Files
rocm-systems/tests/rocm_smi_test/functional/volt_freq_curv_read.cc
T
Chris Freehill d9ab846bee Make rsmitst tests fail quickly if rsmi_init fails
Change-Id: I7b5d94b77305b30e08f33e1ddb6e2f089db0431f
2020-03-11 12:13:28 -05:00

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/*
* =============================================================================
* ROC Runtime Conformance Release License
* =============================================================================
* The University of Illinois/NCSA
* Open Source License (NCSA)
*
* Copyright (c) 2019, Advanced Micro Devices, Inc.
* All rights reserved.
*
* Developed by:
*
* AMD Research and AMD ROC Software Development
*
* Advanced Micro Devices, Inc.
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* www.amd.com
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* deal with the Software without restriction, including without limitation
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* Software is furnished to do so, subject to the following conditions:
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* this list of conditions and the following disclaimers.
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* notice, this list of conditions and the following disclaimers in
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#include <stdint.h>
#include <stddef.h>
#include <iostream>
#include <string>
#include "gtest/gtest.h"
#include "rocm_smi/rocm_smi.h"
#include "rocm_smi_test/functional/volt_freq_curv_read.h"
#include "rocm_smi_test/test_common.h"
TestVoltCurvRead::TestVoltCurvRead() : TestBase() {
set_title("RSMI Voltage-Frequency Curve Read Test");
set_description("The Voltage-Frequency Read tests verifies that the voltage"
" frequency curve information can be read properly.");
}
TestVoltCurvRead::~TestVoltCurvRead(void) {
}
void TestVoltCurvRead::SetUp(void) {
TestBase::SetUp();
return;
}
void TestVoltCurvRead::DisplayTestInfo(void) {
TestBase::DisplayTestInfo();
}
void TestVoltCurvRead::DisplayResults(void) const {
TestBase::DisplayResults();
return;
}
void TestVoltCurvRead::Close() {
// This will close handles opened within rsmitst utility calls and call
// rsmi_shut_down(), so it should be done after other hsa cleanup
TestBase::Close();
}
static void pt_rng_Mhz(std::string title, rsmi_range *r) {
assert(r != nullptr);
std::cout << title << std::endl;
std::cout << "\t\t** " << r->lower_bound/1000000 << " to " <<
r->upper_bound/1000000 << " MHz" << std::endl;
}
static void pt_rng_mV(std::string title, rsmi_range *r) {
assert(r != nullptr);
std::cout << title << std::endl;
std::cout << "\t\t** " << r->lower_bound << " to " << r->upper_bound <<
" mV" << std::endl;
}
static void print_pnt(rsmi_od_vddc_point_t *pt) {
std::cout << "\t\t** Frequency: " << pt->frequency/1000000 << "MHz" <<
std::endl;
std::cout << "\t\t** Voltage: " << pt->voltage << "mV" << std::endl;
}
static void pt_vddc_curve(rsmi_od_volt_curve *c) {
assert(c != nullptr);
for (uint32_t i = 0; i < RSMI_NUM_VOLTAGE_CURVE_POINTS; ++i) {
print_pnt(&c->vc_points[i]);
}
}
static void print_rsmi_od_volt_freq_data_t(rsmi_od_volt_freq_data_t *odv) {
assert(odv != nullptr);
std::cout.setf(std::ios::dec, std::ios::basefield);
pt_rng_Mhz("\t\tCurrent SCLK frequency range:", &odv->curr_sclk_range);
pt_rng_Mhz("\t\tCurrent MCLK frequency range:", &odv->curr_mclk_range);
pt_rng_Mhz("\t\tMin/Max Possible SCLK frequency range:",
&odv->sclk_freq_limits);
pt_rng_Mhz("\t\tMin/Max Possible MCLK frequency range:",
&odv->mclk_freq_limits);
std::cout << "\t\tCurrent Freq/Volt. curve:" << std::endl;
pt_vddc_curve(&odv->curve);
std::cout << "\tNumber of Freq./Volt. regions: " <<
odv->num_regions << std::endl;
}
static void print_odv_region(rsmi_freq_volt_region_t *region) {
pt_rng_Mhz("\t\tFrequency range:", &region->freq_range);
pt_rng_mV("\t\tVoltage range:", &region->volt_range);
}
static void print_rsmi_od_volt_freq_regions(uint32_t num_regions,
rsmi_freq_volt_region_t *regions) {
for (uint32_t i = 0; i < num_regions; ++i) {
std::cout << "\tRegion " << i << ":" << std::endl;
print_odv_region(&regions[i]);
}
}
void TestVoltCurvRead::Run(void) {
rsmi_status_t err;
rsmi_od_volt_freq_data_t odv;
TestBase::Run();
if (setup_failed_) {
std::cout << "** SetUp Failed for this test. Skipping.**" << std::endl;
return;
}
for (uint32_t i = 0; i < num_monitor_devs(); ++i) {
PrintDeviceHeader(i);
err = rsmi_dev_od_volt_info_get(i, &odv);
if (err == RSMI_STATUS_NOT_SUPPORTED) {
IF_VERB(STANDARD) {
std::cout <<
"\t**rsmi_dev_od_volt_info_get: Not supported on this machine"
<< std::endl;
}
// Verify api support checking functionality is working
err = rsmi_dev_od_volt_info_get(i, nullptr);
ASSERT_EQ(err, RSMI_STATUS_NOT_SUPPORTED);
} else {
CHK_ERR_ASRT(err)
// Verify api support checking functionality is working
err = rsmi_dev_od_volt_info_get(i, nullptr);
ASSERT_EQ(err, RSMI_STATUS_NOT_SUPPORTED);
}
if (err == RSMI_STATUS_SUCCESS) {
std::cout << "\t**Frequency-voltage curve data:" << std::endl;
print_rsmi_od_volt_freq_data_t(&odv);
rsmi_freq_volt_region_t *regions;
uint32_t num_regions;
regions = new rsmi_freq_volt_region_t[odv.num_regions];
ASSERT_TRUE(regions != nullptr);
num_regions = odv.num_regions;
err = rsmi_dev_od_volt_curve_regions_get(i, &num_regions, regions);
CHK_ERR_ASRT(err)
ASSERT_TRUE(num_regions == odv.num_regions);
std::cout << "\t**Frequency-voltage curve regions:" << std::endl;
print_rsmi_od_volt_freq_regions(num_regions, regions);
delete []regions;
}
}
}