blob: 9205207716ea549ea168ff331cca9e0c2d5eef74 [file] [log] [blame]
#include "dcmihandler.hpp"
#include "host-ipmid/ipmid-api.h"
#include <phosphor-logging/elog-errors.hpp>
#include <phosphor-logging/log.hpp>
#include <sdbusplus/bus.hpp>
#include "utils.hpp"
#include <stdio.h>
#include <string.h>
#include <stdint.h>
#include "xyz/openbmc_project/Common/error.hpp"
using namespace phosphor::logging;
using InternalFailure =
sdbusplus::xyz::openbmc_project::Common::Error::InternalFailure;
void register_netfn_dcmi_functions() __attribute__((constructor));
constexpr auto PCAP_PATH = "/xyz/openbmc_project/control/host0/power_cap";
constexpr auto PCAP_INTERFACE = "xyz.openbmc_project.Control.Power.Cap";
constexpr auto POWER_CAP_PROP = "PowerCap";
constexpr auto POWER_CAP_ENABLE_PROP = "PowerCapEnable";
using namespace phosphor::logging;
uint32_t getPcap(sdbusplus::bus::bus& bus)
{
auto settingService = ipmi::getService(bus,
PCAP_INTERFACE,PCAP_PATH);
auto method = bus.new_method_call(settingService.c_str(),
PCAP_PATH,
"org.freedesktop.DBus.Properties",
"Get");
method.append(PCAP_INTERFACE, POWER_CAP_PROP);
auto reply = bus.call(method);
if (reply.is_method_error())
{
log<level::ERR>("Error in getPcap prop");
// TODO openbmc/openbmc#851 - Once available, throw returned error
// and return IPMI_CC_UNSPECIFIED_ERROR to caller
return 0;
}
sdbusplus::message::variant<uint32_t> pcap;
reply.read(pcap);
return sdbusplus::message::variant_ns::get<uint32_t>(pcap);
}
bool getPcapEnabled(sdbusplus::bus::bus& bus)
{
auto settingService = ipmi::getService(bus,
PCAP_INTERFACE,PCAP_PATH);
auto method = bus.new_method_call(settingService.c_str(),
PCAP_PATH,
"org.freedesktop.DBus.Properties",
"Get");
method.append(PCAP_INTERFACE, POWER_CAP_ENABLE_PROP);
auto reply = bus.call(method);
if (reply.is_method_error())
{
log<level::ERR>("Error in getPcapEnabled prop");
// TODO openbmc/openbmc#851 - Once available, throw returned error
// and return IPMI_CC_UNSPECIFIED_ERROR to caller
return false;
}
sdbusplus::message::variant<bool> pcapEnabled;
reply.read(pcapEnabled);
return sdbusplus::message::variant_ns::get<bool>(pcapEnabled);
}
ipmi_ret_t ipmi_dcmi_get_power_limit(ipmi_netfn_t netfn, ipmi_cmd_t cmd,
ipmi_request_t request, ipmi_response_t response,
ipmi_data_len_t data_len, ipmi_context_t context)
{
// Default to no power cap enabled
ipmi_ret_t rc = IPMI_DCMI_CC_NO_ACTIVE_POWER_LIMIT;
// Get our sdbus object
sd_bus *bus = ipmid_get_sd_bus_connection();
sdbusplus::bus::bus sdbus {bus};
// Read our power cap settings
auto pcap = getPcap(sdbus);
auto pcapEnable = getPcapEnabled(sdbus);
if(pcapEnable)
{
// indicate power cap enabled with success return code
rc = IPMI_CC_OK;
}
uint8_t pcapBytes[2] = {0};
pcapBytes[1] = (pcap & 0xFF00) >> 8;
pcapBytes[0] = pcap & 0xFF;
// dcmi-v1-5-rev-spec.pdf 6.6.2.
uint8_t data_response[] = { 0xDC, 0x00, 0x00, 0x01, pcapBytes[0],
pcapBytes[1], 0x00, 0x00, 0x00, 0x00, 0x00,
0x00, 0x00, 0x01};
log<level::INFO>("IPMI DCMI POWER CAP INFO",
entry("DCMI_PCAP=%u",pcap),
entry("DCMI_PCAP_ENABLE=%u",pcapEnable));
memcpy(response, data_response, sizeof(data_response));
*data_len = sizeof(data_response);
return rc;
}
namespace dcmi
{
void readAssetTagObjectTree(dcmi::assettag::ObjectTree& objectTree)
{
static constexpr auto mapperBusName = "xyz.openbmc_project.ObjectMapper";
static constexpr auto mapperObjPath = "/xyz/openbmc_project/object_mapper";
static constexpr auto mapperIface = "xyz.openbmc_project.ObjectMapper";
static constexpr auto inventoryRoot = "/xyz/openbmc_project/inventory/";
sdbusplus::bus::bus bus{ipmid_get_sd_bus_connection()};
auto depth = 0;
auto mapperCall = bus.new_method_call(mapperBusName,
mapperObjPath,
mapperIface,
"GetSubTree");
mapperCall.append(inventoryRoot);
mapperCall.append(depth);
mapperCall.append(std::vector<std::string>({dcmi::assetTagIntf}));
auto mapperReply = bus.call(mapperCall);
if (mapperReply.is_method_error())
{
log<level::ERR>("Error in mapper call");
elog<InternalFailure>();
}
mapperReply.read(objectTree);
if (objectTree.empty())
{
log<level::ERR>("AssetTag property is not populated");
elog<InternalFailure>();
}
}
std::string readAssetTag()
{
sdbusplus::bus::bus bus{ipmid_get_sd_bus_connection()};
dcmi::assettag::ObjectTree objectTree;
// Read the object tree with the inventory root to figure out the object
// that has implemented the Asset tag interface.
readAssetTagObjectTree(objectTree);
auto method = bus.new_method_call(
(objectTree.begin()->second.begin()->first).c_str(),
(objectTree.begin()->first).c_str(),
dcmi::propIntf,
"Get");
method.append(dcmi::assetTagIntf);
method.append(dcmi::assetTagProp);
auto reply = bus.call(method);
if (reply.is_method_error())
{
log<level::ERR>("Error in reading asset tag");
elog<InternalFailure>();
}
sdbusplus::message::variant<std::string> assetTag;
reply.read(assetTag);
return assetTag.get<std::string>();
}
void writeAssetTag(const std::string& assetTag)
{
sdbusplus::bus::bus bus{ipmid_get_sd_bus_connection()};
dcmi::assettag::ObjectTree objectTree;
// Read the object tree with the inventory root to figure out the object
// that has implemented the Asset tag interface.
readAssetTagObjectTree(objectTree);
auto method = bus.new_method_call(
(objectTree.begin()->second.begin()->first).c_str(),
(objectTree.begin()->first).c_str(),
dcmi::propIntf,
"Set");
method.append(dcmi::assetTagIntf);
method.append(dcmi::assetTagProp);
method.append(sdbusplus::message::variant<std::string>(assetTag));
auto reply = bus.call(method);
if (reply.is_method_error())
{
log<level::ERR>("Error in writing asset tag");
elog<InternalFailure>();
}
}
} // namespace dcmi
ipmi_ret_t getAssetTag(ipmi_netfn_t netfn, ipmi_cmd_t cmd,
ipmi_request_t request, ipmi_response_t response,
ipmi_data_len_t data_len, ipmi_context_t context)
{
auto requestData = reinterpret_cast<const dcmi::GetAssetTagRequest*>
(request);
std::vector<uint8_t> outPayload(sizeof(dcmi::GetAssetTagResponse));
auto responseData = reinterpret_cast<dcmi::GetAssetTagResponse*>
(outPayload.data());
if (requestData->groupID != dcmi::groupExtId)
{
*data_len = 0;
return IPMI_CC_INVALID_FIELD_REQUEST;
}
// Verify offset to read and number of bytes to read are not exceeding the
// range.
if ((requestData->offset > dcmi::assetTagMaxOffset) ||
(requestData->bytes > dcmi::maxBytes) ||
((requestData->offset + requestData->bytes) > dcmi::assetTagMaxSize))
{
*data_len = 0;
return IPMI_CC_PARM_OUT_OF_RANGE;
}
std::string assetTag;
try
{
assetTag = dcmi::readAssetTag();
}
catch (InternalFailure& e)
{
*data_len = 0;
return IPMI_CC_UNSPECIFIED_ERROR;
}
responseData->groupID = dcmi::groupExtId;
// Return if the asset tag is not populated.
if (!assetTag.size())
{
responseData->tagLength = 0;
memcpy(response, outPayload.data(), outPayload.size());
*data_len = outPayload.size();
return IPMI_CC_OK;
}
// If the asset tag is longer than 63 bytes, restrict it to 63 bytes to suit
// Get Asset Tag command.
if (assetTag.size() > dcmi::assetTagMaxSize)
{
assetTag.resize(dcmi::assetTagMaxSize);
}
// If the requested offset is beyond the asset tag size.
if (requestData->offset >= assetTag.size())
{
*data_len = 0;
return IPMI_CC_PARM_OUT_OF_RANGE;
}
auto returnData = assetTag.substr(requestData->offset, requestData->bytes);
responseData->tagLength = assetTag.size();
memcpy(response, outPayload.data(), outPayload.size());
memcpy(static_cast<uint8_t*>(response) + outPayload.size(),
returnData.data(), returnData.size());
*data_len = outPayload.size() + returnData.size();
return IPMI_CC_OK;
}
ipmi_ret_t setAssetTag(ipmi_netfn_t netfn, ipmi_cmd_t cmd,
ipmi_request_t request, ipmi_response_t response,
ipmi_data_len_t data_len, ipmi_context_t context)
{
auto requestData = reinterpret_cast<const dcmi::SetAssetTagRequest*>
(request);
std::vector<uint8_t> outPayload(sizeof(dcmi::SetAssetTagResponse));
auto responseData = reinterpret_cast<dcmi::SetAssetTagResponse*>
(outPayload.data());
if (requestData->groupID != dcmi::groupExtId)
{
*data_len = 0;
return IPMI_CC_INVALID_FIELD_REQUEST;
}
// Verify offset to read and number of bytes to read are not exceeding the
// range.
if ((requestData->offset > dcmi::assetTagMaxOffset) ||
(requestData->bytes > dcmi::maxBytes) ||
((requestData->offset + requestData->bytes) > dcmi::assetTagMaxSize))
{
*data_len = 0;
return IPMI_CC_PARM_OUT_OF_RANGE;
}
std::string assetTag;
try
{
assetTag = dcmi::readAssetTag();
if (requestData->offset > assetTag.size())
{
*data_len = 0;
return IPMI_CC_PARM_OUT_OF_RANGE;
}
assetTag.replace(requestData->offset,
assetTag.size() - requestData->offset,
static_cast<const char*>(request) +
sizeof(dcmi::SetAssetTagRequest),
requestData->bytes);
dcmi::writeAssetTag(assetTag);
responseData->groupID = dcmi::groupExtId;
responseData->tagLength = assetTag.size();
memcpy(response, outPayload.data(), outPayload.size());
*data_len = outPayload.size();
return IPMI_CC_OK;
}
catch (InternalFailure& e)
{
*data_len = 0;
return IPMI_CC_UNSPECIFIED_ERROR;
}
}
void register_netfn_dcmi_functions()
{
// <Get Power Limit>
printf("Registering NetFn:[0x%X], Cmd:[0x%X]\n",NETFUN_GRPEXT, IPMI_CMD_DCMI_GET_POWER);
ipmi_register_callback(NETFUN_GRPEXT, IPMI_CMD_DCMI_GET_POWER, NULL, ipmi_dcmi_get_power_limit,
PRIVILEGE_USER);
// <Get Asset Tag>
printf("Registering NetFn:[0x%X], Cmd:[0x%X]\n",NETFUN_GRPEXT, IPMI_CMD_DCMI_GET_ASSET_TAG);
ipmi_register_callback(NETFUN_GRPEXT, IPMI_CMD_DCMI_GET_ASSET_TAG, NULL, getAssetTag,
PRIVILEGE_USER);
// <Set Asset Tag>
printf("Registering NetFn:[0x%X], Cmd:[0x%X]\n",NETFUN_GRPEXT, IPMI_CMD_DCMI_SET_ASSET_TAG);
ipmi_register_callback(NETFUN_GRPEXT, IPMI_CMD_DCMI_SET_ASSET_TAG, NULL, setAssetTag,
PRIVILEGE_OPERATOR);
return;
}
// 956379