[Sysman] Add support to control lifetime of file descriptor

This patch adds support to open and close the drm fd,
so that more granular control of drm fd could be
achieved.

Related-To: LOCI-3986

Signed-off-by: Joshua Santosh Ranjan <joshua.santosh.ranjan@intel.com>
This commit is contained in:
Joshua Santosh Ranjan
2023-03-01 09:29:12 +00:00
committed by Compute-Runtime-Automation
parent f7cf09d195
commit b180a83a24
19 changed files with 229 additions and 28 deletions

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@@ -16,6 +16,8 @@ set(L0_SRCS_SYSMAN
${CMAKE_CURRENT_SOURCE_DIR}/sysman_device_imp.cpp ${CMAKE_CURRENT_SOURCE_DIR}/sysman_device_imp.cpp
${CMAKE_CURRENT_SOURCE_DIR}/sysman_device_imp.h ${CMAKE_CURRENT_SOURCE_DIR}/sysman_device_imp.h
${CMAKE_CURRENT_SOURCE_DIR}/os_sysman.h ${CMAKE_CURRENT_SOURCE_DIR}/os_sysman.h
${CMAKE_CURRENT_SOURCE_DIR}/sysman_hw_device_id.h
) )
target_sources(${L0_STATIC_LIB_NAME} target_sources(${L0_STATIC_LIB_NAME}

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@@ -10,6 +10,8 @@ set(L0_SRCS_SYSMAN_LINUX
${CMAKE_CURRENT_SOURCE_DIR}/os_sysman_imp.cpp ${CMAKE_CURRENT_SOURCE_DIR}/os_sysman_imp.cpp
${CMAKE_CURRENT_SOURCE_DIR}/fs_access.h ${CMAKE_CURRENT_SOURCE_DIR}/fs_access.h
${CMAKE_CURRENT_SOURCE_DIR}/fs_access.cpp ${CMAKE_CURRENT_SOURCE_DIR}/fs_access.cpp
${CMAKE_CURRENT_SOURCE_DIR}/hw_device_id_linux.cpp
${CMAKE_CURRENT_SOURCE_DIR}/hw_device_id_linux.h
) )
if(UNIX) if(UNIX)

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@@ -0,0 +1,52 @@
/*
* Copyright (C) 2023 Intel Corporation
*
* SPDX-License-Identifier: MIT
*
*/
#include "level_zero/sysman/source/linux/hw_device_id_linux.h"
#include "shared/source/os_interface/linux/sys_calls.h"
#include "level_zero/sysman/source/sysman_hw_device_id.h"
#include <fcntl.h>
namespace L0 {
namespace Sysman {
int SysmanHwDeviceIdDrm::openFileDescriptor() {
std::unique_lock<std::mutex> lock(fdMutex);
if (fileDescriptor == -1) {
fileDescriptor = NEO::SysCalls::open(devNodePath.c_str(), O_RDWR);
}
++fdRefCounter;
return fileDescriptor;
}
int SysmanHwDeviceIdDrm::closeFileDescriptor() {
int closeStatus = 0;
std::unique_lock<std::mutex> lock(fdMutex);
DEBUG_BREAK_IF(fdRefCounter == 0u);
if (fdRefCounter > 0u) {
--fdRefCounter;
if (fdRefCounter == 0u && fileDescriptor >= 0) {
closeStatus = NEO::SysCalls::close(fileDescriptor);
fileDescriptor = -1;
}
}
return closeStatus;
}
std::unique_ptr<NEO::HwDeviceId> createSysmanHwDeviceId(std::unique_ptr<NEO::HwDeviceId> &hwDeviceId) {
const auto hwDeviceIdDrm = static_cast<NEO::HwDeviceIdDrm *>(hwDeviceId.get());
return std::make_unique<SysmanHwDeviceIdDrm>(hwDeviceIdDrm->getFileDescriptor(), hwDeviceIdDrm->getPciPath(), hwDeviceIdDrm->getDeviceNode());
}
} // namespace Sysman
} // namespace L0

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@@ -0,0 +1,29 @@
/*
* Copyright (C) 2023 Intel Corporation
*
* SPDX-License-Identifier: MIT
*
*/
#pragma once
#include "shared/source/os_interface/linux/hw_device_id.h"
#include <mutex>
namespace L0 {
namespace Sysman {
class SysmanHwDeviceIdDrm : public NEO::HwDeviceIdDrm {
public:
using NEO::HwDeviceIdDrm::HwDeviceIdDrm;
SysmanHwDeviceIdDrm() = delete;
int openFileDescriptor();
int closeFileDescriptor();
private:
std::mutex fdMutex{};
uint32_t fdRefCounter = 0;
};
} // namespace Sysman
} // namespace L0

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@@ -33,8 +33,9 @@ ze_result_t LinuxSysmanImp::init() {
if (osInterface.getDriverModel()->getDriverModelType() != NEO::DriverModelType::DRM) { if (osInterface.getDriverModel()->getDriverModelType() != NEO::DriverModelType::DRM) {
return ZE_RESULT_ERROR_UNSUPPORTED_FEATURE; return ZE_RESULT_ERROR_UNSUPPORTED_FEATURE;
} }
auto pDrm = osInterface.getDriverModel()->as<NEO::Drm>(); auto sysmanHwDeviceId = getSysmanHwDeviceId();
int myDeviceFd = pDrm->getFileDescriptor(); sysmanHwDeviceId->openFileDescriptor();
int myDeviceFd = sysmanHwDeviceId->getFileDescriptor();
std::string myDeviceName; std::string myDeviceName;
result = pProcfsAccess->getFileName(pProcfsAccess->myProcessId(), myDeviceFd, myDeviceName); result = pProcfsAccess->getFileName(pProcfsAccess->myProcessId(), myDeviceFd, myDeviceName);
if (ZE_RESULT_SUCCESS != result) { if (ZE_RESULT_SUCCESS != result) {
@@ -53,10 +54,19 @@ ze_result_t LinuxSysmanImp::init() {
osInterface.getDriverModel()->as<NEO::Drm>()->cleanup(); osInterface.getDriverModel()->as<NEO::Drm>()->cleanup();
// Close Drm handles // Close Drm handles
pDrm->closeFileDescriptor(); sysmanHwDeviceId->closeFileDescriptor();
return createPmtHandles(); return createPmtHandles();
} }
SysmanHwDeviceIdDrm *LinuxSysmanImp::getSysmanHwDeviceId() {
return static_cast<SysmanHwDeviceIdDrm *>(getDrm()->getHwDeviceId().get());
}
NEO::Drm *LinuxSysmanImp::getDrm() {
const auto &osInterface = *pParentSysmanDeviceImp->getRootDeviceEnvironment().osInterface;
return osInterface.getDriverModel()->as<NEO::Drm>();
}
ze_result_t LinuxSysmanImp::createPmtHandles() { ze_result_t LinuxSysmanImp::createPmtHandles() {
std::string gtDevicePCIPath; std::string gtDevicePCIPath;
auto result = pSysfsAccess->getRealPath("device", gtDevicePCIPath); auto result = pSysfsAccess->getRealPath("device", gtDevicePCIPath);

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@@ -9,11 +9,16 @@
#include "shared/source/execution_environment/execution_environment.h" #include "shared/source/execution_environment/execution_environment.h"
#include "shared/source/helpers/non_copyable_or_moveable.h" #include "shared/source/helpers/non_copyable_or_moveable.h"
#include "level_zero/sysman/source/linux/hw_device_id_linux.h"
#include "level_zero/sysman/source/os_sysman.h" #include "level_zero/sysman/source/os_sysman.h"
#include "level_zero/sysman/source/sysman_device_imp.h" #include "level_zero/sysman/source/sysman_device_imp.h"
#include <map> #include <map>
namespace NEO {
class Drm;
} // namespace NEO
namespace L0 { namespace L0 {
namespace Sysman { namespace Sysman {
class PlatformMonitoringTech; class PlatformMonitoringTech;
@@ -36,6 +41,8 @@ class LinuxSysmanImp : public OsSysman, NEO::NonCopyableOrMovableClass {
std::string getPciCardBusDirectoryPath(std::string realPciPath); std::string getPciCardBusDirectoryPath(std::string realPciPath);
PlatformMonitoringTech *getPlatformMonitoringTechAccess(uint32_t subDeviceId); PlatformMonitoringTech *getPlatformMonitoringTechAccess(uint32_t subDeviceId);
PRODUCT_FAMILY getProductFamily() const { return pParentSysmanDeviceImp->getProductFamily(); } PRODUCT_FAMILY getProductFamily() const { return pParentSysmanDeviceImp->getProductFamily(); }
SysmanHwDeviceIdDrm *getSysmanHwDeviceId();
NEO::Drm *getDrm();
void releasePmtObject(); void releasePmtObject();
ze_result_t createPmtHandles(); ze_result_t createPmtHandles();
std::string devicePciBdf = ""; std::string devicePciBdf = "";

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@@ -14,6 +14,7 @@
#include "level_zero/core/source/driver/driver.h" #include "level_zero/core/source/driver/driver.h"
#include "level_zero/sysman/source/sysman_driver_handle_imp.h" #include "level_zero/sysman/source/sysman_driver_handle_imp.h"
#include "level_zero/sysman/source/sysman_driver_imp.h" #include "level_zero/sysman/source/sysman_driver_imp.h"
#include "level_zero/sysman/source/sysman_hw_device_id.h"
#include <cstring> #include <cstring>
#include <vector> #include <vector>
@@ -43,7 +44,12 @@ void SysmanDriverImp::initialize(ze_result_t *result) {
executionEnvironment->prepareRootDeviceEnvironments(static_cast<uint32_t>(hwDeviceIds.size())); executionEnvironment->prepareRootDeviceEnvironments(static_cast<uint32_t>(hwDeviceIds.size()));
uint32_t rootDeviceIndex = 0u; uint32_t rootDeviceIndex = 0u;
for (auto &hwDeviceId : hwDeviceIds) { for (auto &hwDeviceId : hwDeviceIds) {
if (!executionEnvironment->rootDeviceEnvironments[rootDeviceIndex]->initOsInterface(std::move(hwDeviceId), rootDeviceIndex)) {
auto sysmanHwDeviceId = createSysmanHwDeviceId(hwDeviceId);
auto initStatus = sysmanHwDeviceId != nullptr &&
executionEnvironment->rootDeviceEnvironments[rootDeviceIndex]->initOsInterface(std::move(sysmanHwDeviceId), rootDeviceIndex);
if (!initStatus) {
NEO::printDebugString(NEO::DebugManager.flags.PrintDebugMessages.get(), stderr, NEO::printDebugString(NEO::DebugManager.flags.PrintDebugMessages.get(), stderr,
"OsInterface initialization failed for device : %d\n", rootDeviceIndex); "OsInterface initialization failed for device : %d\n", rootDeviceIndex);
*result = ZE_RESULT_ERROR_UNINITIALIZED; *result = ZE_RESULT_ERROR_UNINITIALIZED;

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@@ -0,0 +1,20 @@
/*
* Copyright (C) 2023 Intel Corporation
*
* SPDX-License-Identifier: MIT
*
*/
#pragma once
#include <memory>
#include <vector>
namespace NEO {
class HwDeviceId;
} // namespace NEO
namespace L0 {
namespace Sysman {
std::unique_ptr<NEO::HwDeviceId> createSysmanHwDeviceId(std::unique_ptr<NEO::HwDeviceId> &hwDeviceId);
} // namespace Sysman
} // namespace L0

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@@ -8,6 +8,7 @@ set(L0_SRCS_SYSMAN_WINDOWS
${CMAKE_CURRENT_SOURCE_DIR}/CMakeLists.txt ${CMAKE_CURRENT_SOURCE_DIR}/CMakeLists.txt
${CMAKE_CURRENT_SOURCE_DIR}/os_sysman_imp.h ${CMAKE_CURRENT_SOURCE_DIR}/os_sysman_imp.h
${CMAKE_CURRENT_SOURCE_DIR}/os_sysman_imp.cpp ${CMAKE_CURRENT_SOURCE_DIR}/os_sysman_imp.cpp
${CMAKE_CURRENT_SOURCE_DIR}/hw_device_id_windows.cpp
) )
if(WIN32) if(WIN32)

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@@ -0,0 +1,20 @@
/*
* Copyright (C) 2023 Intel Corporation
*
* SPDX-License-Identifier: MIT
*
*/
#include "shared/source/os_interface/os_interface.h"
#include "level_zero/sysman/source/sysman_hw_device_id.h"
namespace L0 {
namespace Sysman {
std::unique_ptr<NEO::HwDeviceId> createSysmanHwDeviceId(std::unique_ptr<NEO::HwDeviceId> &hwDeviceId) {
return std::unique_ptr<NEO::HwDeviceId>{};
}
} // namespace Sysman
} // namespace L0

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@@ -12,6 +12,7 @@ if(UNIX)
${CMAKE_CURRENT_SOURCE_DIR}/mock_sysman_drm.h ${CMAKE_CURRENT_SOURCE_DIR}/mock_sysman_drm.h
${CMAKE_CURRENT_SOURCE_DIR}/mock_sysman_driver.h ${CMAKE_CURRENT_SOURCE_DIR}/mock_sysman_driver.h
${CMAKE_CURRENT_SOURCE_DIR}/test_sysman_driver.cpp ${CMAKE_CURRENT_SOURCE_DIR}/test_sysman_driver.cpp
${CMAKE_CURRENT_SOURCE_DIR}/test_sysman_hw_device_id.cpp
) )
endif() endif()

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@@ -12,12 +12,14 @@
#include "shared/source/os_interface/linux/drm_neo.h" #include "shared/source/os_interface/linux/drm_neo.h"
#include "shared/source/os_interface/os_interface.h" #include "shared/source/os_interface/os_interface.h"
#include "level_zero/sysman/source/linux/hw_device_id_linux.h"
namespace L0 { namespace L0 {
namespace ult { namespace ult {
constexpr int mockFd = 0; constexpr int mockFd = -1;
class SysmanMockDrm : public NEO::Drm { class SysmanMockDrm : public NEO::Drm {
public: public:
SysmanMockDrm(NEO::RootDeviceEnvironment &rootDeviceEnvironment) : Drm(std::make_unique<NEO::HwDeviceIdDrm>(mockFd, ""), rootDeviceEnvironment) { SysmanMockDrm(NEO::RootDeviceEnvironment &rootDeviceEnvironment) : Drm(std::make_unique<L0::Sysman::SysmanHwDeviceIdDrm>(mockFd, ""), rootDeviceEnvironment) {
setupIoctlHelper(rootDeviceEnvironment.getHardwareInfo()->platform.eProductFamily); setupIoctlHelper(rootDeviceEnvironment.getHardwareInfo()->platform.eProductFamily);
} }
}; };

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@@ -18,6 +18,7 @@
#include "level_zero/sysman/source/linux/os_sysman_imp.h" #include "level_zero/sysman/source/linux/os_sysman_imp.h"
#include "level_zero/sysman/source/sysman_device.h" #include "level_zero/sysman/source/sysman_device.h"
#include "level_zero/sysman/source/sysman_driver_handle_imp.h" #include "level_zero/sysman/source/sysman_driver_handle_imp.h"
#include "level_zero/sysman/test/unit_tests/sources/linux/mock_sysman_drm.h"
#include "gtest/gtest.h" #include "gtest/gtest.h"
@@ -25,14 +26,6 @@ using namespace NEO;
namespace L0 { namespace L0 {
namespace ult { namespace ult {
constexpr int mockFd = 0;
class SysmanMockDrm : public Drm {
public:
SysmanMockDrm(RootDeviceEnvironment &rootDeviceEnvironment) : Drm(std::make_unique<HwDeviceIdDrm>(mockFd, ""), rootDeviceEnvironment) {
setupIoctlHelper(rootDeviceEnvironment.getHardwareInfo()->platform.eProductFamily);
}
};
class PublicLinuxSysmanImp : public L0::Sysman::LinuxSysmanImp { class PublicLinuxSysmanImp : public L0::Sysman::LinuxSysmanImp {
public: public:
using LinuxSysmanImp::mapOfSubDeviceIdToPmtObject; using LinuxSysmanImp::mapOfSubDeviceIdToPmtObject;

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@@ -0,0 +1,58 @@
/*
* Copyright (C) 2023 Intel Corporation
*
* SPDX-License-Identifier: MIT
*
*/
#include "shared/test/common/helpers/variable_backup.h"
#include "shared/test/common/os_interface/linux/sys_calls_linux_ult.h"
#include "level_zero/sysman/source/linux/hw_device_id_linux.h"
#include "gtest/gtest.h"
#include <bitset>
#include <cstring>
namespace L0 {
namespace ult {
TEST(sysmanHwDeviceIdTest, whenOpenFileDescriptorIsCalledMultipleTimesThenOpenIsCalledOnlyOnce) {
L0::Sysman::SysmanHwDeviceIdDrm hwDeviceId(-1, "mockPciPath", "mockDevNodePath");
static uint32_t openCallCount = 0;
VariableBackup<decltype(NEO::SysCalls::sysCallsOpen)> mockOpen(&NEO::SysCalls::sysCallsOpen, [](const char *pathname, int flags) -> int {
openCallCount++;
return 1;
});
openCallCount = 0;
hwDeviceId.openFileDescriptor();
EXPECT_EQ(openCallCount, 1u);
hwDeviceId.openFileDescriptor();
EXPECT_EQ(openCallCount, 1u);
}
TEST(sysmanHwDeviceIdTest, whenOpenFileDescriptorIsCalledMultipleTimesThenCloseIsCalledOnlyAfterAllReferencesAreClosed) {
L0::Sysman::SysmanHwDeviceIdDrm hwDeviceId(-1, "mockPciPath", "mockDevNodePath");
VariableBackup<decltype(NEO::SysCalls::sysCallsOpen)> mockOpen(&NEO::SysCalls::sysCallsOpen, [](const char *pathname, int flags) -> int {
return 1;
});
const auto referenceCloseCount = NEO::SysCalls::closeFuncCalled;
hwDeviceId.openFileDescriptor();
hwDeviceId.openFileDescriptor();
hwDeviceId.openFileDescriptor();
hwDeviceId.closeFileDescriptor();
EXPECT_EQ(NEO::SysCalls::closeFuncCalled, referenceCloseCount);
hwDeviceId.closeFileDescriptor();
EXPECT_EQ(NEO::SysCalls::closeFuncCalled, referenceCloseCount);
hwDeviceId.closeFileDescriptor();
EXPECT_EQ(NEO::SysCalls::closeFuncCalled, referenceCloseCount + 1u);
}
} // namespace ult
} // namespace L0

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@@ -484,10 +484,10 @@ int Drm::setupHardwareInfo(const DeviceDescriptor *device, bool setupFeatureTabl
return 0; return 0;
} }
void appendHwDeviceId(std::vector<std::unique_ptr<HwDeviceId>> &hwDeviceIds, int fileDescriptor, const char *pciPath) { void appendHwDeviceId(std::vector<std::unique_ptr<HwDeviceId>> &hwDeviceIds, int fileDescriptor, const char *pciPath, const char *devNodePath) {
if (fileDescriptor >= 0) { if (fileDescriptor >= 0) {
if (Drm::isDrmSupported(fileDescriptor)) { if (Drm::isDrmSupported(fileDescriptor)) {
hwDeviceIds.push_back(std::make_unique<HwDeviceIdDrm>(fileDescriptor, pciPath)); hwDeviceIds.push_back(std::make_unique<HwDeviceIdDrm>(fileDescriptor, pciPath, devNodePath));
} else { } else {
SysCalls::close(fileDescriptor); SysCalls::close(fileDescriptor);
} }
@@ -524,7 +524,7 @@ std::vector<std::unique_ptr<HwDeviceId>> Drm::discoverDevices(ExecutionEnvironme
auto pciPath = NEO::getPciPath(fileDescriptor); auto pciPath = NEO::getPciPath(fileDescriptor);
appendHwDeviceId(hwDeviceIds, fileDescriptor, pciPath.value_or("0000:00:02.0").c_str()); appendHwDeviceId(hwDeviceIds, fileDescriptor, pciPath.value_or("0000:00:02.0").c_str(), path.c_str());
if (!hwDeviceIds.empty() && hwDeviceIds.size() == numRootDevices) { if (!hwDeviceIds.empty() && hwDeviceIds.size() == numRootDevices) {
break; break;
} }
@@ -564,7 +564,7 @@ std::vector<std::unique_ptr<HwDeviceId>> Drm::discoverDevices(ExecutionEnvironme
} }
} }
int fileDescriptor = SysCalls::open(file->c_str(), O_RDWR); int fileDescriptor = SysCalls::open(file->c_str(), O_RDWR);
appendHwDeviceId(hwDeviceIds, fileDescriptor, pciPath.c_str()); appendHwDeviceId(hwDeviceIds, fileDescriptor, pciPath.c_str(), file->c_str());
if (!hwDeviceIds.empty() && hwDeviceIds.size() == numRootDevices) { if (!hwDeviceIds.empty() && hwDeviceIds.size() == numRootDevices) {
break; break;
} }

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@@ -102,7 +102,6 @@ class Drm : public DriverModel {
MOCKABLE_VIRTUAL void checkPreemptionSupport(); MOCKABLE_VIRTUAL void checkPreemptionSupport();
inline int getFileDescriptor() const { return hwDeviceId->getFileDescriptor(); } inline int getFileDescriptor() const { return hwDeviceId->getFileDescriptor(); }
inline void closeFileDescriptor() const { return hwDeviceId->closeFileDescriptor(); }
ADAPTER_BDF getAdapterBDF() const { ADAPTER_BDF getAdapterBDF() const {
return adapterBDF; return adapterBDF;
} }
@@ -259,6 +258,7 @@ class Drm : public DriverModel {
void cleanup() override; void cleanup() override;
bool readSysFsAsString(const std::string &relativeFilePath, std::string &readString); bool readSysFsAsString(const std::string &relativeFilePath, std::string &readString);
MOCKABLE_VIRTUAL std::string getSysFsPciPath(); MOCKABLE_VIRTUAL std::string getSysFsPciPath();
std::unique_ptr<HwDeviceIdDrm> &getHwDeviceId() { return hwDeviceId; }
protected: protected:
Drm(std::unique_ptr<HwDeviceIdDrm> &&hwDeviceIdIn, RootDeviceEnvironment &rootDeviceEnvironment); Drm(std::unique_ptr<HwDeviceIdDrm> &&hwDeviceIdIn, RootDeviceEnvironment &rootDeviceEnvironment);

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@@ -19,13 +19,17 @@ class HwDeviceIdDrm : public HwDeviceId {
HwDeviceIdDrm(int fileDescriptorIn, const char *pciPathIn) HwDeviceIdDrm(int fileDescriptorIn, const char *pciPathIn)
: HwDeviceId(DriverModelType::DRM), : HwDeviceId(DriverModelType::DRM),
fileDescriptor(fileDescriptorIn), pciPath(pciPathIn) {} fileDescriptor(fileDescriptorIn), pciPath(pciPathIn) {}
HwDeviceIdDrm(int fileDescriptorIn, const char *pciPathIn, const char *devNodePathIn)
: HwDeviceId(DriverModelType::DRM),
fileDescriptor(fileDescriptorIn), pciPath(pciPathIn), devNodePath(devNodePathIn) {}
~HwDeviceIdDrm() override; ~HwDeviceIdDrm() override;
int getFileDescriptor() const { return fileDescriptor; } int getFileDescriptor() const { return fileDescriptor; }
void closeFileDescriptor();
const char *getPciPath() const { return pciPath.c_str(); } const char *getPciPath() const { return pciPath.c_str(); }
const char *getDeviceNode() const { return devNodePath.c_str(); }
protected: protected:
int fileDescriptor; int fileDescriptor;
const std::string pciPath; const std::string pciPath;
const std::string devNodePath;
}; };
} // namespace NEO } // namespace NEO

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@@ -10,15 +10,8 @@
namespace NEO { namespace NEO {
void HwDeviceIdDrm::closeFileDescriptor() {
if (fileDescriptor > 0) {
SysCalls::close(fileDescriptor);
fileDescriptor = -1;
}
}
HwDeviceIdDrm::~HwDeviceIdDrm() { HwDeviceIdDrm::~HwDeviceIdDrm() {
closeFileDescriptor(); SysCalls::close(fileDescriptor);
} }
} // namespace NEO } // namespace NEO

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@@ -28,5 +28,6 @@ constexpr int fakeFileDescriptor = 123;
extern int passedFileDescriptorFlagsToSet; extern int passedFileDescriptorFlagsToSet;
extern int getFileDescriptorFlagsCalled; extern int getFileDescriptorFlagsCalled;
extern int setFileDescriptorFlagsCalled; extern int setFileDescriptorFlagsCalled;
extern uint32_t closeFuncCalled;
} // namespace SysCalls } // namespace SysCalls
} // namespace NEO } // namespace NEO