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rocm-systems/tests/amd_smi_test/functional/frequencies_read.cc
T
Galantsev, Dmitrii 5c41319c83 Merge remote-tracking branch 'rocmsmi/amd-staging' into HEAD
Change-Id: I65ed7f3a0d1b6e58bc8377932d7c39db21d1b422
2023-09-21 23:43:20 -05:00

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/*
* =============================================================================
* ROC Runtime Conformance Release License
* =============================================================================
* The University of Illinois/NCSA
* Open Source License (NCSA)
*
* Copyright (c) 2022, Advanced Micro Devices, Inc.
* All rights reserved.
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* Developed by:
*
* AMD Research and AMD ROC Software Development
*
* Advanced Micro Devices, Inc.
*
* www.amd.com
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* deal with the Software without restriction, including without limitation
* the rights to use, copy, modify, merge, publish, distribute, sublicense,
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* Software is furnished to do so, subject to the following conditions:
*
* - Redistributions of source code must retain the above copyright notice,
* this list of conditions and the following disclaimers.
* - Redistributions in binary form must reproduce the above copyright
* notice, this list of conditions and the following disclaimers in
* the documentation and/or other materials provided with the distribution.
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* IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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* ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER
* DEALINGS WITH THE SOFTWARE.
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*/
#include <stdint.h>
#include <stddef.h>
#include <iostream>
#include <string>
#include <gtest/gtest.h>
#include "amd_smi/amdsmi.h"
#include "frequencies_read.h"
#include "../test_common.h"
TestFrequenciesRead::TestFrequenciesRead() : TestBase() {
set_title("AMDSMI Frequencies Read Test");
set_description("The Frequency Read tests verifies that the "
"available and current frequency levels can be read properly.");
}
TestFrequenciesRead::~TestFrequenciesRead(void) {
}
void TestFrequenciesRead::SetUp(void) {
TestBase::SetUp();
return;
}
void TestFrequenciesRead::DisplayTestInfo(void) {
TestBase::DisplayTestInfo();
}
void TestFrequenciesRead::DisplayResults(void) const {
TestBase::DisplayResults();
return;
}
void TestFrequenciesRead::Close() {
// This will close handles opened within rsmitst utility calls and call
// amdsmi_shut_down(), so it should be done after other hsa cleanup
TestBase::Close();
}
static void print_frequencies(amdsmi_frequencies_t *f, uint32_t *l = nullptr) {
assert(f != nullptr);
for (uint32_t j = 0; j < f->num_supported; ++j) {
std::cout << "\t** " << j << ": " << f->frequency[j];
if (l != nullptr) {
std::cout << "T/s; x" << l[j];
} else {
std::cout << "Hz";
}
if (j == f->current) {
std::cout << " *";
}
std::cout << std::endl;
}
}
void TestFrequenciesRead::Run(void) {
amdsmi_status_t err;
amdsmi_frequencies_t f;
amdsmi_pcie_bandwidth_t b;
TestBase::Run();
if (setup_failed_) {
std::cout << "** SetUp Failed for this test. Skipping.**" << std::endl;
return;
}
for (uint32_t x = 0; x < num_iterations(); ++x) {
for (uint32_t i = 0; i < num_monitor_devs(); ++i) {
auto freq_output = [&](amdsmi_clk_type_t t, const char *name) {
err = amdsmi_get_clk_freq(processor_handles_[i], t, &f);
if (err == AMDSMI_STATUS_NOT_SUPPORTED) {
std::cout << "\t**Get " << name <<
": Not supported on this machine" << std::endl;
// Verify api support checking functionality is working
err = amdsmi_get_clk_freq(processor_handles_[i], t, nullptr);
ASSERT_EQ(err, AMDSMI_STATUS_INVAL);
} else if (err == AMDSMI_STATUS_NOT_YET_IMPLEMENTED) {
std::cout << "\t**Get " << name <<
": Not implemented on this machine" << std::endl;
// special driver issue, shouldn't normally occur
} else if (err == AMDSMI_STATUS_UNEXPECTED_DATA) {
std::cerr << "WARN: Clock file [" << FreqEnumToStr(t) << "] exists on device [" << i << "] but empty!" << std::endl;
std::cerr << " Likely a driver issue!" << std::endl;
} else {
CHK_ERR_ASRT(err)
IF_VERB(STANDARD) {
std::cout << "\t**Supported " << name << " clock frequencies: ";
std::cout << f.num_supported << std::endl;
print_frequencies(&f);
// Verify api support checking functionality is working
err = amdsmi_get_clk_freq(processor_handles_[i], t, nullptr);
ASSERT_EQ(err, AMDSMI_STATUS_INVAL);
}
}
};
PrintDeviceHeader(processor_handles_[i]);
freq_output(CLK_TYPE_MEM, "Supported GPU Memory");
freq_output(CLK_TYPE_SYS, "Supported GPU");
freq_output(CLK_TYPE_DF, "Data Fabric Clock");
freq_output(CLK_TYPE_DCEF, "Display Controller Engine Clock");
freq_output(CLK_TYPE_SOC, "SOC Clock");
err = amdsmi_get_gpu_pci_bandwidth(processor_handles_[i], &b);
if (err == AMDSMI_STATUS_NOT_SUPPORTED) {
std::cout << "\t**Get PCIE Bandwidth: Not supported on this machine"
<< std::endl;
// Verify api support checking functionality is working
err = amdsmi_get_gpu_pci_bandwidth(processor_handles_[i], nullptr);
ASSERT_EQ(err, AMDSMI_STATUS_NOT_SUPPORTED);
} else if (err == AMDSMI_STATUS_NOT_YET_IMPLEMENTED) {
std::cout << "\t**Get PCIE Bandwidth "
<< ": Not implemented on this machine" << std::endl;
} else {
CHK_ERR_ASRT(err)
IF_VERB(STANDARD) {
std::cout << "\t**Supported PCIe bandwidths: ";
std::cout << b.transfer_rate.num_supported << std::endl;
print_frequencies(&b.transfer_rate, b.lanes);
// Verify api support checking functionality is working
err = amdsmi_get_gpu_pci_bandwidth(processor_handles_[i], nullptr);
ASSERT_EQ(err, AMDSMI_STATUS_INVAL);
}
}
}
}
}