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#include <string>
#include <experimental/filesystem>
#include <fstream>
#include <phosphor-logging/log.hpp>
#include <xyz/openbmc_project/Software/Version/server.hpp>
#include "version.hpp"
#include "config.h"
#include "item_updater.hpp"
#include "activation.hpp"
#include "serialize.hpp"
namespace openpower
{
namespace software
{
namespace updater
{
// When you see server:: you know we're referencing our base class
namespace server = sdbusplus::xyz::openbmc_project::Software::server;
namespace fs = std::experimental::filesystem;
using namespace phosphor::logging;
constexpr auto squashFSImage = "pnor.xz.squashfs";
void ItemUpdater::createActivation(sdbusplus::message::message& m)
{
using SVersion = server::Version;
using VersionPurpose = SVersion::VersionPurpose;
namespace msg = sdbusplus::message;
namespace variant_ns = msg::variant_ns;
sdbusplus::message::object_path objPath;
std::map<std::string,
std::map<std::string, msg::variant<std::string>>> interfaces;
m.read(objPath, interfaces);
std::string path(std::move(objPath));
std::string filePath;
auto purpose = VersionPurpose::Unknown;
std::string version;
for (const auto& intf : interfaces)
{
if (intf.first == VERSION_IFACE)
{
for (const auto& property : intf.second)
{
if (property.first == "Purpose")
{
// Only process the Host and System images
auto value = SVersion::convertVersionPurposeFromString(
variant_ns::get<std::string>(property.second));
if (value == VersionPurpose::Host ||
value == VersionPurpose::System)
{
purpose = value;
}
}
else if (property.first == "Version")
{
version = variant_ns::get<std::string>(property.second);
}
}
}
else if (intf.first == FILEPATH_IFACE)
{
for (const auto& property : intf.second)
{
if (property.first == "Path")
{
filePath = variant_ns::get<std::string>(property.second);
}
}
}
}
if ((filePath.empty()) || (purpose == VersionPurpose::Unknown))
{
return;
}
// Version id is the last item in the path
auto pos = path.rfind("/");
if (pos == std::string::npos)
{
log<level::ERR>("No version id found in object path",
entry("OBJPATH=%s", path));
return;
}
auto versionId = path.substr(pos + 1);
if (activations.find(versionId) == activations.end())
{
// Determine the Activation state by processing the given image dir.
auto activationState = server::Activation::Activations::Invalid;
if (ItemUpdater::validateSquashFSImage(filePath) == 0)
{
activationState = server::Activation::Activations::Ready;
}
fs::path manifestPath(filePath);
manifestPath /= MANIFEST_FILE;
std::string extendedVersion = (Version::getValue(manifestPath.string(),
std::map<std::string, std::string>
{{"extended_version", ""}})).begin()->second;
activations.insert(std::make_pair(
versionId,
std::make_unique<Activation>(
bus,
path,
*this,
versionId,
extendedVersion,
activationState)));
versions.insert(std::make_pair(
versionId,
std::make_unique<Version>(
bus,
path,
version,
purpose,
filePath,
*this)));
}
else
{
log<level::INFO>("Software Object with the same version already exists",
entry("VERSION_ID=%s", versionId));
}
return;
}
void ItemUpdater::processPNORImage()
{
// Read pnor.toc from folders under /media/
// to get Active Software Versions.
for(const auto& iter : fs::directory_iterator(MEDIA_DIR))
{
auto activationState = server::Activation::Activations::Active;
static const auto PNOR_RO_PREFIX_LEN = strlen(PNOR_RO_PREFIX);
// Check if the PNOR_RO_PREFIX is the prefix of the iter.path
if (0 == iter.path().native().compare(0, PNOR_RO_PREFIX_LEN,
PNOR_RO_PREFIX))
{
auto pnorTOC = iter.path() / PNOR_TOC_FILE;
if (!fs::is_regular_file(pnorTOC))
{
log<level::ERR>("Failed to read pnorTOC\n",
entry("FileName=%s", pnorTOC.string()));
activationState = server::Activation::Activations::Invalid;
}
auto keyValues =
Version::getValue(pnorTOC,
{{ "version", "" },
{ "extended_version", "" } });
auto& version = keyValues.at("version");
if (version.empty())
{
log<level::ERR>("Failed to read version from pnorTOC",
entry("FILENAME=%s", pnorTOC.string()));
activationState = server::Activation::Activations::Invalid;
}
auto& extendedVersion = keyValues.at("extended_version");
if (extendedVersion.empty())
{
log<level::ERR>("Failed to read extendedVersion from pnorTOC",
entry("FILENAME=%s", pnorTOC.string()));
activationState = server::Activation::Activations::Invalid;
}
// The versionId is extracted from the path
// for example /media/pnor-ro-2a1022fe
auto id = iter.path().native().substr(PNOR_RO_PREFIX_LEN);
auto purpose = server::Version::VersionPurpose::Host;
auto path = fs::path(SOFTWARE_OBJPATH) / id;
// Create Activation instance for this version.
activations.insert(std::make_pair(
id,
std::make_unique<Activation>(
bus,
path,
*this,
id,
extendedVersion,
activationState)));
// If Active, create RedundancyPriority instance for this version.
if (activationState == server::Activation::Activations::Active)
{
uint8_t priority = std::numeric_limits<uint8_t>::max();
if (!restoreFromFile(id, priority))
{
log<level::ERR>("Unable to restore priority from file.",
entry("VERSIONID=%s", id));
}
activations.find(id)->second->redundancyPriority =
std::make_unique<RedundancyPriority>(
bus,
path,
*(activations.find(id)->second),
priority);
}
// Create Version instance for this version.
versions.insert(std::make_pair(
id,
std::make_unique<Version>(
bus,
path,
version,
purpose,
"",
*this)));
}
}
return;
}
int ItemUpdater::validateSquashFSImage(const std::string& filePath)
{
auto file = fs::path(filePath) / squashFSImage;
if (fs::is_regular_file(file))
{
return 0;
}
else
{
log<level::ERR>("Failed to find the SquashFS image.");
return -1;
}
}
void ItemUpdater::removeReadOnlyPartition(std::string versionId)
{
auto serviceFile = "obmc-flash-bios-ubiumount-ro@" + versionId +
".service";
// Remove the read-only partitions.
auto method = bus.new_method_call(
SYSTEMD_BUSNAME,
SYSTEMD_PATH,
SYSTEMD_INTERFACE,
"StartUnit");
method.append(serviceFile, "replace");
bus.call_noreply(method);
}
void ItemUpdater::removeReadWritePartition(std::string versionId)
{
auto serviceFile = "obmc-flash-bios-ubiumount-rw@" + versionId +
".service";
// Remove the read-write partitions.
auto method = bus.new_method_call(
SYSTEMD_BUSNAME,
SYSTEMD_PATH,
SYSTEMD_INTERFACE,
"StartUnit");
method.append(serviceFile, "replace");
bus.call_noreply(method);
}
void ItemUpdater::removePreservedPartition()
{
// Remove the preserved partition.
auto method = bus.new_method_call(
SYSTEMD_BUSNAME,
SYSTEMD_PATH,
SYSTEMD_INTERFACE,
"StartUnit");
method.append("obmc-flash-bios-ubiumount-prsv.service", "replace");
bus.call_noreply(method);
return;
}
void ItemUpdater::reset()
{
for(const auto& it : activations)
{
removeReadWritePartition(it.first);
removeFile(it.first);
}
removePreservedPartition();
return;
}
void ItemUpdater::freePriority(uint8_t value, const std::string& versionId)
{
//TODO openbmc/openbmc#1896 Improve the performance of this function
for (const auto& intf : activations)
{
if(intf.second->redundancyPriority)
{
if (intf.second->redundancyPriority.get()->priority() == value &&
intf.second->versionId != versionId)
{
intf.second->redundancyPriority.get()->priority(value+1);
}
}
}
}
bool ItemUpdater::isLowestPriority(uint8_t value)
{
for (const auto& intf : activations)
{
if(intf.second->redundancyPriority)
{
if (intf.second->redundancyPriority.get()->priority() < value)
{
return false;
}
}
}
return true;
}
void ItemUpdater::erase(std::string entryId)
{
// Remove priority persistence file
removeFile(entryId);
// Removing partitions
removeReadWritePartition(entryId);
removeReadOnlyPartition(entryId);
// Removing entry in versions map
auto it = versions.find(entryId);
if (it == versions.end())
{
log<level::ERR>(("Error: Failed to find version " + entryId + \
" in item updater versions map." \
" Unable to remove.").c_str());
return;
}
versions.erase(entryId);
// Removing entry in activations map
auto ita = activations.find(entryId);
if (ita == activations.end())
{
log<level::ERR>(("Error: Failed to find version " + entryId + \
" in item updater activations map." \
" Unable to remove.").c_str());
return;
}
activations.erase(entryId);
}
} // namespace updater
} // namespace software
} // namespace openpower
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