1 /* 2 // Copyright (c) 2018 Intel Corporation 3 // 4 // Licensed under the Apache License, Version 2.0 (the "License"); 5 // you may not use this file except in compliance with the License. 6 // You may obtain a copy of the License at 7 // 8 // http://www.apache.org/licenses/LICENSE-2.0 9 // 10 // Unless required by applicable law or agreed to in writing, software 11 // distributed under the License is distributed on an "AS IS" BASIS, 12 // WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. 13 // See the License for the specific language governing permissions and 14 // limitations under the License. 15 */ 16 #pragma once 17 18 #include <boost/container/flat_map.hpp> 19 #include <boost/container/flat_set.hpp> 20 #include <dbus_singleton.hpp> 21 #include <error_messages.hpp> 22 #include <node.hpp> 23 #include <optional> 24 #include <utils/json_utils.hpp> 25 #include <variant> 26 27 namespace redfish 28 { 29 30 /** 31 * DBus types primitives for several generic DBus interfaces 32 * TODO(Pawel) consider move this to separate file into boost::dbus 33 */ 34 using PropertiesMapType = boost::container::flat_map< 35 std::string, std::variant<std::string, bool, uint8_t, int16_t, uint16_t, 36 int32_t, uint32_t, int64_t, uint64_t, double>>; 37 38 using GetManagedObjects = std::vector<std::pair< 39 sdbusplus::message::object_path, 40 std::vector<std::pair< 41 std::string, 42 boost::container::flat_map< 43 std::string, sdbusplus::message::variant< 44 std::string, bool, uint8_t, int16_t, uint16_t, 45 int32_t, uint32_t, int64_t, uint64_t, double, 46 std::vector<std::string>>>>>>>; 47 48 enum class LinkType 49 { 50 Local, 51 Global 52 }; 53 54 /** 55 * Structure for keeping IPv4 data required by Redfish 56 */ 57 struct IPv4AddressData 58 { 59 std::string id; 60 std::string address; 61 std::string domain; 62 std::string gateway; 63 std::string netmask; 64 std::string origin; 65 LinkType linktype; 66 67 bool operator<(const IPv4AddressData &obj) const 68 { 69 return id < obj.id; 70 } 71 }; 72 73 /** 74 * Structure for keeping basic single Ethernet Interface information 75 * available from DBus 76 */ 77 struct EthernetInterfaceData 78 { 79 uint32_t speed; 80 bool auto_neg; 81 bool DHCPEnabled; 82 std::string hostname; 83 std::string default_gateway; 84 std::string mac_address; 85 std::optional<uint32_t> vlan_id; 86 std::vector<std::string> nameservers; 87 }; 88 89 // Helper function that changes bits netmask notation (i.e. /24) 90 // into full dot notation 91 inline std::string getNetmask(unsigned int bits) 92 { 93 uint32_t value = 0xffffffff << (32 - bits); 94 std::string netmask = std::to_string((value >> 24) & 0xff) + "." + 95 std::to_string((value >> 16) & 0xff) + "." + 96 std::to_string((value >> 8) & 0xff) + "." + 97 std::to_string(value & 0xff); 98 return netmask; 99 } 100 101 inline std::string 102 translateAddressOriginDbusToRedfish(const std::string &inputOrigin, 103 bool isIPv4) 104 { 105 if (inputOrigin == "xyz.openbmc_project.Network.IP.AddressOrigin.Static") 106 { 107 return "Static"; 108 } 109 if (inputOrigin == "xyz.openbmc_project.Network.IP.AddressOrigin.LinkLocal") 110 { 111 if (isIPv4) 112 { 113 return "IPv4LinkLocal"; 114 } 115 else 116 { 117 return "LinkLocal"; 118 } 119 } 120 if (inputOrigin == "xyz.openbmc_project.Network.IP.AddressOrigin.DHCP") 121 { 122 if (isIPv4) 123 { 124 return "DHCP"; 125 } 126 else 127 { 128 return "DHCPv6"; 129 } 130 } 131 if (inputOrigin == "xyz.openbmc_project.Network.IP.AddressOrigin.SLAAC") 132 { 133 return "SLAAC"; 134 } 135 return ""; 136 } 137 138 inline std::string 139 translateAddressOriginRedfishToDbus(const std::string &inputOrigin) 140 { 141 if (inputOrigin == "Static") 142 { 143 return "xyz.openbmc_project.Network.IP.AddressOrigin.Static"; 144 } 145 if (inputOrigin == "DHCP" || inputOrigin == "DHCPv6") 146 { 147 return "xyz.openbmc_project.Network.IP.AddressOrigin.DHCP"; 148 } 149 if (inputOrigin == "IPv4LinkLocal" || inputOrigin == "LinkLocal") 150 { 151 return "xyz.openbmc_project.Network.IP.AddressOrigin.LinkLocal"; 152 } 153 if (inputOrigin == "SLAAC") 154 { 155 return "xyz.openbmc_project.Network.IP.AddressOrigin.SLAAC"; 156 } 157 return ""; 158 } 159 160 inline void extractEthernetInterfaceData(const std::string ðiface_id, 161 const GetManagedObjects &dbus_data, 162 EthernetInterfaceData ðData) 163 { 164 for (const auto &objpath : dbus_data) 165 { 166 for (const auto &ifacePair : objpath.second) 167 { 168 if (objpath.first == "/xyz/openbmc_project/network/" + ethiface_id) 169 { 170 if (ifacePair.first == "xyz.openbmc_project.Network.MACAddress") 171 { 172 for (const auto &propertyPair : ifacePair.second) 173 { 174 if (propertyPair.first == "MACAddress") 175 { 176 const std::string *mac = 177 std::get_if<std::string>(&propertyPair.second); 178 if (mac != nullptr) 179 { 180 ethData.mac_address = *mac; 181 } 182 } 183 } 184 } 185 else if (ifacePair.first == "xyz.openbmc_project.Network.VLAN") 186 { 187 for (const auto &propertyPair : ifacePair.second) 188 { 189 if (propertyPair.first == "Id") 190 { 191 const uint32_t *id = 192 std::get_if<uint32_t>(&propertyPair.second); 193 if (id != nullptr) 194 { 195 ethData.vlan_id = *id; 196 } 197 } 198 } 199 } 200 else if (ifacePair.first == 201 "xyz.openbmc_project.Network.EthernetInterface") 202 { 203 for (const auto &propertyPair : ifacePair.second) 204 { 205 if (propertyPair.first == "AutoNeg") 206 { 207 const bool *auto_neg = 208 std::get_if<bool>(&propertyPair.second); 209 if (auto_neg != nullptr) 210 { 211 ethData.auto_neg = *auto_neg; 212 } 213 } 214 else if (propertyPair.first == "Speed") 215 { 216 const uint32_t *speed = 217 std::get_if<uint32_t>(&propertyPair.second); 218 if (speed != nullptr) 219 { 220 ethData.speed = *speed; 221 } 222 } 223 else if (propertyPair.first == "NameServers") 224 { 225 const std::vector<std::string> *nameservers = 226 sdbusplus::message::variant_ns::get_if< 227 std::vector<std::string>>( 228 &propertyPair.second); 229 if (nameservers != nullptr) 230 { 231 ethData.nameservers = std::move(*nameservers); 232 } 233 } 234 else if (propertyPair.first == "DHCPEnabled") 235 { 236 const bool *DHCPEnabled = 237 std::get_if<bool>(&propertyPair.second); 238 if (DHCPEnabled != nullptr) 239 { 240 ethData.DHCPEnabled = *DHCPEnabled; 241 } 242 } 243 } 244 } 245 } 246 // System configuration shows up in the global namespace, so no need 247 // to check eth number 248 if (ifacePair.first == 249 "xyz.openbmc_project.Network.SystemConfiguration") 250 { 251 for (const auto &propertyPair : ifacePair.second) 252 { 253 if (propertyPair.first == "HostName") 254 { 255 const std::string *hostname = 256 sdbusplus::message::variant_ns::get_if<std::string>( 257 &propertyPair.second); 258 if (hostname != nullptr) 259 { 260 ethData.hostname = *hostname; 261 } 262 } 263 else if (propertyPair.first == "DefaultGateway") 264 { 265 const std::string *defaultGateway = 266 sdbusplus::message::variant_ns::get_if<std::string>( 267 &propertyPair.second); 268 if (defaultGateway != nullptr) 269 { 270 ethData.default_gateway = *defaultGateway; 271 } 272 } 273 } 274 } 275 } 276 } 277 } 278 279 // Helper function that extracts data for single ethernet ipv4 address 280 inline void 281 extractIPData(const std::string ðiface_id, 282 const GetManagedObjects &dbus_data, 283 boost::container::flat_set<IPv4AddressData> &ipv4_config) 284 { 285 const std::string ipv4PathStart = 286 "/xyz/openbmc_project/network/" + ethiface_id + "/ipv4/"; 287 288 // Since there might be several IPv4 configurations aligned with 289 // single ethernet interface, loop over all of them 290 for (const auto &objpath : dbus_data) 291 { 292 // Check if proper pattern for object path appears 293 if (boost::starts_with(objpath.first.str, ipv4PathStart)) 294 { 295 for (auto &interface : objpath.second) 296 { 297 if (interface.first == "xyz.openbmc_project.Network.IP") 298 { 299 // Instance IPv4AddressData structure, and set as 300 // appropriate 301 std::pair< 302 boost::container::flat_set<IPv4AddressData>::iterator, 303 bool> 304 it = ipv4_config.insert( 305 {objpath.first.str.substr(ipv4PathStart.size())}); 306 IPv4AddressData &ipv4_address = *it.first; 307 for (auto &property : interface.second) 308 { 309 if (property.first == "Address") 310 { 311 const std::string *address = 312 std::get_if<std::string>(&property.second); 313 if (address != nullptr) 314 { 315 ipv4_address.address = *address; 316 } 317 } 318 else if (property.first == "Gateway") 319 { 320 const std::string *gateway = 321 std::get_if<std::string>(&property.second); 322 if (gateway != nullptr) 323 { 324 ipv4_address.gateway = *gateway; 325 } 326 } 327 else if (property.first == "Origin") 328 { 329 const std::string *origin = 330 std::get_if<std::string>(&property.second); 331 if (origin != nullptr) 332 { 333 ipv4_address.origin = 334 translateAddressOriginDbusToRedfish(*origin, 335 true); 336 } 337 } 338 else if (property.first == "PrefixLength") 339 { 340 const uint8_t *mask = 341 std::get_if<uint8_t>(&property.second); 342 if (mask != nullptr) 343 { 344 // convert it to the string 345 ipv4_address.netmask = getNetmask(*mask); 346 } 347 } 348 else 349 { 350 BMCWEB_LOG_ERROR 351 << "Got extra property: " << property.first 352 << " on the " << objpath.first.str << " object"; 353 } 354 } 355 // Check if given address is local, or global 356 ipv4_address.linktype = 357 boost::starts_with(ipv4_address.address, "169.254.") 358 ? LinkType::Global 359 : LinkType::Local; 360 } 361 } 362 } 363 } 364 } 365 366 /** 367 * @brief Sets given Id on the given VLAN interface through D-Bus 368 * 369 * @param[in] ifaceId Id of VLAN interface that should be modified 370 * @param[in] inputVlanId New ID of the VLAN 371 * @param[in] callback Function that will be called after the operation 372 * 373 * @return None. 374 */ 375 template <typename CallbackFunc> 376 void changeVlanId(const std::string &ifaceId, const uint32_t &inputVlanId, 377 CallbackFunc &&callback) 378 { 379 crow::connections::systemBus->async_method_call( 380 callback, "xyz.openbmc_project.Network", 381 std::string("/xyz/openbmc_project/network/") + ifaceId, 382 "org.freedesktop.DBus.Properties", "Set", 383 "xyz.openbmc_project.Network.VLAN", "Id", 384 std::variant<uint32_t>(inputVlanId)); 385 } 386 387 /** 388 * @brief Helper function that verifies IP address to check if it is in 389 * proper format. If bits pointer is provided, also calculates active 390 * bit count for Subnet Mask. 391 * 392 * @param[in] ip IP that will be verified 393 * @param[out] bits Calculated mask in bits notation 394 * 395 * @return true in case of success, false otherwise 396 */ 397 inline bool ipv4VerifyIpAndGetBitcount(const std::string &ip, 398 uint8_t *bits = nullptr) 399 { 400 std::vector<std::string> bytesInMask; 401 402 boost::split(bytesInMask, ip, boost::is_any_of(".")); 403 404 static const constexpr int ipV4AddressSectionsCount = 4; 405 if (bytesInMask.size() != ipV4AddressSectionsCount) 406 { 407 return false; 408 } 409 410 if (bits != nullptr) 411 { 412 *bits = 0; 413 } 414 415 char *endPtr; 416 long previousValue = 255; 417 bool firstZeroInByteHit; 418 for (const std::string &byte : bytesInMask) 419 { 420 if (byte.empty()) 421 { 422 return false; 423 } 424 425 // Use strtol instead of stroi to avoid exceptions 426 long value = std::strtol(byte.c_str(), &endPtr, 10); 427 428 // endPtr should point to the end of the string, otherwise given string 429 // is not 100% number 430 if (*endPtr != '\0') 431 { 432 return false; 433 } 434 435 // Value should be contained in byte 436 if (value < 0 || value > 255) 437 { 438 return false; 439 } 440 441 if (bits != nullptr) 442 { 443 // Mask has to be continuous between bytes 444 if (previousValue != 255 && value != 0) 445 { 446 return false; 447 } 448 449 // Mask has to be continuous inside bytes 450 firstZeroInByteHit = false; 451 452 // Count bits 453 for (int bitIdx = 7; bitIdx >= 0; bitIdx--) 454 { 455 if (value & (1 << bitIdx)) 456 { 457 if (firstZeroInByteHit) 458 { 459 // Continuity not preserved 460 return false; 461 } 462 else 463 { 464 (*bits)++; 465 } 466 } 467 else 468 { 469 firstZeroInByteHit = true; 470 } 471 } 472 } 473 474 previousValue = value; 475 } 476 477 return true; 478 } 479 480 /** 481 * @brief Changes IPv4 address type property (Address, Gateway) 482 * 483 * @param[in] ifaceId Id of interface whose IP should be modified 484 * @param[in] ipIdx Index of IP in input array that should be modified 485 * @param[in] ipHash DBus Hash id of modified IP 486 * @param[in] name Name of field in JSON representation 487 * @param[in] newValue New value that should be written 488 * @param[io] asyncResp Response object that will be returned to client 489 * 490 * @return true if give IP is valid and has been sent do D-Bus, false 491 * otherwise 492 */ 493 inline void changeIPv4AddressProperty( 494 const std::string &ifaceId, int ipIdx, const std::string &ipHash, 495 const std::string &name, const std::string &newValue, 496 const std::shared_ptr<AsyncResp> asyncResp) 497 { 498 auto callback = [asyncResp, ipIdx, name{std::string(name)}, 499 newValue{std::move(newValue)}]( 500 const boost::system::error_code ec) { 501 if (ec) 502 { 503 messages::internalError(asyncResp->res); 504 } 505 else 506 { 507 asyncResp->res.jsonValue["IPv4Addresses"][ipIdx][name] = newValue; 508 } 509 }; 510 511 crow::connections::systemBus->async_method_call( 512 std::move(callback), "xyz.openbmc_project.Network", 513 "/xyz/openbmc_project/network/" + ifaceId + "/ipv4/" + ipHash, 514 "org.freedesktop.DBus.Properties", "Set", 515 "xyz.openbmc_project.Network.IP", name, 516 std::variant<std::string>(newValue)); 517 } 518 519 /** 520 * @brief Changes IPv4 address origin property 521 * 522 * @param[in] ifaceId Id of interface whose IP should be modified 523 * @param[in] ipIdx Index of IP in input array that should be 524 * modified 525 * @param[in] ipHash DBus Hash id of modified IP 526 * @param[in] newValue New value in Redfish format 527 * @param[in] newValueDbus New value in D-Bus format 528 * @param[io] asyncResp Response object that will be returned to client 529 * 530 * @return true if give IP is valid and has been sent do D-Bus, false 531 * otherwise 532 */ 533 inline void changeIPv4Origin(const std::string &ifaceId, int ipIdx, 534 const std::string &ipHash, 535 const std::string &newValue, 536 const std::string &newValueDbus, 537 const std::shared_ptr<AsyncResp> asyncResp) 538 { 539 auto callback = [asyncResp, ipIdx, newValue{std::move(newValue)}]( 540 const boost::system::error_code ec) { 541 if (ec) 542 { 543 messages::internalError(asyncResp->res); 544 } 545 else 546 { 547 asyncResp->res.jsonValue["IPv4Addresses"][ipIdx]["AddressOrigin"] = 548 newValue; 549 } 550 }; 551 552 crow::connections::systemBus->async_method_call( 553 std::move(callback), "xyz.openbmc_project.Network", 554 "/xyz/openbmc_project/network/" + ifaceId + "/ipv4/" + ipHash, 555 "org.freedesktop.DBus.Properties", "Set", 556 "xyz.openbmc_project.Network.IP", "Origin", 557 std::variant<std::string>(newValueDbus)); 558 } 559 560 /** 561 * @brief Modifies SubnetMask for given IP 562 * 563 * @param[in] ifaceId Id of interface whose IP should be modified 564 * @param[in] ipIdx Index of IP in input array that should be 565 * modified 566 * @param[in] ipHash DBus Hash id of modified IP 567 * @param[in] newValueStr Mask in dot notation as string 568 * @param[in] newValue Mask as PrefixLength in bitcount 569 * @param[io] asyncResp Response object that will be returned to client 570 * 571 * @return None 572 */ 573 inline void changeIPv4SubnetMaskProperty(const std::string &ifaceId, int ipIdx, 574 const std::string &ipHash, 575 const std::string &newValueStr, 576 uint8_t &newValue, 577 std::shared_ptr<AsyncResp> asyncResp) 578 { 579 auto callback = [asyncResp, ipIdx, newValueStr{std::move(newValueStr)}]( 580 const boost::system::error_code ec) { 581 if (ec) 582 { 583 messages::internalError(asyncResp->res); 584 } 585 else 586 { 587 asyncResp->res.jsonValue["IPv4Addresses"][ipIdx]["SubnetMask"] = 588 newValueStr; 589 } 590 }; 591 592 crow::connections::systemBus->async_method_call( 593 std::move(callback), "xyz.openbmc_project.Network", 594 "/xyz/openbmc_project/network/" + ifaceId + "/ipv4/" + ipHash, 595 "org.freedesktop.DBus.Properties", "Set", 596 "xyz.openbmc_project.Network.IP", "PrefixLength", 597 std::variant<uint8_t>(newValue)); 598 } 599 600 /** 601 * @brief Deletes given IPv4 602 * 603 * @param[in] ifaceId Id of interface whose IP should be deleted 604 * @param[in] ipIdx Index of IP in input array that should be deleted 605 * @param[in] ipHash DBus Hash id of IP that should be deleted 606 * @param[io] asyncResp Response object that will be returned to client 607 * 608 * @return None 609 */ 610 inline void deleteIPv4(const std::string &ifaceId, const std::string &ipHash, 611 unsigned int ipIdx, 612 const std::shared_ptr<AsyncResp> asyncResp) 613 { 614 crow::connections::systemBus->async_method_call( 615 [ipIdx, asyncResp](const boost::system::error_code ec) { 616 if (ec) 617 { 618 messages::internalError(asyncResp->res); 619 } 620 else 621 { 622 asyncResp->res.jsonValue["IPv4Addresses"][ipIdx] = nullptr; 623 } 624 }, 625 "xyz.openbmc_project.Network", 626 "/xyz/openbmc_project/network/" + ifaceId + "/ipv4/" + ipHash, 627 "xyz.openbmc_project.Object.Delete", "Delete"); 628 } 629 630 /** 631 * @brief Creates IPv4 with given data 632 * 633 * @param[in] ifaceId Id of interface whose IP should be deleted 634 * @param[in] ipIdx Index of IP in input array that should be deleted 635 * @param[in] ipHash DBus Hash id of IP that should be deleted 636 * @param[io] asyncResp Response object that will be returned to client 637 * 638 * @return None 639 */ 640 inline void createIPv4(const std::string &ifaceId, unsigned int ipIdx, 641 uint8_t subnetMask, const std::string &gateway, 642 const std::string &address, 643 std::shared_ptr<AsyncResp> asyncResp) 644 { 645 auto createIpHandler = [asyncResp](const boost::system::error_code ec) { 646 if (ec) 647 { 648 messages::internalError(asyncResp->res); 649 } 650 }; 651 652 crow::connections::systemBus->async_method_call( 653 std::move(createIpHandler), "xyz.openbmc_project.Network", 654 "/xyz/openbmc_project/network/" + ifaceId, 655 "xyz.openbmc_project.Network.IP.Create", "IP", 656 "xyz.openbmc_project.Network.IP.Protocol.IPv4", address, subnetMask, 657 gateway); 658 } 659 using GetAllPropertiesType = 660 boost::container::flat_map<std::string, sdbusplus::message::variant<bool>>; 661 662 inline void getDHCPConfigData(const std::shared_ptr<AsyncResp> asyncResp) 663 { 664 auto getConfig = [asyncResp](const boost::system::error_code error_code, 665 const GetAllPropertiesType &dbus_data) { 666 if (error_code) 667 { 668 BMCWEB_LOG_ERROR << "D-Bus response error: " << error_code; 669 messages::internalError(asyncResp->res); 670 return; 671 } 672 nlohmann::json &DHCPConfigTypeJson = 673 asyncResp->res.jsonValue["DHCPv4Configuration"]; 674 for (const auto &property : dbus_data) 675 { 676 auto value = 677 sdbusplus::message::variant_ns::get_if<bool>(&property.second); 678 679 if (value == nullptr) 680 { 681 continue; 682 } 683 if (property.first == "DNSEnabled") 684 { 685 DHCPConfigTypeJson["UseDNSServers"] = *value; 686 } 687 else if (property.first == "HostNameEnabled") 688 { 689 DHCPConfigTypeJson["UseDomainName"] = *value; 690 } 691 else if (property.first == "NTPEnabled") 692 { 693 DHCPConfigTypeJson["UseNTPServers"] = *value; 694 } 695 } 696 }; 697 crow::connections::systemBus->async_method_call( 698 std::move(getConfig), "xyz.openbmc_project.Network", 699 "/xyz/openbmc_project/network/config/dhcp", 700 "org.freedesktop.DBus.Properties", "GetAll", 701 "xyz.openbmc_project.Network.DHCPConfiguration"); 702 } 703 704 /** 705 * Function that retrieves all properties for given Ethernet Interface 706 * Object 707 * from EntityManager Network Manager 708 * @param ethiface_id a eth interface id to query on DBus 709 * @param callback a function that shall be called to convert Dbus output 710 * into JSON 711 */ 712 template <typename CallbackFunc> 713 void getEthernetIfaceData(const std::string ðiface_id, 714 CallbackFunc &&callback) 715 { 716 crow::connections::systemBus->async_method_call( 717 [ethiface_id{std::string{ethiface_id}}, callback{std::move(callback)}]( 718 const boost::system::error_code error_code, 719 const GetManagedObjects &resp) { 720 EthernetInterfaceData ethData{}; 721 boost::container::flat_set<IPv4AddressData> ipv4Data; 722 723 if (error_code) 724 { 725 callback(false, ethData, ipv4Data); 726 return; 727 } 728 729 extractEthernetInterfaceData(ethiface_id, resp, ethData); 730 extractIPData(ethiface_id, resp, ipv4Data); 731 732 // Fix global GW 733 for (IPv4AddressData &ipv4 : ipv4Data) 734 { 735 if ((ipv4.linktype == LinkType::Global) && 736 (ipv4.gateway == "0.0.0.0")) 737 { 738 ipv4.gateway = ethData.default_gateway; 739 } 740 } 741 742 // Finally make a callback with usefull data 743 callback(true, ethData, ipv4Data); 744 }, 745 "xyz.openbmc_project.Network", "/xyz/openbmc_project/network", 746 "org.freedesktop.DBus.ObjectManager", "GetManagedObjects"); 747 }; 748 749 /** 750 * Function that retrieves all Ethernet Interfaces available through Network 751 * Manager 752 * @param callback a function that shall be called to convert Dbus output 753 * into JSON. 754 */ 755 template <typename CallbackFunc> 756 void getEthernetIfaceList(CallbackFunc &&callback) 757 { 758 crow::connections::systemBus->async_method_call( 759 [callback{std::move(callback)}]( 760 const boost::system::error_code error_code, 761 GetManagedObjects &resp) { 762 // Callback requires vector<string> to retrieve all available 763 // ethernet interfaces 764 std::vector<std::string> iface_list; 765 iface_list.reserve(resp.size()); 766 if (error_code) 767 { 768 callback(false, iface_list); 769 return; 770 } 771 772 // Iterate over all retrieved ObjectPaths. 773 for (const auto &objpath : resp) 774 { 775 // And all interfaces available for certain ObjectPath. 776 for (const auto &interface : objpath.second) 777 { 778 // If interface is 779 // xyz.openbmc_project.Network.EthernetInterface, this is 780 // what we're looking for. 781 if (interface.first == 782 "xyz.openbmc_project.Network.EthernetInterface") 783 { 784 // Cut out everyting until last "/", ... 785 const std::string &iface_id = objpath.first.str; 786 std::size_t last_pos = iface_id.rfind("/"); 787 if (last_pos != std::string::npos) 788 { 789 // and put it into output vector. 790 iface_list.emplace_back( 791 iface_id.substr(last_pos + 1)); 792 } 793 } 794 } 795 } 796 // Finally make a callback with useful data 797 callback(true, iface_list); 798 }, 799 "xyz.openbmc_project.Network", "/xyz/openbmc_project/network", 800 "org.freedesktop.DBus.ObjectManager", "GetManagedObjects"); 801 }; 802 803 /** 804 * EthernetCollection derived class for delivering Ethernet Collection Schema 805 */ 806 class EthernetCollection : public Node 807 { 808 public: 809 template <typename CrowApp> 810 EthernetCollection(CrowApp &app) : 811 Node(app, "/redfish/v1/Managers/bmc/EthernetInterfaces/") 812 { 813 entityPrivileges = { 814 {boost::beast::http::verb::get, {{"Login"}}}, 815 {boost::beast::http::verb::head, {{"Login"}}}, 816 {boost::beast::http::verb::patch, {{"ConfigureComponents"}}}, 817 {boost::beast::http::verb::put, {{"ConfigureComponents"}}}, 818 {boost::beast::http::verb::delete_, {{"ConfigureComponents"}}}, 819 {boost::beast::http::verb::post, {{"ConfigureComponents"}}}}; 820 } 821 822 private: 823 /** 824 * Functions triggers appropriate requests on DBus 825 */ 826 void doGet(crow::Response &res, const crow::Request &req, 827 const std::vector<std::string> ¶ms) override 828 { 829 res.jsonValue["@odata.type"] = 830 "#EthernetInterfaceCollection.EthernetInterfaceCollection"; 831 res.jsonValue["@odata.context"] = 832 "/redfish/v1/" 833 "$metadata#EthernetInterfaceCollection.EthernetInterfaceCollection"; 834 res.jsonValue["@odata.id"] = 835 "/redfish/v1/Managers/bmc/EthernetInterfaces"; 836 res.jsonValue["Name"] = "Ethernet Network Interface Collection"; 837 res.jsonValue["Description"] = 838 "Collection of EthernetInterfaces for this Manager"; 839 840 // Get eth interface list, and call the below callback for JSON 841 // preparation 842 getEthernetIfaceList( 843 [&res](const bool &success, 844 const std::vector<std::string> &iface_list) { 845 if (!success) 846 { 847 messages::internalError(res); 848 res.end(); 849 return; 850 } 851 852 nlohmann::json &iface_array = res.jsonValue["Members"]; 853 iface_array = nlohmann::json::array(); 854 for (const std::string &iface_item : iface_list) 855 { 856 iface_array.push_back( 857 {{"@odata.id", 858 "/redfish/v1/Managers/bmc/EthernetInterfaces/" + 859 iface_item}}); 860 } 861 862 res.jsonValue["Members@odata.count"] = iface_array.size(); 863 res.jsonValue["@odata.id"] = 864 "/redfish/v1/Managers/bmc/EthernetInterfaces"; 865 res.end(); 866 }); 867 } 868 }; 869 870 /** 871 * EthernetInterface derived class for delivering Ethernet Schema 872 */ 873 class EthernetInterface : public Node 874 { 875 public: 876 /* 877 * Default Constructor 878 */ 879 template <typename CrowApp> 880 EthernetInterface(CrowApp &app) : 881 Node(app, "/redfish/v1/Managers/bmc/EthernetInterfaces/<str>/", 882 std::string()) 883 { 884 entityPrivileges = { 885 {boost::beast::http::verb::get, {{"Login"}}}, 886 {boost::beast::http::verb::head, {{"Login"}}}, 887 {boost::beast::http::verb::patch, {{"ConfigureComponents"}}}, 888 {boost::beast::http::verb::put, {{"ConfigureComponents"}}}, 889 {boost::beast::http::verb::delete_, {{"ConfigureComponents"}}}, 890 {boost::beast::http::verb::post, {{"ConfigureComponents"}}}}; 891 } 892 893 // TODO(kkowalsk) Find a suitable class/namespace for this 894 static void handleVlanPatch(const std::string &ifaceId, bool vlanEnable, 895 uint64_t vlanId, 896 const EthernetInterfaceData ðData, 897 const std::shared_ptr<AsyncResp> asyncResp) 898 { 899 if (!ethData.vlan_id) 900 { 901 // This interface is not a VLAN. Cannot do anything with it 902 // TODO(kkowalsk) Change this message 903 messages::propertyNotWritable(asyncResp->res, "VLANEnable"); 904 905 return; 906 } 907 908 // VLAN is configured on the interface 909 if (vlanEnable == true) 910 { 911 // Change VLAN Id 912 asyncResp->res.jsonValue["VLANId"] = vlanId; 913 auto callback = [asyncResp](const boost::system::error_code ec) { 914 if (ec) 915 { 916 messages::internalError(asyncResp->res); 917 } 918 else 919 { 920 asyncResp->res.jsonValue["VLANEnable"] = true; 921 } 922 }; 923 crow::connections::systemBus->async_method_call( 924 std::move(callback), "xyz.openbmc_project.Network", 925 "/xyz/openbmc_project/network/" + ifaceId, 926 "org.freedesktop.DBus.Properties", "Set", 927 "xyz.openbmc_project.Network.VLAN", "Id", 928 std::variant<uint32_t>(vlanId)); 929 } 930 else 931 { 932 auto callback = [asyncResp](const boost::system::error_code ec) { 933 if (ec) 934 { 935 messages::internalError(asyncResp->res); 936 return; 937 } 938 asyncResp->res.jsonValue["VLANEnable"] = false; 939 }; 940 941 crow::connections::systemBus->async_method_call( 942 std::move(callback), "xyz.openbmc_project.Network", 943 "/xyz/openbmc_project/network/" + ifaceId, 944 "xyz.openbmc_project.Object.Delete", "Delete"); 945 } 946 } 947 948 private: 949 void handleHostnamePatch(const std::string &hostname, 950 const std::shared_ptr<AsyncResp> asyncResp) 951 { 952 asyncResp->res.jsonValue["HostName"] = hostname; 953 crow::connections::systemBus->async_method_call( 954 [asyncResp](const boost::system::error_code ec) { 955 if (ec) 956 { 957 messages::internalError(asyncResp->res); 958 } 959 }, 960 "xyz.openbmc_project.Network", 961 "/xyz/openbmc_project/network/config", 962 "org.freedesktop.DBus.Properties", "Set", 963 "xyz.openbmc_project.Network.SystemConfiguration", "HostName", 964 std::variant<std::string>(hostname)); 965 } 966 967 void handleIPv4Patch( 968 const std::string &ifaceId, std::vector<nlohmann::json> &input, 969 const boost::container::flat_set<IPv4AddressData> &ipv4Data, 970 const std::shared_ptr<AsyncResp> asyncResp) 971 { 972 int entryIdx = 0; 973 boost::container::flat_set<IPv4AddressData>::const_iterator thisData = 974 ipv4Data.begin(); 975 for (nlohmann::json &thisJson : input) 976 { 977 std::string pathString = 978 "IPv4Addresses/" + std::to_string(entryIdx); 979 980 if (thisJson.empty()) 981 { 982 if (thisData != ipv4Data.end()) 983 { 984 thisData++; 985 } 986 else 987 { 988 messages::propertyMissing(asyncResp->res, 989 pathString + "/Address"); 990 return; 991 // TODO Not sure about the property where value is 992 // list and if unable to update one of the 993 // list value then should we proceed further or 994 // break there, would ask in the redfish forum 995 // till then we stop processing the next list item. 996 } 997 entryIdx++; 998 continue; // not an error as per the redfish spec. 999 } 1000 1001 std::optional<std::string> address; 1002 std::optional<std::string> addressOrigin; 1003 std::optional<std::string> subnetMask; 1004 std::optional<std::string> gateway; 1005 1006 if (!json_util::readJson(thisJson, asyncResp->res, "Address", 1007 address, "AddressOrigin", addressOrigin, 1008 "SubnetMask", subnetMask, "Gateway", 1009 gateway)) 1010 { 1011 return; 1012 } 1013 1014 if (address) 1015 { 1016 if (!ipv4VerifyIpAndGetBitcount(*address)) 1017 { 1018 messages::propertyValueFormatError(asyncResp->res, *address, 1019 pathString + "/Address"); 1020 return; 1021 } 1022 } 1023 1024 uint8_t prefixLength = 0; 1025 if (subnetMask) 1026 { 1027 if (!ipv4VerifyIpAndGetBitcount(*subnetMask, &prefixLength)) 1028 { 1029 messages::propertyValueFormatError( 1030 asyncResp->res, *subnetMask, 1031 pathString + "/SubnetMask"); 1032 return; 1033 } 1034 } 1035 std::string addressOriginInDBusFormat; 1036 if (addressOrigin) 1037 { 1038 // Get Address origin in proper format 1039 addressOriginInDBusFormat = 1040 translateAddressOriginRedfishToDbus(*addressOrigin); 1041 if (addressOriginInDBusFormat.empty()) 1042 { 1043 messages::propertyValueNotInList( 1044 asyncResp->res, *addressOrigin, 1045 pathString + "/AddressOrigin"); 1046 return; 1047 } 1048 } 1049 1050 if (gateway) 1051 { 1052 if (!ipv4VerifyIpAndGetBitcount(*gateway)) 1053 { 1054 messages::propertyValueFormatError(asyncResp->res, *gateway, 1055 pathString + "/Gateway"); 1056 return; 1057 } 1058 } 1059 1060 // if a vlan already exists, modify the existing 1061 if (thisData != ipv4Data.end()) 1062 { 1063 // Existing object that should be modified/deleted/remain 1064 // unchanged 1065 if (thisJson.is_null()) 1066 { 1067 auto callback = [entryIdx{std::to_string(entryIdx)}, 1068 asyncResp]( 1069 const boost::system::error_code ec) { 1070 if (ec) 1071 { 1072 messages::internalError(asyncResp->res); 1073 return; 1074 } 1075 asyncResp->res.jsonValue["IPv4Addresses"][entryIdx] = 1076 nullptr; 1077 }; 1078 crow::connections::systemBus->async_method_call( 1079 std::move(callback), "xyz.openbmc_project.Network", 1080 "/xyz/openbmc_project/network/" + ifaceId + "/ipv4/" + 1081 thisData->id, 1082 "xyz.openbmc_project.Object.Delete", "Delete"); 1083 } 1084 else if (thisJson.is_object()) 1085 { 1086 // Apply changes 1087 if (address) 1088 { 1089 auto callback = 1090 [asyncResp, entryIdx, address = *address]( 1091 const boost::system::error_code ec) { 1092 if (ec) 1093 { 1094 messages::internalError(asyncResp->res); 1095 return; 1096 } 1097 asyncResp->res.jsonValue["IPv4Addresses"] 1098 [entryIdx]["Address"] = 1099 address; 1100 }; 1101 1102 crow::connections::systemBus->async_method_call( 1103 std::move(callback), "xyz.openbmc_project.Network", 1104 "/xyz/openbmc_project/network/" + ifaceId + 1105 "/ipv4/" + thisData->id, 1106 "org.freedesktop.DBus.Properties", "Set", 1107 "xyz.openbmc_project.Network.IP", "Address", 1108 std::variant<std::string>(*address)); 1109 } 1110 1111 if (subnetMask) 1112 { 1113 changeIPv4SubnetMaskProperty(ifaceId, entryIdx, 1114 thisData->id, *subnetMask, 1115 prefixLength, asyncResp); 1116 } 1117 1118 if (addressOrigin) 1119 { 1120 changeIPv4Origin(ifaceId, entryIdx, thisData->id, 1121 *addressOrigin, 1122 addressOriginInDBusFormat, asyncResp); 1123 } 1124 1125 if (gateway) 1126 { 1127 auto callback = 1128 [asyncResp, entryIdx, 1129 gateway{std::string(*gateway)}]( 1130 const boost::system::error_code ec) { 1131 if (ec) 1132 { 1133 messages::internalError(asyncResp->res); 1134 return; 1135 } 1136 asyncResp->res.jsonValue["IPv4Addresses"] 1137 [entryIdx]["Gateway"] = 1138 std::move(gateway); 1139 }; 1140 1141 crow::connections::systemBus->async_method_call( 1142 std::move(callback), "xyz.openbmc_project.Network", 1143 "/xyz/openbmc_project/network/" + ifaceId + 1144 "/ipv4/" + thisData->id, 1145 "org.freedesktop.DBus.Properties", "Set", 1146 "xyz.openbmc_project.Network.IP", "Gateway", 1147 std::variant<std::string>(*gateway)); 1148 } 1149 } 1150 thisData++; 1151 } 1152 else 1153 { 1154 // Create IPv4 with provided data 1155 if (!gateway) 1156 { 1157 messages::propertyMissing(asyncResp->res, 1158 pathString + "/Gateway"); 1159 continue; 1160 } 1161 1162 if (!address) 1163 { 1164 messages::propertyMissing(asyncResp->res, 1165 pathString + "/Address"); 1166 continue; 1167 } 1168 1169 if (!subnetMask) 1170 { 1171 messages::propertyMissing(asyncResp->res, 1172 pathString + "/SubnetMask"); 1173 continue; 1174 } 1175 1176 createIPv4(ifaceId, entryIdx, prefixLength, *gateway, *address, 1177 asyncResp); 1178 asyncResp->res.jsonValue["IPv4Addresses"][entryIdx] = thisJson; 1179 } 1180 entryIdx++; 1181 } 1182 } 1183 1184 void parseInterfaceData( 1185 nlohmann::json &json_response, const std::string &iface_id, 1186 const EthernetInterfaceData ðData, 1187 const boost::container::flat_set<IPv4AddressData> &ipv4Data) 1188 { 1189 json_response["Id"] = iface_id; 1190 json_response["@odata.id"] = 1191 "/redfish/v1/Managers/bmc/EthernetInterfaces/" + iface_id; 1192 json_response["InterfaceEnabled"] = true; 1193 if (ethData.speed == 0) 1194 { 1195 json_response["LinkStatus"] = "NoLink"; 1196 json_response["Status"] = { 1197 {"Health", "OK"}, 1198 {"State", "Disabled"}, 1199 }; 1200 } 1201 else 1202 { 1203 json_response["LinkStatus"] = "LinkUp"; 1204 json_response["Status"] = { 1205 {"Health", "OK"}, 1206 {"State", "Enabled"}, 1207 }; 1208 } 1209 json_response["SpeedMbps"] = ethData.speed; 1210 json_response["MACAddress"] = ethData.mac_address; 1211 json_response["DHCPv4Configuration"]["DHCPEnabled"] = 1212 ethData.DHCPEnabled; 1213 1214 if (!ethData.hostname.empty()) 1215 { 1216 json_response["HostName"] = ethData.hostname; 1217 } 1218 1219 nlohmann::json &vlanObj = json_response["VLAN"]; 1220 if (ethData.vlan_id) 1221 { 1222 vlanObj["VLANEnable"] = true; 1223 vlanObj["VLANId"] = *ethData.vlan_id; 1224 } 1225 else 1226 { 1227 vlanObj["VLANEnable"] = false; 1228 vlanObj["VLANId"] = 0; 1229 } 1230 json_response["NameServers"] = ethData.nameservers; 1231 1232 if (ipv4Data.size() > 0) 1233 { 1234 nlohmann::json &ipv4_array = json_response["IPv4Addresses"]; 1235 ipv4_array = nlohmann::json::array(); 1236 for (auto &ipv4_config : ipv4Data) 1237 { 1238 ipv4_array.push_back({{"AddressOrigin", ipv4_config.origin}, 1239 {"SubnetMask", ipv4_config.netmask}, 1240 {"Address", ipv4_config.address}, 1241 {"Gateway", ipv4_config.gateway}}); 1242 } 1243 } 1244 } 1245 1246 /** 1247 * Functions triggers appropriate requests on DBus 1248 */ 1249 void doGet(crow::Response &res, const crow::Request &req, 1250 const std::vector<std::string> ¶ms) override 1251 { 1252 std::shared_ptr<AsyncResp> asyncResp = std::make_shared<AsyncResp>(res); 1253 if (params.size() != 1) 1254 { 1255 messages::internalError(asyncResp->res); 1256 return; 1257 } 1258 1259 getEthernetIfaceData( 1260 params[0], 1261 [this, asyncResp, iface_id{std::string(params[0])}]( 1262 const bool &success, const EthernetInterfaceData ðData, 1263 const boost::container::flat_set<IPv4AddressData> &ipv4Data) { 1264 if (!success) 1265 { 1266 // TODO(Pawel)consider distinguish between non existing 1267 // object, and other errors 1268 messages::resourceNotFound(asyncResp->res, 1269 "EthernetInterface", iface_id); 1270 return; 1271 } 1272 asyncResp->res.jsonValue["@odata.type"] = 1273 "#EthernetInterface.v1_2_0.EthernetInterface"; 1274 asyncResp->res.jsonValue["@odata.context"] = 1275 "/redfish/v1/$metadata#EthernetInterface.EthernetInterface"; 1276 asyncResp->res.jsonValue["Name"] = "Manager Ethernet Interface"; 1277 asyncResp->res.jsonValue["Description"] = 1278 "Management Network Interface"; 1279 1280 parseInterfaceData(asyncResp->res.jsonValue, iface_id, ethData, 1281 ipv4Data); 1282 }); 1283 getDHCPConfigData(asyncResp); 1284 } 1285 1286 void doPatch(crow::Response &res, const crow::Request &req, 1287 const std::vector<std::string> ¶ms) override 1288 { 1289 std::shared_ptr<AsyncResp> asyncResp = std::make_shared<AsyncResp>(res); 1290 if (params.size() != 1) 1291 { 1292 messages::internalError(asyncResp->res); 1293 return; 1294 } 1295 1296 const std::string &iface_id = params[0]; 1297 1298 std::optional<nlohmann::json> vlan; 1299 std::optional<std::string> hostname; 1300 std::optional<std::vector<nlohmann::json>> ipv4Addresses; 1301 std::optional<std::vector<nlohmann::json>> ipv6Addresses; 1302 1303 if (!json_util::readJson(req, res, "VLAN", vlan, "HostName", hostname, 1304 "IPv4Addresses", ipv4Addresses, 1305 "IPv6Addresses", ipv6Addresses)) 1306 { 1307 return; 1308 } 1309 1310 std::optional<uint64_t> vlanId; 1311 std::optional<bool> vlanEnable; 1312 1313 if (vlan) 1314 { 1315 if (!json_util::readJson(*vlan, res, "VLANEnable", vlanEnable, 1316 "VLANId", vlanId)) 1317 { 1318 return; 1319 } 1320 // Need both vlanId and vlanEnable to service this request 1321 if (static_cast<bool>(vlanId) ^ static_cast<bool>(vlanEnable)) 1322 { 1323 if (vlanId) 1324 { 1325 messages::propertyMissing(asyncResp->res, "VLANEnable"); 1326 } 1327 else 1328 { 1329 messages::propertyMissing(asyncResp->res, "VLANId"); 1330 } 1331 1332 return; 1333 } 1334 } 1335 1336 // Get single eth interface data, and call the below callback for JSON 1337 // preparation 1338 getEthernetIfaceData( 1339 iface_id, 1340 [this, asyncResp, iface_id, vlanId, vlanEnable, 1341 hostname = std::move(hostname), 1342 ipv4Addresses = std::move(ipv4Addresses), 1343 ipv6Addresses = std::move(ipv6Addresses)]( 1344 const bool &success, const EthernetInterfaceData ðData, 1345 const boost::container::flat_set<IPv4AddressData> &ipv4Data) { 1346 if (!success) 1347 { 1348 // ... otherwise return error 1349 // TODO(Pawel)consider distinguish between non existing 1350 // object, and other errors 1351 messages::resourceNotFound( 1352 asyncResp->res, "VLAN Network Interface", iface_id); 1353 return; 1354 } 1355 1356 parseInterfaceData(asyncResp->res.jsonValue, iface_id, ethData, 1357 ipv4Data); 1358 1359 if (vlanId && vlanEnable) 1360 { 1361 handleVlanPatch(iface_id, *vlanId, *vlanEnable, ethData, 1362 asyncResp); 1363 } 1364 1365 if (hostname) 1366 { 1367 handleHostnamePatch(*hostname, asyncResp); 1368 } 1369 1370 if (ipv4Addresses) 1371 { 1372 // TODO(ed) for some reason the capture of ipv4Addresses 1373 // above is returning a const value, not a non-const value. 1374 // This doesn't really work for us, as we need to be able to 1375 // efficiently move out the intermedia nlohmann::json 1376 // objects. This makes a copy of the structure, and operates 1377 // on that, but could be done more efficiently 1378 std::vector<nlohmann::json> ipv4 = 1379 std::move(*ipv4Addresses); 1380 handleIPv4Patch(iface_id, ipv4, ipv4Data, asyncResp); 1381 } 1382 1383 if (ipv6Addresses) 1384 { 1385 // TODO(kkowalsk) IPv6 Not supported on D-Bus yet 1386 messages::propertyNotWritable(asyncResp->res, 1387 "IPv6Addresses"); 1388 } 1389 }); 1390 } 1391 }; 1392 1393 /** 1394 * VlanNetworkInterface derived class for delivering VLANNetworkInterface 1395 * Schema 1396 */ 1397 class VlanNetworkInterface : public Node 1398 { 1399 public: 1400 /* 1401 * Default Constructor 1402 */ 1403 template <typename CrowApp> 1404 VlanNetworkInterface(CrowApp &app) : 1405 Node(app, 1406 "/redfish/v1/Managers/bmc/EthernetInterfaces/<str>/VLANs/<str>", 1407 std::string(), std::string()) 1408 { 1409 entityPrivileges = { 1410 {boost::beast::http::verb::get, {{"Login"}}}, 1411 {boost::beast::http::verb::head, {{"Login"}}}, 1412 {boost::beast::http::verb::patch, {{"ConfigureComponents"}}}, 1413 {boost::beast::http::verb::put, {{"ConfigureComponents"}}}, 1414 {boost::beast::http::verb::delete_, {{"ConfigureComponents"}}}, 1415 {boost::beast::http::verb::post, {{"ConfigureComponents"}}}}; 1416 } 1417 1418 private: 1419 void parseInterfaceData( 1420 nlohmann::json &json_response, const std::string &parent_iface_id, 1421 const std::string &iface_id, const EthernetInterfaceData ðData, 1422 const boost::container::flat_set<IPv4AddressData> &ipv4Data) 1423 { 1424 // Fill out obvious data... 1425 json_response["Id"] = iface_id; 1426 json_response["@odata.id"] = 1427 "/redfish/v1/Managers/bmc/EthernetInterfaces/" + parent_iface_id + 1428 "/VLANs/" + iface_id; 1429 1430 json_response["VLANEnable"] = true; 1431 if (ethData.vlan_id) 1432 { 1433 json_response["VLANId"] = *ethData.vlan_id; 1434 } 1435 } 1436 1437 bool verifyNames(crow::Response &res, const std::string &parent, 1438 const std::string &iface) 1439 { 1440 std::shared_ptr<AsyncResp> asyncResp = std::make_shared<AsyncResp>(res); 1441 if (!boost::starts_with(iface, parent + "_")) 1442 { 1443 messages::resourceNotFound(asyncResp->res, "VLAN Network Interface", 1444 iface); 1445 return false; 1446 } 1447 else 1448 { 1449 return true; 1450 } 1451 } 1452 1453 /** 1454 * Functions triggers appropriate requests on DBus 1455 */ 1456 void doGet(crow::Response &res, const crow::Request &req, 1457 const std::vector<std::string> ¶ms) override 1458 { 1459 std::shared_ptr<AsyncResp> asyncResp = std::make_shared<AsyncResp>(res); 1460 // TODO(Pawel) this shall be parameterized call (two params) to get 1461 // EthernetInterfaces for any Manager, not only hardcoded 'openbmc'. 1462 // Check if there is required param, truly entering this shall be 1463 // impossible. 1464 if (params.size() != 2) 1465 { 1466 messages::internalError(res); 1467 res.end(); 1468 return; 1469 } 1470 1471 const std::string &parent_iface_id = params[0]; 1472 const std::string &iface_id = params[1]; 1473 res.jsonValue["@odata.type"] = 1474 "#VLanNetworkInterface.v1_1_0.VLanNetworkInterface"; 1475 res.jsonValue["@odata.context"] = 1476 "/redfish/v1/$metadata#VLanNetworkInterface.VLanNetworkInterface"; 1477 res.jsonValue["Name"] = "VLAN Network Interface"; 1478 1479 if (!verifyNames(res, parent_iface_id, iface_id)) 1480 { 1481 return; 1482 } 1483 1484 // Get single eth interface data, and call the below callback for JSON 1485 // preparation 1486 getEthernetIfaceData( 1487 iface_id, 1488 [this, asyncResp, parent_iface_id, iface_id]( 1489 const bool &success, const EthernetInterfaceData ðData, 1490 const boost::container::flat_set<IPv4AddressData> &ipv4Data) { 1491 if (success && ethData.vlan_id) 1492 { 1493 parseInterfaceData(asyncResp->res.jsonValue, 1494 parent_iface_id, iface_id, ethData, 1495 ipv4Data); 1496 } 1497 else 1498 { 1499 // ... otherwise return error 1500 // TODO(Pawel)consider distinguish between non existing 1501 // object, and other errors 1502 messages::resourceNotFound( 1503 asyncResp->res, "VLAN Network Interface", iface_id); 1504 } 1505 }); 1506 } 1507 1508 void doPatch(crow::Response &res, const crow::Request &req, 1509 const std::vector<std::string> ¶ms) override 1510 { 1511 std::shared_ptr<AsyncResp> asyncResp = std::make_shared<AsyncResp>(res); 1512 if (params.size() != 2) 1513 { 1514 messages::internalError(asyncResp->res); 1515 return; 1516 } 1517 1518 const std::string &parentIfaceId = params[0]; 1519 const std::string &ifaceId = params[1]; 1520 1521 if (!verifyNames(res, parentIfaceId, ifaceId)) 1522 { 1523 return; 1524 } 1525 1526 bool vlanEnable = false; 1527 uint64_t vlanId = 0; 1528 1529 if (!json_util::readJson(req, res, "VLANEnable", vlanEnable, "VLANId", 1530 vlanId)) 1531 { 1532 return; 1533 } 1534 1535 // Get single eth interface data, and call the below callback for JSON 1536 // preparation 1537 getEthernetIfaceData( 1538 ifaceId, 1539 [this, asyncResp, parentIfaceId, ifaceId, vlanEnable, vlanId]( 1540 const bool &success, const EthernetInterfaceData ðData, 1541 const boost::container::flat_set<IPv4AddressData> &ipv4Data) { 1542 if (!success) 1543 { 1544 // TODO(Pawel)consider distinguish between non existing 1545 // object, and other errors 1546 messages::resourceNotFound( 1547 asyncResp->res, "VLAN Network Interface", ifaceId); 1548 1549 return; 1550 } 1551 1552 parseInterfaceData(asyncResp->res.jsonValue, parentIfaceId, 1553 ifaceId, ethData, ipv4Data); 1554 1555 EthernetInterface::handleVlanPatch(ifaceId, vlanId, vlanEnable, 1556 ethData, asyncResp); 1557 }); 1558 } 1559 1560 void doDelete(crow::Response &res, const crow::Request &req, 1561 const std::vector<std::string> ¶ms) override 1562 { 1563 std::shared_ptr<AsyncResp> asyncResp = std::make_shared<AsyncResp>(res); 1564 if (params.size() != 2) 1565 { 1566 messages::internalError(asyncResp->res); 1567 return; 1568 } 1569 1570 const std::string &parentIfaceId = params[0]; 1571 const std::string &ifaceId = params[1]; 1572 1573 if (!verifyNames(asyncResp->res, parentIfaceId, ifaceId)) 1574 { 1575 return; 1576 } 1577 1578 // Get single eth interface data, and call the below callback for JSON 1579 // preparation 1580 getEthernetIfaceData( 1581 ifaceId, 1582 [this, asyncResp, parentIfaceId{std::string(parentIfaceId)}, 1583 ifaceId{std::string(ifaceId)}]( 1584 const bool &success, const EthernetInterfaceData ðData, 1585 const boost::container::flat_set<IPv4AddressData> &ipv4Data) { 1586 if (success && ethData.vlan_id) 1587 { 1588 parseInterfaceData(asyncResp->res.jsonValue, parentIfaceId, 1589 ifaceId, ethData, ipv4Data); 1590 1591 auto callback = 1592 [asyncResp](const boost::system::error_code ec) { 1593 if (ec) 1594 { 1595 messages::internalError(asyncResp->res); 1596 } 1597 }; 1598 crow::connections::systemBus->async_method_call( 1599 std::move(callback), "xyz.openbmc_project.Network", 1600 std::string("/xyz/openbmc_project/network/") + ifaceId, 1601 "xyz.openbmc_project.Object.Delete", "Delete"); 1602 } 1603 else 1604 { 1605 // ... otherwise return error 1606 // TODO(Pawel)consider distinguish between non existing 1607 // object, and other errors 1608 messages::resourceNotFound( 1609 asyncResp->res, "VLAN Network Interface", ifaceId); 1610 } 1611 }); 1612 } 1613 }; 1614 1615 /** 1616 * VlanNetworkInterfaceCollection derived class for delivering 1617 * VLANNetworkInterface Collection Schema 1618 */ 1619 class VlanNetworkInterfaceCollection : public Node 1620 { 1621 public: 1622 template <typename CrowApp> 1623 VlanNetworkInterfaceCollection(CrowApp &app) : 1624 Node(app, "/redfish/v1/Managers/bmc/EthernetInterfaces/<str>/VLANs/", 1625 std::string()) 1626 { 1627 entityPrivileges = { 1628 {boost::beast::http::verb::get, {{"Login"}}}, 1629 {boost::beast::http::verb::head, {{"Login"}}}, 1630 {boost::beast::http::verb::patch, {{"ConfigureComponents"}}}, 1631 {boost::beast::http::verb::put, {{"ConfigureComponents"}}}, 1632 {boost::beast::http::verb::delete_, {{"ConfigureComponents"}}}, 1633 {boost::beast::http::verb::post, {{"ConfigureComponents"}}}}; 1634 } 1635 1636 private: 1637 /** 1638 * Functions triggers appropriate requests on DBus 1639 */ 1640 void doGet(crow::Response &res, const crow::Request &req, 1641 const std::vector<std::string> ¶ms) override 1642 { 1643 std::shared_ptr<AsyncResp> asyncResp = std::make_shared<AsyncResp>(res); 1644 if (params.size() != 1) 1645 { 1646 // This means there is a problem with the router 1647 messages::internalError(asyncResp->res); 1648 return; 1649 } 1650 1651 const std::string &rootInterfaceName = params[0]; 1652 1653 // Get eth interface list, and call the below callback for JSON 1654 // preparation 1655 getEthernetIfaceList( 1656 [asyncResp, rootInterfaceName{std::string(rootInterfaceName)}]( 1657 const bool &success, 1658 const std::vector<std::string> &iface_list) { 1659 if (!success) 1660 { 1661 messages::internalError(asyncResp->res); 1662 return; 1663 } 1664 asyncResp->res.jsonValue["@odata.type"] = 1665 "#VLanNetworkInterfaceCollection." 1666 "VLanNetworkInterfaceCollection"; 1667 asyncResp->res.jsonValue["@odata.context"] = 1668 "/redfish/v1/$metadata" 1669 "#VLanNetworkInterfaceCollection." 1670 "VLanNetworkInterfaceCollection"; 1671 asyncResp->res.jsonValue["Name"] = 1672 "VLAN Network Interface Collection"; 1673 1674 nlohmann::json iface_array = nlohmann::json::array(); 1675 1676 for (const std::string &iface_item : iface_list) 1677 { 1678 if (boost::starts_with(iface_item, rootInterfaceName + "_")) 1679 { 1680 iface_array.push_back( 1681 {{"@odata.id", 1682 "/redfish/v1/Managers/bmc/EthernetInterfaces/" + 1683 rootInterfaceName + "/VLANs/" + iface_item}}); 1684 } 1685 } 1686 1687 if (iface_array.empty()) 1688 { 1689 messages::resourceNotFound( 1690 asyncResp->res, "EthernetInterface", rootInterfaceName); 1691 return; 1692 } 1693 asyncResp->res.jsonValue["Members@odata.count"] = 1694 iface_array.size(); 1695 asyncResp->res.jsonValue["Members"] = std::move(iface_array); 1696 asyncResp->res.jsonValue["@odata.id"] = 1697 "/redfish/v1/Managers/bmc/EthernetInterfaces/" + 1698 rootInterfaceName + "/VLANs"; 1699 }); 1700 } 1701 1702 void doPost(crow::Response &res, const crow::Request &req, 1703 const std::vector<std::string> ¶ms) override 1704 { 1705 std::shared_ptr<AsyncResp> asyncResp = std::make_shared<AsyncResp>(res); 1706 if (params.size() != 1) 1707 { 1708 messages::internalError(asyncResp->res); 1709 return; 1710 } 1711 1712 uint32_t vlanId = 0; 1713 if (!json_util::readJson(req, res, "VLANId", vlanId)) 1714 { 1715 return; 1716 } 1717 const std::string &rootInterfaceName = params[0]; 1718 auto callback = [asyncResp](const boost::system::error_code ec) { 1719 if (ec) 1720 { 1721 // TODO(ed) make more consistent error messages based on 1722 // phosphor-network responses 1723 messages::internalError(asyncResp->res); 1724 return; 1725 } 1726 messages::created(asyncResp->res); 1727 }; 1728 crow::connections::systemBus->async_method_call( 1729 std::move(callback), "xyz.openbmc_project.Network", 1730 "/xyz/openbmc_project/network", 1731 "xyz.openbmc_project.Network.VLAN.Create", "VLAN", 1732 rootInterfaceName, vlanId); 1733 } 1734 }; 1735 } // namespace redfish 1736