,
448 OncValueSignature* signature,
449 ParserPointer parser) {
450 bool any_errors = false;
451 if (!value.IsType(base::Value::TYPE_DICTIONARY)) {
452 VLOG(1) << network->name() << ": expected object of type " << onc_type;
453 return false;
454 }
455 VLOG(2) << "Parsing nested object of type " << onc_type;
456 const DictionaryValue* dict = NULL;
457 value.GetAsDictionary(&dict);
458 for (DictionaryValue::key_iterator iter = dict->begin_keys();
459 iter != dict->end_keys(); ++iter) {
460 const std::string& key = *iter;
461 base::Value* inner_value = NULL;
462 dict->GetWithoutPathExpansion(key, &inner_value);
463 int field_index;
464 for (field_index = 0; signature[field_index].field != NULL; ++field_index) {
465 if (key == signature[field_index].field)
466 break;
467 }
468 if (signature[field_index].field == NULL) {
469 VLOG(1) << network->name() << ": unexpected field: "
470 << key << ", in type: " << onc_type;
471 any_errors = true;
472 continue;
473 }
474 if (!inner_value->IsType(signature[field_index].type)) {
475 VLOG(1) << network->name() << ": field with wrong type: " << key
476 << ", actual type: " << inner_value->GetType()
477 << ", expected type: " << signature[field_index].type;
478 any_errors = true;
479 continue;
480 }
481 PropertyIndex index = signature[field_index].index;
482 // We need to UpdatePropertyMap now since parser might want to
483 // change the mapped value.
484 network->UpdatePropertyMap(index, *inner_value);
485 if (!parser(this, index, *inner_value, network)) {
486 VLOG(1) << network->name() << ": problem(s) with field: " << key;
487 any_errors = true;
488 continue;
489 }
490 if (VLOG_IS_ON(2)) {
491 std::string value_json;
492 base::JSONWriter::Write(inner_value, true, &value_json);
493 VLOG(2) << network->name() << ": Successfully parsed [" << key
494 << "(" << index << ")] = " << value_json;
495 }
496 }
497 return !any_errors;
498 }
499
500 // static
501 bool OncNetworkParser::CheckNetworkType(Network* network,
502 ConnectionType expected,
503 const std::string& onc_type) {
504 if (expected != network->type()) {
505 VLOG(2) << network->name()
506 << ": " << onc_type << " field unexpected for this type network";
507 return false;
508 }
509 return true;
510 }
511
512 // static
513 std::string OncNetworkParser::GetStringValue(const base::Value& value) {
514 std::string string_value;
515 value.GetAsString(&string_value);
516 return string_value;
517 }
518
519 // static
520 const bool OncNetworkParser::GetBooleanValue(const base::Value& value) {
521 bool bool_value = false;
522 value.GetAsBoolean(&bool_value);
523 return bool_value;
524 }
525
526 // static
527 std::string OncNetworkParser::ConvertValueToString(
528 const base::Value& value) {
529 std::string value_json;
530 base::JSONWriter::Write(&value, false, &value_json);
531 return value_json;
532 }
533
534 // static
535 bool OncNetworkParser::ParseNetworkConfigurationValue(
536 OncNetworkParser* parser,
537 PropertyIndex index,
538 const base::Value& value,
539 Network* network) {
540 switch (index) {
541 case PROPERTY_INDEX_ONC_WIFI: {
542 return parser->ParseNestedObject(network,
543 "WiFi",
544 value,
545 wifi_signature,
546 OncWifiNetworkParser::ParseWifiValue);
547 }
548 case PROPERTY_INDEX_ONC_VPN: {
549 if (!CheckNetworkType(network, TYPE_VPN, "VPN"))
550 return false;
551 VirtualNetwork* virtual_network = static_cast<VirtualNetwork*>(network);
552 // Got the "VPN" field. Immediately store the VPN.Type field
553 // value so that we can properly validate fields in the VPN
554 // object based on the type.
555 const DictionaryValue* dict = NULL;
556 CHECK(value.GetAsDictionary(&dict));
557 std::string provider_type_string;
558 if (!dict->GetString("Type", &provider_type_string)) {
559 VLOG(1) << network->name() << ": VPN.Type is missing";
560 return false;
561 }
562 ProviderType provider_type =
563 OncVirtualNetworkParser::ParseProviderType(provider_type_string);
564 virtual_network->set_provider_type(provider_type);
565 return parser->ParseNestedObject(network,
566 "VPN",
567 value,
568 vpn_signature,
569 OncVirtualNetworkParser::ParseVPNValue);
570 return true;
571 }
572 case PROPERTY_INDEX_ONC_REMOVE:
573 VLOG(1) << network->name() << ": Remove field not yet implemented";
574 return false;
575 case PROPERTY_INDEX_TYPE: {
576 // Update property with native value for type.
577 std::string str =
578 NativeNetworkParser::network_type_mapper()->GetKey(network->type());
579 scoped_ptr<StringValue> val(Value::CreateStringValue(str));
580 network->UpdatePropertyMap(PROPERTY_INDEX_TYPE, *val.get());
581 return true;
582 }
583 case PROPERTY_INDEX_GUID:
584 case PROPERTY_INDEX_NAME:
585 // Fall back to generic parser for these.
586 return parser->ParseValue(index, value, network);
587 default:
588 break;
589 }
590 return false;
591 }
592
332 // -------------------- OncWirelessNetworkParser -------------------- 593 // -------------------- OncWirelessNetworkParser --------------------
333 594
334 OncWirelessNetworkParser::OncWirelessNetworkParser() {} 595 OncWirelessNetworkParser::OncWirelessNetworkParser() {}
335 OncWirelessNetworkParser::~OncWirelessNetworkParser() {} 596 OncWirelessNetworkParser::~OncWirelessNetworkParser() {}
336 597
337 bool OncWirelessNetworkParser::ParseValue(PropertyIndex index,
338 const base::Value& value,
339 Network* network) {
340 DCHECK_NE(TYPE_ETHERNET, network->type());
341 DCHECK_NE(TYPE_VPN, network->type());
342 return OncNetworkParser::ParseValue(index, value, network);
343 }
344
345 // -------------------- OncWifiNetworkParser -------------------- 598 // -------------------- OncWifiNetworkParser --------------------
346 599
347 OncWifiNetworkParser::OncWifiNetworkParser() {} 600 OncWifiNetworkParser::OncWifiNetworkParser() {}
601
348 OncWifiNetworkParser::~OncWifiNetworkParser() {} 602 OncWifiNetworkParser::~OncWifiNetworkParser() {}
349 603
350 bool OncWifiNetworkParser::ParseValue(PropertyIndex index, 604 // static
351 const base::Value& value, 605 bool OncWifiNetworkParser::ParseWifiValue(OncNetworkParser* parser,
352 Network* network) { 606 PropertyIndex index,
353 DCHECK_EQ(TYPE_WIFI, network->type()); 607 const base::Value& value,
608 Network* network) {
609 if (!CheckNetworkType(network, TYPE_WIFI, "WiFi"))
610 return false;
354 WifiNetwork* wifi_network = static_cast<WifiNetwork*>(network); 611 WifiNetwork* wifi_network = static_cast<WifiNetwork*>(network);
355 switch (index) { 612 switch (index) {
356 case PROPERTY_INDEX_SSID: { 613 case PROPERTY_INDEX_SSID:
357 std::string ssid; 614 wifi_network->SetName(GetStringValue(value));
358 if (!value.GetAsString(&ssid))
359 break;
360 wifi_network->SetName(ssid);
361 return true; 615 return true;
362 }
363 case PROPERTY_INDEX_GUID: {
364 std::string unique_id;
365 if (!value.GetAsString(&unique_id))
366 break;
367 wifi_network->set_unique_id(unique_id);
368 return true;
369 }
370 case PROPERTY_INDEX_SECURITY: { 616 case PROPERTY_INDEX_SECURITY: {
371 std::string security_string; 617 ConnectionSecurity security = ParseSecurity(GetStringValue(value));
372 if (!value.GetAsString(&security_string))
373 break;
374 ConnectionSecurity security = ParseSecurity(security_string);
375 wifi_network->set_encryption(security); 618 wifi_network->set_encryption(security);
376 // Also update property with native value for security. 619 // Also update property with native value for security.
377 std::string str = 620 std::string str =
378 NativeNetworkParser::network_security_mapper()->GetKey(security); 621 NativeNetworkParser::network_security_mapper()->GetKey(security);
379 scoped_ptr<StringValue> val(Value::CreateStringValue(str)); 622 scoped_ptr<StringValue> val(Value::CreateStringValue(str));
380 wifi_network->UpdatePropertyMap(index, *val.get()); 623 wifi_network->UpdatePropertyMap(index, *val.get());
381 return true; 624 return true;
382 } 625 }
383 case PROPERTY_INDEX_PASSPHRASE: { 626 case PROPERTY_INDEX_PASSPHRASE:
384 std::string passphrase; 627 wifi_network->set_passphrase(GetStringValue(value));
385 if (!value.GetAsString(&passphrase))
386 break;
387 wifi_network->set_passphrase(passphrase);
388 return true; 628 return true;
389 } 629 case PROPERTY_INDEX_IDENTITY:
390 case PROPERTY_INDEX_IDENTITY: { 630 wifi_network->set_identity(GetStringValue(value));
391 std::string identity;
392 if (!value.GetAsString(&identity))
393 break;
394 wifi_network->set_identity(identity);
395 return true; 631 return true;
396 } 632 case PROPERTY_INDEX_EAP:
397 case PROPERTY_INDEX_EAP: { 633 parser->ParseNestedObject(wifi_network,
398 DCHECK_EQ(value.GetType(), Value::TYPE_DICTIONARY); 634 "EAP",
399 const DictionaryValue& dict = static_cast<const DictionaryValue&>(value); 635 value,
400 for (DictionaryValue::key_iterator iter = dict.begin_keys(); 636 eap_signature,
401 iter != dict.end_keys(); ++iter) { 637 ParseEAPValue);
402 const std::string& key = *iter;
403 base::Value* eap_value;
404 bool res = dict.GetWithoutPathExpansion(key, &eap_value);
405 DCHECK(res);
406 if (res) {
407 PropertyIndex index = mapper().Get(key);
408 wifi_network->UpdatePropertyMap(index, *eap_value);
409 if (!ParseEAPValue(index, *eap_value, wifi_network))
410 VLOG(1) << network->name() << ": EAP unhandled key: " << key
411 << " Type: " << eap_value->GetType();
412 }
413 }
414 return true; 638 return true;
415 } 639 case PROPERTY_INDEX_AUTO_CONNECT:
640 network->set_auto_connect(GetBooleanValue(value));
641 return true;
642 case PROPERTY_INDEX_HIDDEN_SSID:
643 // Pass this through to connection manager as is.
644 return true;
416 default: 645 default:
417 return OncWirelessNetworkParser::ParseValue(index, value, network); 646 break;
418 } 647 }
419 return false; 648 return false;
420 } 649 }
421 650
422 651 // static
423 bool OncWifiNetworkParser::ParseEAPValue(PropertyIndex index, 652 bool OncWifiNetworkParser::ParseEAPValue(OncNetworkParser*,
653 PropertyIndex index,
424 const base::Value& value, 654 const base::Value& value,
425 WifiNetwork* wifi_network) { 655 Network* network) {
656 if (!CheckNetworkType(network, TYPE_WIFI, "EAP"))
657 return false;
658 WifiNetwork* wifi_network = static_cast<WifiNetwork*>(network);
426 switch (index) { 659 switch (index) {
427 case PROPERTY_INDEX_EAP_IDENTITY: { 660 case PROPERTY_INDEX_EAP_IDENTITY:
428 std::string eap_identity; 661 // TODO(crosbug.com/23751): Support string expansion.
429 if (!value.GetAsString(&eap_identity)) 662 wifi_network->set_eap_identity(GetStringValue(value));
430 break;
431 wifi_network->set_eap_identity(eap_identity);
432 return true; 663 return true;
433 }
434 case PROPERTY_INDEX_EAP_METHOD: { 664 case PROPERTY_INDEX_EAP_METHOD: {
435 std::string eap_method_str; 665 EAPMethod eap_method = ParseEAPMethod(GetStringValue(value));
436 if (!value.GetAsString(&eap_method_str))
437 break;
438 EAPMethod eap_method = ParseEAPMethod(eap_method_str);
439 wifi_network->set_eap_method(eap_method); 666 wifi_network->set_eap_method(eap_method);
440 // Also update property with native value for EAP method. 667 // Also update property with native value for EAP method.
441 std::string str = 668 std::string str =
442 NativeNetworkParser::network_eap_method_mapper()->GetKey(eap_method); 669 NativeNetworkParser::network_eap_method_mapper()->GetKey(eap_method);
443 scoped_ptr<StringValue> val(Value::CreateStringValue(str)); 670 scoped_ptr<StringValue> val(Value::CreateStringValue(str));
444 wifi_network->UpdatePropertyMap(index, *val.get()); 671 wifi_network->UpdatePropertyMap(index, *val.get());
445 return true; 672 return true;
446 } 673 }
447 case PROPERTY_INDEX_EAP_PHASE_2_AUTH: { 674 case PROPERTY_INDEX_EAP_PHASE_2_AUTH: {
448 std::string eap_phase_2_auth_str; 675 EAPPhase2Auth eap_phase_2_auth = ParseEAPPhase2Auth(
449 if (!value.GetAsString(&eap_phase_2_auth_str)) 676 GetStringValue(value));
450 break;
451 EAPPhase2Auth eap_phase_2_auth = ParseEAPPhase2Auth(eap_phase_2_auth_str);
452 wifi_network->set_eap_phase_2_auth(eap_phase_2_auth); 677 wifi_network->set_eap_phase_2_auth(eap_phase_2_auth);
453 // Also update property with native value for EAP phase 2 auth. 678 // Also update property with native value for EAP phase 2 auth.
454 std::string str = NativeNetworkParser::network_eap_auth_mapper()->GetKey( 679 std::string str = NativeNetworkParser::network_eap_auth_mapper()->GetKey(
455 eap_phase_2_auth); 680 eap_phase_2_auth);
456 scoped_ptr<StringValue> val(Value::CreateStringValue(str)); 681 scoped_ptr<StringValue> val(Value::CreateStringValue(str));
457 wifi_network->UpdatePropertyMap(index, *val.get()); 682 wifi_network->UpdatePropertyMap(index, *val.get());
458 return true; 683 return true;
459 } 684 }
460 case PROPERTY_INDEX_EAP_ANONYMOUS_IDENTITY: { 685 case PROPERTY_INDEX_EAP_ANONYMOUS_IDENTITY:
461 std::string eap_anonymous_identity; 686 wifi_network->set_eap_anonymous_identity(GetStringValue(value));
462 if (!value.GetAsString(&eap_anonymous_identity))
463 break;
464 wifi_network->set_eap_anonymous_identity(eap_anonymous_identity);
465 return true; 687 return true;
466 } 688 case PROPERTY_INDEX_EAP_CERT_ID:
467 case PROPERTY_INDEX_EAP_CERT_ID: { 689 wifi_network->set_eap_client_cert_pkcs11_id(GetStringValue(value));
468 std::string eap_client_cert_pkcs11_id;
469 if (!value.GetAsString(&eap_client_cert_pkcs11_id))
470 break;
471 wifi_network->set_eap_client_cert_pkcs11_id(eap_client_cert_pkcs11_id);
472 return true; 690 return true;
473 } 691 case PROPERTY_INDEX_EAP_CA_CERT_NSS:
474 case PROPERTY_INDEX_EAP_CA_CERT_NSS: { 692 wifi_network->set_eap_server_ca_cert_nss_nickname(GetStringValue(value));
475 std::string eap_server_ca_cert_nss_nickname;
476 if (!value.GetAsString(&eap_server_ca_cert_nss_nickname))
477 break;
478 wifi_network->set_eap_server_ca_cert_nss_nickname(
479 eap_server_ca_cert_nss_nickname);
480 return true; 693 return true;
481 } 694 case PROPERTY_INDEX_EAP_USE_SYSTEM_CAS:
482 case PROPERTY_INDEX_EAP_USE_SYSTEM_CAS: { 695 wifi_network->set_eap_use_system_cas(GetBooleanValue(value));
483 bool eap_use_system_cas;
484 if (!value.GetAsBoolean(&eap_use_system_cas))
485 break;
486 wifi_network->set_eap_use_system_cas(eap_use_system_cas);
487 return true; 696 return true;
488 } 697 case PROPERTY_INDEX_EAP_PASSWORD:
489 case PROPERTY_INDEX_EAP_PASSWORD: { 698 wifi_network->set_eap_passphrase(GetStringValue(value));
490 std::string eap_passphrase;
491 if (!value.GetAsString(&eap_passphrase))
492 break;
493 wifi_network->set_eap_passphrase(eap_passphrase);
494 return true; 699 return true;
495 } 700 case PROPERTY_INDEX_ONC_CLIENT_CERT_PATTERN:
701 case PROPERTY_INDEX_ONC_CLIENT_CERT_REF:
702 case PROPERTY_INDEX_ONC_CLIENT_CERT_TYPE:
703 // TODO(crosbug.com/19409): Support certificate patterns.
704 // Ignore for now.
705 return true;
496 default: 706 default:
497 break; 707 break;
498 } 708 }
499 return false; 709 return false;
500 } 710 }
501 711
712 // static
502 ConnectionSecurity OncWifiNetworkParser::ParseSecurity( 713 ConnectionSecurity OncWifiNetworkParser::ParseSecurity(
503 const std::string& security) { 714 const std::string& security) {
504 static EnumMapper<ConnectionSecurity>::Pair table[] = { 715 static EnumMapper<ConnectionSecurity>::Pair table[] = {
505 { "None", SECURITY_NONE }, 716 { "None", SECURITY_NONE },
506 { "WEP", SECURITY_WEP }, 717 { "WEP-PSK", SECURITY_WEP },
507 { "WPA", SECURITY_WPA }, 718 { "WPA-PSK", SECURITY_WPA },
508 { "WPA2", SECURITY_8021X }, 719 { "WPA-EAP", SECURITY_8021X },
509 }; 720 };
510 CR_DEFINE_STATIC_LOCAL(EnumMapper<ConnectionSecurity>, parser, 721 CR_DEFINE_STATIC_LOCAL(EnumMapper<ConnectionSecurity>, parser,
511 (table, arraysize(table), SECURITY_UNKNOWN)); 722 (table, arraysize(table), SECURITY_UNKNOWN));
512 return parser.Get(security); 723 return parser.Get(security);
513 } 724 }
514 725
726 // static
515 EAPMethod OncWifiNetworkParser::ParseEAPMethod(const std::string& method) { 727 EAPMethod OncWifiNetworkParser::ParseEAPMethod(const std::string& method) {
516 static EnumMapper<EAPMethod>::Pair table[] = { 728 static EnumMapper<EAPMethod>::Pair table[] = {
517 { "PEAP", EAP_METHOD_PEAP }, 729 { "PEAP", EAP_METHOD_PEAP },
518 { "EAP-TLS", EAP_METHOD_TLS }, 730 { "EAP-TLS", EAP_METHOD_TLS },
519 { "EAP-TTLS", EAP_METHOD_TTLS }, 731 { "EAP-TTLS", EAP_METHOD_TTLS },
520 { "LEAP", EAP_METHOD_LEAP }, 732 { "LEAP", EAP_METHOD_LEAP },
521 }; 733 };
522 CR_DEFINE_STATIC_LOCAL(EnumMapper<EAPMethod>, parser, 734 CR_DEFINE_STATIC_LOCAL(EnumMapper<EAPMethod>, parser,
523 (table, arraysize(table), EAP_METHOD_UNKNOWN)); 735 (table, arraysize(table), EAP_METHOD_UNKNOWN));
524 return parser.Get(method); 736 return parser.Get(method);
525 } 737 }
526 738
739 // static
527 EAPPhase2Auth OncWifiNetworkParser::ParseEAPPhase2Auth( 740 EAPPhase2Auth OncWifiNetworkParser::ParseEAPPhase2Auth(
528 const std::string& auth) { 741 const std::string& auth) {
529 static EnumMapper<EAPPhase2Auth>::Pair table[] = { 742 static EnumMapper<EAPPhase2Auth>::Pair table[] = {
530 { "MD5", EAP_PHASE_2_AUTH_MD5 }, 743 { "MD5", EAP_PHASE_2_AUTH_MD5 },
531 { "MSCHAPV2", EAP_PHASE_2_AUTH_MSCHAPV2 }, 744 { "MSCHAPV2", EAP_PHASE_2_AUTH_MSCHAPV2 },
532 { "MSCHAP", EAP_PHASE_2_AUTH_MSCHAP }, 745 { "MSCHAP", EAP_PHASE_2_AUTH_MSCHAP },
533 { "PAP", EAP_PHASE_2_AUTH_PAP }, 746 { "PAP", EAP_PHASE_2_AUTH_PAP },
534 }; 747 };
535 CR_DEFINE_STATIC_LOCAL(EnumMapper<EAPPhase2Auth>, parser, 748 CR_DEFINE_STATIC_LOCAL(EnumMapper<EAPPhase2Auth>, parser,
536 (table, arraysize(table), EAP_PHASE_2_AUTH_AUTO)); 749 (table, arraysize(table), EAP_PHASE_2_AUTH_AUTO));
(...skipping 10 matching lines...) Expand all
547 const DictionaryValue& info, 760 const DictionaryValue& info,
548 Network* network) { 761 Network* network) {
549 DCHECK_EQ(TYPE_VPN, network->type()); 762 DCHECK_EQ(TYPE_VPN, network->type());
550 VirtualNetwork* virtual_network = static_cast<VirtualNetwork*>(network); 763 VirtualNetwork* virtual_network = static_cast<VirtualNetwork*>(network);
551 if (!OncNetworkParser::UpdateNetworkFromInfo(info, network)) 764 if (!OncNetworkParser::UpdateNetworkFromInfo(info, network))
552 return false; 765 return false;
553 VLOG(1) << "Updating VPN '" << virtual_network->name() 766 VLOG(1) << "Updating VPN '" << virtual_network->name()
554 << "': Server: " << virtual_network->server_hostname() 767 << "': Server: " << virtual_network->server_hostname()
555 << " Type: " 768 << " Type: "
556 << ProviderTypeToString(virtual_network->provider_type()); 769 << ProviderTypeToString(virtual_network->provider_type());
557 if (virtual_network->provider_type() == PROVIDER_TYPE_L2TP_IPSEC_PSK) {
558 if (!virtual_network->client_cert_id().empty())
559 virtual_network->set_provider_type(PROVIDER_TYPE_L2TP_IPSEC_USER_CERT);
560 }
561 return true; 770 return true;
562 } 771 }
563 772
564 bool OncVirtualNetworkParser::ParseValue(PropertyIndex index, 773 // static
565 const base::Value& value, 774 bool OncVirtualNetworkParser::ParseVPNValue(OncNetworkParser* parser,
566 Network* network) { 775 PropertyIndex index,
567 DCHECK_EQ(TYPE_VPN, network->type()); 776 const base::Value& value,
568 VirtualNetwork* virtual_network = static_cast<VirtualNetwork*>(network); 777 Network* network) {
569 switch (index) { 778 if (!CheckNetworkType(network, TYPE_VPN, "VPN"))
570 case PROPERTY_INDEX_PROVIDER: { 779 return false;
571 DCHECK_EQ(value.GetType(), Value::TYPE_DICTIONARY); 780 VirtualNetwork* virtual_network = static_cast<VirtualNetwork*>(network);
572 const DictionaryValue& dict = static_cast<const DictionaryValue&>(value); 781 switch (index) {
573 for (DictionaryValue::key_iterator iter = dict.begin_keys(); 782 case PROPERTY_INDEX_PROVIDER_HOST: {
574 iter != dict.end_keys(); ++iter) { 783 virtual_network->set_server_hostname(GetStringValue(value));
575 const std::string& key = *iter; 784 // Flimflam requires a domain property which is unused.
576 base::Value* provider_value; 785 network->UpdatePropertyMap(PROPERTY_INDEX_VPN_DOMAIN,
577 bool res = dict.GetWithoutPathExpansion(key, &provider_value); 786 base::StringValue(""));
578 DCHECK(res); 787 return true;
579 if (res) { 788 }
580 PropertyIndex index = mapper().Get(key); 789 case PROPERTY_INDEX_ONC_IPSEC:
581 if (!ParseProviderValue(index, *provider_value, virtual_network)) 790 if (virtual_network->provider_type() != PROVIDER_TYPE_L2TP_IPSEC_PSK &&
582 VLOG(1) << network->name() << ": Provider unhandled key: " << key 791 virtual_network->provider_type() !=
583 << " Type: " << provider_value->GetType(); 792 PROVIDER_TYPE_L2TP_IPSEC_USER_CERT) {
584 } 793 VLOG(1) << "IPsec field not allowed with this VPN type";
585 } 794 return false;
586 return true; 795 }
587 } 796 return parser->ParseNestedObject(network,
588 default: 797 "IPsec",
589 return OncNetworkParser::ParseValue(index, value, network); 798 value,
590 break; 799 ipsec_signature,
591 } 800 ParseIPsecValue);
592 return false; 801 case PROPERTY_INDEX_ONC_L2TP:
593 } 802 if (virtual_network->provider_type() != PROVIDER_TYPE_L2TP_IPSEC_PSK) {
594 803 VLOG(1) << "L2TP field not allowed with this VPN type";
595 bool OncVirtualNetworkParser::ParseProviderValue(PropertyIndex index, 804 return false;
596 const base::Value& value, 805 }
597 VirtualNetwork* network) { 806 return parser->ParseNestedObject(network,
598 switch (index) { 807 "L2TP",
599 case PROPERTY_INDEX_HOST: { 808 value,
600 std::string server_hostname; 809 l2tp_signature,
601 if (!value.GetAsString(&server_hostname)) 810 ParseL2TPValue);
811 case PROPERTY_INDEX_ONC_OPENVPN:
812 if (virtual_network->provider_type() != PROVIDER_TYPE_OPEN_VPN) {
813 VLOG(1) << "OpenVPN field not allowed with this VPN type";
814 return false;
815 }
816 // The following are needed by flimflam to set up the OpenVPN
817 // management channel which every ONC OpenVPN configuration will
818 // use.
819 network->UpdatePropertyMap(PROPERTY_INDEX_OPEN_VPN_AUTHUSERPASS,
820 StringValue(""));
821 network->UpdatePropertyMap(PROPERTY_INDEX_OPEN_VPN_MGMT_ENABLE,
822 StringValue(""));
823 return parser->ParseNestedObject(network,
824 "OpenVPN",
825 value,
826 openvpn_signature,
827 ParseOpenVPNValue);
828 case PROPERTY_INDEX_PROVIDER_TYPE: {
829 // Update property with native value for provider type.
830 ProviderType provider_type = GetCanonicalProviderType(
831 virtual_network->provider_type());
832 std::string str =
833 NativeVirtualNetworkParser::provider_type_mapper()->GetKey(
834 provider_type);
835 scoped_ptr<StringValue> val(Value::CreateStringValue(str));
836 network->UpdatePropertyMap(PROPERTY_INDEX_PROVIDER_TYPE, *val.get());
837 return true;
838 }
839 default:
840 break;
841 }
842 return false;
843 }
844
845 bool OncVirtualNetworkParser::ParseIPsecValue(OncNetworkParser* parser,
846 PropertyIndex index,
847 const base::Value& value,
848 Network* network) {
849 if (!CheckNetworkType(network, TYPE_VPN, "IPsec"))
850 return false;
851 VirtualNetwork* virtual_network = static_cast<VirtualNetwork*>(network);
852 switch (index) {
853 case PROPERTY_INDEX_IPSEC_AUTHENTICATIONTYPE:
854 virtual_network->set_provider_type(
855 UpdateProviderTypeWithAuthType(virtual_network->provider_type(),
856 GetStringValue(value)));
857 return true;
858 case PROPERTY_INDEX_L2TPIPSEC_CA_CERT_NSS:
859 virtual_network->set_ca_cert_nss(GetStringValue(value));
860 return true;
861 case PROPERTY_INDEX_L2TPIPSEC_PSK:
862 virtual_network->set_psk_passphrase(GetStringValue(value));
863 return true;
864 case PROPERTY_INDEX_L2TPIPSEC_GROUP_NAME:
865 virtual_network->set_group_name(GetStringValue(value));
866 return true;
867 case PROPERTY_INDEX_SAVE_CREDENTIALS:
868 // Note that the specification allows different settings for
869 // IPsec credentials (PSK) and L2TP credentials (username and
870 // password) but we merge them in our implementation as is required
871 // with the current connection manager.
872 virtual_network->set_save_credentials(GetBooleanValue(value));
873 return true;
874 case PROPERTY_INDEX_ONC_CLIENT_CERT_PATTERN:
875 case PROPERTY_INDEX_ONC_CLIENT_CERT_REF:
876 case PROPERTY_INDEX_ONC_CLIENT_CERT_TYPE:
877 // TODO(crosbug.com/19409): Support certificate patterns.
878 // Ignore for now.
879 return true;
880 case PROPERTY_INDEX_IPSEC_IKEVERSION:
881 if (!value.IsType(TYPE_STRING)) {
882 // Flimflam wants all provider properties to be strings.
883 virtual_network->UpdatePropertyMap(
884 index,
885 StringValue(ConvertValueToString(value)));
886 }
887 return true;
888 default:
889 break;
890 }
891 return false;
892 }
893
894 // static
895 ProviderType OncVirtualNetworkParser::UpdateProviderTypeWithAuthType(
896 ProviderType provider,
897 const std::string& auth_type) {
898 switch (provider) {
899 case PROVIDER_TYPE_L2TP_IPSEC_PSK:
900 case PROVIDER_TYPE_L2TP_IPSEC_USER_CERT:
901 if (auth_type == "Cert") {
902 return PROVIDER_TYPE_L2TP_IPSEC_USER_CERT;
903 } else {
904 if (auth_type != "PSK") {
905 VLOG(1) << "Unexpected authentication type " << auth_type;
602 break; 906 break;
603 network->set_server_hostname(server_hostname); 907 }
604 return true; 908 return PROVIDER_TYPE_L2TP_IPSEC_PSK;
605 } 909 }
606 case PROPERTY_INDEX_NAME: { 910 default:
607 std::string name; 911 VLOG(1) << "Unexpected provider type with authentication type "
608 if (!value.GetAsString(&name)) 912 << auth_type;
609 break; 913 break;
610 network->set_name(name); 914 }
611 return true; 915 return provider;
612 } 916 }
613 case PROPERTY_INDEX_TYPE: { 917
614 std::string provider_type_string; 918 // static
615 if (!value.GetAsString(&provider_type_string)) 919 ProviderType OncVirtualNetworkParser::GetCanonicalProviderType(
616 break; 920 ProviderType provider_type) {
617 network->set_provider_type(ParseProviderType(provider_type_string)); 921 if (provider_type == PROVIDER_TYPE_L2TP_IPSEC_USER_CERT)
618 return true; 922 return PROVIDER_TYPE_L2TP_IPSEC_PSK;
619 } 923 return provider_type;
620 case PROPERTY_INDEX_L2TPIPSEC_CA_CERT_NSS: { 924 }
621 std::string ca_cert_nss; 925
622 if (!value.GetAsString(&ca_cert_nss)) 926 // static
623 break; 927 bool OncVirtualNetworkParser::ParseL2TPValue(OncNetworkParser*,
624 network->set_ca_cert_nss(ca_cert_nss); 928 PropertyIndex index,
625 return true; 929 const base::Value& value,
626 } 930 Network* network) {
627 case PROPERTY_INDEX_L2TPIPSEC_PSK: { 931 if (!CheckNetworkType(network, TYPE_VPN, "L2TP"))
628 std::string psk_passphrase; 932 return false;
629 if (!value.GetAsString(&psk_passphrase)) 933 VirtualNetwork* virtual_network = static_cast<VirtualNetwork*>(network);
630 break; 934 switch (index) {
631 network->set_psk_passphrase(psk_passphrase); 935 case PROPERTY_INDEX_L2TPIPSEC_PASSWORD:
632 return true; 936 virtual_network->set_user_passphrase(GetStringValue(value));
633 } 937 return true;
634 case PROPERTY_INDEX_L2TPIPSEC_CLIENT_CERT_ID: { 938 case PROPERTY_INDEX_L2TPIPSEC_USER:
635 std::string client_cert_id; 939 // TODO(crosbug.com/23751): Support string expansion.
636 if (!value.GetAsString(&client_cert_id)) 940 virtual_network->set_username(GetStringValue(value));
637 break; 941 return true;
638 network->set_client_cert_id(client_cert_id); 942 case PROPERTY_INDEX_SAVE_CREDENTIALS:
639 return true; 943 // Note that the specification allows different settings for
640 } 944 // IPsec credentials (PSK) and L2TP credentials (username and
641 case PROPERTY_INDEX_L2TPIPSEC_USER: { 945 // password) but we merge them in our implementation as is required
642 std::string username; 946 // with the current connection manager.
643 if (!value.GetAsString(&username)) 947 virtual_network->set_save_credentials(GetBooleanValue(value));
644 break; 948 return true;
645 network->set_username(username); 949 default:
646 return true; 950 break;
647 } 951 }
648 case PROPERTY_INDEX_L2TPIPSEC_PASSWORD: { 952 return false;
649 std::string user_passphrase; 953 }
650 if (!value.GetAsString(&user_passphrase)) 954
651 break; 955 // static
652 network->set_user_passphrase(user_passphrase); 956 bool OncVirtualNetworkParser::ParseOpenVPNValue(OncNetworkParser*,
653 return true; 957 PropertyIndex index,
654 } 958 const base::Value& value,
655 case PROPERTY_INDEX_L2TPIPSEC_GROUP_NAME: { 959 Network* network) {
656 std::string group_name; 960 if (!CheckNetworkType(network, TYPE_VPN, "OpenVPN"))
657 if (!value.GetAsString(&group_name)) 961 return false;
658 break; 962 VirtualNetwork* virtual_network = static_cast<VirtualNetwork*>(network);
659 network->set_group_name(group_name); 963 switch (index) {
660 return true; 964 case PROPERTY_INDEX_OPEN_VPN_PASSWORD:
661 } 965 virtual_network->set_user_passphrase(GetStringValue(value));
662 default: 966 return true;
663 break; 967 case PROPERTY_INDEX_OPEN_VPN_USER:
664 } 968 // TODO(crosbug.com/23751): Support string expansion.
665 return false; 969 virtual_network->set_username(GetStringValue(value));
666 } 970 return true;
667 971 case PROPERTY_INDEX_SAVE_CREDENTIALS:
972 virtual_network->set_save_credentials(GetBooleanValue(value));
973 return true;
974 case PROPERTY_INDEX_OPEN_VPN_CACERT:
975 virtual_network->set_ca_cert_nss(GetStringValue(value));
976 return true;
977 case PROPERTY_INDEX_OPEN_VPN_REMOTECERTKU: {
978 // ONC supports a list of these, but we flimflam supports only one
979 // today. So extract the first.
980 const base::ListValue* value_list = NULL;
981 value.GetAsList(&value_list);
982 base::Value* first_item = NULL;
983 if (!value_list->Get(0, &first_item) ||
984 !first_item->IsType(base::Value::TYPE_STRING)) {
985 VLOG(1) << "RemoteCertKU must be non-empty list of strings";
986 return false;
987 }
988 virtual_network->UpdatePropertyMap(index, *first_item);
989 return true;
990 }
991 case PROPERTY_INDEX_OPEN_VPN_AUTH:
992 case PROPERTY_INDEX_OPEN_VPN_AUTHRETRY:
993 case PROPERTY_INDEX_OPEN_VPN_AUTHNOCACHE:
994 case PROPERTY_INDEX_OPEN_VPN_CERT:
995 case PROPERTY_INDEX_OPEN_VPN_CIPHER:
996 case PROPERTY_INDEX_OPEN_VPN_COMPLZO:
997 case PROPERTY_INDEX_OPEN_VPN_COMPNOADAPT:
998 case PROPERTY_INDEX_OPEN_VPN_KEYDIRECTION:
999 case PROPERTY_INDEX_OPEN_VPN_NSCERTTYPE:
1000 case PROPERTY_INDEX_OPEN_VPN_PORT:
1001 case PROPERTY_INDEX_OPEN_VPN_PROTO:
1002 case PROPERTY_INDEX_OPEN_VPN_PUSHPEERINFO:
1003 case PROPERTY_INDEX_OPEN_VPN_REMOTECERTEKU:
1004 case PROPERTY_INDEX_OPEN_VPN_REMOTECERTTLS:
1005 case PROPERTY_INDEX_OPEN_VPN_RENEGSEC:
1006 case PROPERTY_INDEX_OPEN_VPN_SERVERPOLLTIMEOUT:
1007 case PROPERTY_INDEX_OPEN_VPN_SHAPER:
1008 case PROPERTY_INDEX_OPEN_VPN_STATICCHALLENGE:
1009 case PROPERTY_INDEX_OPEN_VPN_TLSAUTHCONTENTS:
1010 case PROPERTY_INDEX_OPEN_VPN_TLSREMOTE:
1011 if (!value.IsType(TYPE_STRING)) {
1012 // Flimflam wants all provider properties to be strings.
1013 virtual_network->UpdatePropertyMap(
1014 index,
1015 StringValue(ConvertValueToString(value)));
1016 }
1017 return true;
1018 case PROPERTY_INDEX_ONC_CLIENT_CERT_PATTERN:
1019 case PROPERTY_INDEX_ONC_CLIENT_CERT_REF:
1020 case PROPERTY_INDEX_ONC_CLIENT_CERT_TYPE:
1021 // TODO(crosbug.com/19409): Support certificate patterns.
1022 // Ignore for now.
1023 return true;
1024
1025 default:
1026 break;
1027 }
1028 return false;
1029 }
1030
1031 // static
668 ProviderType OncVirtualNetworkParser::ParseProviderType( 1032 ProviderType OncVirtualNetworkParser::ParseProviderType(
669 const std::string& type) { 1033 const std::string& type) {
670 static EnumMapper<ProviderType>::Pair table[] = { 1034 static EnumMapper<ProviderType>::Pair table[] = {
671 { flimflam::kProviderL2tpIpsec, PROVIDER_TYPE_L2TP_IPSEC_PSK }, 1035 // We initially map to L2TP-IPsec PSK and then fix this up based
672 { flimflam::kProviderOpenVpn, PROVIDER_TYPE_OPEN_VPN }, 1036 // on the value of AuthenticationType.
1037 { "L2TP-IPsec", PROVIDER_TYPE_L2TP_IPSEC_PSK },
1038 { "OpenVPN", PROVIDER_TYPE_OPEN_VPN },
673 }; 1039 };
674 CR_DEFINE_STATIC_LOCAL(EnumMapper<ProviderType>, parser, 1040 CR_DEFINE_STATIC_LOCAL(EnumMapper<ProviderType>, parser,
675 (table, arraysize(table), PROVIDER_TYPE_MAX)); 1041 (table, arraysize(table), PROVIDER_TYPE_MAX));
676 return parser.Get(type); 1042 return parser.Get(type);
677 } 1043 }
678 1044
679 } // namespace chromeos 1045 } // namespace chromeos
OLDNEW

Powered by Google App Engine
This is Rietveld 408576698