xref: /openbmc/fb-ipmi-oem/src/oemcommands.cpp (revision 877d5dd9aa31462d83a2ce428b14c1c3c6bd3649)
1e7d23d0eSVijay Khemka /*
2e7d23d0eSVijay Khemka  * Copyright (c)  2018 Intel Corporation.
3e7d23d0eSVijay Khemka  * Copyright (c)  2018-present Facebook.
4e7d23d0eSVijay Khemka  *
5e7d23d0eSVijay Khemka  * Licensed under the Apache License, Version 2.0 (the "License");
6e7d23d0eSVijay Khemka  * you may not use this file except in compliance with the License.
7e7d23d0eSVijay Khemka  * You may obtain a copy of the License at
8e7d23d0eSVijay Khemka  *
9e7d23d0eSVijay Khemka  *      http://www.apache.org/licenses/LICENSE-2.0
10e7d23d0eSVijay Khemka  *
11e7d23d0eSVijay Khemka  * Unless required by applicable law or agreed to in writing, software
12e7d23d0eSVijay Khemka  * distributed under the License is distributed on an "AS IS" BASIS,
13e7d23d0eSVijay Khemka  * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
14e7d23d0eSVijay Khemka  * See the License for the specific language governing permissions and
15e7d23d0eSVijay Khemka  * limitations under the License.
16e7d23d0eSVijay Khemka  */
17e7d23d0eSVijay Khemka 
18e7d23d0eSVijay Khemka #include "xyz/openbmc_project/Common/error.hpp"
19e7d23d0eSVijay Khemka #include <ipmid/api.h>
20e7d23d0eSVijay Khemka 
211d4a0697SVijay Khemka #include <nlohmann/json.hpp>
22e7d23d0eSVijay Khemka #include <array>
23e7d23d0eSVijay Khemka #include <commandutils.hpp>
24e7d23d0eSVijay Khemka #include <cstring>
25e7d23d0eSVijay Khemka #include <iostream>
261d4a0697SVijay Khemka #include <iomanip>
271d4a0697SVijay Khemka #include <sstream>
281d4a0697SVijay Khemka #include <fstream>
29e7d23d0eSVijay Khemka #include <oemcommands.hpp>
301b6fae3fSVijay Khemka #include <ipmid/utils.hpp>
31e7d23d0eSVijay Khemka #include <phosphor-logging/log.hpp>
32e7d23d0eSVijay Khemka #include <sdbusplus/bus.hpp>
33e7d23d0eSVijay Khemka #include <string>
34e7d23d0eSVijay Khemka #include <vector>
35e7d23d0eSVijay Khemka 
36e7d23d0eSVijay Khemka #define SIZE_IANA_ID 3
37e7d23d0eSVijay Khemka 
38e7d23d0eSVijay Khemka namespace ipmi
39e7d23d0eSVijay Khemka {
40a7231893SVijay Khemka 
41a7231893SVijay Khemka using namespace phosphor::logging;
42a7231893SVijay Khemka 
43e7d23d0eSVijay Khemka static void registerOEMFunctions() __attribute__((constructor));
44e7d23d0eSVijay Khemka sdbusplus::bus::bus dbus(ipmid_get_sd_bus_connection()); // from ipmid/api.h
45e7d23d0eSVijay Khemka static constexpr size_t maxFRUStringLength = 0x3F;
46e7d23d0eSVijay Khemka 
47cc0d6d92SVijay Khemka int plat_udbg_get_post_desc(uint8_t, uint8_t *, uint8_t, uint8_t *, uint8_t *,
48cc0d6d92SVijay Khemka                             uint8_t *);
4938183d66SVijay Khemka int plat_udbg_get_gpio_desc(uint8_t, uint8_t *, uint8_t *, uint8_t *, uint8_t *,
5038183d66SVijay Khemka                             uint8_t *);
51e7d23d0eSVijay Khemka ipmi_ret_t plat_udbg_get_frame_data(uint8_t, uint8_t, uint8_t *, uint8_t *,
52e7d23d0eSVijay Khemka                                     uint8_t *);
53e7d23d0eSVijay Khemka ipmi_ret_t plat_udbg_control_panel(uint8_t, uint8_t, uint8_t, uint8_t *,
54e7d23d0eSVijay Khemka                                    uint8_t *);
551b6fae3fSVijay Khemka namespace variant_ns = sdbusplus::message::variant_ns;
56feaa9811SVijay Khemka nlohmann::json oemData __attribute__((init_priority(101)));
571b6fae3fSVijay Khemka 
581b6fae3fSVijay Khemka enum class LanParam : uint8_t
591b6fae3fSVijay Khemka {
601b6fae3fSVijay Khemka     INPROGRESS = 0,
611b6fae3fSVijay Khemka     AUTHSUPPORT = 1,
621b6fae3fSVijay Khemka     AUTHENABLES = 2,
631b6fae3fSVijay Khemka     IP = 3,
641b6fae3fSVijay Khemka     IPSRC = 4,
651b6fae3fSVijay Khemka     MAC = 5,
661b6fae3fSVijay Khemka     SUBNET = 6,
671b6fae3fSVijay Khemka     GATEWAY = 12,
681b6fae3fSVijay Khemka     VLAN = 20,
691b6fae3fSVijay Khemka     CIPHER_SUITE_COUNT = 22,
701b6fae3fSVijay Khemka     CIPHER_SUITE_ENTRIES = 23,
711b6fae3fSVijay Khemka     IPV6 = 59,
721b6fae3fSVijay Khemka };
731b6fae3fSVijay Khemka 
74a7231893SVijay Khemka namespace network
75a7231893SVijay Khemka {
76a7231893SVijay Khemka 
77a7231893SVijay Khemka constexpr auto ROOT = "/xyz/openbmc_project/network";
78a7231893SVijay Khemka constexpr auto SERVICE = "xyz.openbmc_project.Network";
79a7231893SVijay Khemka constexpr auto IPV4_TYPE = "ipv4";
80a7231893SVijay Khemka constexpr auto IPV6_TYPE = "ipv6";
81a7231893SVijay Khemka constexpr auto IPV4_PREFIX = "169.254";
82a7231893SVijay Khemka constexpr auto IPV6_PREFIX = "fe80";
83a7231893SVijay Khemka constexpr auto IP_INTERFACE = "xyz.openbmc_project.Network.IP";
84a7231893SVijay Khemka constexpr auto MAC_INTERFACE = "xyz.openbmc_project.Network.MACAddress";
85a7231893SVijay Khemka 
86a7231893SVijay Khemka bool isLinkLocalIP(const std::string &address)
87a7231893SVijay Khemka {
88a7231893SVijay Khemka     return address.find(IPV4_PREFIX) == 0 || address.find(IPV6_PREFIX) == 0;
89a7231893SVijay Khemka }
90a7231893SVijay Khemka 
91a7231893SVijay Khemka DbusObjectInfo getIPObject(sdbusplus::bus::bus &bus,
92a7231893SVijay Khemka                            const std::string &interface,
93a7231893SVijay Khemka                            const std::string &serviceRoot,
94a7231893SVijay Khemka                            const std::string &match)
95a7231893SVijay Khemka {
96a7231893SVijay Khemka     auto objectTree = getAllDbusObjects(bus, serviceRoot, interface, match);
97a7231893SVijay Khemka 
98a7231893SVijay Khemka     if (objectTree.empty())
99a7231893SVijay Khemka     {
100a7231893SVijay Khemka         log<level::ERR>("No Object has implemented the IP interface",
101a7231893SVijay Khemka                         entry("INTERFACE=%s", interface.c_str()));
102a7231893SVijay Khemka     }
103a7231893SVijay Khemka 
104a7231893SVijay Khemka     DbusObjectInfo objectInfo;
105a7231893SVijay Khemka 
106a7231893SVijay Khemka     for (auto &object : objectTree)
107a7231893SVijay Khemka     {
108a7231893SVijay Khemka         auto variant =
109a7231893SVijay Khemka             ipmi::getDbusProperty(bus, object.second.begin()->first,
110a7231893SVijay Khemka                                   object.first, IP_INTERFACE, "Address");
111a7231893SVijay Khemka 
112a7231893SVijay Khemka         objectInfo = std::make_pair(object.first, object.second.begin()->first);
113a7231893SVijay Khemka 
114a7231893SVijay Khemka         // if LinkLocalIP found look for Non-LinkLocalIP
115a7231893SVijay Khemka         if (isLinkLocalIP(std::get<std::string>(variant)))
116a7231893SVijay Khemka         {
117a7231893SVijay Khemka             continue;
118a7231893SVijay Khemka         }
119a7231893SVijay Khemka         else
120a7231893SVijay Khemka         {
121a7231893SVijay Khemka             break;
122a7231893SVijay Khemka         }
123a7231893SVijay Khemka     }
124a7231893SVijay Khemka     return objectInfo;
125a7231893SVijay Khemka }
126a7231893SVijay Khemka 
127a7231893SVijay Khemka } // namespace network
128a7231893SVijay Khemka 
1291d4a0697SVijay Khemka //----------------------------------------------------------------------
1301d4a0697SVijay Khemka // Helper functions for storing oem data
1311d4a0697SVijay Khemka //----------------------------------------------------------------------
1321d4a0697SVijay Khemka 
1331d4a0697SVijay Khemka void flushOemData()
1341d4a0697SVijay Khemka {
1351d4a0697SVijay Khemka     std::ofstream file(JSON_OEM_DATA_FILE);
1361d4a0697SVijay Khemka     file << oemData;
137feaa9811SVijay Khemka     file.close();
1381d4a0697SVijay Khemka     return;
1391d4a0697SVijay Khemka }
1401d4a0697SVijay Khemka 
1411d4a0697SVijay Khemka std::string bytesToStr(uint8_t *byte, int len)
1421d4a0697SVijay Khemka {
1431d4a0697SVijay Khemka     std::stringstream ss;
1441d4a0697SVijay Khemka     int i;
1451d4a0697SVijay Khemka 
1461d4a0697SVijay Khemka     ss << std::hex;
1471d4a0697SVijay Khemka     for (i = 0; i < len; i++)
1481d4a0697SVijay Khemka     {
1491d4a0697SVijay Khemka         ss << std::setw(2) << std::setfill('0') << (int)byte[i];
1501d4a0697SVijay Khemka     }
1511d4a0697SVijay Khemka 
1521d4a0697SVijay Khemka     return ss.str();
1531d4a0697SVijay Khemka }
1541d4a0697SVijay Khemka 
1551d4a0697SVijay Khemka int strToBytes(std::string &str, uint8_t *data)
1561d4a0697SVijay Khemka {
1571d4a0697SVijay Khemka     std::string sstr;
1581d4a0697SVijay Khemka     int i;
1591d4a0697SVijay Khemka 
1601d4a0697SVijay Khemka     for (i = 0; i < (str.length()) / 2; i++)
1611d4a0697SVijay Khemka     {
1621d4a0697SVijay Khemka         sstr = str.substr(i * 2, 2);
1631d4a0697SVijay Khemka         data[i] = (uint8_t)std::strtol(sstr.c_str(), NULL, 16);
1641d4a0697SVijay Khemka     }
1651d4a0697SVijay Khemka     return i;
1661d4a0697SVijay Khemka }
1671d4a0697SVijay Khemka 
1681b6fae3fSVijay Khemka ipmi_ret_t getNetworkData(uint8_t lan_param, char *data)
1691b6fae3fSVijay Khemka {
1701b6fae3fSVijay Khemka     ipmi_ret_t rc = IPMI_CC_OK;
1711b6fae3fSVijay Khemka     sdbusplus::bus::bus bus(ipmid_get_sd_bus_connection());
1721b6fae3fSVijay Khemka 
1731b6fae3fSVijay Khemka     const std::string ethdevice = "eth0";
1741b6fae3fSVijay Khemka 
1751b6fae3fSVijay Khemka     switch (static_cast<LanParam>(lan_param))
1761b6fae3fSVijay Khemka     {
1771b6fae3fSVijay Khemka         case LanParam::IP:
1781b6fae3fSVijay Khemka         {
179a7231893SVijay Khemka             auto ethIP = ethdevice + "/" + ipmi::network::IPV4_TYPE;
1801b6fae3fSVijay Khemka             std::string ipaddress;
181a7231893SVijay Khemka             auto ipObjectInfo = ipmi::network::getIPObject(
1821b6fae3fSVijay Khemka                 bus, ipmi::network::IP_INTERFACE, ipmi::network::ROOT, ethIP);
1831b6fae3fSVijay Khemka 
1841b6fae3fSVijay Khemka             auto properties = ipmi::getAllDbusProperties(
1851b6fae3fSVijay Khemka                 bus, ipObjectInfo.second, ipObjectInfo.first,
1861b6fae3fSVijay Khemka                 ipmi::network::IP_INTERFACE);
1871b6fae3fSVijay Khemka 
1881b6fae3fSVijay Khemka             ipaddress = variant_ns::get<std::string>(properties["Address"]);
1891b6fae3fSVijay Khemka 
1901b6fae3fSVijay Khemka             std::strcpy(data, ipaddress.c_str());
1911b6fae3fSVijay Khemka         }
1921b6fae3fSVijay Khemka         break;
1931b6fae3fSVijay Khemka 
1941b6fae3fSVijay Khemka         case LanParam::IPV6:
1951b6fae3fSVijay Khemka         {
196a7231893SVijay Khemka             auto ethIP = ethdevice + "/" + ipmi::network::IPV6_TYPE;
1971b6fae3fSVijay Khemka             std::string ipaddress;
198a7231893SVijay Khemka             auto ipObjectInfo = ipmi::network::getIPObject(
1991b6fae3fSVijay Khemka                 bus, ipmi::network::IP_INTERFACE, ipmi::network::ROOT, ethIP);
2001b6fae3fSVijay Khemka 
2011b6fae3fSVijay Khemka             auto properties = ipmi::getAllDbusProperties(
2021b6fae3fSVijay Khemka                 bus, ipObjectInfo.second, ipObjectInfo.first,
2031b6fae3fSVijay Khemka                 ipmi::network::IP_INTERFACE);
2041b6fae3fSVijay Khemka 
2051b6fae3fSVijay Khemka             ipaddress = variant_ns::get<std::string>(properties["Address"]);
2061b6fae3fSVijay Khemka 
2071b6fae3fSVijay Khemka             std::strcpy(data, ipaddress.c_str());
2081b6fae3fSVijay Khemka         }
2091b6fae3fSVijay Khemka         break;
2101b6fae3fSVijay Khemka 
2111b6fae3fSVijay Khemka         case LanParam::MAC:
2121b6fae3fSVijay Khemka         {
2131b6fae3fSVijay Khemka             std::string macAddress;
2141b6fae3fSVijay Khemka             auto macObjectInfo =
2151b6fae3fSVijay Khemka                 ipmi::getDbusObject(bus, ipmi::network::MAC_INTERFACE,
2161b6fae3fSVijay Khemka                                     ipmi::network::ROOT, ethdevice);
2171b6fae3fSVijay Khemka 
2181b6fae3fSVijay Khemka             auto variant = ipmi::getDbusProperty(
2191b6fae3fSVijay Khemka                 bus, macObjectInfo.second, macObjectInfo.first,
2201b6fae3fSVijay Khemka                 ipmi::network::MAC_INTERFACE, "MACAddress");
2211b6fae3fSVijay Khemka 
2221b6fae3fSVijay Khemka             macAddress = variant_ns::get<std::string>(variant);
2231b6fae3fSVijay Khemka 
2241b6fae3fSVijay Khemka             sscanf(macAddress.c_str(), ipmi::network::MAC_ADDRESS_FORMAT,
2251b6fae3fSVijay Khemka                    (data), (data + 1), (data + 2), (data + 3), (data + 4),
2261b6fae3fSVijay Khemka                    (data + 5));
2271b6fae3fSVijay Khemka             std::strcpy(data, macAddress.c_str());
2281b6fae3fSVijay Khemka         }
2291b6fae3fSVijay Khemka         break;
2301b6fae3fSVijay Khemka 
2311b6fae3fSVijay Khemka         default:
2321b6fae3fSVijay Khemka             rc = IPMI_CC_PARM_OUT_OF_RANGE;
2331b6fae3fSVijay Khemka     }
2341b6fae3fSVijay Khemka     return rc;
2351b6fae3fSVijay Khemka }
236e7d23d0eSVijay Khemka 
237e7d23d0eSVijay Khemka // return code: 0 successful
238e7d23d0eSVijay Khemka int8_t getFruData(std::string &data, std::string &name)
239e7d23d0eSVijay Khemka {
240e7d23d0eSVijay Khemka     std::string objpath = "/xyz/openbmc_project/FruDevice";
241e7d23d0eSVijay Khemka     std::string intf = "xyz.openbmc_project.FruDeviceManager";
242e7d23d0eSVijay Khemka     std::string service = getService(dbus, intf, objpath);
243e7d23d0eSVijay Khemka     ObjectValueTree valueTree = getManagedObjects(dbus, service, "/");
244e7d23d0eSVijay Khemka     if (valueTree.empty())
245e7d23d0eSVijay Khemka     {
246e7d23d0eSVijay Khemka         phosphor::logging::log<phosphor::logging::level::ERR>(
247e7d23d0eSVijay Khemka             "No object implements interface",
248e7d23d0eSVijay Khemka             phosphor::logging::entry("INTF=%s", intf.c_str()));
249e7d23d0eSVijay Khemka         return -1;
250e7d23d0eSVijay Khemka     }
251e7d23d0eSVijay Khemka 
252e7d23d0eSVijay Khemka     for (const auto &item : valueTree)
253e7d23d0eSVijay Khemka     {
254e7d23d0eSVijay Khemka         auto interface = item.second.find("xyz.openbmc_project.FruDevice");
255e7d23d0eSVijay Khemka         if (interface == item.second.end())
256e7d23d0eSVijay Khemka         {
257e7d23d0eSVijay Khemka             continue;
258e7d23d0eSVijay Khemka         }
259e7d23d0eSVijay Khemka 
260e7d23d0eSVijay Khemka         auto property = interface->second.find(name.c_str());
261e7d23d0eSVijay Khemka         if (property == interface->second.end())
262e7d23d0eSVijay Khemka         {
263e7d23d0eSVijay Khemka             continue;
264e7d23d0eSVijay Khemka         }
265e7d23d0eSVijay Khemka 
266e7d23d0eSVijay Khemka         try
267e7d23d0eSVijay Khemka         {
268e7d23d0eSVijay Khemka             Value variant = property->second;
269e7d23d0eSVijay Khemka             std::string &result =
270e7d23d0eSVijay Khemka                 sdbusplus::message::variant_ns::get<std::string>(variant);
271e7d23d0eSVijay Khemka             if (result.size() > maxFRUStringLength)
272e7d23d0eSVijay Khemka             {
273e7d23d0eSVijay Khemka                 phosphor::logging::log<phosphor::logging::level::ERR>(
274e7d23d0eSVijay Khemka                     "FRU serial number exceed maximum length");
275e7d23d0eSVijay Khemka                 return -1;
276e7d23d0eSVijay Khemka             }
277e7d23d0eSVijay Khemka             data = result;
278e7d23d0eSVijay Khemka             return 0;
279e7d23d0eSVijay Khemka         }
280e7d23d0eSVijay Khemka         catch (sdbusplus::message::variant_ns::bad_variant_access &e)
281e7d23d0eSVijay Khemka         {
282e7d23d0eSVijay Khemka             phosphor::logging::log<phosphor::logging::level::ERR>(e.what());
283e7d23d0eSVijay Khemka             return -1;
284e7d23d0eSVijay Khemka         }
285e7d23d0eSVijay Khemka     }
286e7d23d0eSVijay Khemka     return -1;
287e7d23d0eSVijay Khemka }
288e7d23d0eSVijay Khemka 
289e7d23d0eSVijay Khemka typedef struct
290e7d23d0eSVijay Khemka {
291e7d23d0eSVijay Khemka     uint8_t cur_power_state;
292e7d23d0eSVijay Khemka     uint8_t last_power_event;
293e7d23d0eSVijay Khemka     uint8_t misc_power_state;
294e7d23d0eSVijay Khemka     uint8_t front_panel_button_cap_status;
295e7d23d0eSVijay Khemka } ipmi_get_chassis_status_t;
296e7d23d0eSVijay Khemka 
297e7d23d0eSVijay Khemka // Todo: Needs to update this as per power policy when integrated
298e7d23d0eSVijay Khemka //----------------------------------------------------------------------
299e7d23d0eSVijay Khemka // Get Chassis Status commands
300e7d23d0eSVijay Khemka //----------------------------------------------------------------------
301e7d23d0eSVijay Khemka ipmi_ret_t ipmiGetChassisStatus(ipmi_netfn_t netfn, ipmi_cmd_t cmd,
302e7d23d0eSVijay Khemka                                 ipmi_request_t request,
303e7d23d0eSVijay Khemka                                 ipmi_response_t response,
304e7d23d0eSVijay Khemka                                 ipmi_data_len_t data_len,
305e7d23d0eSVijay Khemka                                 ipmi_context_t context)
306e7d23d0eSVijay Khemka {
307e7d23d0eSVijay Khemka     ipmi_get_chassis_status_t chassis_status;
308e7d23d0eSVijay Khemka     uint8_t s = 2;
309e7d23d0eSVijay Khemka 
310e7d23d0eSVijay Khemka     *data_len = 4;
311e7d23d0eSVijay Khemka 
312e7d23d0eSVijay Khemka     // Current Power State
313e7d23d0eSVijay Khemka     // [7] reserved
314e7d23d0eSVijay Khemka     // [6..5] power restore policy
315e7d23d0eSVijay Khemka     //          00b = chassis stays powered off after AC/mains returns
316e7d23d0eSVijay Khemka     //          01b = after AC returns, power is restored to the state that was
317e7d23d0eSVijay Khemka     //          in effect when AC/mains was lost.
318e7d23d0eSVijay Khemka     //          10b = chassis always powers up after AC/mains returns
319e7d23d0eSVijay Khemka     //          11b = unknow
320e7d23d0eSVijay Khemka     //        Set to 00b, by observing the hardware behavior.
321e7d23d0eSVijay Khemka     //        Do we need to define a dbus property to identify the restore
322e7d23d0eSVijay Khemka     //        policy?
323e7d23d0eSVijay Khemka 
324e7d23d0eSVijay Khemka     // [4] power control fault
325e7d23d0eSVijay Khemka     //       1b = controller attempted to turn system power on or off, but
326e7d23d0eSVijay Khemka     //       system did not enter desired state.
327e7d23d0eSVijay Khemka     //       Set to 0b, since We don't support it..
328e7d23d0eSVijay Khemka 
329e7d23d0eSVijay Khemka     // [3] power fault
330e7d23d0eSVijay Khemka     //       1b = fault detected in main power subsystem.
331e7d23d0eSVijay Khemka     //       set to 0b. for we don't support it.
332e7d23d0eSVijay Khemka 
333e7d23d0eSVijay Khemka     // [2] 1b = interlock (chassis is presently shut down because a chassis
334e7d23d0eSVijay Khemka     //       panel interlock switch is active). (IPMI 1.5)
335e7d23d0eSVijay Khemka     //       set to 0b,  for we don't support it.
336e7d23d0eSVijay Khemka 
337e7d23d0eSVijay Khemka     // [1] power overload
338e7d23d0eSVijay Khemka     //      1b = system shutdown because of power overload condition.
339e7d23d0eSVijay Khemka     //       set to 0b,  for we don't support it.
340e7d23d0eSVijay Khemka 
341e7d23d0eSVijay Khemka     // [0] power is on
342e7d23d0eSVijay Khemka     //       1b = system power is on
343e7d23d0eSVijay Khemka     //       0b = system power is off(soft-off S4/S5, or mechanical off)
344e7d23d0eSVijay Khemka 
345e7d23d0eSVijay Khemka     chassis_status.cur_power_state = ((s & 0x3) << 5) | (1 & 0x1);
346e7d23d0eSVijay Khemka 
347e7d23d0eSVijay Khemka     // Last Power Event
348e7d23d0eSVijay Khemka     // [7..5] – reserved
349e7d23d0eSVijay Khemka     // [4] – 1b = last ‘Power is on’ state was entered via IPMI command
350e7d23d0eSVijay Khemka     // [3] – 1b = last power down caused by power fault
351e7d23d0eSVijay Khemka     // [2] – 1b = last power down caused by a power interlock being activated
352e7d23d0eSVijay Khemka     // [1] – 1b = last power down caused by a Power overload
353e7d23d0eSVijay Khemka     // [0] – 1b = AC failed
354e7d23d0eSVijay Khemka     // set to 0x0,  for we don't support these fields.
355e7d23d0eSVijay Khemka 
356e7d23d0eSVijay Khemka     chassis_status.last_power_event = 0;
357e7d23d0eSVijay Khemka 
358e7d23d0eSVijay Khemka     // Misc. Chassis State
359e7d23d0eSVijay Khemka     // [7] – reserved
360e7d23d0eSVijay Khemka     // [6] – 1b = Chassis Identify command and state info supported (Optional)
361e7d23d0eSVijay Khemka     //       0b = Chassis Identify command support unspecified via this command.
362e7d23d0eSVijay Khemka     //       (The Get Command Support command , if implemented, would still
363e7d23d0eSVijay Khemka     //       indicate support for the Chassis Identify command)
364e7d23d0eSVijay Khemka     // [5..4] – Chassis Identify State. Mandatory when bit[6] =1b, reserved
365e7d23d0eSVijay Khemka     // (return
366e7d23d0eSVijay Khemka     //          as 00b) otherwise. Returns the present chassis identify state.
367e7d23d0eSVijay Khemka     //           Refer to the Chassis Identify command for more info.
368e7d23d0eSVijay Khemka     //         00b = chassis identify state = Off
369e7d23d0eSVijay Khemka     //         01b = chassis identify state = Temporary(timed) On
370e7d23d0eSVijay Khemka     //         10b = chassis identify state = Indefinite On
371e7d23d0eSVijay Khemka     //         11b = reserved
372e7d23d0eSVijay Khemka     // [3] – 1b = Cooling/fan fault detected
373e7d23d0eSVijay Khemka     // [2] – 1b = Drive Fault
374e7d23d0eSVijay Khemka     // [1] – 1b = Front Panel Lockout active (power off and reset via chassis
375e7d23d0eSVijay Khemka     //       push-buttons disabled.)
376e7d23d0eSVijay Khemka     // [0] – 1b = Chassis Intrusion active
377e7d23d0eSVijay Khemka     //  set to 0,  for we don't support them.
378e7d23d0eSVijay Khemka     chassis_status.misc_power_state = 0x40;
379e7d23d0eSVijay Khemka 
380e7d23d0eSVijay Khemka     //  Front Panel Button Capabilities and disable/enable status(Optional)
381e7d23d0eSVijay Khemka     //  set to 0,  for we don't support them.
382e7d23d0eSVijay Khemka     chassis_status.front_panel_button_cap_status = 0;
383e7d23d0eSVijay Khemka 
384e7d23d0eSVijay Khemka     // Pack the actual response
385e7d23d0eSVijay Khemka     std::memcpy(response, &chassis_status, *data_len);
386e7d23d0eSVijay Khemka 
387e7d23d0eSVijay Khemka     return IPMI_CC_OK;
388e7d23d0eSVijay Khemka }
389e7d23d0eSVijay Khemka 
390e7d23d0eSVijay Khemka //----------------------------------------------------------------------
391e7d23d0eSVijay Khemka // Get Debug Frame Info
392e7d23d0eSVijay Khemka //----------------------------------------------------------------------
393e7d23d0eSVijay Khemka ipmi_ret_t ipmiOemDbgGetFrameInfo(ipmi_netfn_t netfn, ipmi_cmd_t cmd,
394e7d23d0eSVijay Khemka                                   ipmi_request_t request,
395e7d23d0eSVijay Khemka                                   ipmi_response_t response,
396e7d23d0eSVijay Khemka                                   ipmi_data_len_t data_len,
397e7d23d0eSVijay Khemka                                   ipmi_context_t context)
398e7d23d0eSVijay Khemka {
399e7d23d0eSVijay Khemka     uint8_t *req = reinterpret_cast<uint8_t *>(request);
400e7d23d0eSVijay Khemka     uint8_t *res = reinterpret_cast<uint8_t *>(response);
401e7d23d0eSVijay Khemka     uint8_t num_frames = 3;
402e7d23d0eSVijay Khemka 
403e7d23d0eSVijay Khemka     std::memcpy(res, req, SIZE_IANA_ID); // IANA ID
404e7d23d0eSVijay Khemka     res[SIZE_IANA_ID] = num_frames;
405e7d23d0eSVijay Khemka     *data_len = SIZE_IANA_ID + 1;
406e7d23d0eSVijay Khemka 
407e7d23d0eSVijay Khemka     return IPMI_CC_OK;
408e7d23d0eSVijay Khemka }
409e7d23d0eSVijay Khemka 
410e7d23d0eSVijay Khemka //----------------------------------------------------------------------
411e7d23d0eSVijay Khemka // Get Debug Updated Frames
412e7d23d0eSVijay Khemka //----------------------------------------------------------------------
413e7d23d0eSVijay Khemka ipmi_ret_t ipmiOemDbgGetUpdFrames(ipmi_netfn_t netfn, ipmi_cmd_t cmd,
414e7d23d0eSVijay Khemka                                   ipmi_request_t request,
415e7d23d0eSVijay Khemka                                   ipmi_response_t response,
416e7d23d0eSVijay Khemka                                   ipmi_data_len_t data_len,
417e7d23d0eSVijay Khemka                                   ipmi_context_t context)
418e7d23d0eSVijay Khemka {
419e7d23d0eSVijay Khemka     uint8_t *req = reinterpret_cast<uint8_t *>(request);
420e7d23d0eSVijay Khemka     uint8_t *res = reinterpret_cast<uint8_t *>(response);
421e7d23d0eSVijay Khemka     uint8_t num_updates = 3;
422e7d23d0eSVijay Khemka     *data_len = 4;
423e7d23d0eSVijay Khemka 
424e7d23d0eSVijay Khemka     std::memcpy(res, req, SIZE_IANA_ID); // IANA ID
425e7d23d0eSVijay Khemka     res[SIZE_IANA_ID] = num_updates;
426e7d23d0eSVijay Khemka     *data_len = SIZE_IANA_ID + num_updates + 1;
427e7d23d0eSVijay Khemka     res[SIZE_IANA_ID + 1] = 1; // info page update
428e7d23d0eSVijay Khemka     res[SIZE_IANA_ID + 2] = 2; // cri sel update
429e7d23d0eSVijay Khemka     res[SIZE_IANA_ID + 3] = 3; // cri sensor update
430e7d23d0eSVijay Khemka 
431e7d23d0eSVijay Khemka     return IPMI_CC_OK;
432e7d23d0eSVijay Khemka }
433e7d23d0eSVijay Khemka 
434e7d23d0eSVijay Khemka //----------------------------------------------------------------------
435e7d23d0eSVijay Khemka // Get Debug POST Description
436e7d23d0eSVijay Khemka //----------------------------------------------------------------------
437e7d23d0eSVijay Khemka ipmi_ret_t ipmiOemDbgGetPostDesc(ipmi_netfn_t netfn, ipmi_cmd_t cmd,
438e7d23d0eSVijay Khemka                                  ipmi_request_t request,
439e7d23d0eSVijay Khemka                                  ipmi_response_t response,
440e7d23d0eSVijay Khemka                                  ipmi_data_len_t data_len,
441e7d23d0eSVijay Khemka                                  ipmi_context_t context)
442e7d23d0eSVijay Khemka {
443e7d23d0eSVijay Khemka     uint8_t *req = reinterpret_cast<uint8_t *>(request);
444e7d23d0eSVijay Khemka     uint8_t *res = reinterpret_cast<uint8_t *>(response);
445e7d23d0eSVijay Khemka     uint8_t index = 0;
446e7d23d0eSVijay Khemka     uint8_t next = 0;
447e7d23d0eSVijay Khemka     uint8_t end = 0;
448e7d23d0eSVijay Khemka     uint8_t phase = 0;
449cc0d6d92SVijay Khemka     uint8_t descLen = 0;
450e7d23d0eSVijay Khemka     int ret;
451e7d23d0eSVijay Khemka 
452e7d23d0eSVijay Khemka     index = req[3];
453e7d23d0eSVijay Khemka     phase = req[4];
454e7d23d0eSVijay Khemka 
455cc0d6d92SVijay Khemka     ret = plat_udbg_get_post_desc(index, &next, phase, &end, &descLen, &res[8]);
456e7d23d0eSVijay Khemka     if (ret)
457e7d23d0eSVijay Khemka     {
458e7d23d0eSVijay Khemka         memcpy(res, req, SIZE_IANA_ID); // IANA ID
459e7d23d0eSVijay Khemka         *data_len = SIZE_IANA_ID;
460e7d23d0eSVijay Khemka         return IPMI_CC_UNSPECIFIED_ERROR;
461e7d23d0eSVijay Khemka     }
462e7d23d0eSVijay Khemka 
463e7d23d0eSVijay Khemka     memcpy(res, req, SIZE_IANA_ID); // IANA ID
464e7d23d0eSVijay Khemka     res[3] = index;
465e7d23d0eSVijay Khemka     res[4] = next;
466e7d23d0eSVijay Khemka     res[5] = phase;
467e7d23d0eSVijay Khemka     res[6] = end;
468cc0d6d92SVijay Khemka     res[7] = descLen;
469cc0d6d92SVijay Khemka     *data_len = SIZE_IANA_ID + 5 + descLen;
470e7d23d0eSVijay Khemka 
471e7d23d0eSVijay Khemka     return IPMI_CC_OK;
472e7d23d0eSVijay Khemka }
473e7d23d0eSVijay Khemka 
474e7d23d0eSVijay Khemka //----------------------------------------------------------------------
475e7d23d0eSVijay Khemka // Get Debug GPIO Description
476e7d23d0eSVijay Khemka //----------------------------------------------------------------------
477e7d23d0eSVijay Khemka ipmi_ret_t ipmiOemDbgGetGpioDesc(ipmi_netfn_t netfn, ipmi_cmd_t cmd,
478e7d23d0eSVijay Khemka                                  ipmi_request_t request,
479e7d23d0eSVijay Khemka                                  ipmi_response_t response,
480e7d23d0eSVijay Khemka                                  ipmi_data_len_t data_len,
481e7d23d0eSVijay Khemka                                  ipmi_context_t context)
482e7d23d0eSVijay Khemka {
483e7d23d0eSVijay Khemka     uint8_t *req = reinterpret_cast<uint8_t *>(request);
484e7d23d0eSVijay Khemka     uint8_t *res = reinterpret_cast<uint8_t *>(response);
485e7d23d0eSVijay Khemka 
48638183d66SVijay Khemka     uint8_t index = 0;
48738183d66SVijay Khemka     uint8_t next = 0;
48838183d66SVijay Khemka     uint8_t level = 0;
48938183d66SVijay Khemka     uint8_t pinDef = 0;
49038183d66SVijay Khemka     uint8_t descLen = 0;
49138183d66SVijay Khemka     int ret;
492e7d23d0eSVijay Khemka 
49338183d66SVijay Khemka     index = req[3];
49438183d66SVijay Khemka 
49538183d66SVijay Khemka     ret = plat_udbg_get_gpio_desc(index, &next, &level, &pinDef, &descLen,
49638183d66SVijay Khemka                                   &res[8]);
49738183d66SVijay Khemka     if (ret)
49838183d66SVijay Khemka     {
49938183d66SVijay Khemka         memcpy(res, req, SIZE_IANA_ID); // IANA ID
50038183d66SVijay Khemka         *data_len = SIZE_IANA_ID;
50138183d66SVijay Khemka         return IPMI_CC_UNSPECIFIED_ERROR;
50238183d66SVijay Khemka     }
50338183d66SVijay Khemka 
50438183d66SVijay Khemka     memcpy(res, req, SIZE_IANA_ID); // IANA ID
50538183d66SVijay Khemka     res[3] = index;
50638183d66SVijay Khemka     res[4] = next;
50738183d66SVijay Khemka     res[5] = level;
50838183d66SVijay Khemka     res[6] = pinDef;
50938183d66SVijay Khemka     res[7] = descLen;
51038183d66SVijay Khemka     *data_len = SIZE_IANA_ID + 5 + descLen;
511e7d23d0eSVijay Khemka 
512e7d23d0eSVijay Khemka     return IPMI_CC_OK;
513e7d23d0eSVijay Khemka }
514e7d23d0eSVijay Khemka 
515e7d23d0eSVijay Khemka //----------------------------------------------------------------------
516e7d23d0eSVijay Khemka // Get Debug Frame Data
517e7d23d0eSVijay Khemka //----------------------------------------------------------------------
518e7d23d0eSVijay Khemka ipmi_ret_t ipmiOemDbgGetFrameData(ipmi_netfn_t netfn, ipmi_cmd_t cmd,
519e7d23d0eSVijay Khemka                                   ipmi_request_t request,
520e7d23d0eSVijay Khemka                                   ipmi_response_t response,
521e7d23d0eSVijay Khemka                                   ipmi_data_len_t data_len,
522e7d23d0eSVijay Khemka                                   ipmi_context_t context)
523e7d23d0eSVijay Khemka {
524e7d23d0eSVijay Khemka     uint8_t *req = reinterpret_cast<uint8_t *>(request);
525e7d23d0eSVijay Khemka     uint8_t *res = reinterpret_cast<uint8_t *>(response);
526e7d23d0eSVijay Khemka     uint8_t frame;
527e7d23d0eSVijay Khemka     uint8_t page;
528e7d23d0eSVijay Khemka     uint8_t next;
529e7d23d0eSVijay Khemka     uint8_t count;
530e7d23d0eSVijay Khemka     int ret;
531e7d23d0eSVijay Khemka 
532e7d23d0eSVijay Khemka     frame = req[3];
533e7d23d0eSVijay Khemka     page = req[4];
534e7d23d0eSVijay Khemka     int fr = frame;
535e7d23d0eSVijay Khemka     int pg = page;
536e7d23d0eSVijay Khemka 
537e7d23d0eSVijay Khemka     ret = plat_udbg_get_frame_data(frame, page, &next, &count, &res[7]);
538e7d23d0eSVijay Khemka     if (ret)
539e7d23d0eSVijay Khemka     {
540e7d23d0eSVijay Khemka         memcpy(res, req, SIZE_IANA_ID); // IANA ID
541e7d23d0eSVijay Khemka         *data_len = SIZE_IANA_ID;
542e7d23d0eSVijay Khemka         return IPMI_CC_UNSPECIFIED_ERROR;
543e7d23d0eSVijay Khemka     }
544e7d23d0eSVijay Khemka 
545e7d23d0eSVijay Khemka     memcpy(res, req, SIZE_IANA_ID); // IANA ID
546e7d23d0eSVijay Khemka     res[3] = frame;
547e7d23d0eSVijay Khemka     res[4] = page;
548e7d23d0eSVijay Khemka     res[5] = next;
549e7d23d0eSVijay Khemka     res[6] = count;
550e7d23d0eSVijay Khemka     *data_len = SIZE_IANA_ID + 4 + count;
551e7d23d0eSVijay Khemka 
552e7d23d0eSVijay Khemka     return IPMI_CC_OK;
553e7d23d0eSVijay Khemka }
554e7d23d0eSVijay Khemka 
555e7d23d0eSVijay Khemka //----------------------------------------------------------------------
556e7d23d0eSVijay Khemka // Get Debug Control Panel
557e7d23d0eSVijay Khemka //----------------------------------------------------------------------
558e7d23d0eSVijay Khemka ipmi_ret_t ipmiOemDbgGetCtrlPanel(ipmi_netfn_t netfn, ipmi_cmd_t cmd,
559e7d23d0eSVijay Khemka                                   ipmi_request_t request,
560e7d23d0eSVijay Khemka                                   ipmi_response_t response,
561e7d23d0eSVijay Khemka                                   ipmi_data_len_t data_len,
562e7d23d0eSVijay Khemka                                   ipmi_context_t context)
563e7d23d0eSVijay Khemka {
564e7d23d0eSVijay Khemka     uint8_t *req = reinterpret_cast<uint8_t *>(request);
565e7d23d0eSVijay Khemka     uint8_t *res = reinterpret_cast<uint8_t *>(response);
566e7d23d0eSVijay Khemka 
567e7d23d0eSVijay Khemka     uint8_t panel;
568e7d23d0eSVijay Khemka     uint8_t operation;
569e7d23d0eSVijay Khemka     uint8_t item;
570e7d23d0eSVijay Khemka     uint8_t count;
571e7d23d0eSVijay Khemka     ipmi_ret_t ret;
572e7d23d0eSVijay Khemka 
573e7d23d0eSVijay Khemka     panel = req[3];
574e7d23d0eSVijay Khemka     operation = req[4];
575e7d23d0eSVijay Khemka     item = req[5];
576e7d23d0eSVijay Khemka 
577e7d23d0eSVijay Khemka     ret = plat_udbg_control_panel(panel, operation, item, &count, &res[3]);
578e7d23d0eSVijay Khemka 
579e7d23d0eSVijay Khemka     std::memcpy(res, req, SIZE_IANA_ID); // IANA ID
580e7d23d0eSVijay Khemka     *data_len = SIZE_IANA_ID + count;
581e7d23d0eSVijay Khemka 
582e7d23d0eSVijay Khemka     return ret;
583e7d23d0eSVijay Khemka }
584e7d23d0eSVijay Khemka 
585e7d23d0eSVijay Khemka //----------------------------------------------------------------------
586e7d23d0eSVijay Khemka // Set Dimm Info (CMD_OEM_SET_DIMM_INFO)
587e7d23d0eSVijay Khemka //----------------------------------------------------------------------
588e7d23d0eSVijay Khemka ipmi_ret_t ipmiOemSetDimmInfo(ipmi_netfn_t netfn, ipmi_cmd_t cmd,
589e7d23d0eSVijay Khemka                               ipmi_request_t request, ipmi_response_t response,
590e7d23d0eSVijay Khemka                               ipmi_data_len_t data_len, ipmi_context_t context)
591e7d23d0eSVijay Khemka {
592e7d23d0eSVijay Khemka     uint8_t *req = reinterpret_cast<uint8_t *>(request);
5931d4a0697SVijay Khemka 
5941d4a0697SVijay Khemka     uint8_t index = req[0];
5951d4a0697SVijay Khemka     uint8_t type = req[1];
5961d4a0697SVijay Khemka     uint16_t speed;
5971d4a0697SVijay Khemka     uint32_t size;
5981d4a0697SVijay Khemka 
5991d4a0697SVijay Khemka     memcpy(&speed, &req[2], 2);
6001d4a0697SVijay Khemka     memcpy(&size, &req[4], 4);
6011d4a0697SVijay Khemka 
6021d4a0697SVijay Khemka     std::stringstream ss;
6031d4a0697SVijay Khemka     ss << std::hex;
6041d4a0697SVijay Khemka     ss << std::setw(2) << std::setfill('0') << (int)index;
6051d4a0697SVijay Khemka 
6061d4a0697SVijay Khemka     oemData[KEY_SYS_CONFIG][ss.str()][KEY_DIMM_INDEX] = index;
6071d4a0697SVijay Khemka     oemData[KEY_SYS_CONFIG][ss.str()][KEY_DIMM_TYPE] = type;
6081d4a0697SVijay Khemka     oemData[KEY_SYS_CONFIG][ss.str()][KEY_DIMM_SPEED] = speed;
6091d4a0697SVijay Khemka     oemData[KEY_SYS_CONFIG][ss.str()][KEY_DIMM_SIZE] = size;
6101d4a0697SVijay Khemka 
6111d4a0697SVijay Khemka     flushOemData();
6121d4a0697SVijay Khemka 
6131d4a0697SVijay Khemka     *data_len = 0;
6141d4a0697SVijay Khemka 
6151d4a0697SVijay Khemka     return IPMI_CC_OK;
6161d4a0697SVijay Khemka }
6171d4a0697SVijay Khemka 
6181d4a0697SVijay Khemka //----------------------------------------------------------------------
6191d4a0697SVijay Khemka // Get Board ID (CMD_OEM_GET_BOARD_ID)
6201d4a0697SVijay Khemka //----------------------------------------------------------------------
6211d4a0697SVijay Khemka ipmi_ret_t ipmiOemGetBoardID(ipmi_netfn_t netfn, ipmi_cmd_t cmd,
6221d4a0697SVijay Khemka                              ipmi_request_t request, ipmi_response_t response,
6231d4a0697SVijay Khemka                              ipmi_data_len_t data_len, ipmi_context_t context)
6241d4a0697SVijay Khemka {
6251d4a0697SVijay Khemka     uint8_t *req = reinterpret_cast<uint8_t *>(request);
626e7d23d0eSVijay Khemka     uint8_t *res = reinterpret_cast<uint8_t *>(response);
627e7d23d0eSVijay Khemka 
6281d4a0697SVijay Khemka     /* TODO: Needs to implement this after GPIO implementation */
629e7d23d0eSVijay Khemka     *data_len = 0;
630e7d23d0eSVijay Khemka 
631e7d23d0eSVijay Khemka     return IPMI_CC_OK;
632e7d23d0eSVijay Khemka }
633e7d23d0eSVijay Khemka 
634*877d5dd9SVijay Khemka /* Helper functions to set boot order */
635*877d5dd9SVijay Khemka void setBootOrder(uint8_t *data)
636*877d5dd9SVijay Khemka {
637*877d5dd9SVijay Khemka     nlohmann::json bootMode;
638*877d5dd9SVijay Khemka     uint8_t mode = data[0];
639*877d5dd9SVijay Khemka     int i;
640*877d5dd9SVijay Khemka 
641*877d5dd9SVijay Khemka     bootMode["UEFI"] = (mode & BOOT_MODE_UEFI ? true : false);
642*877d5dd9SVijay Khemka     bootMode["CMOS_CLR"] = (mode & BOOT_MODE_CMOS_CLR ? true : false);
643*877d5dd9SVijay Khemka     bootMode["FORCE_BOOT"] = (mode & BOOT_MODE_FORCE_BOOT ? true : false);
644*877d5dd9SVijay Khemka     bootMode["BOOT_FLAG"] = (mode & BOOT_MODE_BOOT_FLAG ? true : false);
645*877d5dd9SVijay Khemka     oemData[KEY_BOOT_ORDER][KEY_BOOT_MODE] = bootMode;
646*877d5dd9SVijay Khemka 
647*877d5dd9SVijay Khemka     /* Initialize boot sequence array */
648*877d5dd9SVijay Khemka     oemData[KEY_BOOT_ORDER][KEY_BOOT_SEQ] = {};
649*877d5dd9SVijay Khemka     for (i = 1; i < SIZE_BOOT_ORDER; i++)
650*877d5dd9SVijay Khemka     {
651*877d5dd9SVijay Khemka         if (data[i] >= BOOT_SEQ_ARRAY_SIZE)
652*877d5dd9SVijay Khemka             oemData[KEY_BOOT_ORDER][KEY_BOOT_SEQ][i - 1] = "NA";
653*877d5dd9SVijay Khemka         else
654*877d5dd9SVijay Khemka             oemData[KEY_BOOT_ORDER][KEY_BOOT_SEQ][i - 1] = bootSeq[data[i]];
655*877d5dd9SVijay Khemka     }
656*877d5dd9SVijay Khemka 
657*877d5dd9SVijay Khemka     flushOemData();
658*877d5dd9SVijay Khemka }
659*877d5dd9SVijay Khemka 
660e7d23d0eSVijay Khemka //----------------------------------------------------------------------
6611d4a0697SVijay Khemka // Set Boot Order (CMD_OEM_SET_BOOT_ORDER)
6621d4a0697SVijay Khemka //----------------------------------------------------------------------
6631d4a0697SVijay Khemka ipmi_ret_t ipmiOemSetBootOrder(ipmi_netfn_t netfn, ipmi_cmd_t cmd,
6641d4a0697SVijay Khemka                                ipmi_request_t request, ipmi_response_t response,
6651d4a0697SVijay Khemka                                ipmi_data_len_t data_len, ipmi_context_t context)
6661d4a0697SVijay Khemka {
6671d4a0697SVijay Khemka     uint8_t *req = reinterpret_cast<uint8_t *>(request);
6681d4a0697SVijay Khemka     uint8_t len = *data_len;
6691d4a0697SVijay Khemka 
6701d4a0697SVijay Khemka     *data_len = 0;
6711d4a0697SVijay Khemka 
6721d4a0697SVijay Khemka     if (len != SIZE_BOOT_ORDER)
6731d4a0697SVijay Khemka     {
6741d4a0697SVijay Khemka         phosphor::logging::log<phosphor::logging::level::ERR>(
6751d4a0697SVijay Khemka             "Invalid Boot order length received");
6761d4a0697SVijay Khemka         return IPMI_CC_REQ_DATA_LEN_INVALID;
6771d4a0697SVijay Khemka     }
6781d4a0697SVijay Khemka 
679*877d5dd9SVijay Khemka     setBootOrder(req);
6801d4a0697SVijay Khemka 
6811d4a0697SVijay Khemka     return IPMI_CC_OK;
6821d4a0697SVijay Khemka }
6831d4a0697SVijay Khemka 
6841d4a0697SVijay Khemka //----------------------------------------------------------------------
685e7d23d0eSVijay Khemka // Get Boot Order (CMD_OEM_GET_BOOT_ORDER)
686e7d23d0eSVijay Khemka //----------------------------------------------------------------------
687e7d23d0eSVijay Khemka ipmi_ret_t ipmiOemGetBootOrder(ipmi_netfn_t netfn, ipmi_cmd_t cmd,
688e7d23d0eSVijay Khemka                                ipmi_request_t request, ipmi_response_t response,
689e7d23d0eSVijay Khemka                                ipmi_data_len_t data_len, ipmi_context_t context)
690e7d23d0eSVijay Khemka {
691e7d23d0eSVijay Khemka     uint8_t *res = reinterpret_cast<uint8_t *>(response);
6921d4a0697SVijay Khemka     uint8_t mode = 0;
6931d4a0697SVijay Khemka     int i;
694e7d23d0eSVijay Khemka 
6951d4a0697SVijay Khemka     *data_len = SIZE_BOOT_ORDER;
6961d4a0697SVijay Khemka 
697*877d5dd9SVijay Khemka     if (oemData.find(KEY_BOOT_ORDER) == oemData.end())
698*877d5dd9SVijay Khemka     {
699*877d5dd9SVijay Khemka         /* Return default boot order 0100090203ff */
700*877d5dd9SVijay Khemka         uint8_t defaultBoot[SIZE_BOOT_ORDER] = {
701*877d5dd9SVijay Khemka             BOOT_MODE_UEFI,      bootMap["USB_DEV"], bootMap["NET_IPV6"],
702*877d5dd9SVijay Khemka             bootMap["SATA_HDD"], bootMap["SATA_CD"], 0xff};
703*877d5dd9SVijay Khemka 
704*877d5dd9SVijay Khemka         memcpy(res, defaultBoot, SIZE_BOOT_ORDER);
705*877d5dd9SVijay Khemka         phosphor::logging::log<phosphor::logging::level::INFO>(
706*877d5dd9SVijay Khemka             "Set default boot order");
707*877d5dd9SVijay Khemka         setBootOrder(defaultBoot);
708*877d5dd9SVijay Khemka     }
709*877d5dd9SVijay Khemka     else
710*877d5dd9SVijay Khemka     {
711*877d5dd9SVijay Khemka         nlohmann::json bootMode = oemData[KEY_BOOT_ORDER][KEY_BOOT_MODE];
7121d4a0697SVijay Khemka         if (bootMode["UEFI"])
7131d4a0697SVijay Khemka             mode |= BOOT_MODE_UEFI;
7141d4a0697SVijay Khemka         if (bootMode["CMOS_CLR"])
7151d4a0697SVijay Khemka             mode |= BOOT_MODE_CMOS_CLR;
7161d4a0697SVijay Khemka         if (bootMode["BOOT_FLAG"])
7171d4a0697SVijay Khemka             mode |= BOOT_MODE_BOOT_FLAG;
7181d4a0697SVijay Khemka 
7191d4a0697SVijay Khemka         res[0] = mode;
7201d4a0697SVijay Khemka 
7211d4a0697SVijay Khemka         for (i = 1; i < SIZE_BOOT_ORDER; i++)
722*877d5dd9SVijay Khemka         {
723*877d5dd9SVijay Khemka             std::string seqStr = oemData[KEY_BOOT_ORDER][KEY_BOOT_SEQ][i - 1];
724*877d5dd9SVijay Khemka             if (bootMap.find(seqStr) != bootMap.end())
725*877d5dd9SVijay Khemka                 res[i] = bootMap[seqStr];
726*877d5dd9SVijay Khemka             else
727*877d5dd9SVijay Khemka                 res[i] = 0xff;
728*877d5dd9SVijay Khemka         }
729*877d5dd9SVijay Khemka     }
730e7d23d0eSVijay Khemka 
731e7d23d0eSVijay Khemka     return IPMI_CC_OK;
732e7d23d0eSVijay Khemka }
733e7d23d0eSVijay Khemka 
734e7d23d0eSVijay Khemka //----------------------------------------------------------------------
735e7d23d0eSVijay Khemka // Set Machine Config Info (CMD_OEM_SET_MACHINE_CONFIG_INFO)
736e7d23d0eSVijay Khemka //----------------------------------------------------------------------
737e7d23d0eSVijay Khemka ipmi_ret_t ipmiOemSetMachineCfgInfo(ipmi_netfn_t netfn, ipmi_cmd_t cmd,
738e7d23d0eSVijay Khemka                                     ipmi_request_t request,
739e7d23d0eSVijay Khemka                                     ipmi_response_t response,
740e7d23d0eSVijay Khemka                                     ipmi_data_len_t data_len,
741e7d23d0eSVijay Khemka                                     ipmi_context_t context)
742e7d23d0eSVijay Khemka {
7431d4a0697SVijay Khemka     machineConfigInfo_t *req = reinterpret_cast<machineConfigInfo_t *>(request);
7441d4a0697SVijay Khemka     uint8_t len = *data_len;
745e7d23d0eSVijay Khemka 
746e7d23d0eSVijay Khemka     *data_len = 0;
747e7d23d0eSVijay Khemka 
7481d4a0697SVijay Khemka     if (len < sizeof(machineConfigInfo_t))
7491d4a0697SVijay Khemka     {
7501d4a0697SVijay Khemka         phosphor::logging::log<phosphor::logging::level::ERR>(
7511d4a0697SVijay Khemka             "Invalid machine configuration length received");
7521d4a0697SVijay Khemka         return IPMI_CC_REQ_DATA_LEN_INVALID;
7531d4a0697SVijay Khemka     }
7541d4a0697SVijay Khemka 
7551d4a0697SVijay Khemka     if (req->chassis_type >= sizeof(chassisType) / sizeof(uint8_t *))
7561d4a0697SVijay Khemka         oemData[KEY_MC_CONFIG][KEY_MC_CHAS_TYPE] = "UNKNOWN";
7571d4a0697SVijay Khemka     else
7581d4a0697SVijay Khemka         oemData[KEY_MC_CONFIG][KEY_MC_CHAS_TYPE] =
7591d4a0697SVijay Khemka             chassisType[req->chassis_type];
7601d4a0697SVijay Khemka 
7611d4a0697SVijay Khemka     if (req->mb_type >= sizeof(mbType) / sizeof(uint8_t *))
7621d4a0697SVijay Khemka         oemData[KEY_MC_CONFIG][KEY_MC_MB_TYPE] = "UNKNOWN";
7631d4a0697SVijay Khemka     else
7641d4a0697SVijay Khemka         oemData[KEY_MC_CONFIG][KEY_MC_MB_TYPE] = mbType[req->mb_type];
7651d4a0697SVijay Khemka 
7661d4a0697SVijay Khemka     oemData[KEY_MC_CONFIG][KEY_MC_PROC_CNT] = req->proc_cnt;
7671d4a0697SVijay Khemka     oemData[KEY_MC_CONFIG][KEY_MC_MEM_CNT] = req->mem_cnt;
7681d4a0697SVijay Khemka     oemData[KEY_MC_CONFIG][KEY_MC_HDD35_CNT] = req->hdd35_cnt;
7691d4a0697SVijay Khemka     oemData[KEY_MC_CONFIG][KEY_MC_HDD25_CNT] = req->hdd25_cnt;
7701d4a0697SVijay Khemka 
7711d4a0697SVijay Khemka     if (req->riser_type >= sizeof(riserType) / sizeof(uint8_t *))
7721d4a0697SVijay Khemka         oemData[KEY_MC_CONFIG][KEY_MC_RSR_TYPE] = "UNKNOWN";
7731d4a0697SVijay Khemka     else
7741d4a0697SVijay Khemka         oemData[KEY_MC_CONFIG][KEY_MC_RSR_TYPE] = riserType[req->riser_type];
7751d4a0697SVijay Khemka 
7761d4a0697SVijay Khemka     oemData[KEY_MC_CONFIG][KEY_MC_PCIE_LOC] = {};
7771d4a0697SVijay Khemka     int i = 0;
7781d4a0697SVijay Khemka     if (req->pcie_card_loc & BIT_0)
7791d4a0697SVijay Khemka         oemData[KEY_MC_CONFIG][KEY_MC_PCIE_LOC][i++] = "SLOT1";
7801d4a0697SVijay Khemka     if (req->pcie_card_loc & BIT_1)
7811d4a0697SVijay Khemka         oemData[KEY_MC_CONFIG][KEY_MC_PCIE_LOC][i++] = "SLOT2";
7821d4a0697SVijay Khemka     if (req->pcie_card_loc & BIT_2)
7831d4a0697SVijay Khemka         oemData[KEY_MC_CONFIG][KEY_MC_PCIE_LOC][i++] = "SLOT3";
7841d4a0697SVijay Khemka     if (req->pcie_card_loc & BIT_3)
7851d4a0697SVijay Khemka         oemData[KEY_MC_CONFIG][KEY_MC_PCIE_LOC][i++] = "SLOT4";
7861d4a0697SVijay Khemka 
7871d4a0697SVijay Khemka     if (req->slot1_pcie_type >= sizeof(pcieType) / sizeof(uint8_t *))
7881d4a0697SVijay Khemka         oemData[KEY_MC_CONFIG][KEY_MC_SLOT1_TYPE] = "UNKNOWN";
7891d4a0697SVijay Khemka     else
7901d4a0697SVijay Khemka         oemData[KEY_MC_CONFIG][KEY_MC_SLOT1_TYPE] =
7911d4a0697SVijay Khemka             pcieType[req->slot1_pcie_type];
7921d4a0697SVijay Khemka 
7931d4a0697SVijay Khemka     if (req->slot2_pcie_type >= sizeof(pcieType) / sizeof(uint8_t *))
7941d4a0697SVijay Khemka         oemData[KEY_MC_CONFIG][KEY_MC_SLOT2_TYPE] = "UNKNOWN";
7951d4a0697SVijay Khemka     else
7961d4a0697SVijay Khemka         oemData[KEY_MC_CONFIG][KEY_MC_SLOT2_TYPE] =
7971d4a0697SVijay Khemka             pcieType[req->slot2_pcie_type];
7981d4a0697SVijay Khemka 
7991d4a0697SVijay Khemka     if (req->slot3_pcie_type >= sizeof(pcieType) / sizeof(uint8_t *))
8001d4a0697SVijay Khemka         oemData[KEY_MC_CONFIG][KEY_MC_SLOT3_TYPE] = "UNKNOWN";
8011d4a0697SVijay Khemka     else
8021d4a0697SVijay Khemka         oemData[KEY_MC_CONFIG][KEY_MC_SLOT3_TYPE] =
8031d4a0697SVijay Khemka             pcieType[req->slot3_pcie_type];
8041d4a0697SVijay Khemka 
8051d4a0697SVijay Khemka     if (req->slot4_pcie_type >= sizeof(pcieType) / sizeof(uint8_t *))
8061d4a0697SVijay Khemka         oemData[KEY_MC_CONFIG][KEY_MC_SLOT4_TYPE] = "UNKNOWN";
8071d4a0697SVijay Khemka     else
8081d4a0697SVijay Khemka         oemData[KEY_MC_CONFIG][KEY_MC_SLOT4_TYPE] =
8091d4a0697SVijay Khemka             pcieType[req->slot4_pcie_type];
8101d4a0697SVijay Khemka 
8111d4a0697SVijay Khemka     oemData[KEY_MC_CONFIG][KEY_MC_AEP_CNT] = req->aep_mem_cnt;
8121d4a0697SVijay Khemka 
8131d4a0697SVijay Khemka     flushOemData();
8141d4a0697SVijay Khemka 
815e7d23d0eSVijay Khemka     return IPMI_CC_OK;
816e7d23d0eSVijay Khemka }
817e7d23d0eSVijay Khemka 
818e7d23d0eSVijay Khemka //----------------------------------------------------------------------
819e7d23d0eSVijay Khemka // Set POST start (CMD_OEM_SET_POST_START)
820e7d23d0eSVijay Khemka //----------------------------------------------------------------------
821e7d23d0eSVijay Khemka ipmi_ret_t ipmiOemSetPostStart(ipmi_netfn_t netfn, ipmi_cmd_t cmd,
822e7d23d0eSVijay Khemka                                ipmi_request_t request, ipmi_response_t response,
823e7d23d0eSVijay Khemka                                ipmi_data_len_t data_len, ipmi_context_t context)
824e7d23d0eSVijay Khemka {
825e7d23d0eSVijay Khemka     phosphor::logging::log<phosphor::logging::level::INFO>("POST Start Event");
826e7d23d0eSVijay Khemka 
8271d4a0697SVijay Khemka     /* Do nothing, return success */
828e7d23d0eSVijay Khemka     *data_len = 0;
829e7d23d0eSVijay Khemka     return IPMI_CC_OK;
830e7d23d0eSVijay Khemka }
831e7d23d0eSVijay Khemka 
832e7d23d0eSVijay Khemka //----------------------------------------------------------------------
833e7d23d0eSVijay Khemka // Set POST End (CMD_OEM_SET_POST_END)
834e7d23d0eSVijay Khemka //----------------------------------------------------------------------
835e7d23d0eSVijay Khemka ipmi_ret_t ipmiOemSetPostEnd(ipmi_netfn_t netfn, ipmi_cmd_t cmd,
836e7d23d0eSVijay Khemka                              ipmi_request_t request, ipmi_response_t response,
837e7d23d0eSVijay Khemka                              ipmi_data_len_t data_len, ipmi_context_t context)
838e7d23d0eSVijay Khemka {
8391d4a0697SVijay Khemka     struct timespec ts;
840e7d23d0eSVijay Khemka 
841e7d23d0eSVijay Khemka     phosphor::logging::log<phosphor::logging::level::INFO>("POST End Event");
842e7d23d0eSVijay Khemka 
843e7d23d0eSVijay Khemka     *data_len = 0;
8441d4a0697SVijay Khemka 
8451d4a0697SVijay Khemka     // Timestamp post end time.
8461d4a0697SVijay Khemka     clock_gettime(CLOCK_REALTIME, &ts);
8471d4a0697SVijay Khemka     oemData[KEY_TS_SLED] = ts.tv_sec;
8481d4a0697SVijay Khemka     flushOemData();
8491d4a0697SVijay Khemka 
8501d4a0697SVijay Khemka     // Sync time with system
8511d4a0697SVijay Khemka     // TODO: Add code for syncing time
8521d4a0697SVijay Khemka 
8531d4a0697SVijay Khemka     return IPMI_CC_OK;
8541d4a0697SVijay Khemka }
8551d4a0697SVijay Khemka 
8561d4a0697SVijay Khemka //----------------------------------------------------------------------
8571d4a0697SVijay Khemka // Set PPIN Info (CMD_OEM_SET_PPIN_INFO)
8581d4a0697SVijay Khemka //----------------------------------------------------------------------
8591d4a0697SVijay Khemka // Inform BMC about PPIN data of 8 bytes for each CPU
8601d4a0697SVijay Khemka //
8611d4a0697SVijay Khemka // Request:
8621d4a0697SVijay Khemka // Byte 1:8 – CPU0 PPIN data
8631d4a0697SVijay Khemka // Optional:
8641d4a0697SVijay Khemka // Byte 9:16 – CPU1 PPIN data
8651d4a0697SVijay Khemka //
8661d4a0697SVijay Khemka // Response:
8671d4a0697SVijay Khemka // Byte 1 – Completion Code
8681d4a0697SVijay Khemka ipmi_ret_t ipmiOemSetPPINInfo(ipmi_netfn_t netfn, ipmi_cmd_t cmd,
8691d4a0697SVijay Khemka                               ipmi_request_t request, ipmi_response_t response,
8701d4a0697SVijay Khemka                               ipmi_data_len_t data_len, ipmi_context_t context)
8711d4a0697SVijay Khemka {
8721d4a0697SVijay Khemka     uint8_t *req = reinterpret_cast<uint8_t *>(request);
8731d4a0697SVijay Khemka     std::string ppinStr;
8741d4a0697SVijay Khemka     int len;
8751d4a0697SVijay Khemka 
8761d4a0697SVijay Khemka     if (*data_len > SIZE_CPU_PPIN * 2)
8771d4a0697SVijay Khemka         len = SIZE_CPU_PPIN * 2;
8781d4a0697SVijay Khemka     else
8791d4a0697SVijay Khemka         len = *data_len;
8801d4a0697SVijay Khemka     *data_len = 0;
8811d4a0697SVijay Khemka 
8821d4a0697SVijay Khemka     ppinStr = bytesToStr(req, len);
8831d4a0697SVijay Khemka     oemData[KEY_PPIN_INFO] = ppinStr.c_str();
8841d4a0697SVijay Khemka     flushOemData();
8851d4a0697SVijay Khemka 
8861d4a0697SVijay Khemka     return IPMI_CC_OK;
8871d4a0697SVijay Khemka }
8881d4a0697SVijay Khemka 
8891d4a0697SVijay Khemka //----------------------------------------------------------------------
8901d4a0697SVijay Khemka // Set ADR Trigger (CMD_OEM_SET_ADR_TRIGGER)
8911d4a0697SVijay Khemka //----------------------------------------------------------------------
8921d4a0697SVijay Khemka ipmi_ret_t ipmiOemSetAdrTrigger(ipmi_netfn_t netfn, ipmi_cmd_t cmd,
8931d4a0697SVijay Khemka                                 ipmi_request_t request,
8941d4a0697SVijay Khemka                                 ipmi_response_t response,
8951d4a0697SVijay Khemka                                 ipmi_data_len_t data_len,
8961d4a0697SVijay Khemka                                 ipmi_context_t context)
8971d4a0697SVijay Khemka {
8981d4a0697SVijay Khemka     /* Do nothing, return success */
8991d4a0697SVijay Khemka     *data_len = 0;
900e7d23d0eSVijay Khemka     return IPMI_CC_OK;
901e7d23d0eSVijay Khemka }
902e7d23d0eSVijay Khemka 
903e7d23d0eSVijay Khemka //----------------------------------------------------------------------
904e7d23d0eSVijay Khemka // Set Bios Flash Info (CMD_OEM_SET_BIOS_FLASH_INFO)
905e7d23d0eSVijay Khemka //----------------------------------------------------------------------
906e7d23d0eSVijay Khemka ipmi_ret_t ipmiOemSetBiosFlashInfo(ipmi_netfn_t netfn, ipmi_cmd_t cmd,
907e7d23d0eSVijay Khemka                                    ipmi_request_t request,
908e7d23d0eSVijay Khemka                                    ipmi_response_t response,
909e7d23d0eSVijay Khemka                                    ipmi_data_len_t data_len,
910e7d23d0eSVijay Khemka                                    ipmi_context_t context)
911e7d23d0eSVijay Khemka {
9121d4a0697SVijay Khemka     /* Do nothing, return success */
913e7d23d0eSVijay Khemka     *data_len = 0;
914e7d23d0eSVijay Khemka     return IPMI_CC_OK;
915e7d23d0eSVijay Khemka }
916e7d23d0eSVijay Khemka 
917e7d23d0eSVijay Khemka //----------------------------------------------------------------------
918e7d23d0eSVijay Khemka // Set PPR (CMD_OEM_SET_PPR)
919e7d23d0eSVijay Khemka //----------------------------------------------------------------------
920e7d23d0eSVijay Khemka ipmi_ret_t ipmiOemSetPpr(ipmi_netfn_t netfn, ipmi_cmd_t cmd,
921e7d23d0eSVijay Khemka                          ipmi_request_t request, ipmi_response_t response,
922e7d23d0eSVijay Khemka                          ipmi_data_len_t data_len, ipmi_context_t context)
923e7d23d0eSVijay Khemka {
924e7d23d0eSVijay Khemka     uint8_t *req = reinterpret_cast<uint8_t *>(request);
9251d4a0697SVijay Khemka     uint8_t pprCnt, pprAct, pprIndex;
9261d4a0697SVijay Khemka     uint8_t selParam = req[0];
9271d4a0697SVijay Khemka     uint8_t len = *data_len;
9281d4a0697SVijay Khemka     std::stringstream ss;
9291d4a0697SVijay Khemka     std::string str;
930e7d23d0eSVijay Khemka 
931e7d23d0eSVijay Khemka     *data_len = 0;
9321d4a0697SVijay Khemka 
9331d4a0697SVijay Khemka     switch (selParam)
9341d4a0697SVijay Khemka     {
9351d4a0697SVijay Khemka         case PPR_ACTION:
9361d4a0697SVijay Khemka             if (oemData[KEY_PPR].find(KEY_PPR_ROW_COUNT) ==
9371d4a0697SVijay Khemka                 oemData[KEY_PPR].end())
9381d4a0697SVijay Khemka                 return CC_PARAM_NOT_SUPP_IN_CURR_STATE;
9391d4a0697SVijay Khemka 
9401d4a0697SVijay Khemka             pprCnt = oemData[KEY_PPR][KEY_PPR_ROW_COUNT];
9411d4a0697SVijay Khemka             if (pprCnt == 0)
9421d4a0697SVijay Khemka                 return CC_PARAM_NOT_SUPP_IN_CURR_STATE;
9431d4a0697SVijay Khemka 
9441d4a0697SVijay Khemka             pprAct = req[1];
9451d4a0697SVijay Khemka             /* Check if ppr is enabled or disabled */
9461d4a0697SVijay Khemka             if (!(pprAct & 0x80))
9471d4a0697SVijay Khemka                 pprAct = 0;
9481d4a0697SVijay Khemka 
9491d4a0697SVijay Khemka             oemData[KEY_PPR][KEY_PPR_ACTION] = pprAct;
9501d4a0697SVijay Khemka             break;
9511d4a0697SVijay Khemka         case PPR_ROW_COUNT:
9521d4a0697SVijay Khemka             if (req[1] > 100)
9531d4a0697SVijay Khemka                 return IPMI_CC_PARM_OUT_OF_RANGE;
9541d4a0697SVijay Khemka 
9551d4a0697SVijay Khemka             oemData[KEY_PPR][KEY_PPR_ROW_COUNT] = req[1];
9561d4a0697SVijay Khemka             break;
9571d4a0697SVijay Khemka         case PPR_ROW_ADDR:
9581d4a0697SVijay Khemka             pprIndex = req[1];
9591d4a0697SVijay Khemka             if (pprIndex > 100)
9601d4a0697SVijay Khemka                 return IPMI_CC_PARM_OUT_OF_RANGE;
9611d4a0697SVijay Khemka 
9621d4a0697SVijay Khemka             if (len < PPR_ROW_ADDR_LEN + 1)
9631d4a0697SVijay Khemka             {
9641d4a0697SVijay Khemka                 phosphor::logging::log<phosphor::logging::level::ERR>(
9651d4a0697SVijay Khemka                     "Invalid PPR Row Address length received");
9661d4a0697SVijay Khemka                 return IPMI_CC_REQ_DATA_LEN_INVALID;
9671d4a0697SVijay Khemka             }
9681d4a0697SVijay Khemka 
9691d4a0697SVijay Khemka             ss << std::hex;
9701d4a0697SVijay Khemka             ss << std::setw(2) << std::setfill('0') << (int)pprIndex;
9711d4a0697SVijay Khemka 
9721d4a0697SVijay Khemka             oemData[KEY_PPR][ss.str()][KEY_PPR_INDEX] = pprIndex;
9731d4a0697SVijay Khemka 
9741d4a0697SVijay Khemka             str = bytesToStr(&req[1], PPR_ROW_ADDR_LEN);
9751d4a0697SVijay Khemka             oemData[KEY_PPR][ss.str()][KEY_PPR_ROW_ADDR] = str.c_str();
9761d4a0697SVijay Khemka             break;
9771d4a0697SVijay Khemka         case PPR_HISTORY_DATA:
9781d4a0697SVijay Khemka             pprIndex = req[1];
9791d4a0697SVijay Khemka             if (pprIndex > 100)
9801d4a0697SVijay Khemka                 return IPMI_CC_PARM_OUT_OF_RANGE;
9811d4a0697SVijay Khemka 
9821d4a0697SVijay Khemka             if (len < PPR_HST_DATA_LEN + 1)
9831d4a0697SVijay Khemka             {
9841d4a0697SVijay Khemka                 phosphor::logging::log<phosphor::logging::level::ERR>(
9851d4a0697SVijay Khemka                     "Invalid PPR history data length received");
9861d4a0697SVijay Khemka                 return IPMI_CC_REQ_DATA_LEN_INVALID;
9871d4a0697SVijay Khemka             }
9881d4a0697SVijay Khemka 
9891d4a0697SVijay Khemka             ss << std::hex;
9901d4a0697SVijay Khemka             ss << std::setw(2) << std::setfill('0') << (int)pprIndex;
9911d4a0697SVijay Khemka 
9921d4a0697SVijay Khemka             oemData[KEY_PPR][ss.str()][KEY_PPR_INDEX] = pprIndex;
9931d4a0697SVijay Khemka 
9941d4a0697SVijay Khemka             str = bytesToStr(&req[1], PPR_HST_DATA_LEN);
9951d4a0697SVijay Khemka             oemData[KEY_PPR][ss.str()][KEY_PPR_HST_DATA] = str.c_str();
9961d4a0697SVijay Khemka             break;
9971d4a0697SVijay Khemka         default:
9981d4a0697SVijay Khemka             return IPMI_CC_PARM_OUT_OF_RANGE;
9991d4a0697SVijay Khemka             break;
10001d4a0697SVijay Khemka     }
10011d4a0697SVijay Khemka 
10021d4a0697SVijay Khemka     flushOemData();
10031d4a0697SVijay Khemka 
1004e7d23d0eSVijay Khemka     return IPMI_CC_OK;
1005e7d23d0eSVijay Khemka }
1006e7d23d0eSVijay Khemka 
1007e7d23d0eSVijay Khemka //----------------------------------------------------------------------
1008e7d23d0eSVijay Khemka // Get PPR (CMD_OEM_GET_PPR)
1009e7d23d0eSVijay Khemka //----------------------------------------------------------------------
1010e7d23d0eSVijay Khemka ipmi_ret_t ipmiOemGetPpr(ipmi_netfn_t netfn, ipmi_cmd_t cmd,
1011e7d23d0eSVijay Khemka                          ipmi_request_t request, ipmi_response_t response,
1012e7d23d0eSVijay Khemka                          ipmi_data_len_t data_len, ipmi_context_t context)
1013e7d23d0eSVijay Khemka {
1014e7d23d0eSVijay Khemka     uint8_t *req = reinterpret_cast<uint8_t *>(request);
1015e7d23d0eSVijay Khemka     uint8_t *res = reinterpret_cast<uint8_t *>(response);
10161d4a0697SVijay Khemka     uint8_t pprCnt, pprIndex;
10171d4a0697SVijay Khemka     uint8_t selParam = req[0];
10181d4a0697SVijay Khemka     std::stringstream ss;
10191d4a0697SVijay Khemka     std::string str;
1020e7d23d0eSVijay Khemka 
10211d4a0697SVijay Khemka     /* Any failure will return zero length data */
10221d4a0697SVijay Khemka     *data_len = 0;
10231d4a0697SVijay Khemka 
10241d4a0697SVijay Khemka     switch (selParam)
10251d4a0697SVijay Khemka     {
10261d4a0697SVijay Khemka         case PPR_ACTION:
10271d4a0697SVijay Khemka             res[0] = 0;
1028e7d23d0eSVijay Khemka             *data_len = 1;
1029e7d23d0eSVijay Khemka 
10301d4a0697SVijay Khemka             if (oemData[KEY_PPR].find(KEY_PPR_ROW_COUNT) !=
10311d4a0697SVijay Khemka                 oemData[KEY_PPR].end())
10321d4a0697SVijay Khemka             {
10331d4a0697SVijay Khemka                 pprCnt = oemData[KEY_PPR][KEY_PPR_ROW_COUNT];
10341d4a0697SVijay Khemka                 if (pprCnt != 0)
10351d4a0697SVijay Khemka                 {
10361d4a0697SVijay Khemka                     if (oemData[KEY_PPR].find(KEY_PPR_ACTION) !=
10371d4a0697SVijay Khemka                         oemData[KEY_PPR].end())
10381d4a0697SVijay Khemka                     {
10391d4a0697SVijay Khemka                         res[0] = oemData[KEY_PPR][KEY_PPR_ACTION];
10401d4a0697SVijay Khemka                     }
10411d4a0697SVijay Khemka                 }
10421d4a0697SVijay Khemka             }
10431d4a0697SVijay Khemka             break;
10441d4a0697SVijay Khemka         case PPR_ROW_COUNT:
10451d4a0697SVijay Khemka             res[0] = 0;
10461d4a0697SVijay Khemka             *data_len = 1;
10471d4a0697SVijay Khemka             if (oemData[KEY_PPR].find(KEY_PPR_ROW_COUNT) !=
10481d4a0697SVijay Khemka                 oemData[KEY_PPR].end())
10491d4a0697SVijay Khemka                 res[0] = oemData[KEY_PPR][KEY_PPR_ROW_COUNT];
10501d4a0697SVijay Khemka             break;
10511d4a0697SVijay Khemka         case PPR_ROW_ADDR:
10521d4a0697SVijay Khemka             pprIndex = req[1];
10531d4a0697SVijay Khemka             if (pprIndex > 100)
10541d4a0697SVijay Khemka                 return IPMI_CC_PARM_OUT_OF_RANGE;
10551d4a0697SVijay Khemka 
10561d4a0697SVijay Khemka             ss << std::hex;
10571d4a0697SVijay Khemka             ss << std::setw(2) << std::setfill('0') << (int)pprIndex;
10581d4a0697SVijay Khemka 
10591d4a0697SVijay Khemka             if (oemData[KEY_PPR].find(ss.str()) == oemData[KEY_PPR].end())
10601d4a0697SVijay Khemka                 return IPMI_CC_PARM_OUT_OF_RANGE;
10611d4a0697SVijay Khemka 
10621d4a0697SVijay Khemka             if (oemData[KEY_PPR][ss.str()].find(KEY_PPR_ROW_ADDR) ==
10631d4a0697SVijay Khemka                 oemData[KEY_PPR][ss.str()].end())
10641d4a0697SVijay Khemka                 return IPMI_CC_PARM_OUT_OF_RANGE;
10651d4a0697SVijay Khemka 
10661d4a0697SVijay Khemka             str = oemData[KEY_PPR][ss.str()][KEY_PPR_ROW_ADDR];
10671d4a0697SVijay Khemka             *data_len = strToBytes(str, res);
10681d4a0697SVijay Khemka             break;
10691d4a0697SVijay Khemka         case PPR_HISTORY_DATA:
10701d4a0697SVijay Khemka             pprIndex = req[1];
10711d4a0697SVijay Khemka             if (pprIndex > 100)
10721d4a0697SVijay Khemka                 return IPMI_CC_PARM_OUT_OF_RANGE;
10731d4a0697SVijay Khemka 
10741d4a0697SVijay Khemka             ss << std::hex;
10751d4a0697SVijay Khemka             ss << std::setw(2) << std::setfill('0') << (int)pprIndex;
10761d4a0697SVijay Khemka 
10771d4a0697SVijay Khemka             if (oemData[KEY_PPR].find(ss.str()) == oemData[KEY_PPR].end())
10781d4a0697SVijay Khemka                 return IPMI_CC_PARM_OUT_OF_RANGE;
10791d4a0697SVijay Khemka 
10801d4a0697SVijay Khemka             if (oemData[KEY_PPR][ss.str()].find(KEY_PPR_HST_DATA) ==
10811d4a0697SVijay Khemka                 oemData[KEY_PPR][ss.str()].end())
10821d4a0697SVijay Khemka                 return IPMI_CC_PARM_OUT_OF_RANGE;
10831d4a0697SVijay Khemka 
10841d4a0697SVijay Khemka             str = oemData[KEY_PPR][ss.str()][KEY_PPR_HST_DATA];
10851d4a0697SVijay Khemka             *data_len = strToBytes(str, res);
10861d4a0697SVijay Khemka             break;
10871d4a0697SVijay Khemka         default:
10881d4a0697SVijay Khemka             return IPMI_CC_PARM_OUT_OF_RANGE;
10891d4a0697SVijay Khemka             break;
10901d4a0697SVijay Khemka     }
10911d4a0697SVijay Khemka 
10921d4a0697SVijay Khemka     return IPMI_CC_OK;
10931d4a0697SVijay Khemka }
10941d4a0697SVijay Khemka 
10951d4a0697SVijay Khemka /* FB OEM QC Commands */
10961d4a0697SVijay Khemka 
10971d4a0697SVijay Khemka //----------------------------------------------------------------------
10981d4a0697SVijay Khemka // Set Proc Info (CMD_OEM_Q_SET_PROC_INFO)
10991d4a0697SVijay Khemka //----------------------------------------------------------------------
11001d4a0697SVijay Khemka //"Request:
11011d4a0697SVijay Khemka // Byte 1:3 – Manufacturer ID – XXYYZZ h, LSB first
11021d4a0697SVijay Khemka // Byte 4 – Processor Index, 0 base
11031d4a0697SVijay Khemka // Byte 5 – Parameter Selector
11041d4a0697SVijay Khemka // Byte 6..N – Configuration parameter data (see below for Parameters
11051d4a0697SVijay Khemka // of Processor Information)
11061d4a0697SVijay Khemka // Response:
11071d4a0697SVijay Khemka // Byte 1 – Completion code
11081d4a0697SVijay Khemka //
11091d4a0697SVijay Khemka // Parameter#1: (Processor Product Name)
11101d4a0697SVijay Khemka //
11111d4a0697SVijay Khemka // Byte 1..48 –Product name(ASCII code)
11121d4a0697SVijay Khemka // Ex. Intel(R) Xeon(R) CPU E5-2685 v3 @ 2.60GHz
11131d4a0697SVijay Khemka //
11141d4a0697SVijay Khemka // Param#2: Processor Basic Information
11151d4a0697SVijay Khemka // Byte 1 – Core Number
11161d4a0697SVijay Khemka // Byte 2 – Thread Number (LSB)
11171d4a0697SVijay Khemka // Byte 3 – Thread Number (MSB)
11181d4a0697SVijay Khemka // Byte 4 – Processor frequency in MHz (LSB)
11191d4a0697SVijay Khemka // Byte 5 – Processor frequency in MHz (MSB)
11201d4a0697SVijay Khemka // Byte 6..7 – Revision
11211d4a0697SVijay Khemka //
11221d4a0697SVijay Khemka ipmi_ret_t ipmiOemQSetProcInfo(ipmi_netfn_t netfn, ipmi_cmd_t cmd,
11231d4a0697SVijay Khemka                                ipmi_request_t request, ipmi_response_t response,
11241d4a0697SVijay Khemka                                ipmi_data_len_t data_len, ipmi_context_t context)
11251d4a0697SVijay Khemka {
11261d4a0697SVijay Khemka     qProcInfo_t *req = reinterpret_cast<qProcInfo_t *>(request);
11271d4a0697SVijay Khemka     uint8_t numParam = sizeof(cpuInfoKey) / sizeof(uint8_t *);
11281d4a0697SVijay Khemka     std::stringstream ss;
11291d4a0697SVijay Khemka     std::string str;
11301d4a0697SVijay Khemka     uint8_t len = *data_len;
11311d4a0697SVijay Khemka 
11321d4a0697SVijay Khemka     *data_len = 0;
11331d4a0697SVijay Khemka 
11341d4a0697SVijay Khemka     /* check for requested data params */
11351d4a0697SVijay Khemka     if (len < 5 || req->paramSel < 1 || req->paramSel >= numParam)
11361d4a0697SVijay Khemka     {
11371d4a0697SVijay Khemka         phosphor::logging::log<phosphor::logging::level::ERR>(
11381d4a0697SVijay Khemka             "Invalid parameter received");
11391d4a0697SVijay Khemka         return IPMI_CC_PARM_OUT_OF_RANGE;
11401d4a0697SVijay Khemka     }
11411d4a0697SVijay Khemka 
11421d4a0697SVijay Khemka     len = len - 5; // Get Actual data length
11431d4a0697SVijay Khemka 
11441d4a0697SVijay Khemka     ss << std::hex;
11451d4a0697SVijay Khemka     ss << std::setw(2) << std::setfill('0') << (int)req->procIndex;
11461d4a0697SVijay Khemka     oemData[KEY_Q_PROC_INFO][ss.str()][KEY_PROC_INDEX] = req->procIndex;
11471d4a0697SVijay Khemka 
11481d4a0697SVijay Khemka     str = bytesToStr(req->data, len);
11491d4a0697SVijay Khemka     oemData[KEY_Q_PROC_INFO][ss.str()][cpuInfoKey[req->paramSel]] = str.c_str();
11501d4a0697SVijay Khemka     flushOemData();
11511d4a0697SVijay Khemka 
11521d4a0697SVijay Khemka     return IPMI_CC_OK;
11531d4a0697SVijay Khemka }
11541d4a0697SVijay Khemka 
11551d4a0697SVijay Khemka //----------------------------------------------------------------------
11561d4a0697SVijay Khemka // Get Proc Info (CMD_OEM_Q_GET_PROC_INFO)
11571d4a0697SVijay Khemka //----------------------------------------------------------------------
11581d4a0697SVijay Khemka // Request:
11591d4a0697SVijay Khemka // Byte 1:3 –  Manufacturer ID – XXYYZZ h, LSB first
11601d4a0697SVijay Khemka // Byte 4 – Processor Index, 0 base
11611d4a0697SVijay Khemka // Byte 5 – Parameter Selector
11621d4a0697SVijay Khemka // Response:
11631d4a0697SVijay Khemka // Byte 1 – Completion code
11641d4a0697SVijay Khemka // Byte 2..N – Configuration Parameter Data (see below for Parameters
11651d4a0697SVijay Khemka // of Processor Information)
11661d4a0697SVijay Khemka //
11671d4a0697SVijay Khemka // Parameter#1: (Processor Product Name)
11681d4a0697SVijay Khemka //
11691d4a0697SVijay Khemka // Byte 1..48 –Product name(ASCII code)
11701d4a0697SVijay Khemka // Ex. Intel(R) Xeon(R) CPU E5-2685 v3 @ 2.60GHz
11711d4a0697SVijay Khemka //
11721d4a0697SVijay Khemka // Param#2: Processor Basic Information
11731d4a0697SVijay Khemka // Byte 1 – Core Number
11741d4a0697SVijay Khemka // Byte 2 – Thread Number (LSB)
11751d4a0697SVijay Khemka // Byte 3 – Thread Number (MSB)
11761d4a0697SVijay Khemka // Byte 4 – Processor frequency in MHz (LSB)
11771d4a0697SVijay Khemka // Byte 5 – Processor frequency in MHz (MSB)
11781d4a0697SVijay Khemka // Byte 6..7 – Revision
11791d4a0697SVijay Khemka //
11801d4a0697SVijay Khemka ipmi_ret_t ipmiOemQGetProcInfo(ipmi_netfn_t netfn, ipmi_cmd_t cmd,
11811d4a0697SVijay Khemka                                ipmi_request_t request, ipmi_response_t response,
11821d4a0697SVijay Khemka                                ipmi_data_len_t data_len, ipmi_context_t context)
11831d4a0697SVijay Khemka {
11841d4a0697SVijay Khemka     qProcInfo_t *req = reinterpret_cast<qProcInfo_t *>(request);
11851d4a0697SVijay Khemka     uint8_t numParam = sizeof(cpuInfoKey) / sizeof(uint8_t *);
11861d4a0697SVijay Khemka     uint8_t *res = reinterpret_cast<uint8_t *>(response);
11871d4a0697SVijay Khemka     std::stringstream ss;
11881d4a0697SVijay Khemka     std::string str;
11891d4a0697SVijay Khemka 
11901d4a0697SVijay Khemka     *data_len = 0;
11911d4a0697SVijay Khemka 
11921d4a0697SVijay Khemka     /* check for requested data params */
11931d4a0697SVijay Khemka     if (req->paramSel < 1 || req->paramSel >= numParam)
11941d4a0697SVijay Khemka     {
11951d4a0697SVijay Khemka         phosphor::logging::log<phosphor::logging::level::ERR>(
11961d4a0697SVijay Khemka             "Invalid parameter received");
11971d4a0697SVijay Khemka         return IPMI_CC_PARM_OUT_OF_RANGE;
11981d4a0697SVijay Khemka     }
11991d4a0697SVijay Khemka 
12001d4a0697SVijay Khemka     ss << std::hex;
12011d4a0697SVijay Khemka     ss << std::setw(2) << std::setfill('0') << (int)req->procIndex;
12021d4a0697SVijay Khemka 
12031d4a0697SVijay Khemka     if (oemData[KEY_Q_PROC_INFO].find(ss.str()) ==
12041d4a0697SVijay Khemka         oemData[KEY_Q_PROC_INFO].end())
12051d4a0697SVijay Khemka         return CC_PARAM_NOT_SUPP_IN_CURR_STATE;
12061d4a0697SVijay Khemka 
12071d4a0697SVijay Khemka     if (oemData[KEY_Q_PROC_INFO][ss.str()].find(cpuInfoKey[req->paramSel]) ==
12081d4a0697SVijay Khemka         oemData[KEY_Q_PROC_INFO][ss.str()].end())
12091d4a0697SVijay Khemka         return CC_PARAM_NOT_SUPP_IN_CURR_STATE;
12101d4a0697SVijay Khemka 
12111d4a0697SVijay Khemka     str = oemData[KEY_Q_PROC_INFO][ss.str()][cpuInfoKey[req->paramSel]];
12121d4a0697SVijay Khemka     *data_len = strToBytes(str, res);
12131d4a0697SVijay Khemka 
12141d4a0697SVijay Khemka     return IPMI_CC_OK;
12151d4a0697SVijay Khemka }
12161d4a0697SVijay Khemka 
12171d4a0697SVijay Khemka //----------------------------------------------------------------------
12181d4a0697SVijay Khemka // Set Dimm Info (CMD_OEM_Q_SET_DIMM_INFO)
12191d4a0697SVijay Khemka //----------------------------------------------------------------------
12201d4a0697SVijay Khemka // Request:
12211d4a0697SVijay Khemka // Byte 1:3 – Manufacturer ID – XXYYZZh, LSB first
12221d4a0697SVijay Khemka // Byte 4 – DIMM Index, 0 base
12231d4a0697SVijay Khemka // Byte 5 – Parameter Selector
12241d4a0697SVijay Khemka // Byte 6..N – Configuration parameter data (see below for Parameters
12251d4a0697SVijay Khemka // of DIMM Information)
12261d4a0697SVijay Khemka // Response:
12271d4a0697SVijay Khemka // Byte 1 – Completion code
12281d4a0697SVijay Khemka //
12291d4a0697SVijay Khemka // Param#1 (DIMM Location):
12301d4a0697SVijay Khemka // Byte 1 – DIMM Present
12311d4a0697SVijay Khemka // Byte 1 – DIMM Present
12321d4a0697SVijay Khemka // 01h – Present
12331d4a0697SVijay Khemka // FFh – Not Present
12341d4a0697SVijay Khemka // Byte 2 – Node Number, 0 base
12351d4a0697SVijay Khemka // Byte 3 – Channel Number , 0 base
12361d4a0697SVijay Khemka // Byte 4 – DIMM Number , 0 base
12371d4a0697SVijay Khemka //
12381d4a0697SVijay Khemka // Param#2 (DIMM Type):
12391d4a0697SVijay Khemka // Byte 1 – DIMM Type
12401d4a0697SVijay Khemka // Bit [7:6]
12411d4a0697SVijay Khemka // For DDR3
12421d4a0697SVijay Khemka //  00 – Normal Voltage (1.5V)
12431d4a0697SVijay Khemka //  01 – Ultra Low Voltage (1.25V)
12441d4a0697SVijay Khemka //  10 – Low Voltage (1.35V)
12451d4a0697SVijay Khemka //  11 – Reserved
12461d4a0697SVijay Khemka // For DDR4
12471d4a0697SVijay Khemka //  00 – Reserved
12481d4a0697SVijay Khemka //  01 – Reserved
12491d4a0697SVijay Khemka //  10 – Reserved
12501d4a0697SVijay Khemka //  11 – Normal Voltage (1.2V)
12511d4a0697SVijay Khemka // Bit [5:0]
12521d4a0697SVijay Khemka //  0x00 – SDRAM
12531d4a0697SVijay Khemka //  0x01 – DDR-1 RAM
12541d4a0697SVijay Khemka //  0x02 – Rambus
12551d4a0697SVijay Khemka //  0x03 – DDR-2 RAM
12561d4a0697SVijay Khemka //  0x04 – FBDIMM
12571d4a0697SVijay Khemka //  0x05 – DDR-3 RAM
12581d4a0697SVijay Khemka //  0x06 – DDR-4 RAM
12591d4a0697SVijay Khemka //
12601d4a0697SVijay Khemka // Param#3 (DIMM Speed):
12611d4a0697SVijay Khemka // Byte 1..2 – DIMM speed in MHz, LSB
12621d4a0697SVijay Khemka // Byte 3..6 – DIMM size in Mbytes, LSB
12631d4a0697SVijay Khemka //
12641d4a0697SVijay Khemka // Param#4 (Module Part Number):
12651d4a0697SVijay Khemka // Byte 1..20 –Module Part Number (JEDEC Standard No. 21-C)
12661d4a0697SVijay Khemka //
12671d4a0697SVijay Khemka // Param#5 (Module Serial Number):
12681d4a0697SVijay Khemka // Byte 1..4 –Module Serial Number (JEDEC Standard No. 21-C)
12691d4a0697SVijay Khemka //
12701d4a0697SVijay Khemka // Param#6 (Module Manufacturer ID):
12711d4a0697SVijay Khemka // Byte 1 - Module Manufacturer ID, LSB
12721d4a0697SVijay Khemka // Byte 2 - Module Manufacturer ID, MSB
12731d4a0697SVijay Khemka //
12741d4a0697SVijay Khemka ipmi_ret_t ipmiOemQSetDimmInfo(ipmi_netfn_t netfn, ipmi_cmd_t cmd,
12751d4a0697SVijay Khemka                                ipmi_request_t request, ipmi_response_t response,
12761d4a0697SVijay Khemka                                ipmi_data_len_t data_len, ipmi_context_t context)
12771d4a0697SVijay Khemka {
12781d4a0697SVijay Khemka     qDimmInfo_t *req = reinterpret_cast<qDimmInfo_t *>(request);
12791d4a0697SVijay Khemka     uint8_t numParam = sizeof(dimmInfoKey) / sizeof(uint8_t *);
12801d4a0697SVijay Khemka     std::stringstream ss;
12811d4a0697SVijay Khemka     std::string str;
12821d4a0697SVijay Khemka     uint8_t len = *data_len;
12831d4a0697SVijay Khemka 
12841d4a0697SVijay Khemka     *data_len = 0;
12851d4a0697SVijay Khemka 
12861d4a0697SVijay Khemka     /* check for requested data params */
12871d4a0697SVijay Khemka     if (len < 5 || req->paramSel < 1 || req->paramSel >= numParam)
12881d4a0697SVijay Khemka     {
12891d4a0697SVijay Khemka         phosphor::logging::log<phosphor::logging::level::ERR>(
12901d4a0697SVijay Khemka             "Invalid parameter received");
12911d4a0697SVijay Khemka         return IPMI_CC_PARM_OUT_OF_RANGE;
12921d4a0697SVijay Khemka     }
12931d4a0697SVijay Khemka 
12941d4a0697SVijay Khemka     len = len - 5; // Get Actual data length
12951d4a0697SVijay Khemka 
12961d4a0697SVijay Khemka     ss << std::hex;
12971d4a0697SVijay Khemka     ss << std::setw(2) << std::setfill('0') << (int)req->dimmIndex;
12981d4a0697SVijay Khemka     oemData[KEY_Q_DIMM_INFO][ss.str()][KEY_DIMM_INDEX] = req->dimmIndex;
12991d4a0697SVijay Khemka 
13001d4a0697SVijay Khemka     str = bytesToStr(req->data, len);
13011d4a0697SVijay Khemka     oemData[KEY_Q_DIMM_INFO][ss.str()][dimmInfoKey[req->paramSel]] =
13021d4a0697SVijay Khemka         str.c_str();
13031d4a0697SVijay Khemka     flushOemData();
13041d4a0697SVijay Khemka 
13051d4a0697SVijay Khemka     return IPMI_CC_OK;
13061d4a0697SVijay Khemka }
13071d4a0697SVijay Khemka 
13081d4a0697SVijay Khemka //----------------------------------------------------------------------
13091d4a0697SVijay Khemka // Get Dimm Info (CMD_OEM_Q_GET_DIMM_INFO)
13101d4a0697SVijay Khemka //----------------------------------------------------------------------
13111d4a0697SVijay Khemka // Request:
13121d4a0697SVijay Khemka // Byte 1:3 – Manufacturer ID – XXYYZZh, LSB first
13131d4a0697SVijay Khemka // Byte 4 – DIMM Index, 0 base
13141d4a0697SVijay Khemka // Byte 5 – Parameter Selector
13151d4a0697SVijay Khemka // Byte 6..N – Configuration parameter data (see below for Parameters
13161d4a0697SVijay Khemka // of DIMM Information)
13171d4a0697SVijay Khemka // Response:
13181d4a0697SVijay Khemka // Byte 1 – Completion code
13191d4a0697SVijay Khemka // Byte 2..N – Configuration Parameter Data (see Table_1213h Parameters
13201d4a0697SVijay Khemka // of DIMM Information)
13211d4a0697SVijay Khemka //
13221d4a0697SVijay Khemka // Param#1 (DIMM Location):
13231d4a0697SVijay Khemka // Byte 1 – DIMM Present
13241d4a0697SVijay Khemka // Byte 1 – DIMM Present
13251d4a0697SVijay Khemka // 01h – Present
13261d4a0697SVijay Khemka // FFh – Not Present
13271d4a0697SVijay Khemka // Byte 2 – Node Number, 0 base
13281d4a0697SVijay Khemka // Byte 3 – Channel Number , 0 base
13291d4a0697SVijay Khemka // Byte 4 – DIMM Number , 0 base
13301d4a0697SVijay Khemka //
13311d4a0697SVijay Khemka // Param#2 (DIMM Type):
13321d4a0697SVijay Khemka // Byte 1 – DIMM Type
13331d4a0697SVijay Khemka // Bit [7:6]
13341d4a0697SVijay Khemka // For DDR3
13351d4a0697SVijay Khemka //  00 – Normal Voltage (1.5V)
13361d4a0697SVijay Khemka //  01 – Ultra Low Voltage (1.25V)
13371d4a0697SVijay Khemka //  10 – Low Voltage (1.35V)
13381d4a0697SVijay Khemka //  11 – Reserved
13391d4a0697SVijay Khemka // For DDR4
13401d4a0697SVijay Khemka //  00 – Reserved
13411d4a0697SVijay Khemka //  01 – Reserved
13421d4a0697SVijay Khemka //  10 – Reserved
13431d4a0697SVijay Khemka //  11 – Normal Voltage (1.2V)
13441d4a0697SVijay Khemka // Bit [5:0]
13451d4a0697SVijay Khemka //  0x00 – SDRAM
13461d4a0697SVijay Khemka //  0x01 – DDR-1 RAM
13471d4a0697SVijay Khemka //  0x02 – Rambus
13481d4a0697SVijay Khemka //  0x03 – DDR-2 RAM
13491d4a0697SVijay Khemka //  0x04 – FBDIMM
13501d4a0697SVijay Khemka //  0x05 – DDR-3 RAM
13511d4a0697SVijay Khemka //  0x06 – DDR-4 RAM
13521d4a0697SVijay Khemka //
13531d4a0697SVijay Khemka // Param#3 (DIMM Speed):
13541d4a0697SVijay Khemka // Byte 1..2 – DIMM speed in MHz, LSB
13551d4a0697SVijay Khemka // Byte 3..6 – DIMM size in Mbytes, LSB
13561d4a0697SVijay Khemka //
13571d4a0697SVijay Khemka // Param#4 (Module Part Number):
13581d4a0697SVijay Khemka // Byte 1..20 –Module Part Number (JEDEC Standard No. 21-C)
13591d4a0697SVijay Khemka //
13601d4a0697SVijay Khemka // Param#5 (Module Serial Number):
13611d4a0697SVijay Khemka // Byte 1..4 –Module Serial Number (JEDEC Standard No. 21-C)
13621d4a0697SVijay Khemka //
13631d4a0697SVijay Khemka // Param#6 (Module Manufacturer ID):
13641d4a0697SVijay Khemka // Byte 1 - Module Manufacturer ID, LSB
13651d4a0697SVijay Khemka // Byte 2 - Module Manufacturer ID, MSB
13661d4a0697SVijay Khemka //
13671d4a0697SVijay Khemka ipmi_ret_t ipmiOemQGetDimmInfo(ipmi_netfn_t netfn, ipmi_cmd_t cmd,
13681d4a0697SVijay Khemka                                ipmi_request_t request, ipmi_response_t response,
13691d4a0697SVijay Khemka                                ipmi_data_len_t data_len, ipmi_context_t context)
13701d4a0697SVijay Khemka {
13711d4a0697SVijay Khemka     qDimmInfo_t *req = reinterpret_cast<qDimmInfo_t *>(request);
13721d4a0697SVijay Khemka     uint8_t numParam = sizeof(dimmInfoKey) / sizeof(uint8_t *);
13731d4a0697SVijay Khemka     uint8_t *res = reinterpret_cast<uint8_t *>(response);
13741d4a0697SVijay Khemka     std::stringstream ss;
13751d4a0697SVijay Khemka     std::string str;
13761d4a0697SVijay Khemka 
13771d4a0697SVijay Khemka     *data_len = 0;
13781d4a0697SVijay Khemka 
13791d4a0697SVijay Khemka     /* check for requested data params */
13801d4a0697SVijay Khemka     if (req->paramSel < 1 || req->paramSel >= numParam)
13811d4a0697SVijay Khemka     {
13821d4a0697SVijay Khemka         phosphor::logging::log<phosphor::logging::level::ERR>(
13831d4a0697SVijay Khemka             "Invalid parameter received");
13841d4a0697SVijay Khemka         return IPMI_CC_PARM_OUT_OF_RANGE;
13851d4a0697SVijay Khemka     }
13861d4a0697SVijay Khemka 
13871d4a0697SVijay Khemka     ss << std::hex;
13881d4a0697SVijay Khemka     ss << std::setw(2) << std::setfill('0') << (int)req->dimmIndex;
13891d4a0697SVijay Khemka 
13901d4a0697SVijay Khemka     if (oemData[KEY_Q_DIMM_INFO].find(ss.str()) ==
13911d4a0697SVijay Khemka         oemData[KEY_Q_DIMM_INFO].end())
13921d4a0697SVijay Khemka         return CC_PARAM_NOT_SUPP_IN_CURR_STATE;
13931d4a0697SVijay Khemka 
13941d4a0697SVijay Khemka     if (oemData[KEY_Q_DIMM_INFO][ss.str()].find(dimmInfoKey[req->paramSel]) ==
13951d4a0697SVijay Khemka         oemData[KEY_Q_DIMM_INFO][ss.str()].end())
13961d4a0697SVijay Khemka         return CC_PARAM_NOT_SUPP_IN_CURR_STATE;
13971d4a0697SVijay Khemka 
13981d4a0697SVijay Khemka     str = oemData[KEY_Q_DIMM_INFO][ss.str()][dimmInfoKey[req->paramSel]];
13991d4a0697SVijay Khemka     *data_len = strToBytes(str, res);
14001d4a0697SVijay Khemka 
14011d4a0697SVijay Khemka     return IPMI_CC_OK;
14021d4a0697SVijay Khemka }
14031d4a0697SVijay Khemka 
14041d4a0697SVijay Khemka //----------------------------------------------------------------------
14051d4a0697SVijay Khemka // Set Drive Info (CMD_OEM_Q_SET_DRIVE_INFO)
14061d4a0697SVijay Khemka //----------------------------------------------------------------------
14071d4a0697SVijay Khemka // BIOS issue this command to provide HDD information to BMC.
14081d4a0697SVijay Khemka //
14091d4a0697SVijay Khemka // BIOS just can get information by standard ATA / SMART command for
14101d4a0697SVijay Khemka // OB SATA controller.
14111d4a0697SVijay Khemka // BIOS can get
14121d4a0697SVijay Khemka // 1.     Serial Number
14131d4a0697SVijay Khemka // 2.     Model Name
14141d4a0697SVijay Khemka // 3.     HDD FW Version
14151d4a0697SVijay Khemka // 4.     HDD Capacity
14161d4a0697SVijay Khemka // 5.     HDD WWN
14171d4a0697SVijay Khemka //
14181d4a0697SVijay Khemka //  Use Get HDD info Param #5 to know the MAX HDD info index.
14191d4a0697SVijay Khemka //
14201d4a0697SVijay Khemka //  Request:
14211d4a0697SVijay Khemka //  Byte 1:3 – Quanta Manufacturer ID – 001C4Ch, LSB first
14221d4a0697SVijay Khemka //  Byte 4 –
14231d4a0697SVijay Khemka //  [7:4] Reserved
14241d4a0697SVijay Khemka //  [3:0] HDD Controller Type
14251d4a0697SVijay Khemka //     0x00 – BIOS
14261d4a0697SVijay Khemka //     0x01 – Expander
14271d4a0697SVijay Khemka //     0x02 – LSI
14281d4a0697SVijay Khemka //  Byte 5 – HDD Info Index, 0 base
14291d4a0697SVijay Khemka //  Byte 6 – Parameter Selector
14301d4a0697SVijay Khemka //  Byte 7..N – Configuration parameter data (see Table_1415h Parameters of HDD
14311d4a0697SVijay Khemka //  Information)
14321d4a0697SVijay Khemka //
14331d4a0697SVijay Khemka //  Response:
14341d4a0697SVijay Khemka //  Byte 1 – Completion Code
14351d4a0697SVijay Khemka //
14361d4a0697SVijay Khemka //  Param#0 (HDD Location):
14371d4a0697SVijay Khemka //  Byte 1 – Controller
14381d4a0697SVijay Khemka //    [7:3] Device Number
14391d4a0697SVijay Khemka //    [2:0] Function Number
14401d4a0697SVijay Khemka //  For Intel C610 series (Wellsburg)
14411d4a0697SVijay Khemka //    D31:F2 (0xFA) – SATA control 1
14421d4a0697SVijay Khemka //    D31:F5 (0xFD) – SATA control 2
14431d4a0697SVijay Khemka //    D17:F4 (0x8C) – sSata control
14441d4a0697SVijay Khemka //  Byte 2 – Port Number
14451d4a0697SVijay Khemka //  Byte 3 – Location (0xFF: No HDD Present)
14461d4a0697SVijay Khemka //  BIOS default set Byte 3 to 0xFF, if No HDD Present. And then skip send param
14471d4a0697SVijay Khemka //  #1~4, #6,  #7 to BMC (still send param #5) BIOS default set Byte 3 to 0, if
14481d4a0697SVijay Khemka //  the HDD present. BMC or other people who know the HDD location has
14491d4a0697SVijay Khemka //  responsibility for update Location info
14501d4a0697SVijay Khemka //
14511d4a0697SVijay Khemka //  Param#1 (Serial Number):
14521d4a0697SVijay Khemka //  Bytes 1..33: HDD Serial Number
14531d4a0697SVijay Khemka //
14541d4a0697SVijay Khemka //  Param#2 (Model Name):
14551d4a0697SVijay Khemka //  Byte 1..33 – HDD Model Name
14561d4a0697SVijay Khemka //
14571d4a0697SVijay Khemka //  Param#3 (HDD FW Version):
14581d4a0697SVijay Khemka //  Byte 1..17 –HDD FW version
14591d4a0697SVijay Khemka //
14601d4a0697SVijay Khemka //  Param#4 (Capacity):
14611d4a0697SVijay Khemka //  Byte 1..4 –HDD Block Size, LSB
14621d4a0697SVijay Khemka //  Byte 5..12 - HDD Block Number, LSB
14631d4a0697SVijay Khemka //  HDD Capacity = HDD Block size * HDD BLock number  (Unit Byte)
14641d4a0697SVijay Khemka //
14651d4a0697SVijay Khemka //  Param#5 (Max HDD Quantity):
14661d4a0697SVijay Khemka //  Byte 1 - Max HDD Quantity
14671d4a0697SVijay Khemka //  Max supported port numbers in this PCH
14681d4a0697SVijay Khemka //
14691d4a0697SVijay Khemka //  Param#6 (HDD Type)
14701d4a0697SVijay Khemka //  Byte 1 – HDD Type
14711d4a0697SVijay Khemka //  0h – Reserved
14721d4a0697SVijay Khemka //  1h – SAS
14731d4a0697SVijay Khemka //  2h – SATA
14741d4a0697SVijay Khemka //  3h – PCIE SSD (NVME)
14751d4a0697SVijay Khemka //
14761d4a0697SVijay Khemka //  Param#7 (HDD WWN)
14771d4a0697SVijay Khemka //  Data 1...8: HDD World Wide Name, LSB
14781d4a0697SVijay Khemka //
14791d4a0697SVijay Khemka ipmi_ret_t ipmiOemQSetDriveInfo(ipmi_netfn_t netfn, ipmi_cmd_t cmd,
14801d4a0697SVijay Khemka                                 ipmi_request_t request,
14811d4a0697SVijay Khemka                                 ipmi_response_t response,
14821d4a0697SVijay Khemka                                 ipmi_data_len_t data_len,
14831d4a0697SVijay Khemka                                 ipmi_context_t context)
14841d4a0697SVijay Khemka {
14851d4a0697SVijay Khemka     qDriveInfo_t *req = reinterpret_cast<qDriveInfo_t *>(request);
14861d4a0697SVijay Khemka     uint8_t numParam = sizeof(driveInfoKey) / sizeof(uint8_t *);
14871d4a0697SVijay Khemka     uint8_t ctrlType = req->hddCtrlType & 0x0f;
14881d4a0697SVijay Khemka     std::stringstream ss;
14891d4a0697SVijay Khemka     std::string str;
14901d4a0697SVijay Khemka     uint8_t len = *data_len;
14911d4a0697SVijay Khemka 
14921d4a0697SVijay Khemka     *data_len = 0;
14931d4a0697SVijay Khemka 
14941d4a0697SVijay Khemka     /* check for requested data params */
14951d4a0697SVijay Khemka     if (len < 6 || req->paramSel < 1 || req->paramSel >= numParam ||
14961d4a0697SVijay Khemka         ctrlType > 2)
14971d4a0697SVijay Khemka     {
14981d4a0697SVijay Khemka         phosphor::logging::log<phosphor::logging::level::ERR>(
14991d4a0697SVijay Khemka             "Invalid parameter received");
15001d4a0697SVijay Khemka         return IPMI_CC_PARM_OUT_OF_RANGE;
15011d4a0697SVijay Khemka     }
15021d4a0697SVijay Khemka 
15031d4a0697SVijay Khemka     len = len - 6; // Get Actual data length
15041d4a0697SVijay Khemka 
15051d4a0697SVijay Khemka     ss << std::hex;
15061d4a0697SVijay Khemka     ss << std::setw(2) << std::setfill('0') << (int)req->hddIndex;
15071d4a0697SVijay Khemka     oemData[KEY_Q_DRIVE_INFO][KEY_HDD_CTRL_TYPE] = req->hddCtrlType;
15081d4a0697SVijay Khemka     oemData[KEY_Q_DRIVE_INFO][ctrlTypeKey[ctrlType]][ss.str()][KEY_HDD_INDEX] =
15091d4a0697SVijay Khemka         req->hddIndex;
15101d4a0697SVijay Khemka 
15111d4a0697SVijay Khemka     str = bytesToStr(req->data, len);
15121d4a0697SVijay Khemka     oemData[KEY_Q_DRIVE_INFO][ctrlTypeKey[ctrlType]][ss.str()]
15131d4a0697SVijay Khemka            [driveInfoKey[req->paramSel]] = str.c_str();
15141d4a0697SVijay Khemka     flushOemData();
15151d4a0697SVijay Khemka 
15161d4a0697SVijay Khemka     return IPMI_CC_OK;
15171d4a0697SVijay Khemka }
15181d4a0697SVijay Khemka 
15191d4a0697SVijay Khemka //----------------------------------------------------------------------
15201d4a0697SVijay Khemka // Get Drive Info (CMD_OEM_Q_GET_DRIVE_INFO)
15211d4a0697SVijay Khemka //----------------------------------------------------------------------
15221d4a0697SVijay Khemka // BMC needs to check HDD presented or not first. If NOT presented, return
15231d4a0697SVijay Khemka // completion code 0xD5.
15241d4a0697SVijay Khemka //
15251d4a0697SVijay Khemka // Request:
15261d4a0697SVijay Khemka // Byte 1:3 – Quanta Manufacturer ID – 001C4Ch, LSB first
15271d4a0697SVijay Khemka // Byte 4 –
15281d4a0697SVijay Khemka //[7:4] Reserved
15291d4a0697SVijay Khemka //[3:0] HDD Controller Type
15301d4a0697SVijay Khemka //   0x00 – BIOS
15311d4a0697SVijay Khemka //   0x01 – Expander
15321d4a0697SVijay Khemka //   0x02 – LSI
15331d4a0697SVijay Khemka // Byte 5 – HDD Index, 0 base
15341d4a0697SVijay Khemka // Byte 6 – Parameter Selector (See Above Set HDD Information)
15351d4a0697SVijay Khemka // Response:
15361d4a0697SVijay Khemka // Byte 1 – Completion Code
15371d4a0697SVijay Khemka //   0xD5 – Not support in current status (HDD Not Present)
15381d4a0697SVijay Khemka // Byte 2..N – Configuration parameter data (see Table_1415h Parameters of HDD
15391d4a0697SVijay Khemka // Information)
15401d4a0697SVijay Khemka //
15411d4a0697SVijay Khemka ipmi_ret_t ipmiOemQGetDriveInfo(ipmi_netfn_t netfn, ipmi_cmd_t cmd,
15421d4a0697SVijay Khemka                                 ipmi_request_t request,
15431d4a0697SVijay Khemka                                 ipmi_response_t response,
15441d4a0697SVijay Khemka                                 ipmi_data_len_t data_len,
15451d4a0697SVijay Khemka                                 ipmi_context_t context)
15461d4a0697SVijay Khemka {
15471d4a0697SVijay Khemka     qDriveInfo_t *req = reinterpret_cast<qDriveInfo_t *>(request);
15481d4a0697SVijay Khemka     uint8_t numParam = sizeof(driveInfoKey) / sizeof(uint8_t *);
15491d4a0697SVijay Khemka     uint8_t *res = reinterpret_cast<uint8_t *>(response);
15501d4a0697SVijay Khemka     uint8_t ctrlType = req->hddCtrlType & 0x0f;
15511d4a0697SVijay Khemka     std::stringstream ss;
15521d4a0697SVijay Khemka     std::string str;
15531d4a0697SVijay Khemka 
15541d4a0697SVijay Khemka     *data_len = 0;
15551d4a0697SVijay Khemka 
15561d4a0697SVijay Khemka     /* check for requested data params */
15571d4a0697SVijay Khemka     if (req->paramSel < 1 || req->paramSel >= numParam || ctrlType > 2)
15581d4a0697SVijay Khemka     {
15591d4a0697SVijay Khemka         phosphor::logging::log<phosphor::logging::level::ERR>(
15601d4a0697SVijay Khemka             "Invalid parameter received");
15611d4a0697SVijay Khemka         return IPMI_CC_PARM_OUT_OF_RANGE;
15621d4a0697SVijay Khemka     }
15631d4a0697SVijay Khemka 
15641d4a0697SVijay Khemka     if (oemData[KEY_Q_DRIVE_INFO].find(ctrlTypeKey[ctrlType]) ==
15651d4a0697SVijay Khemka         oemData[KEY_Q_DRIVE_INFO].end())
15661d4a0697SVijay Khemka         return CC_PARAM_NOT_SUPP_IN_CURR_STATE;
15671d4a0697SVijay Khemka 
15681d4a0697SVijay Khemka     ss << std::hex;
15691d4a0697SVijay Khemka     ss << std::setw(2) << std::setfill('0') << (int)req->hddIndex;
15701d4a0697SVijay Khemka 
15711d4a0697SVijay Khemka     if (oemData[KEY_Q_DRIVE_INFO][ctrlTypeKey[ctrlType]].find(ss.str()) ==
15721d4a0697SVijay Khemka         oemData[KEY_Q_DRIVE_INFO].end())
15731d4a0697SVijay Khemka         return CC_PARAM_NOT_SUPP_IN_CURR_STATE;
15741d4a0697SVijay Khemka 
15751d4a0697SVijay Khemka     if (oemData[KEY_Q_DRIVE_INFO][ctrlTypeKey[ctrlType]][ss.str()].find(
15761d4a0697SVijay Khemka             dimmInfoKey[req->paramSel]) ==
15771d4a0697SVijay Khemka         oemData[KEY_Q_DRIVE_INFO][ss.str()].end())
15781d4a0697SVijay Khemka         return CC_PARAM_NOT_SUPP_IN_CURR_STATE;
15791d4a0697SVijay Khemka 
15801d4a0697SVijay Khemka     str = oemData[KEY_Q_DRIVE_INFO][ctrlTypeKey[ctrlType]][ss.str()]
15811d4a0697SVijay Khemka                  [dimmInfoKey[req->paramSel]];
15821d4a0697SVijay Khemka     *data_len = strToBytes(str, res);
15831d4a0697SVijay Khemka 
1584e7d23d0eSVijay Khemka     return IPMI_CC_OK;
1585e7d23d0eSVijay Khemka }
1586e7d23d0eSVijay Khemka 
1587e7d23d0eSVijay Khemka static void registerOEMFunctions(void)
1588e7d23d0eSVijay Khemka {
15891d4a0697SVijay Khemka     /* Get OEM data from json file */
15901d4a0697SVijay Khemka     std::ifstream file(JSON_OEM_DATA_FILE);
15911d4a0697SVijay Khemka     if (file)
1592feaa9811SVijay Khemka     {
15931d4a0697SVijay Khemka         file >> oemData;
1594feaa9811SVijay Khemka         file.close();
1595feaa9811SVijay Khemka     }
15961d4a0697SVijay Khemka 
1597e7d23d0eSVijay Khemka     phosphor::logging::log<phosphor::logging::level::INFO>(
1598e7d23d0eSVijay Khemka         "Registering OEM commands");
1599e7d23d0eSVijay Khemka     ipmiPrintAndRegister(NETFUN_CHASSIS, 1, NULL, ipmiGetChassisStatus,
1600e7d23d0eSVijay Khemka                          PRIVILEGE_USER); // get chassis status
1601e7d23d0eSVijay Khemka     ipmiPrintAndRegister(NETFN_OEM_USB_DBG_REQ, CMD_OEM_USB_DBG_GET_FRAME_INFO,
1602e7d23d0eSVijay Khemka                          NULL, ipmiOemDbgGetFrameInfo,
1603e7d23d0eSVijay Khemka                          PRIVILEGE_USER); // get debug frame info
1604e7d23d0eSVijay Khemka     ipmiPrintAndRegister(NETFN_OEM_USB_DBG_REQ,
1605e7d23d0eSVijay Khemka                          CMD_OEM_USB_DBG_GET_UPDATED_FRAMES, NULL,
1606e7d23d0eSVijay Khemka                          ipmiOemDbgGetUpdFrames,
1607e7d23d0eSVijay Khemka                          PRIVILEGE_USER); // get debug updated frames
1608e7d23d0eSVijay Khemka     ipmiPrintAndRegister(NETFN_OEM_USB_DBG_REQ, CMD_OEM_USB_DBG_GET_POST_DESC,
1609e7d23d0eSVijay Khemka                          NULL, ipmiOemDbgGetPostDesc,
1610e7d23d0eSVijay Khemka                          PRIVILEGE_USER); // get debug post description
1611e7d23d0eSVijay Khemka     ipmiPrintAndRegister(NETFN_OEM_USB_DBG_REQ, CMD_OEM_USB_DBG_GET_GPIO_DESC,
1612e7d23d0eSVijay Khemka                          NULL, ipmiOemDbgGetGpioDesc,
1613e7d23d0eSVijay Khemka                          PRIVILEGE_USER); // get debug gpio description
1614e7d23d0eSVijay Khemka     ipmiPrintAndRegister(NETFN_OEM_USB_DBG_REQ, CMD_OEM_USB_DBG_GET_FRAME_DATA,
1615e7d23d0eSVijay Khemka                          NULL, ipmiOemDbgGetFrameData,
1616e7d23d0eSVijay Khemka                          PRIVILEGE_USER); // get debug frame data
1617e7d23d0eSVijay Khemka     ipmiPrintAndRegister(NETFN_OEM_USB_DBG_REQ, CMD_OEM_USB_DBG_CTRL_PANEL,
1618e7d23d0eSVijay Khemka                          NULL, ipmiOemDbgGetCtrlPanel,
1619e7d23d0eSVijay Khemka                          PRIVILEGE_USER); // get debug control panel
1620e7d23d0eSVijay Khemka     ipmiPrintAndRegister(NETFUN_NONE, CMD_OEM_SET_DIMM_INFO, NULL,
1621e7d23d0eSVijay Khemka                          ipmiOemSetDimmInfo,
1622e7d23d0eSVijay Khemka                          PRIVILEGE_USER); // Set Dimm Info
16231d4a0697SVijay Khemka     ipmiPrintAndRegister(NETFUN_NONE, CMD_OEM_GET_BOARD_ID, NULL,
16241d4a0697SVijay Khemka                          ipmiOemGetBoardID,
16251d4a0697SVijay Khemka                          PRIVILEGE_USER); // Get Board ID
16261d4a0697SVijay Khemka     ipmiPrintAndRegister(NETFUN_NONE, CMD_OEM_SET_BOOT_ORDER, NULL,
16271d4a0697SVijay Khemka                          ipmiOemSetBootOrder,
16281d4a0697SVijay Khemka                          PRIVILEGE_USER); // Set Boot Order
1629e7d23d0eSVijay Khemka     ipmiPrintAndRegister(NETFUN_NONE, CMD_OEM_GET_BOOT_ORDER, NULL,
1630e7d23d0eSVijay Khemka                          ipmiOemGetBootOrder,
1631e7d23d0eSVijay Khemka                          PRIVILEGE_USER); // Get Boot Order
1632e7d23d0eSVijay Khemka     ipmiPrintAndRegister(NETFUN_NONE, CMD_OEM_SET_MACHINE_CONFIG_INFO, NULL,
1633e7d23d0eSVijay Khemka                          ipmiOemSetMachineCfgInfo,
1634e7d23d0eSVijay Khemka                          PRIVILEGE_USER); // Set Machine Config Info
1635e7d23d0eSVijay Khemka     ipmiPrintAndRegister(NETFUN_NONE, CMD_OEM_SET_POST_START, NULL,
1636e7d23d0eSVijay Khemka                          ipmiOemSetPostStart,
1637e7d23d0eSVijay Khemka                          PRIVILEGE_USER); // Set POST start
1638e7d23d0eSVijay Khemka     ipmiPrintAndRegister(NETFUN_NONE, CMD_OEM_SET_POST_END, NULL,
1639e7d23d0eSVijay Khemka                          ipmiOemSetPostEnd,
1640e7d23d0eSVijay Khemka                          PRIVILEGE_USER); // Set POST End
16411d4a0697SVijay Khemka     ipmiPrintAndRegister(NETFUN_NONE, CMD_OEM_SET_PPIN_INFO, NULL,
16421d4a0697SVijay Khemka                          ipmiOemSetPPINInfo,
16431d4a0697SVijay Khemka                          PRIVILEGE_USER); // Set PPIN Info
16441d4a0697SVijay Khemka     ipmiPrintAndRegister(NETFUN_NONE, CMD_OEM_SET_ADR_TRIGGER, NULL,
16451d4a0697SVijay Khemka                          ipmiOemSetAdrTrigger,
16461d4a0697SVijay Khemka                          PRIVILEGE_USER); // Set ADR Trigger
1647e7d23d0eSVijay Khemka     ipmiPrintAndRegister(NETFUN_NONE, CMD_OEM_SET_BIOS_FLASH_INFO, NULL,
1648e7d23d0eSVijay Khemka                          ipmiOemSetBiosFlashInfo,
1649e7d23d0eSVijay Khemka                          PRIVILEGE_USER); // Set Bios Flash Info
1650e7d23d0eSVijay Khemka     ipmiPrintAndRegister(NETFUN_NONE, CMD_OEM_SET_PPR, NULL, ipmiOemSetPpr,
1651e7d23d0eSVijay Khemka                          PRIVILEGE_USER); // Set PPR
1652e7d23d0eSVijay Khemka     ipmiPrintAndRegister(NETFUN_NONE, CMD_OEM_GET_PPR, NULL, ipmiOemGetPpr,
1653e7d23d0eSVijay Khemka                          PRIVILEGE_USER); // Get PPR
16541d4a0697SVijay Khemka     /* FB OEM QC Commands */
16551d4a0697SVijay Khemka     ipmiPrintAndRegister(NETFUN_FB_OEM_QC, CMD_OEM_Q_SET_PROC_INFO, NULL,
16561d4a0697SVijay Khemka                          ipmiOemQSetProcInfo,
16571d4a0697SVijay Khemka                          PRIVILEGE_USER); // Set Proc Info
16581d4a0697SVijay Khemka     ipmiPrintAndRegister(NETFUN_FB_OEM_QC, CMD_OEM_Q_GET_PROC_INFO, NULL,
16591d4a0697SVijay Khemka                          ipmiOemQGetProcInfo,
16601d4a0697SVijay Khemka                          PRIVILEGE_USER); // Get Proc Info
16611d4a0697SVijay Khemka     ipmiPrintAndRegister(NETFUN_FB_OEM_QC, CMD_OEM_Q_SET_DIMM_INFO, NULL,
16621d4a0697SVijay Khemka                          ipmiOemQSetDimmInfo,
16631d4a0697SVijay Khemka                          PRIVILEGE_USER); // Set Dimm Info
16641d4a0697SVijay Khemka     ipmiPrintAndRegister(NETFUN_FB_OEM_QC, CMD_OEM_Q_GET_DIMM_INFO, NULL,
16651d4a0697SVijay Khemka                          ipmiOemQGetDimmInfo,
16661d4a0697SVijay Khemka                          PRIVILEGE_USER); // Get Dimm Info
16671d4a0697SVijay Khemka     ipmiPrintAndRegister(NETFUN_FB_OEM_QC, CMD_OEM_Q_SET_DRIVE_INFO, NULL,
16681d4a0697SVijay Khemka                          ipmiOemQSetDriveInfo,
16691d4a0697SVijay Khemka                          PRIVILEGE_USER); // Set Drive Info
16701d4a0697SVijay Khemka     ipmiPrintAndRegister(NETFUN_FB_OEM_QC, CMD_OEM_Q_GET_DRIVE_INFO, NULL,
16711d4a0697SVijay Khemka                          ipmiOemQGetDriveInfo,
16721d4a0697SVijay Khemka                          PRIVILEGE_USER); // Get Drive Info
1673e7d23d0eSVijay Khemka     return;
1674e7d23d0eSVijay Khemka }
1675e7d23d0eSVijay Khemka 
1676e7d23d0eSVijay Khemka } // namespace ipmi
1677